Repairable Systems Reliability Analysis

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Generalized Renewal Process

A01=Nomesh Bolia
A01=Rajiv Nandan Rai
A01=Sanjay Kumar Chaturvedi
Aero engine
Air Combat Unit
Air Power Index
Air Power Potential
Air Power value
Analytic Hierarchy Process
Analytic Network Process
Arithmetic Reduction of Age
Author_Nomesh Bolia
Author_Rajiv Nandan Rai
Author_Sanjay Kumar Chaturvedi
Availability
Bottleneck
Category=TJF
combustion chamber outer casing
Common-beta hypothesis test
corrective maintenance
Cramer–Von Mises GOF test
Crow AMSAA test
Detection (D)
Effective Process Time
eq_bestseller
eq_isMigrated=1
eq_nobargain
eq_non-fiction
eq_tech-engineering
Failure Modes
Goodness-of-fit tests
High Failure Rate Component
Imperfect Repair
Intensity function
Kijima-I
Kijima-II
Laplace trend-test
Low pressure compressor rotor blades
Maximum likelihood estimators
Mean cumulative function
Mean time between failures
Mean time to repair
Optimization.

Power-law process
Preventive maintenance
Procurement
Queueing Models
Reliability
Repair depot
Repairable Systems
Throughput
Time between Overhaul
Turbine blades
Utilization rate
Variability
Virtual age
Wear
Weibull
Work-in-process
  Probability of occurrence (O)
  Repair effectiveness index
 Failure modes and effects analysis

Product details

  • ISBN 9781119526278
  • Weight: 454g
  • Dimensions: 10 x 10mm
  • Publication Date: 17 Nov 2020
  • Publisher: John Wiley & Sons Inc
  • Publication City/Country: US
  • Product Form: Hardback
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This book provides an application-oriented framework for reliability modeling and analysis of repairable systems in conjunction with the procurement process of weapon systems and throughput analysis for industries.

Most of the reliability literature is directed towards non-repairable systems, that is, systems that fail are discarded or replaced. This book is mainly dedicated towards providing coverage to the reliability modeling and analysis of repairable systems that undergo failure-repair cycles.

This unique book provides a comprehensive framework for the modeling and analysis of repairable systems considering both the non-parametric and parametric approaches to deal with their failure data. The book presents MCF based non-parametric approach with several illustrative examples and the generalized renewal process (GRP) based arithmetic reduction of age (ARA) models along with its applications to the systems failure data from the aviation industry. A complete chapter on an integrated framework for procurement process is devoted by utilizing the concepts of multi-criteria decision-making (MCDM) techniques which will of a great assistance to the readers in enhancing the potential of their respective organizations. This book also presents FMEA methods tailored for GRP based repairs.

This text has primarily emerged from the industrial experience and research work of the authors. A number of illustrations have been included to make the subject lucid and vivid even to the readers who are relatively new to this area. Besides, various examples have been provided to display the applicability of presented models and methodologies to assist the readers in applying the concepts presented in this book.

Rajiv Nandan Rai is an assistant professor at Subir Chowdhury School of Quality and Reliability, Indian Institute of Technology Kharagpur, West Bengal, India. He obtained his PhD in Mechanical Engineering with specialization in Reliability, Maintenance and Industrial Engineering from IIT Delhi, India. He has hands on industrial experience of almost 23 years in military aviation in which he has worked at all levels of maintenance, repair and overhaul of aircraft, aero engines and their components. He has published papers in several SCI journals.

S. K. Chaturvedi is a professor and currently Head at Subir Chowdhury School of Quality and Reliability, Indian Institute of Technology Kharagpur, West Bengal, India. He has research interest in the areas of reliability modeling and analysis, network reliability, life-data analysis, maintenance and optimization. He has published papers in several international journals, is reviewer to and executed several consultancy projects of private and Govt. organizations. He's written two books He's on the editorial board of Int. J. International Journal of Reliability and Safety (IJRS), Int. J of Mathematical, Engineering and Management Sciences (IJMEMS). He's also a senior member to IEEE and has also served as Co-Editor-in-Chief to International Journal of Performability Engineering.

Nomesh Bolia received the PhD degree in operations research from the University of North Carolina at Chapel Hill, Chapel Hill, NC, USA. He is currently a professor in the Department of Mechanical Engineering, Indian Institute of Technology Delhi, India. His research interests include operations research and its applications to reliability, health, telecommunications, transportation and public systems. Dr. Bolia received the prestigious Indo-US Fellowship for Public Health Research and has published in several journals including IEEE Transactions.

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