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9780471618164

System Safety Engineering and Management

by ;
  • ISBN13:

    9780471618164

  • ISBN10:

    0471618160

  • Edition: 2nd
  • Format: Hardcover
  • Copyright: 1991-01-16
  • Publisher: Wiley-Interscience
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Supplemental Materials

What is included with this book?

Summary

Comprehensive in scope, it describes the process of system safety--from the creation and management of a safety program on a system under development to the analysis that must be performed as this system is designed and produced to assure acceptable risk in its operation. Unique in its coverage, it is the only work on this subject that combines full descriptions of the management and analysis processes and procedures in one handy volume. Designed for both system safety managers and engineers, it incorporates the safety procedures used by the Department of Defense and NASA and explains basic statistical methods and network analysis methods which provide an understanding of the engineering analysis methods that follow.

Author Biography

Harold E. Roland is the author of System Safety Engineering and Management, 2nd Edition, published by Wiley.

Brian Moriarty is the author of System Safety Engineering and Management, 2nd Edition, published by Wiley.

Table of Contents

Preface v
PART I MANAGEMENT 1(100)
Introduction
3(18)
Definitions
5(3)
The Hazard
6(1)
The System
6(1)
The Stimulus
6(1)
The Accident
7(1)
Safety
7(1)
Risk
7(1)
Other Hazard Definitions
8(1)
System Safety Concept
8(2)
What Is System Safety?
8(2)
System Safety History
10(2)
System Safety Objective
12(6)
Procedure for Achieving the Objective
13(5)
System Safety as a Design Parameter
18(3)
MIL--STD--882
19(2)
System Life Cycle
21(8)
Life Cycle Definitions
21(1)
System Safety Control Milestones
22(1)
Concept Phase
23(1)
Definition Phase
23(4)
Development Phase
27(1)
Production Phase
27(1)
Deployment Phase
28(1)
System Safety Implementation
29(33)
Policy and Procedures
29(3)
Product Assurance Organizations
32(3)
System Safety Program Plan (SSPP)
35(17)
Elements of the System Safety Program Plan
35(3)
Organization of the SSPP
38(2)
Program Tasks, Schedules, and Milestones
40(1)
Criteria
41(3)
Precedence
44(1)
Hazard Analyses
44(1)
Risk Assessment
45(1)
Data
46(1)
Testing and Demonstration
47(1)
Training
48(1)
Audit Program
49(3)
System Interfacing
52(1)
Human Engineering
53(6)
Design of the Workplace
55(1)
Environment
56(1)
Causes of Errors
56(2)
Design vs. Procedural Safeguards
58(1)
Software Considerations
59(3)
System Safety Management Organization
62(7)
Objectives of Organization
62(4)
Management Interface Requirements
66(3)
System Safety Control
69(13)
Contractor Survey and Evaluation
69(2)
Evaluation of Contractor's Proposals
71(2)
Engineering Controls
73(2)
Milestone Checkpoints
75(7)
System Safety in System Operation
82(19)
System Acceptance
82(2)
Participation in Accident Investigations
84(1)
Engineering Changes
85(1)
Training
86(1)
Uses of Data
87(1)
Maintenance
88(3)
System Termination
91(10)
Exercises for Part I
92(6)
References and Bibliography
98(3)
PART II STATISTICAL METHODS 101(62)
Probability---A Safety Evaluation Tool
103(10)
Probability Laws
104(5)
Addition Law
105(1)
Multiplication Law
105(1)
Complementary Law
106(1)
Examples
107(2)
Permutations and Combinations
109(4)
Descriptive Data Measures
113(6)
Measures of Central Tendency
114(2)
Measures of Dispersion
116(3)
Methods of Safety Data Analysis
119(5)
Correlation
119(1)
Regression
120(1)
Analysis of Variance (Anova)
121(1)
Contingency Tables
122(1)
Summary
123(1)
Binomial Distribution
124(5)
Multinomial Distribution
129(2)
Hypergeometric Distribution
131(2)
Poisson Distribution
133(7)
Exponential Distribution
135(5)
Normal Distribution
140(5)
Lognormal Distribution
145(3)
Weibull Distribution
148(2)
Confidence Limits
150(13)
Normal Distribution Confidence Intervals (Known σ)
151(1)
t Distribution Confidence Intervals (Unknown σ)
151(2)
Chi-Square Confidence Intervals
153(10)
Exercises for Part II
157(5)
References and Bibliography
162(1)
PART III NETWORK ANALYSIS 163(28)
Event Systems
165(9)
Series Systems
166(2)
Parallel Systems
168(1)
Series--Parallel Systems
169(5)
Boolean Algebra
174(9)
Boolean Operators
174(6)
Conditional Probability---Bayes' Theorem
180(3)
Cut Sets
183(8)
Cut Set Development
184(2)
System Duals---Path Sets
186(5)
Exercises for Part III
188(2)
References and Bibliography
190(1)
PART IV HAZARD ANALYSIS 191(108)
Introduction
193(4)
System Safety Engineering
194(3)
Elements of Hazard Analysis
197(9)
Hazard Severity
198(1)
Hazard Likelihood
199(2)
Hazard Probability
200(1)
Hazard Control
201(2)
Hazard Index
203(1)
Hazard Control Design Criteria
204(2)
Preliminary Hazard Analysis
206(7)
Format of Preliminary Hazard Analysis
208(4)
PHA Example
212(1)
Subsystem Hazard Analysis
213(5)
SSHA Example
214(4)
System Hazard Analysis
218(3)
Operating and Support Hazard Analysis
221(2)
Fault Hazard Analysis
223(3)
Fault Hazard Analysis Format
223(2)
Fault Hazard Analysis Example
225(1)
Failure Mode and Effects Analysis
226(3)
Fault Tree Analysis
229(47)
Fault Tree Symbology
230(8)
Event Symbols
231(2)
Logic Symbols
233(5)
Fault Tree Synthesis
238(8)
Cut Set Development
246(10)
OR Gate
247(3)
And Gate
250(1)
Boolean Equation
251(2)
Boolean Equivalent Tree
253(1)
Path Sets
253(1)
Fault Tree and Network Methods
254(2)
Fault Tree Quantification
256(16)
Fault Rate
257(1)
Mean Down Time
257(1)
Unreliability
258(2)
Unavailability
260(1)
Rate of Fault
261(2)
Expected Number of Faults
263(1)
Cut Set Importance
264(1)
Event Importance
265(1)
Order Importance
266(1)
Undependability
267(1)
Common Cause Analysis
268(1)
Fault Tree Computer-aided Analysis
269(2)
Monte Carlo Fault Tree Analysis
271(1)
Fault Tree Example Problem
272(4)
Software Hazard Analysis
276(14)
Elements of a Software Safety Program
279(5)
Petri Nets
284(2)
Rules and Guidelines
286(4)
Documentation of Designs and Intents
287(1)
Software---CPU Design Rules
287(1)
CPU---Hardware Interface Rules
288(1)
Operating System Software Rules
289(1)
Operator Interface Rules
289(1)
Sneak Circuit Analysis
290(9)
Sneak Analysis Techniques
291(2)
Topological Patterns
291(2)
Sneak Circuit Guidelines
293(6)
Exercises for Part IV
294(1)
References and Bibliography
295(4)
PART V RISK ANALYSIS 299(32)
Risk Assessment in Safety
301(30)
Introduction
301(1)
Nature of Risk
301(3)
Risk Assessment Model
304(2)
Risk Decision Process
306(4)
Risk Projection
310(4)
Risk Assessment and Management
314(1)
Safety Value Analysis
315(16)
Value Analysis Process
316(1)
Expected Value
317(2)
Cost of Safety
319(1)
Value of Time
320(2)
Engineering Economic Factors
322(3)
Value of Time Calculations
325(4)
Exercises for Part V
329(1)
References and Bibliography
330(1)
PART VI DECISION ANALYSIS 331(22)
Decision Methods for Safety
333(20)
Delphi and Related Methods
335(1)
Committee Decision Methods
336(1)
Metric Matrix Hierarchical Analysis
336(3)
Game Theory
339(2)
Payoff Matrix Reduction
341(1)
Minimax--Maximin Decision Methods
342(2)
Regret Decision Criteria
344(1)
Multiattribute Decision Making
345(8)
Utility Value Theory
347(1)
Completing the Decision Matrices
348(3)
Exercises for Part VI
351(1)
References and Bibliography
351(2)
Appendix A Statistical Tables 353(5)
Table A.1---Areas under the Normal Curve
354(2)
Table A.2---Fractiles of the X2 Distribution
356(2)
Appendix B Answers to Quantitative Exercises 358(5)
Index 363

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