Showing posts with label IE in different branches of engg.. Show all posts
Showing posts with label IE in different branches of engg.. Show all posts

Thursday, May 14, 2026

Industrial Engineering in Health Care - Hospital Industrial Engineering

Ubiquity of Industrial Engineering Principle - Industrial Engineering is applicable to all branches of engineering.

Industrial engineers improve healthcare by applying systems-level analysis to complex healthcare processes, using tools like data analysis, process re-engineering, and quality improvement techniques to boost efficiency, enhance patient care, and reduce costs. They analyze workflows, optimize resource allocation, design equipment, improve medical technology, and address systemic inefficiencies to create safer, more patient-centered, and cost-effective healthcare systems. 

Key Areas of Improvement

Process Improvement 
Industrial engineers analyze and redesign workflows to eliminate bottlenecks, reduce waiting times, and improve the overall efficiency of healthcare delivery, from hospital admissions to patient discharge. 

Resource Management:
They apply capacity planning and resource allocation strategies to optimize staffing levels, equipment utilization, and the availability of services, ensuring that resources are used effectively and costs are controlled. 

Data Analysis & Technology:
Industrial engineers use data analysis and insights from large datasets to identify areas for improvement and inform decision-making. They also contribute to the design and integration of medical devices and technologies to improve patient care and safety. 

Quality Improvement & Patient Safety:
By employing methods like root cause analysis and risk assessments, they identify vulnerabilities in healthcare processes and design fail-safe mechanisms to prevent errors and improve patient safety.
 
System Integration:
They help integrate disparate systems and break down data silos, facilitating better communication and coordination among different departments and healthcare providers, which is essential for a comprehensive approach to care. 

Cost Reduction:
Through process improvements and efficient resource management, industrial engineers help reduce waste and operational costs within healthcare systems. 

Why Industrial Engineers Are Crucial

Systems Thinking:
Industrial engineers bring a systematic view to the complex healthcare ecosystem, identifying overarching issues that might be overlooked by individual departments. 

Data-Driven Solutions:
They leverage their expertise in data analysis to interpret trends, uncover inefficiencies, and develop evidence-based solutions. 

Interdisciplinary Collaboration:
They work with healthcare professionals to understand the unique challenges and opportunities within the field, fostering collaboration to create solutions that are both effective and practical. 

Focus on Patient Experience:
By streamlining processes and improving the overall system, industrial engineers contribute to a more positive and responsive patient experience, leading to higher satisfaction. 



 Spine decompression and fusion surgery



1.5.2026
As an industrial engineer or quality engineer/manager in hospitals have you done any improvement in the process  of spine decompression and fusion surgery?

Related articles

Is Six Sigma effective in health care - hospital industrial engineering?


How effective is lumbar decompression?

Laminectomy has success rates of around 90%, with patient satisfaction of over 75%, according to a 2023 research article.  Another research article states the success rate of diskectomy is between 60% and 90%.

A 2020 review   of 2,699 lumbar decompression surgeries found that it is more generally effective for reducing leg pain due to pinched nerve roots and, to a lesser extent, back pain.




Among 121 745 eligible hospitalized patients (mean age, 65.2 years [95% CI, 65.0-65.4 years]; 96 645 of 117 640 [82.2%] non-Hispanic White) with lumbar stenosis and degenerative spondylolisthesis, 21 230 (17.4%) underwent decompression alone, and 100 515 (82.6%) underwent decompression with fusion.



17.9.2025

Question by Narayana Rao KVSS
Professor (Retired), NITIE - Now IIM Mumbai - Offering FREE IE ONLINE Course Notes.


Mr. Cody Hall, Can you please recommend books on process improvement in healthcare from IE perspective. I would like to review in my LinkedIn articles. I feel in IE, new books are not coming in the right frequency. 

Answer by Cody Hall
Director of Process Excellence at Vandalia Health Davis Health System.

None of these are new, but my favorites include Lean Hospitals, Beyond Heroes, On the Mend, and Healthcare Kaizen!


Lean Hospitals

2018
https://www.scirp.org/reference/referencespapers?referenceid=2426465

Preview  Available
Lean Hospitals: Improving Quality, Patient Safety, and Employee Engagement, Third Edition

Mark Graban
CRC Press, Jun 30, 2016 - Medical - 354 pages
Organizations around the world are using Lean to redesign care and improve processes in a way that achieves and sustains meaningful results for patients, staff, physicians, and health systems. Lean Hospitals, Third Edition explains how to use the Lean methodology and mindsets to improve safety, quality, access, and morale while reducing costs, increasing capacity, and strengthening the long-term bottom line.

This updated edition of a Shingo Research Award recipient begins with an overview of Lean methods. It explains how Lean practices can help reduce various frustrations for caregivers, prevent delays and harm for patients, and improve the long-term health of your organization.

The second edition of this book presented new material on identifying waste, A3 problem solving, engaging employees in continuous improvement, and strategy deployment. This third edition adds new sections on structured Lean problem solving methods (including Toyota Kata), Lean Design, and other topics. Additional examples, case studies, and explanations are also included throughout the book.

Mark Graban is also the co-author, with Joe Swartz, of the book Healthcare Kaizen: Engaging Frontline Staff in Sustainable Continuous Improvements, which is also a Shingo Research Award recipient. Mark and Joe also wrote The Executive’s Guide to Healthcare Kaizen.

https://www.iise.org/Details.aspx?id=13444


https://www.leanhospitalsbook.com/

-----------------------

Improving Care Delivery Through Lean: Implementation Case Studies
Case 5. Heights Hospital


Case 6


-----------------------



Applying Systems Engineering Principles in Improving Health Care Delivery
J Gen Intern Med. 2007 Nov 16;22(Suppl 3):431–437. doi: 10.1007/s11606-007-0292-3



https://www.researchgate.net/publication/340995977_Industrial_engineering_into_healthcare_-_A_comprehensive_review


https://ejst.samipubco.com/article_133219_d816c43c8a21b9f6c8b65f88e9ccbf95.pdf

https://digital.ahrq.gov/sites/default/files/docs/citation/IndustrialAndSystemsEngineeringAndHealthCare.pdf

https://www.motiondrivesandcontrols.co.uk/blog/revolutionising-healthcare-medical-engineering-solutions

http://www.scielo.org.za/scielo.php?script=sci_arttext&pid=S2224-78902013000100003

https://nraoiekc.blogspot.com/2024/05/health-systems-industrial-engineering.html

https://www.google.com/search?q=How+Industrial+Engineers+Are+Improving+Healthcare



Industrial Systems Engineering Principles in Health Care
_________________
A new collaboration between the University of Warwick and the NHS Institute for innovation and improvement Warwick CSI or clinical systems improvement will enable healthcare professionals to study the lean manufacturing philosophy and techniques used in the automotive and aviation industries in order to deliver better quality patient care.

Here's Matthew Cooke professor of emergency medicine to explain more more accesory is about
learning lessons from other sectors and applying them to health particularly by looking at the process of care rather than the specific treatments so how can we design the system to give the best care and the safest care. 

I'm a clinician what I'm interested in is the quality of care and if you improve the quality of care you actually improve all those other things that other people are interested in such as the cost of the care 

I'm Don Berwick I'm a pediatrician and head of the Institute for Healthcare Improvement which is an American based NGO that works on improving healthcare systems all over the world and for years 
I've been interested in the idea of improving healthcare by improving the systems that deliver health care.

Lean thinking or lean production is a branch of improvement that developed outside healthcare and industries that figured out how you can have kind of waste-free production do away with waiting times do away with inventories do away with wasted efforts on the part of staff and employees we can bring those same concepts of developing really perfect patterns of work to support the workforce so they're not wasting their time we're not wasting patients time when always these supplies so costs can fall and quality rise at the same time one of the key issues when twelve designed it was safety and quality were
the linchpin of it all and simple things such as actually if there's six different people seeing a patient they have to hand over to another person who hands over to another one another and each time we hand over there's an opportunity there for information to get lost and therefore a safety issue if someone is allergic to a drug house and it doesn't get passed on to the next person so if we go to a lien system
where only one person cares that person in their whole state there aren't the opportunities to lose information it's also around designing systems so that if there's been a mistake can we design it so that can't go wrong again 

My name is Faye Bailey and I'm the acting director of nursing services at heart of England foundation trust we've always had systems and processes but now we're much more aware 
of organizational learning when we find trends emerging through reporting of incidents we are much more systematic in a hospital environment in actually clearly identifying what the trend is and then putting the operational learning in to take away or minimize that error 




My name is David Morgan I'm a consultant ENT surgeon I was the surgical advisor to the National Patient Safety Agency from 2000 to 2006 why I became focused on safety about 12 years ago when one of my patients was operated on by one of my juniors her and had the wrong operation that time I looked at the system and realized there are a lot of flaws in the way that patients are

handled when they go through the

surgical journey the consequence of that

I went to see if we could use technology

to improve the patient safety and

actually improve their efficiency we

developed a process involving a

radiofrequency identity tag which came

because of the dialogue I had with the

IT director of Tesco supermarket who was

using RFID in to stop any shoplifting

and it struck me that it could be

actually transferred into healthcare

fairly easily and be used for safety

proofing the surgical journey and by

able to being able to measure the
4:05
patient's journey you can actually
4:07
increase theater efficiency and the
4:09
result of that we found that not only
4:11
does it mistake proof the surgical
4:13
journey but actually improves theater
4:15
throughput from anything from 19 to 25
4:18
percent
4:19
what games doing there now surely be
4:21
going to talk about process management I
4:25
mean process management is is known and
4:28
implemented outside of healthcare but
4:30
it's only just starting to make an
4:31
impact on the healthcare by using the
4:33
combination of lean techniques and
4:36
process management coupled with new
4:38
technology we can not only improve
4:40
patient safety but also theater
4:42
efficiency and efficiency throughout
4:44
healthcare which is obviously better for
4:46
the hospital but more important best for
4:48
the patients I'm a consultant in the
4:51
emergency department here and several
4:53
years ago we realized there were certain
4:56
processes here that gradually evolved
4:59
rather than being designed from scratch
5:02
and so we've actually added lots of
5:05
extra little steps for good reason but

5:08
actually when we stood back and looked
5:09
at the whole system we realized there
5:11
was a really complicated system for
5:13
something that was relatively simple and
5:15
getting rid of those weights didn't just
5:19
reduce the waiting time it actually
5:20
meant that staff who could spend more
5:22
time with the patients because they were
5:23
spending less time sorting out problems
5:25
and more dealing with the patient
5:28
directly one of the trends that we
5:29
noticed through error reporting was an
5:33
increase in drug errors taking place in
5:36
the ward and we did an observational
5:38
exercise looking at why that could
5:41
possibly happen and one of the things we
5:44
found was that the person who was giving
5:47
the drugs out who was being constantly
5:49
interrupted by doctors wanting
5:51
information or other nurses wanting
5:54
information or visitors asking for
5:56
guidance other patients asking for
5:59
guidance so became quite obvious during
6:02
that observational exercise that it was
6:04
no wonder errors were happening so what
6:07
we did was think about is there any
6:11
other examples in outside of NHS working
6:15
that actually had the same problem and
6:17
what we came up with was the airline
6:19
industry they had introduced mechanics
6:23
wearing red vests saying do not disturb
6:26
me this I am doing an important task so
6:30
we started we're getting out
6:32
nurses who are doing drug administration
6:35
rounds to wear red vests and what we're
6:37
now seeing is a downward trend in drug
6:40
administration errors 



My name is Phil higden I'm formerly a British Airways pilot and I'm now director of training
6:48
for terima what we do in Terina is to
6:51
bring the safety processes from aviation
6:53
into healthcare the processes are
6:57
broadly similar with regard to the the
7:00
people side the human factors aspects of
7:04
crew resource management as it is in
7:06
aviation team resource management as it
7:08
is in healthcare are identical that
7:11
you're just dealing with the fact that
7:13
human performance is variable you're
7:15
dealing with the fact that humans have
7:18
to interact with one another to get a
7:20
decent result and humans have to
7:22
interact with systems and processes that
7:25
if we can manage that fail ability if we
7:28
have the skills to match that fail
7:30
ability and we have the will to manage
7:31
that fail ability then we can get a much
7:35
more effective team we can get a much
7:37
more effective result at the end of the
7:39
day to beat up on the healthcare
7:40
workforce or blame them for things gone
7:42
wrong is naive and absolutely wrong
7:44
to redesign healthcare so it can perform
7:46
for patients the way we really wanted to
7:48
that's mature that's advanced that's
7:50
with you the healthcare needs to go and
7:52
that's what works CSI is trying to learn
7:54
with the rest of us we're still at early
7:56
days we're running courses already where
7:58
there's lots of Health Service managers
8:00
and clinicians already starting to adopt
8:02
it throughout the UK but we need to do
8:06
more research in the area to work out
8:08
which bits we adopt from other sectors
8:11
and which bits the Health Service is
8:13
slightly different

_________________


March 13, 1967
Hospital Industrial Engineering: A Guide to the Improvement of Hospital Management Systems
David Littauer, MD
JAMA. 1967;199(11):864. doi:10.1001/jama.1967.03120110136042

INDUSTRIAL ENGINEERING in HEALTH CARE: CONTRIBUTION BY PIONEERS OF INDUSTRIAL ENGINEERING PART 1
BY MARK GRABAN

A lot of innovative work taking place in industrial engineering in health care, it is important to note that there is a rich history of industrial engineering principles that reaches back over 100 years being applied in health care. In this article, we will look at two early practitioners-- Frank Gilbreth and Henry Ford. 



http://www.hammesco.com/Process_Engineering_Hospital_design.html  good article on application of IE in hospital design 







Ud. 15.9.2025, 17.4.2024,  9.3.2022
Pub: 9.4.2012

Monday, May 11, 2026

Engineering Branches and Related Industrial Engineering Articles

Industrial Engineering is redesign of products and processes to increase efficiency efficiency, and productivity and reduce cost. It is applicable in all branches of engineering. Industrial engineering techniques have to taught in all branches of engineering in diploma as well as degree courses. Industrial engineering is used in various branches of engineering in unplanned or informal or exploratory ways. A formal policy of providing specialization to industrial engineering students in various branches of engineering needs to be implemented to produce industrial engineers with skills to do effective jobs in specific branches and also to motivate managers in industries related to that branch of engineering to employ industrial engineers with specialization in that branch.



Industrial Engineering in Chemical Engineering
https://nraoiekc.blogspot.com/2012/01/industrial-engineering-in-chemical.html


Industrial Engineering in Civil Engineering.
https://nraoiekc.blogspot.com/2012/01/industrial-engineerning-in-civil.html


Industrial Engineering in Computer Engineering and Information Technology.
https://nraoiekc.blogspot.com/2012/01/industrial-engineering-in-computer.html


Industrial Engineering in Electrical Engineering.
https://nraoiekc.blogspot.com/2012/01/industrial-engineering-in-electical.html


Industrial Engineering in Electronics Engineering.
https://nraoiekc.blogspot.com/2012/01/industrial-engineering-in-electronics.html

Information Systems Industrial Engineering - Information Systems Engineering
https://nraoiekc.blogspot.com/2020/07/information-systems-industrial.html




Industrial Engineering in Textile Engineering for Productivity and Cost Reduction.
https://nraoiekc.blogspot.com/2016/07/industrial-engineering-in-textile.html


Appreciate Textile Industrial Engineers. They wrote number of online articles on IE in Textile Engineering.


Agriculture Engineering


An Industrial Engineer Looks at Agriculture

Peter M. Strang
The Journal of Land & Public Utility Economics
Vol. 10, No. 3 (Aug., 1934), pp. 268-274
Published by: University of Wisconsin Press
Article Stable URL: http://www.jstor.org/stable/3139172


Design Process of a Low Cost Tractor

Christina Popa, and Dorina Ionescu
Christina. Popa is with Department of Mechanical and Industrial
Engineering, Technology University of Johannesburg, Doornfontein,
Johannesburg 2028
International Journal of Mining, Metallurgy & Mechanical Engineering (IJMMME) Volume 2, Issue 2 (2014) ISSN 2320–4060 (Online)

http://www.larsentoubro.com/lntcorporate/LnT_NWS/PDF/LnT%20TS%20overhauls%20tractor%20transmission%20assembly%20in%20a%20record%20time%20of%2060%20days.pdf

Biotechnology


Enzymatic corn wet milling: engineering process and cost model

Edna C Ramírez (1), David B Johnston, Andrew J McAloon and Vijay Singh
1 United States Department of Agriculture, Agricultural Research Services, Eastern Regional Research Center, 600 East Mermaid Lane, Wyndmoor, PA 19038, USA
Biotechnology for Biofuels 2009, 2:2  doi:10.1186/1754-6834-2-2
Published: 21 January 2009
http://www.biotechnologyforbiofuels.com/content/2/1/2

Implementing Cost Reduction Strategies for Human Antibody (HuMab) Manufacturing Processes

http://www.bioprocessintl.com/downstream-processing/separation-purification/implementing-cost-reduction-strategies-for-humab-manufacturing-processes-184086/


Chemical Engineering


Optimization Methods for Engineers

N.V.S. Raju
https://books.google.co.in/books?id=-r1nAgAAQBAJ


Process Intensification - Optimization of  capital, energy, environmental and safety benefits by radical reduction in the physical size of the plant. 


Process intensification in the chemical process industry is very recent subject in the field of chemical engineering. The concept is hardly a decade old. The aim of intensification is to optimize capital, energy, environmental and safety benefits by radical reduction in the physical size of the plant.

There is some discussion as to the meaning of dramatic improvement,  Prof. Colin Ramshaw, of University of New Castle, a pioneer of this concept, talks of 100 times reduction in equipment  volume, however many would be happy with volume decrease by half or more. But Prof Ramshaw’s assertion is  a very achievable target  for some operations.
http://www.ccdcindia.com/index2.php?act=service&sub=1

Civil Engineering


New guidance to reduce cost of construction projects


The government has launched draft guidance to help embed best practice in the procurement of public sector construction projects, Minister for Civil Society Nick Hurd has announced today.

The Government Construction Strategy sets out to achieve savings in construction procurement of up to 20% by streamlining processes. In doing so, the government has taken the lead by implementing innovative procurement models such as Two Stage Open Book, Integrated Project Insurance and Cost Led Procurement. These models offer considerable potential to reduce the cost of public sector construction projects, as well as contributing to reduced risk, greater innovation and improved relationships throughout the supply chain.
From:Cabinet Office, Nick Hurd MP and Efficiency and Reform Group First published:29 January 2014
https://www.gov.uk/government/news/new-guidance-to-reduce-cost-of-construction-projects



Cost Control, Monitoring and Accounting for Construction Contractors

http://pmbook.ce.cmu.edu/12_Cost_Control,_Monitoring,_and_Accounting.html


Computer Science and Engineering, Information Technology


Dynamic Value Engineering Method Optimizing the Risk on Real Time Operating System

Prashant Kumar Patra, Padma Lochan Pradhan
The value engineering is the high utilization of System Product (i.e. Processor, Memory & Encryption key), Services, Business and Resources at minimal cost.
 The high end operating system providing highest services at optimal cost & time. The value engineering provides the maximum performance, accountability, reliability, integrity and availability of processor, memory, encryption key and other inter dependency sub-components.
Indonesian Journal of Electrical Engineering and Informatics (IJEEI)
http://section.iaesonline.com/index.php/IJEEI/article/view/103

Value-engineering change proposals for the consolidated automated support system (CASS):
Smith, R.S. ; Lockheed Martin, Orlando, FL, USA ; Vahey, W.
These changes have the potential to save more than $140 million in CASS program life-cycle costs as a result of lower unit costs, greater reliability, and reduced logistic support costs. By increasing system performance and saving additional space for future technology insertion, these upgrades will enable CASS to test a wide range of weapon system technology well into the next century.
http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=522646&tag=1

Value Addition of Computer Work Station Manufactured in Furniture Industry by using
Value Engineering Concept
International Journal of Engineering Trends and Technology (IJETT) - Volume4 Issue7- July 2013
ISSN: 2231-5381 http://www.ijettjournal.org Page 2846
http://www.ijettjournal.org/volume-4/issue-7/IJETT-V4I7P118.pdf


Electrical Engineering

Electronics Engineering


Radar Value Engineering

Environmental Engineering

Application of Selected Industrial Engineering Techniques to Wastewater Treatment Plants, Volume 1
U.S. Government Printing Office, 1973 - Sewage disposal plants - 226 pages
https://books.google.co.in/books?id=ltNRAQAAMAAJ


Instrumentation Engineering

Mechanical Engineering
  Automobile Engineering

      Interesting Course
      Applied Industrial Engineering in Automobile (Gujarat Technical University, Ahmedabad)
      Industrial Engineering and Production Technology Improvement in Toyota
      http://www.toyota-global.com/company/history_of_toyota/75years/data/automotive_business/production/production_engineering/prize_receiving/
  Machine Tool Engineering
  Heat Engines - IC Engines
  Hydraulic Machines

Metallurgical Engineering

Telecommunications Engineering

Textile Engineering



Updated 11.5.2026, 18 June 2017,  19 January 2015

Tuesday, May 5, 2026

Construction Productivity Management - CMU Notes - Books - Articles and Papers

 


https://www.cmu.edu/cee/projects/PMbook/04_Labor,_Material,_And_Equipment_Utilization.html



Construction Processes - Efficiency and Productivity

A project manager must insure that these inputs are effectively coordinated to achieve an efficient construction process. This coordination involves both strategic decisions and tactical management in the field. For example, strategic decisions about appropriate technologies or site layout are often made during the process of construction planning. During the course of construction, foremen and site managers will make decisions about work to be undertaken at particular times of the day based upon the availability of the necessary resources of labor, materials and equipment. Without coordination among these necessary inputs, the construction process will be inefficient or stop altogether.

2026

Advancing sustainable construction through waste valorization using plastic aggregate and industrial slag

Kavita Rani, Kasilingam Senthil, Amardeep Boora, Aditya Kumar Tiwary & Hussin Ahmad Hasrat 

Scientific Reports , Article number:  (2026) 

Advancing sustainable construction through waste valorization using plastic aggregate and industrial slag | Scientific Reports


Saju S

Construction methods|Industrial  Engineer with 8+ years experience and in High raise constructions and EMS and automobile|Lean tools | SMED|ECRS techniques |Time & method study| continuous improvement |  KAIZENS|

https://www.linkedin.com/in/saju-s-868a671b6/




Construction Productivity


Construction Management Association of America

PDF

The first challenge created in construction productivity management is in establishing how productivity will be measured. 

https://www.cmaanet.org/sites/default/files/resource/Construction-Productivity_0.pdf




Cordell, R.H., "Construction Productivity Management," Cost Engineering, Vol. 28, No. 2, February 1986, pp. 14-23

Managing Productivity in Construction: JIT Operations and Measurements


Low Sui Pheng, Chan Yue Meng

Routledge, 26-Oct-2018 - Business & Economics - 250 pages


First published in 1997, this volume joined the debate assessing the potential of the Just-In-Time management philosophy from the manufacturing industry for Singapore’s construction industry by examining the "off-site" prefabrication of precast concrete components in Singapore, in comparison with traditional management systems. In the wake of the 1991 Strategic Economic Plan of Singapore, which forecasted alarmingly low productivity in the local construction sector, the authors noted that construction in Japan was 35% more productive, whilst Finland was 75% better. Highlighting immense potential for the JIT approach, they explore the JIT philosophy, traditional systems, construction wastes and comparisons between construction and manufacturing.


Construction Productivity in the Multilayer Subcontracting System: The Case of Singapore

Low Sui Pheng, Sim Jia Zheng
Springer, 14-Aug-2018 - Technology & Engineering - 300 pages

This book focuses on current subcontracting practices in the construction industry and their effects on Singapore’s construction productivity. It offers readers a better understanding of how the fragmentation of large and small firms in Singapore impacts construction productivity when operating under the commonly adopted multilayer subcontracting system (MLSS), which extends globally to the construction industries in other countries that have adopted the MLSS. The book also assesses the effectiveness of subcontracting practices in helping local contractors improve their construction productivity (and thereby improve the industry’s overall productivity). In closing, it provides recommendations on how the problems associated with the MLSS can best be addressed, and how its benefits can be capitalized on through organizational learning.

Construction Productivity: A Practical Guide for Building and Electrical Contractors
Eddy M. Rojas
J. Ross Publishing, 15-Nov-2008 - Technology & Engineering - 344 pages

Construction Productivity offers some of the best productivity studies commissioned by ELECTRI International: The Foundation for Electrical Construction, that were selected, coordinated, and monitored by a number of the most progressive contractors in the electrical industry and performed by outstanding scholars from top U.S. universities. Topics include measuring labor productivity, establishing a field benchmarking program, dealing with stacking of trades, understanding and managing schedule acceleration and compression, understanding the relationships between absenteeism, turnover and labor productivity, negotiating loss of labor efficiency, developing field incentive programs, diminishing job stress in construction supervisors, and recommended practices for productivity enhancement. All specialty and general contractors will find value in this practical book. The concepts presented will improve your understanding of the main issues affecting construction productivity and will provide you with tools and strategies to enhance your company's productivity and profitability.
https://books.google.co.in/books?id=rE8-ZJlkOkoC


Measuring Productivity of Labour-Intensive Work Practices in Road Construction in Africa

Emmanuel Bamfo-Agyei, Clinton Aigbavboa, Wellington Didibhuku Thwala
Routledge, 15-Jul-2022 - Business & Economics - 120 pages

This book examines an issue of constant concern in the construction industry, that of productivity. Using data from Ghana and South Africa, it presents research into the productivity of local contractors in these countries whilst examining the predominance of labour-intensive production methods. The book begins by considering the theoretical and conceptual perspectives on labour productivity in the construction industry in the existing literature, before reviewing current productivity measurement frameworks. The book then explores the productivity of labour-intensive public works projects in South Africa and Ghana alongside a general discussion of key factors affecting construction productivity in these countries. Whilst the focus is on road construction, the framework developed can be applied to any number of construction projects to measure, and ultimately improve productivity. This book is useful reading for researchers and practitioners looking to understand the factors influencing labour productivity in construction at both the industry and the project level, including construction managers, quantity surveyors, cost engineers and project managers.

Google Books Search for Construction Productivity Management.


Good references in Google search for "Construction Productivity Management,"


26.3.2026


https://www.mckinsey.com/capabilities/operations/our-insights/improving-construction-productivity


Full article available 2023

https://www.sciencedirect.com/science/article/pii/S2090447922003537

https://www.irmi.com/articles/expert-commentary/improving-construction-productivity-with-quality-management

https://www.construction-institute.org/construction-productivity-research-program-phase-v-abe47e95ae5d2181a9e5d1f3dac8cca8

https://ascelibrary.org/doi/book/10.1061/9780784414651


2024

https://www.mckinsey.com/capabilities/operations/our-insights/delivering-on-construction-productivity-is-no-longer-optional


2026

https://congress.leanconstruction.org/



ud. 26.3.2026

Pub.  11.5.2023











Saturday, March 28, 2026

Industrial Engineering - Thermal Power Plant - Bibliography



Power Plant Engineering - Lecture Notes
http://poisson.me.dal.ca/site2/courses/mech4840/

Chief Industrial Engineer position was mentioned in the power plant engineering textbook of Morse.



Are there chief industrial engineers in power plants today?


Ranking of journals in Energy Engineering and Power Technology
http://www.scimagojr.com/journalrank.php?category=2102



Websites

http://www.power-eng.com/index.html

National Association of Power Engineers Inc. (USA)
http://www.powerengineers.com/


2018

 Are you running your boilers  with high efficiency? Check.


Workshop on Efficient Operation and Maintenance of Boiler

https://www.youtube.com/watch?v=w5fwblwp9BU


2014
Power Plant Instrumentation and Control Handbook: A Guide to Thermal Power Plants
Swapan Basu, Ajay Debnath
Academic Press, Nov 10, 2014 - 942 pages
https://books.google.co.in/books?id=Ns06BAAAQBAJ



2013

Thermal Power Plants Advanced Applications
http://www.intechopen.com/books/thermal-power-plants-advanced-applications


2012

Improving Energy Efficiency of Boiler Systems - PDH Notes
http://www.pdhcenter.com/courses/m166/m166content.pdf


Thermal Power Plant Performance Analysis
Gilberto Francisco Martha de Souza
Springer Science & Business Media, Jan 5, 2012 - 288 pages
https://books.google.co.in/books?id=P76AAjX2DEQC


http://electrical-engineering-portal.com/coal-handeling-plant-in-a-thermal-power-generating-station

Application of Supply Chain Tools In Power Plant- A Case of Rayalaseema Thermal Power Plant
S. Shakeel Ahamed, G. Rangajanardhana, E. L. Nagesh
http://www.iiste.org/Journals/index.php/IEL/article/view/1436


Energy Efficiency Improvement in Thermal Power
Plants
Genesis Murehwa, Davison Zimwara, Wellington Tumbudzuku, Samson Mhlanga
International Journal of Innovative Technology and Exploring Engineering (IJITEE)
ISSN: 2278-3075, Volume-2, Issue-1, December 2012
http://www.ijitee.org/attachments/File/v2i1/A0357112112.pdf



2009
Application of Six Sigma DMAIC methodology in thermal power plants: A case study
DOI:10.1080/14783360802622995
Prabhakar Kaushika* & Dinesh Khandujab
pages 197-207
Total Quality Management & Business Excellence
Volume 20, Issue 2, 2009
http://www.tandfonline.com/doi/abs/10.1080/14783360802622995?journalCode=ctqm20



2002
Power Plant Engineering by P K Nag TMH  2002
https://books.google.co.in/books?id=Cv9LH4ckuEwC&printsec=frontcover#v=onepage&q&f=false



Other Relevant Information







BHEL India
Design Analysis and Value Engineering Group
Major activities of the group include Stress Analysis, Modal Analysis and Thermal Analysis aimed at development of new designs (concept to prototype), design validation, assessment of deviation and failure analysis. Other specialized functions of the group are Residual Life Assessment of power plant components and Value Engineering. Types of analyses include Static Analysis, Dynamic Analysis and Non-linear Analysis for Plasticity and Creep. While the "ANSYS" software is used for the analyses, the Group also develops "Fortran" and "Excel" based programs to enhance the utility of "ANSYS".
http://www.bhel.com/about_rd_mechanical2.php
query @ bhel.com



Department for Optimisation of Processes and Constructions of Turbine Machinery
Podgorny Institute For Mechanical Engineering Problems
http://www.ipmach.kharkov.ua/en/structure/Dep31/



Ud. 27.3.2026, 14.2.2025
Pub. 28.6.2015

Industrial Engineering in Electrical Engineering


Ubiquity of Industrial Engineering Principle - Industrial Engineering is applicable to all branches of engineering.





Thermal Electricity Generation - Five Operations in the Process and Industrial Engineering of Those Operations

ASME - Gilbreth Process Chart for Productivity Improvement


The process chart records all activities taking place in the process under 5 major operations of the process.

1. Operation - Processing the inputs into the process.

2. Inspection - Inspection activities

3. Transportation and mechanical and manual handling activities in the process.

4. Delays occurring the in the process - Electricity may not be produced. Equipment may remain idles. Delays occur due to problems purchase planning, production quantity planning, manpower planning, maintenance planning etc.

5. All stores and items stored in the process. The incremental cost of stores has to be brought down. Stores procedures may lead to elongation of cycle times and delays.


News Related to Operations/Processes for Industrial Engineers in Power Plants


1. Operation - Processing the inputs into the process.

New Paths to Productivity in Power Generation
AUGUST 07, 2017 


Methods of Improving the Efficiency of Thermal Power Plants
Tongjun Zhang,  2020,  J. Phys.: Conf. Ser. 1449 012001

[1] Harvey, Abby et al. 2017 History of Power: The Evolution of the Electric Generation Industry 
Powermag. [Online] Available: https: //www. powermag. com/
2019].
[2] BP p.l.c. 2019 BP Statistical Review of World Energy (68th edition). UK: Pureprint Group Limited.
[3] Swapan Basu and Ajay Kumar Debnath 2019 Power Plant Instrumentation and Control Handbook 
(2nd Edition). Academic Press p 1152
[4] W He, H Zhu, Y G. Liu, G Z Yi, and S C Pan 2019 Forest for ultra-super critical power generation 
technology China Energy and Environmental Protection vol 41 chapter 6 pp 77-81
[5] Augusto Di Gianfrancesco 2016 Materials for Ultra-Supercritical and Advanced 
Ultra-Supercritical Power Plants Woodhead Publishing 
[6] Q C Fei, C Liang 2012 Analysis on Energy Saving for Water Cooling System in Thermal Power 
Plants Electric Power vol 9
[7] L J Chen, L J Mi, C Xu,and Y Lei 2010 Development and Analysis of Direct and Indirect Air 
Cooling under New Situation Power System Engineering vol 26 chapter 6
[8] Y Q Kong, W J Wang, X W Huang, L J Yang, X Z Du,and Y P Yang 2017 Direct dry cooling 
system through hybrid ventilation for improving cooling efficiency in power plants Applied 
thermal engineering: Design, processes, equipment, economics vol 119 5 June pp 254-268
[9] Y Y Jiang, X Z Du, H M Hu, and Z G Li 2018 Thermodynamic characteristics of thermal power 
plant with hybrid (dry/wet) cooling system Energy 2018
[10]G Xu, L Zhou,S Zhao, F Liang, C Xu, and Y Yang 2015 Optimum superheat utilization of 
extraction steam in double reheat ultra-supercritical power plants Applied Energy vol 160 pp 
863–872
[11]Y J Ye and S L Shen 2011 Characteristics of European High-Efficiency Coal Fired Units and 
Their Implications for Chinese Power Plant Electric Power Construction vol 32 chapter l pp 
54-58
[12]K L Xu, Y H Xiong, H 2015 Pan Reheat Pressure and Feed-water Enthalpy Rise Optimization of 
Double Reheat Unit Turbine Technology vol 57 chapter 10 pp 371-373
[13]K Wang, Y Q Chen, B H Huang, X F Chen 2011 Performance Research on Domestic Gas-Steam 
Combined Cycle Unit North China Electric Power 4 pp 18-21


2. Inspection - Inspection activities


Thermal Power Plant Performance Testing: Major Equipment Performance Testing, Boilers, Turbines, Condensers, Pumps, Fans, Test Methodology and Code Requirements, Equipment Efficiency, Heat Rate Calculations, Correction Factors

Introduction
This seminar provides detailed description of the all performance testing methods for all thermal power plant equipment including boilers, turbines, condensers, pumps, fans, deaerators, and feedwater heaters. The methodology, and code requirements for the performance tests for all thermal power plant equipment will be covered thoroughly in this seminar. The preparatory work and instrumentation required for each test will be described in detail in this seminar.
 
The efficiency calculations for all the equipment used in circulating fluidized-bed (CFB) boiler and pulverized coal boiler power plants will be covered in-depth in this seminar. All the processes, operational and maintenance activities, capital projects, technical options, potential initiatives and incentives to implement upgrades/repairs for increasing the power plant equipment efficiency will also be covered in detail. This seminar will also provide a thorough explanation of CFB and pulverized coal boiler technology including hydrodynamics, combustion, emissions, design considerations, gas-solid separators, design of CFB and pulverized coal boiler components, management of solid residues, materials, stoichiometric calculations, and model for sulfur capture. The operation, maintenance, testing, and refurbishment options of all the equipment and systems used in CFB and pulverized coal power plants will be covered in detail including, boilers, superheaters, reheaters, turbines, condensers, feedwater heaters, deaerators, pumps, compressors, fans, electric generators, instrumentation and control systems, and governing systems, etc. All the factors which affect CFB and pulverized coal boiler power plant efficiency and emissions will be explained thoroughly. All the methods used to calculate the heat rate of CFB and pulverized coal power plants will be covered in detail. All the areas in CFB and pulverized coal boiler power plants where efficiency loss can occur will be explained. This seminar will also provide up-dated information in respect to the following methods used to improve CFB boiler and pulverized coal boiler power plant heat rate:

Optimizing the Combustion Process and Sootblowing
Controlling the Steam Temperature
Recovering Moisture from Boiler Flue Gas
Performing Steam Turbine Maintenance
Lowering Condenser Back Pressure
Pre-drying High Moisture Coal and Reducing Stack Temperature

Seminar Outcome

Thermal Plant Performance Testing: Gain a thorough understanding of all the performance testing methods for all thermal power plant equipment including boilers, turbines, condensers, pumps, fans, deaerators, and feedwater heaters.

Performance Test Methodology and Code Requirements: Understand the methodology, and code requirements for the performance tests of all thermal power plant equipment

Performance Test Preparatory Work and Instrumentation: Learn about the preparatory work and instrumentation required for each equipment performance test in a thermal power plant

Equipment Efficiency Calculations: Gain a thorough understanding of the efficiency calculations for all the equipment used in circulating fluidized-bed (CFB) boilers and pulverized coal boilers power plants
Calculating the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Learn all the methods used to calculate the heat rate of CFB and pulverized coal boiler coal power plants

Benefits of Lowering the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Understand all the benefits of lowering the heat rate of circulating fluidized-bed boiler coal power plants

Methods Used to Improve CFB and Pulverized Coal Boiler Power Plants Heat Rate: Gain a thorough understanding of all the methods used to improve the heat rate of CFB and pulverized boiler coal power plants

Processes, Operational and Maintenance Activities in CFB and Pulverized Coal Boiler Power Plants: Discover all the processes, operational and maintenance activities used to improve the heat rate of CFB and pulverized coal power plants

Capital Projects Used to Improve the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Learn about all the capital projects used to improve the heat rate of CFB and pulverized coal power plants

Technical Options for Improving the Heat Rate of CFB and Pulverized Coal Boiler Power Plants: Understand all the technical options used to improve the heat rate of CFB and pulverized coal boiler power plants

Potential Initiatives and Incentives to Implement Upgrades/Repairs for Improving the Heat Rate of CFB and Pulverized Coal Bed Boiler Power Plants: Discover all the potential initiatives and incentives to implement upgrades/repairs for improving the heat rate of CFB and pulverized coal power plants

Factors Affecting CFB and Pulverized Coal Boiler Power Plants Efficiency and Emissions: Learn about all the factors which affect CFB and pulverized coal boiler power plants efficiency and emissions
Areas in CFB and Pulverized Coal Power Plants where Efficiency Loss Can Occur: Discover all the areas in CFB and pulverized coal power plants where efficiency loss can occur

Optimize the Operation of CFB and Pulverized Coal Power Plant Equipment and Systems to Improve the Plant Heat Rate: Understand all the techniques and methods used to optimize the operation of CFB and pulverized coal power plant equipment and systems to improve the plant heat rate

CFB and Pulverized Coal Power Plant Equipment and Systems: Learn about various types of CFB and pulverized coal power plant equipment and systems including: boilers, superheaters, reheaters, steam turbines, governing systems, deaerators, feedwater heaters, coal-handling equipment, transformers, generators and auxiliaries

Special Feature
 
Each delegate will receive a digital copy of the following materials written by the instructor:
“POWER GENERATION HANDBOOK” second edition published by McGraw-Hill in 2012 (800 pages)

Excerpt of the relevant chapters from the “POWER PLANT EQUIPMENT OPERATION AND MAINTENANCE GUIDE” published by McGraw-Hill in 2012 (800 pages)
THERMAL POWER PLANT PERFORMANCE TESTING MANUAL (includes practical information about all the performance testing methods for all thermal power plant equipment - 300 pages)

Course Materials

Each participant will receive a complete set of course notes and handouts that will serve as informative references.

Toshiba Group Develops Inspection Technology for Plant Facilities and Equipment in High Inaccessible Places
- To provide safe and secure inspection solution by combining Group’s cyber and physical technologies.
October 29 2019
Toshiba Corporation
Toshiba Energy Systems & Solutions Corporation



3. Transportation and mechanical and manual handling activities in the process.


Materials Handling In Power Plants
MATERIAL HANDLINGTECHNOLOGY
On Nov 30, 2013

4. Delays occurring the in the process - Electricity may not be produced. Equipment may remain idles. Delays occur due to problems purchase planning, production quantity planning, manpower planning, maintenance planning etc.

5. All stores and items stored in the process. The incremental cost of stores has to be brought down. Stores procedures may lead to elongation of cycle times and delays.


Related Information

Increasing power plant productivity to cover the ever-rising demand for energy.
The world’s largest producers of power generation equipment build on Oerlikon advanced materials, functional coatings or process technologies to improve performance and cut the environmental impact of energy generation systems.

Recently, our products improved the wear resistance of steam turbine components by a factor of 25. (2021).

Oerlikon materials and coating technologies for hydropower turbine components reduce material erosion by a factor of up to 50 and increase the service life of components three to five times compared to uncoated components. (2021)


Productivity Science of Power Plants


FACTORS AFFECTING PRODUCTIVITY IN THE LARGE THERMAL POWER GENERATION STATIONS IN KENYA
Mungatana Mwaka
2007, MBA Thesis




Thermal Power Plant - Technical Note
http://www.slideshare.net/mastersheel007/thermal-power-plant-s

Manual on Best Practices for Thermal Plants in India
ftp://asiapacificpartnership.org/PowerGenTF/Power_Plant___All_pages.pdf
CII - USAid - ICICI Bank Report



Detailed Note on Cost Reduction Opportunities Power Systems
http://nraoiekc.blogspot.com/2013/11/cost-reduction-opportunities-in-power.html


International Comparison

Comparison of Power Plants Efficiency among 73 Countries, by Tser-Yieth Chen, Tsai-Lien Yeh, and Yi-Ting Lee, Journal of Energy
Volume 2013 (2013), Article ID 916413, 8 pages
http://www.hindawi.com/journals/jen/2013/916413/



Productivity in Generation

Productivity of Grid connected plants in Nicaragua
http://mpra.ub.uni-muenchen.de/49356/1/MPRA_paper_49356.pdf

Energy Conservation in 210 MW Thermal Plant
http://www.emt-india.net/Presentations2009/3L_2009Jan29-30_PowerPlant/Day1/2.%20NPC-%203L%20programme_%2029.%2001.%2009.pdf

Productivity in Distribution

Improving Efficiency in Transmission and Distribution System
Mallesh Gadeppanavar and , Vinay Pattanashetti
Electrical and Electronics Engineering department, Angadi institute of technology and management Belgaum-590008, India
International Journal of Emerging Technology and Advanced Engineering
Website: www.ijetae.com (ISSN 2250-2459, ISO 9001:2008 Certified Journal, Volume 3, Issue 3, March 2013)




Productivity of Boilers in Thermal Plants

An Investigation Of Productivity In Boilers Of Thermal Power Plants With Fuzzy Gain Scheduled PI Controller, January 2010
http://ijerad.kku.edu.tr/sayi_3/IJERAD1001_09.pdf





Optimization of Components and Products


Steam Turbine


Steam Turbine Optimization

Multiobjective optimization of a steam turbine stage

Increasing Steam Turbine Power Generation Efficiency

Design and Materials for Modern Steam Turbine up to 700 MW

Transformers
Transformer design optimization
Modern Transformer Design


Motors


5 Factors That Mess Up Motor Efficiency and How To Improve It
http://electrical-engineering-portal.com/5-factors-that-mess-up-motor-efficiency-and-how-to-improve-it


Generators

Auxiliary Systems of Power Plants
Energy Efficient Design of Auxiliary Systems in Fossil-Fuel Power Plants - ABB Energy Efficiency Handbook
http://www05.abb.com/global/scot/scot221.nsf/veritydisplay/5e627b842a63d389c1257b2f002c7e77/$file/Energy%20Efficiency%20for%20Power%20Plant%20Auxiliaries-V2_0.pdf


Optimization of Systems

Distribution system


Productivity of Human Factor
Line men
Safety and Health of Employees


Product Industrial Engineering

PDF Available
Value Analysis Method, Leverage for Cost Reduction and Technological Change in the Electrical Engineering Field
December 2013, Universal Journal of Industrial and Business Management 1(4):162-170
DOI:10.13189/ujibm.2013.010404
LicenseCC BY 4.0
Authors:
Cristina Mihaela Gheorghe
Universitatea Națională de Știință și Tehnologie Politehnica București
Mircea Covrig, Mihai Virgil Popescu
1. Faculty of Electrical Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, Bucharest, 060042, Romania 2. Electrical Machine Works Bucharest, Romania 
*Corresponding Author: cristina.gheorghe  at the rate upb.ro 




Value Engineering for Electrical Construction
POSTED 10-15-23

Carpenter Electrification
Complete Guide to Electric Motor Optimization: From Design to Testing
February 21, 2025 


© January 2020 IJSDR | Volume 5, Issue 1 

Implementation of Value Engineering and Zero Defect Principle in Manufacturing of Go-Kart 

Samarth Gurudatt Gaikwad1, Chaitanya Milind Parchure2, Apurva Vinay Patil3, Akshay Chandrakant Vibhute4 

1,2B. E Student, Department of Mechanical Engineering, DKTE Society's Textile & Engineering Institute Ichalkaranji, Maharashtra, India. 
3,4B.E Student, KIT College Of Engineering Kolhapur, Maharashtra, India. 



Value Engineering service from Patronics Services - Electrical Engineering Excellence
The Oval, Wing A, 5th Floor Jalaram Road
/ Ring Road Parklands, Nairobi, Kenya
P.O Box 18245 – 00500



Advances in electric motors: a review and benchmarking of product design and manufacturing technologies
Open access
Published: 15 July 2025
Volume 142, pages 312–345, (2025)
https://link.springer.com/article/10.1007/s00502-025-01331-3


Open Access Articles on Electric Motors


Course

Industrial Engineering - Electrical Engineering.

What can you expect in this profession?
Bachelor of Engineering in industrial engineering (focus on electrical engineering) are particularly qualified for activities in the increasingly important operational interfaces between the economic and technical areas, as they have a broad knowledge of both disciplines. 
 Therefore, you can be employed in a wide range of areas, preferably in departments where technical and business topics meet, such as in purchasing or sales, where you analyze technical issues from an economic point of view or sell complex technical products.

Which fields of activity are relevant for you?
Project Management national and International
Strategic Procurement
Production Control.


Friday, March 27, 2026

Industrial Engineering in Electronics Engineering


Ubiquity of Industrial Engineering Principle - Industrial Engineering is applicable to all branches of engineering.

In each branch of engineering the following three areas of industrial engineering are to be applied to increase productivity and reduce unit cost of output.


April 2026 Issue of Modern Industrial Engineering - Focus on Product Industrial Engineering - Value Engineering - DFMA - Design to Cost - Target Costing - Design for Value - Lean Product Development


2026


2025

Interesting Article
Value Engineering in ICT Projects (Information and Communication Technology)

Value Engineering in Electronic Product Development


Industrial Engineering in Electronics

We list the key productivity challenges facing the electronics sector.

Manufacturing Optimization for the Electronics Industry: How to Accelerate Product Development and Drive Engineering Efficiency with Instrumental Inc. on AWS
by Arun Santharam and Anna-Katrina Shedletsky on 30 MAY 2023

PCB DESIGN BEST PRACTICES
Engineering productivity and efficiency
Optimize engineering productivity and efficiency to reduce design cycle time, reduce cost and lower risks.


Boost Design Productivity with Altair's Electronics Solutions

2023


PCB design best practices pillar 2: engineering productivity and efficiency
February 9, 2023 

Help us to Reduce Your Cost of Electronics Manufacturing.

Electronic component procurement cost reduction program
Short Description:
In today’s electronics industry, companies face a common challenge. The main task is to reduce manufacturing costs without sacrificing product quality. Indeed, creating profitable products in our digital age is by no means an easy task. The only way to mitigate the difficulties is to delve into the specific steps of the process and use proven strategies to reduce overall costs.

All you need to do is send us your BOM and you will receive.

Free analysis highlighting immediate savings opportunities.

Timely alerts on high quality, fully traceable buying opportunities from our OEM and EMS partners. Average savings of about 30%.

The Future of Sustainable Electronics Manufacturing.
The report concentrates on the fundamental building blocks of electronics - printed circuit boards (PCBs) and integrated circuits (ICs).


Cost Reduction in Electronics Design

2021

Microelectronics Process Engineering at San Jose State University: A Manufacturing-oriented Interdisciplinary Degree Program
EMILY ALLEN, STACY GLEIXNER, GREG YOUNG, DAVID PARENT, YASSER DESSOUKY
San Jose State University, San Jose, CA, 95192, USA. E-mail: elallen    at sjsu dot edu
LINDA VANASUPA
Department of Materials Engineering, California Polytechnic University, San Luis Obispo, CA, USA
Int. J. Engineering Education. Vol. 18, No. 5, pp. 519-525, 2002


25.12.2020

Tools and Combination Tools Electronics Assembly

Jigs and Fixtures - Electronics Assembly

Cost Reduction - Electronics Product

PCB Design and Manufacturing Productivity - Product and Process Industrial Engineering

PCB Assembly - Method Study - Process Industrial Engineering Exercises

SMT Machine - Production Line - Machine Work Study - Machine Productivity Improvement

T/R Module - Transmitter - Receiver Module - Cost Reduction

MMIC Technology - Cost Estimation and Reduction - Industrial Engineering - Articles and Cases

Bharat Electronics Limited
_____________________

https://www.youtube.com/watch?v=Lt9DMtU0p_c
_____________________




1-1-1979
Multiple criterion optimization of electronic circuits
M Lightner
Carnegie Mellon University
Stephen W. Director
http://repository.cmu.edu/cgi/viewcontent.cgi?article=1054&context=ece

The two input MOSFET NAND gate used as an example.  The first step in designing the NAND gate is to choose a model for the transistors. We chose a four terminal model that includes the effect of substrate
bias. This model and its defining equations are presented. There are many possible sets of designable parameters that could be used in designing the NAND gate, for example, the lengths and widths
of all the devices as well as the flat band voltages of the devices. We choose the flat band voltage, V _ , the
Ftf width of the bottom two transistors, W2~, (constrained to be the same) and the width of transistor T^ V^, as the designable parameters.


Digital Circuit Optimization via Geometric Programming
http://www.stanford.edu/~boyd/papers/gp_digital_ckt.html

OPTIMIZATION OF ELECTRONIC CIRCUITS
2006 paper
E.J.W. TER MATEN, T.G.A. HEIJMEN
NXP Semiconductors, Research, DMS - Physical Design Methods,
Hich Tech Campus 48, 5656 AE Eindhoven, The Netherlands

C. LIN and A. EL GUENNOUNI
Magma Design Automation,
TUE Campus, Den Dolech 2, Dommel Building Z-Wing 8, 5612 AZ Eindhoven, The Netherlands
http://www.win.tue.nl/analysis/reports/rana06-39.pdf







Optimization of Components and Products - Topics to be covered

Chip design optimization 
Optimization of Systems
Chip production


Productivity of Human Factor
Safety and Health of Employees


Assembly of electronic products




McKinsey  Cananda - 2006
http://www.mckinsey.com/locations/Canada/Our_Work/~/media/Images/Page_Images/Offices/Canada/Reinventing_Canadas_electronics_manufacturing_sector.ashx



Cost Management in Electronics

Manufacturing Cost Modeling - Electronics Assembly Example
http://books.google.co.in/books?id=E6_vlcVXiMIC&pg=PA317#v=onepage&q&f=false
(In Information-Based Manufacturing: Technology, Strategy and Industrial Applications
http://books.google.co.in/books?id=E6_vlcVXiMIC)

New Technology


A Printed Circuit Board Inspection System With Defect Classification Capability

Published:
August 15, 2013
Author:
I. Ibrahim, S. Bakar, M. Mokji, J. Mukred, Z. Yusof, Z. Ibrahim, K. Khalil, M. Mohamad
https://www.smtnet.com/library/files/upload/PCB-Inspection-System-With-Defect-Detection-Cpability.pdf

An Up-To-Date Bibliography on Electronics Manufacturing Technology


Electronics Manufacturing Technical Article Library Online







Updated on  27.4.2026,  1.9.2025, 27 March 2023,  7 Nov 2021,  25 December 2020
First published on 20 Oct 2013