Practical system reliability / (Record no. 59605)

000 -LEADER
fixed length control field 07614nam a2201237 i 4500
001 - CONTROL NUMBER
control field 5361030
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20200421114117.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 090618t20152009njua ob 001 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
ISBN 9780470455401
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- print
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- electronic
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
-- paper
082 04 - CLASSIFICATION NUMBER
Call Number 620.00452
100 1# - AUTHOR NAME
Author Bauer, Eric,
245 10 - TITLE STATEMENT
Title Practical system reliability /
300 ## - PHYSICAL DESCRIPTION
Number of Pages 1 PDF (xiii, 287 pages) :
505 0# - FORMATTED CONTENTS NOTE
Remark 2 Preface -- Acknowledgments -- 1 Introduction -- 2 System Availability -- 2.1 Availability, Service and Elements -- 2.2 Classical View -- 2.3 Customers' View -- 2.4 Standards View -- 3 Conceptual Model of Reliability and Availability -- 3.1 Concept of Highly Available Systems -- 3.2 Conceptual Model of System Availability -- 3.3 Failures -- 3.4 Outage Resolution -- 3.5 Downtime Budgets -- 4 Why Availability Varies Between Customers -- 4.1 Causes of Variation in Outage Event Reporting -- 4.2 Causes of Variation in Outage Duration -- 5 Modeling Availability -- 5.1 Overview of Modeling Techniques -- 5.2 Modeling Definitions -- 5.3 Practical Modeling -- 5.4 Widget Example -- 5.5 Alignment with Industry Standards -- 6 Estimating Parameters and Availability from Field Data -- 6.1 Self-Maintaining Customers -- 6.2 Analyzing Field Outage Data -- 6.3 Analyzing Performance and Alarm Data -- 6.4 Coverage Factor and Failure Rate -- 6.5 Uncovered Failure Recovery Time -- 6.6 Covered Failure Detection and Recovery Time -- 7 Estimating Input Parameters from Lab Data -- 7.1 Hardware Failure Rate -- 7.2 Software Failure Rate -- 7.3 Coverage Factors -- 7.4 Timing Parameters -- 7.5 System-Level Parameters -- 8 Estimating Input Parameters in the Architecture/Design Stage -- 8.1 Hardware Parameters -- 8.2 System-Level Parameters -- 8.3 Sensitivity Analysis -- 9 Prediction Accuracy -- 9.1 How Much Field Data Is Enough? -- 9.2 How Does One Measure Sampling and Prediction Errors? -- 9.3 What Causes Prediction Errors? -- 10 Connecting the Dots -- 10.1 Set Availability Requirements -- 10.2 Incorporate Architectural and Design Techniques -- 10.3 Modeling to Verify Feasibility -- 10.4 Testing -- 10.5 Update Availability Prediction -- 10.6 Periodic Field Validation and Model Update -- 10.7 Building an Availability Roadmap -- 10.8 Reliability Report -- 11 Summary -- Appendix A System Reliability Report outline -- 1 Executive Summary -- 2 Reliability Requirements -- 3 Unplanned Downtime Model and Results.
505 8# - FORMATTED CONTENTS NOTE
Remark 2 Annex A Reliability Definitions -- Annex B References -- Annex C Markov Model State-Transition Diagrams -- Appendix B Reliability and Availability Theory -- 1 Reliability and Availability Definitions -- 2 Probability Distributions in Reliability Evaluation -- 3 Estimation of Confidence Intervals -- Appendix C Software Reliability Growth Models -- 1 Software Characteristic Models -- 2 Nonhomogeneous Poisson Process Models -- Appendix D Acronyms and Abbreviations -- Appendix E Bibliography -- Index -- About the Authors.
520 ## - SUMMARY, ETC.
Summary, etc Learn how to model, predict, and manage system reliability/availability throughout the development life cycle Written by a panel of authors with a wealth of industry experience, the methods and concepts presented here give readers a solid understanding of modeling and managing system and software availability and reliability through the development of real applications and products. The modeling and prediction techniques and tools are customer-focused and data-driven, and are also aligned with industry standards (Telcordia, TL 9000, ISO, etc.). Readers will get a clear understanding about what real-world reliability and availability mean through step-by-step discussions of: . System availability. Conceptual model of reliability and availability. Why availability varies between customers. Modeling availability. Estimating parameters and availability from field data. Estimating input parameters from laboratory data. Estimating input parameters in the architecture/design stage. Prediction accuracy. Connecting the dots This book can be used by system architects, engineers, and developers to better understand and manage the reliability/availability of their products; quality engineers to grasp how software and hardware quality relate to system availability; and engineering students as part of a short course on system availability and software reliability.
700 1# - AUTHOR 2
Author 2 Zhang, Xuemei.
700 1# - AUTHOR 2
Author 2 Kimber, Douglas A.
856 42 - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier http://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=5361030
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type eBooks
264 #1 -
-- Piscataway, New Jersey :
-- IEEE Press,
-- c2009.
264 #2 -
-- [Piscataqay, New Jersey] :
-- IEEE Xplore,
-- [2009]
336 ## -
-- text
-- rdacontent
337 ## -
-- electronic
-- isbdmedia
338 ## -
-- online resource
-- rdacarrier
588 ## -
-- Description based on PDF viewed 12/21/2015.
650 #0 - SUBJECT ADDED ENTRY--SUBJECT 1
-- Reliability (Engineering)
695 ## -
-- Availability
695 ## -
-- Bibliographies
695 ## -
-- Biographies
695 ## -
-- Budgets
695 ## -
-- Complexity theory
695 ## -
-- Computational modeling
695 ## -
-- Computer architecture
695 ## -
-- DSL
695 ## -
-- Data models
695 ## -
-- Data processing
695 ## -
-- Debugging
695 ## -
-- Delay
695 ## -
-- Density functional theory
695 ## -
-- Design methodology
695 ## -
-- Detectors
695 ## -
-- Equations
695 ## -
-- Error analysis
695 ## -
-- Event reporting
695 ## -
-- FCC
695 ## -
-- Failure analysis
695 ## -
-- Fault detection
695 ## -
-- Feeds
695 ## -
-- Field results
695 ## -
-- Hardware
695 ## -
-- Hazards
695 ## -
-- ISO standards
695 ## -
-- Incentive schemes
695 ## -
-- Indexes
695 ## -
-- Maintenance engineering
695 ## -
-- Markov processes
695 ## -
-- Mathematical model
695 ## -
-- Measurement
695 ## -
-- Microprogramming
695 ## -
-- Modeling
695 ## -
-- Outages
695 ## -
-- Parameter estimation
695 ## -
-- Power supplies
695 ## -
-- Predictive models
695 ## -
-- Random variables
695 ## -
-- Reliability
695 ## -
-- Reliability engineering
695 ## -
-- Reliability theory
695 ## -
-- Sampling
695 ## -
-- Sensitivity analysis
695 ## -
-- Service management
695 ## -
-- Software
695 ## -
-- Software reliability
695 ## -
-- Stability analysis
695 ## -
-- Standards
695 ## -
-- System-level design
695 ## -
-- Telecommunication network management
695 ## -
-- Telecommunication services
695 ## -
-- Terminology
695 ## -
-- Testing
695 ## -
-- Time factors
695 ## -
-- Transient analysis

No items available.