Reliability, maintenance and logistic support: a life cycle approach
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Boston [u.a.]
Kluwer
2000
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIX, 490 S. Ill., graph. Darst. |
ISBN: | 0412842408 |
Internformat
MARC
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245 | 1 | 0 | |a Reliability, maintenance and logistic support |b a life cycle approach |c by U. Dinesh Kumar ... |
264 | 1 | |a Boston [u.a.] |b Kluwer |c 2000 | |
300 | |a XIX, 490 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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700 | 1 | |a Kumar, U. Dinesh |e Sonstige |4 oth | |
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Datensatz im Suchindex
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adam_text | Contents
Preface xv
Acknowledgements xix
Chapter 1: Reliability, Maintenance and
Logistic Support Introduction l
1.1 INTRODUCTION 1
1.2 THE LIFE CYCLE OF A SYSTEM 5
1.3 CONCEPT OF FAILURE 7
1.4 APOLLO 13 CASE STUDY 9
CHAPTER 2: PROBABILITY THEORY 13
2.1 PROBABILITY TERMS AND DEFINITIONS 13
2.2 ELEMENTARY THEORY OF PROBABILITY 15
2.2.1 Axioms of Probability 15
2.2.2 Rules of Probability 16
2.2.3 Joint Events 17
2.2.4 Conditional Probability 18
2.3. Probability and Experimental Data 19
2.4. Probability Distribution 20
2.5. RANDOM VARIABLE 20
2.5.1 Types of random variables 22
2.6. THE PROBABILITY DISTRIBUTION OF RANDOM
VARIABLE 23
2.6.1 Functional Method 24
2.6.2 Parametric Method 28
via
2.7. DISCRETE THEORETICAL PROBABILITY
DISTRIBUTIONS 32
2.7.1 Bernoulli Trials 32
2.7.2 The Binomial Distribution 34
2.7.3 The Poisson Distribution 35
2.8. CONTINUOUS THEORETICAL PROBABILITY
DISTRIBUTIONS 38
2.8.1 Exponential Distribution 39
2.8.2 Normal Distribution (Gaussian Distribution) 41
2.8.3 Lognormal Distribution 45
2.8.4 Weibull Distribution 47
CHAPTER 3: RELIABILITY MEASURES 51
3.1. Failure Function 53
3.1.1 Failure function of system under multiple failure
Mechanisms 59
3.2. Reliability Function 61
3.2.1 Reliability function for items under multiple failure
Mechanisms 63
3.2.2 Mission Reliability Function 65
3.3. Despatch Reliability 67
3.4. Hazard Function (Hazard Rate or Instantaneous
Failure Rate) 67
3.4.1 Cumulative hazard function 71
3.4.2 Cumulative hazard function and the
Expected number of failures 72
3.4.3 Typical Forms of Hazard Function 73
3.4.4 Failure rate 75
3.5. Mean Time To Failure (MTTF) 76
3.5.1 Mean Residual Life 78
3.5.2 MTTF of a maintained system 81
3.5.3 Variance of Mean Time To Failure 84
3.6. Mean Operating Time Between Failures (MTBF) 85
3.7. Percentile Life (TTFP or Bp% ) 87
3.8. Maintenance Free Operating Period (MFOP) 88
3.8.1 Maintenance Free Operating Period Survivability Prediction 88
3.9. Software Reliability Characteristics 91
3.9.1 Software Reliability 93
3.9.2 Mean Time To Failure of Software 93
3.9.3 Software failure rate 94
3.9.4 Jelinski Moranda Model 94
3.9.5 Goel Okumoto Model 95
ix
CHAPTER 4: SYSTEMS RELIABILITY 97
4.1. Reliability Block Diagram 98
4.2. Reliability Measures for Series Configuration 98
4.3. Life exchange rate matrix 1 io
4.4. Parallel Configuration 113
4.5. r out of n Systems 117
4.6. Series and Parallel Configuration 120
4.7. Redundant Systems 122
4.8. Complex Reliability Block Diagrams 127
4.9. Cut set Approach for reliability evaluation 130
4.10. Case study on aircraft engines 131
4.11. systems Reliability evaluation stochastic Models 138
4.12. Stochastic processes 138
4.13. Markov process 140
4.14. Non Homogeneous Poisson Process (NHPP) 144
4.15. Renewal Process 149
CHAPTER 5: MAINTAINABILITY AND MAINTENANCE 155
5.1. Concept of Maintainability 156
5.2. Measures of Maintainability 159
5.2.1 Maintenance Elapsed Time 159
5.2.2 Maintenance Man Hour (MMH) 163
5.2.3 Maintenance Frequency Factors 165
5.2.4 Maintenance cost factors 166
5.3. Maintainability Demonstration 167
5.4. Maintenance 170
5.5. Maintenance Concept 171
5.6. Levels of Maintenance 172
5.6.1 User level (organisational) 172
5.6.2 Intermediate level 173
5.6.3 Depot level 173
5.6.4 Hole in the Wall 173
5.7. Maintenance Task Classification 174
5.7.1 Corrective Maintenance Task 175
5.7.2 Preventive Maintenance Task 176
5.7.3 Conditional (Predictive) Maintenance Task 177
5.8. Maintenance Policies 178
5.8.1 Failure Based Maintenance Policy 179
5.8.2 Time Based Maintenance Policy 180
5.8.3 Condition Based Maintenance (Predictive Maintenance) 183
5.9. maintenance resources 194
5.10. Maintenance Induced Failures 195
X
5.11. Maintenance Cost 197
5.11.1 Cost of Maintenance Task 197
5.11.2 Direct cost of maintenance task 198
5.11.3 Indirect cost of maintenance task 198
5.11.4 Total cost of maintenance task 199
5.11.5 Factor Affecting Maintenance Costs 200
5.12. Aircraft Maintenance Case Study 201
CHAPTER 6: MAINTENANCE OPTIMISATION 205
6.1 Preventive Maintenance and Reliability 206
6.2 Optimal Replacement times 208
6.2.1 Optimal Replacement Under Minimal Repair 210
6.3 Repair Vs Replacement 211
6.4 Reliability Centred Maintenance 215
6.4.1 RCM Process 218
6.4.2 RCM Decision Logic Process 224
6.4.3 Potential Failure and P F Curve 234
6.5 Age Related Maintenance 235
6.5.1 Age related maintenance Case Study on Aircraft Engine 240
6.6 Total Productive Maintenance 243
6.7 Computerised Maintenance Management System 246
CHAPTER 7: SUPPORTABILITY AND LOGISTICS 249
7.1 SUPPORTABILITY TERMS AND DEFINITIONS 251
7.1.1 Supportability 251
7.1.2 Supportability Engineering 252
7.1.3 Logistic Delay Time (LDT) or Time to Support (TTS) 253
7.1.4 Support Resources 253
7.1.5 Arising 256
7.2 Supportability Measures 257
7.3 Recondition 260
7.4 Obsolescence 261
7.5 Level of Repair Analysis 262
7.6 Testability, inspection and Diagnostics 264
7.6.1 Built in Test (BIT) 265
7.6.2 Built in Test Equipment (BITE) 268
7.6.3 Health and Usage Monitoring Systems (HUMS) 268
7.7 No Fault Found (NFF) 270
7.8 Commercial off the Shelf (COTS) and Supportability 272
7.9 Continuous Acquisition and Life Cycle Support (CALS) 272
7.10 Case Study: Supportability and Logistics at
British Airways 273
xi
CHAPTER 8: SPARE PARTS PROVISIONING AND
MANAGEMENT 281
8.1 Basic Concepts and Definitions 283
8.2 Modelling Demand Rate 286
8.3 Mathematical Models for Demand Prediction 287
8.3.1 Homogeneous Poisson Process Models
for Forecasting Spares 287
8.3.2 Renewal Process Models for forecasting Spares 297
8.4 Demand for Spares Constant Vs Increasing
Failure Rate 300
8.5 Forecasting models for consumable
(discardable) spare parts 301
8.6 Models for Repairable Spare Parts 303
8.6.1 Birth and Death Process Model for Repairable Spare Parts 303
8.6.2 Palm s Theorem and its Application in Spares
provisioning for repairable items 308
8.7 Multi indenture spare model 312
8.8 Multi Echelon Spare models 314
8.9 Spares Provisioning Under Special
Contractual Requirements 317
8.10 Inventory management 319
8.10.1 Economic Order Quantity 320
8.11 Optimisation Methods 323
8.11.1 Zero one non linear integer programming Model 324
8.11.2 Marginal Analysis 325
8.12 Simulation 327
8.12.1 Monte Carlo Simulation 328
8.12.2 Discrete Event Simulation 333
8.13 use of Simulation Models in spares provisioning 336
8.14 Optimisation using simulation 340
CHAPTER 9: INTEGRATED LOGISTIC SUPPORT 345
9.1 HISTORY OF ILS 346
9.1.1 The concept of ILS 349
9.1.2 The Case Study of Airline Costs 349
9.1.3 Case Study on Air Force s Cost 351
9.2. Reliability Plans 354
9.2.1 Reliability Demonstrations 356
9.2.2 Case Study of a Turbine Disc 357
9.2.3 Reliability testing 359
9.3. Whole Life Cost 363
9.4. Maintenance Planning 364
9.4.1 Repair or Replace 364
xii
9.5. Technical Publications 366
9.6. Software Configuration Control 367
9.7. Packaging, Handling, Storage and
Transportation (PHS T) 367
9.8. Support and Test Equipment 369
9.9. Software Testing 370
9.10. Training and Training Equipment 372
9.11. Logistic Support Analysis (LSA) 375
CHAPTER 10: AVAILABILITY 377
10.1 Point Availability 378
10.1.1 Average Availability 381
10.1.2 Inherent Availability 381
10.1.3 System Availability of different reliability
block diagrams 383
10.2. Achieved Availability 385
10.3. Operational Availability 387
CHAPTER 11: DESIGN FOR RELIABILITY, MAINTINABILITY
AND SUPPORTABILITY 389
11.1. Reliability Allocation 389
11.1.1 AGREE Method for Reliability Allocation 391
11.1.2 Equal Apportionment Technique 393
11.1.3 The ARINC Apportionment Technique 394
11.2. Maintainability allocation 396
11.3. supportability allocation 398
11.4. Failure Modes, Effects and Criticality Analysis 399
11.4.1 Procedural steps in the FMECA analysis 400
11.4.2 Risk Priority Number 402
11.5. Fault Tree Analysis 404
11.6. Fault tree Analysis Case Study
Passenger Elevator 406
11.7. Fault Tolerant Software 411
11.7.1 Recovery Blocks 411
11.7.2 N Version Programming 413
11.8. Life Cycle Costing 414
11.8.1 Components of Life Cycle Costing 415
11.8.2 Life Cycle Costing Procedures 417
11.8.3 Factors affecting LCC appraisal 418
XIII
CHAPTER 12: ANALYSIS OF RELIABILITY, MAINTENANCE
AND SUPPORTABILITY DATA 423
12.1. Reliability, Maintenance and supportability Data 425
12.2. Estimation of Parameters Empirical Approach 426
12.2.1 Estimation of Performance Measures
Complete Ungrouped Data 426
12.2.2 Confidence Interval 428
12.2.2 Analysis of Grouped Data 433
12.3. Analysis of Censored Data 436
12.4. Fitting Probability Distributions Graphically 437
12.4.1 Fitting an exponential distribution to data graphically 440
12.4.2 Fitting a Normal Distribution Graphically 441
12.4.3 Fitting a Log Normal Distribution Graphically 442
12.4.4 Fitting a Weibull Distribution Graphically 444
12.5. Regression 446
12.5.1 Correlation Co efficient 448
12.5.2 Linear Regression for Exponential Distribution 449
12.5.3 Linear Regression for Weibull Distribution 451
12.5.4 Linear regression for Normal Distribution 452
12.5.5 Linear Regression for Log normal Distribution 454
12.6. Maximum Likelihood estimation 454
12.6.1 Complete and Uncensored Data 455
12.6.2 Interval Data 469
Appendix 473
References 479
Index 485
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id | DE-604.BV013891755 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:53:55Z |
institution | BVB |
isbn | 0412842408 |
language | English |
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spelling | Reliability, maintenance and logistic support a life cycle approach by U. Dinesh Kumar ... Boston [u.a.] Kluwer 2000 XIX, 490 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Ersatzteil (DE-588)4152880-3 gnd rswk-swf Zuverlässigkeitstheorie (DE-588)4195525-0 gnd rswk-swf Produktlebenszyklus (DE-588)4135136-8 gnd rswk-swf Instandhaltung (DE-588)4027145-6 gnd rswk-swf Logistik (DE-588)4036210-3 gnd rswk-swf Zuverlässigkeitstheorie (DE-588)4195525-0 s Instandhaltung (DE-588)4027145-6 s Ersatzteil (DE-588)4152880-3 s Logistik (DE-588)4036210-3 s Produktlebenszyklus (DE-588)4135136-8 s DE-604 Kumar, U. Dinesh Sonstige oth HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009504945&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Reliability, maintenance and logistic support a life cycle approach Ersatzteil (DE-588)4152880-3 gnd Zuverlässigkeitstheorie (DE-588)4195525-0 gnd Produktlebenszyklus (DE-588)4135136-8 gnd Instandhaltung (DE-588)4027145-6 gnd Logistik (DE-588)4036210-3 gnd |
subject_GND | (DE-588)4152880-3 (DE-588)4195525-0 (DE-588)4135136-8 (DE-588)4027145-6 (DE-588)4036210-3 |
title | Reliability, maintenance and logistic support a life cycle approach |
title_auth | Reliability, maintenance and logistic support a life cycle approach |
title_exact_search | Reliability, maintenance and logistic support a life cycle approach |
title_full | Reliability, maintenance and logistic support a life cycle approach by U. Dinesh Kumar ... |
title_fullStr | Reliability, maintenance and logistic support a life cycle approach by U. Dinesh Kumar ... |
title_full_unstemmed | Reliability, maintenance and logistic support a life cycle approach by U. Dinesh Kumar ... |
title_short | Reliability, maintenance and logistic support |
title_sort | reliability maintenance and logistic support a life cycle approach |
title_sub | a life cycle approach |
topic | Ersatzteil (DE-588)4152880-3 gnd Zuverlässigkeitstheorie (DE-588)4195525-0 gnd Produktlebenszyklus (DE-588)4135136-8 gnd Instandhaltung (DE-588)4027145-6 gnd Logistik (DE-588)4036210-3 gnd |
topic_facet | Ersatzteil Zuverlässigkeitstheorie Produktlebenszyklus Instandhaltung Logistik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009504945&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT kumarudinesh reliabilitymaintenanceandlogisticsupportalifecycleapproach |