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Which-Is-Better (WIB) = problems in ...
~
Mizutani, Satoshi.
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Which-Is-Better (WIB) = problems in reliability theory /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Which-Is-Better (WIB)/ by Satoshi Mizutani, Xufeng Zhao, Toshio Nakagawa.
Reminder of title:
problems in reliability theory /
Author:
Mizutani, Satoshi.
other author:
Zhao, Xufeng.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
1 online resource (ix, 278 p.) :ill., digital ;24 cm.
[NT 15003449]:
Chapter 1. Introduction -- Chapter 2. Random Age Replacement Model -- Chapter 3. Replacement Model with Minimal Repair -- Chapter 4. Periodic Replacement Models -- Chapter 5. Extended Replacement Models -- Chapter 6. Which is Better for Standby or Parallel Systems -- Chapter 7. Which is Better Problems in Shock and Damage Models -- Chapter 8. Which is Better Problems in Backup Models -- Chapter 9. Which is Better Problems in Checkpoint Models -- Appendix A: Extended Failure Rates References -- Appendix B: Answer to Selected Problems -- Index.
Contained By:
Springer Nature eBook
Subject:
Reliability (Engineering) -
Online resource:
https://doi.org/10.1007/978-3-031-27316-2
ISBN:
9783031273162
Which-Is-Better (WIB) = problems in reliability theory /
Mizutani, Satoshi.
Which-Is-Better (WIB)
problems in reliability theory /[electronic resource] :by Satoshi Mizutani, Xufeng Zhao, Toshio Nakagawa. - Cham :Springer International Publishing :2023. - 1 online resource (ix, 278 p.) :ill., digital ;24 cm. - Springer series in reliability engineering,2196-999X. - Springer series in reliability engineering..
Chapter 1. Introduction -- Chapter 2. Random Age Replacement Model -- Chapter 3. Replacement Model with Minimal Repair -- Chapter 4. Periodic Replacement Models -- Chapter 5. Extended Replacement Models -- Chapter 6. Which is Better for Standby or Parallel Systems -- Chapter 7. Which is Better Problems in Shock and Damage Models -- Chapter 8. Which is Better Problems in Backup Models -- Chapter 9. Which is Better Problems in Checkpoint Models -- Appendix A: Extended Failure Rates References -- Appendix B: Answer to Selected Problems -- Index.
This is the first book on the Which-Is-Better (WIB) Problem. These are questions that in daily life include such as "Which is larger, younger and stronger?". The main objective of this book is summarizing WIB Problems in maintenance and reliability theory. Optimal policies of replacement first, last and overtime are derived and compared theoretically and numerically, and WIB policies are determined. Furthermore, the reliability properties of parallel and standby systems are compared, and WIB system is determined. These WIB Problems are applied to shock and damage models and backup and checkpoint models of computer systems.
ISBN: 9783031273162
Standard No.: 10.1007/978-3-031-27316-2doiSubjects--Topical Terms:
647853
Reliability (Engineering)
LC Class. No.: TA169
Dewey Class. No.: 620.00452
Which-Is-Better (WIB) = problems in reliability theory /
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Chapter 1. Introduction -- Chapter 2. Random Age Replacement Model -- Chapter 3. Replacement Model with Minimal Repair -- Chapter 4. Periodic Replacement Models -- Chapter 5. Extended Replacement Models -- Chapter 6. Which is Better for Standby or Parallel Systems -- Chapter 7. Which is Better Problems in Shock and Damage Models -- Chapter 8. Which is Better Problems in Backup Models -- Chapter 9. Which is Better Problems in Checkpoint Models -- Appendix A: Extended Failure Rates References -- Appendix B: Answer to Selected Problems -- Index.
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This is the first book on the Which-Is-Better (WIB) Problem. These are questions that in daily life include such as "Which is larger, younger and stronger?". The main objective of this book is summarizing WIB Problems in maintenance and reliability theory. Optimal policies of replacement first, last and overtime are derived and compared theoretically and numerically, and WIB policies are determined. Furthermore, the reliability properties of parallel and standby systems are compared, and WIB system is determined. These WIB Problems are applied to shock and damage models and backup and checkpoint models of computer systems.
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