Design and analysis of reliable and fault-tolerant computer systems /:
Covering both the theoretical and practical aspects of fault-tolerant mobile systems, and fault tolerance and analysis, this book tackles the current issues of reliability-based optimization of computer networks, fault-tolerant mobile systems, and fault tolerance and reliability of high speed and hi...
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
London :
Imperial College Press,
©2007.
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Online-Zugang: | Volltext |
Zusammenfassung: | Covering both the theoretical and practical aspects of fault-tolerant mobile systems, and fault tolerance and analysis, this book tackles the current issues of reliability-based optimization of computer networks, fault-tolerant mobile systems, and fault tolerance and reliability of high speed and hierarchical networks.The book is divided into six parts to facilitate coverage of the material by course instructors and computer systems professionals. The sequence of chapters in each part ensures the gradual coverage of issues from the basics to the most recent developments. A useful set of refere. |
Beschreibung: | 1 online resource (1 online resource) |
Bibliographie: | Includes bibliographical references. |
ISBN: | 1860948901 9781860948909 |
Internformat
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245 | 1 | 0 | |a Design and analysis of reliable and fault-tolerant computer systems / |c Mostafa Abd-El-Barr. |
260 | |a London : |b Imperial College Press, |c ©2007. | ||
300 | |a 1 online resource (1 online resource) | ||
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504 | |a Includes bibliographical references. | ||
505 | 0 | |a Preface; Acknowledgements; Contents; Chapter 1 Fundamental Concepts in Fault Tolerance and Reliability Analysis; 1.1 Introduction; 1.2 Redundancy Techniques; 1.2.1 Hardware Redundancy; 1.2.1.1 Passive (Static) Hardware Redundancy; 1.2.1.2 Active (Dynamic) Hardware Redundancy; 1.2.1.3 Hybrid Hardware Redundancy; 1.2.2 Software Redundancy; 1.2.2.1 Static Software Redundancy Techniques; 1.2.2.2 Dynamic Software Redundancy Techniques; 1.2.3 Information Redundancy; 1.2.3.1 Error Detecting Codes; 1.2.3.2 Error Correcting Codes; 1.2.3.3 SEC-DED Codes; 1.2.3.4 CRC Codes; 1.2.3.5 Convolution Codes. | |
505 | 8 | |a 1.2.4 Time Redundancy1.2.4.1 Permanent Error Detection with Time Redundancy; 1.3 Reliability Modeling and Evaluation; 1.3.1 Empirical Models; 1.3.2 The Analytical Technique; 1.4 Summary; References; Chapter 2 Fault Modeling Simulation and Diagnosis; 2.1 Fault Modeling; 2.2 Fault Simulation; 2.3 Fault Simulation Algorithms; 2.3.1 Serial Fault Simulation Algorithm; 2.3.2 Parallel Fault Simulation; 2.3.3 Deductive Fault Simulation; 2.3.4 Concurrent Fault Simulation; 2.3.5 Critical Path Tracing; 2.4 Fault Diagnosis; 2.4.1 Combinational Fault Diagnosis; 2.4.2 Sequential Fault Diagnosis Methods. | |
505 | 8 | |a 2.5 SummaryReferences; Chapter 3 Error Control and Self-Checking Circuits; 3.1 Error-Detecting/Error-Correcting Codes; 3.2 Self-Checking Circuits; 3.3 Summary; References; Chapter 4 Fault Tolerance in Multiprocessor Systems; 4.1 Fault Tolerance in Interconnection Networks; 4.2 Reliability and Fault Tolerance in Single Loop Architectures; 4.3 Introduction to Fault Tolerance in Hypercube Networks; 4.4 Introduction to Fault Tolerance in Mesh Networks; 4.5 Summary; References; Chapter 5 Fault-Tolerant Routing in Multi-Computer Networks; 5.1 Introduction. | |
505 | 8 | |a 5.2 Fault-Tolerant Routing Algorithms in Hypercube5.2.1 Depth-First Search Approach; 5.2.2 Iterative-Based Heuristic Routing Algorithm; 5.3 Routing in Faulty Mesh Networks; 5.3.1 Node Labeling Technique; 5.3.2 A FT Routing Scheme for Meshes with Non-Convex Faults; 5.4 Algorithm Extensions; 5.4.1 Multidimensional Meshes; 5.4.2 Faults with f-Chains; 5.5 Summary; References; Chapter 6 Fault Tolerance and Reliability in Hierarchical Interconnection Networks; 6.1 Introduction; 6.2 Block-Shift Network (BSN); 6.2.1 BSN Edges Groups; 6.2.2 BSN Construction; 6.2.3 BSN Degree and Diameter. | |
505 | 8 | |a 6.2.4 BSN Connectivity6.2.5 BSN Fault Diameter; 6.2.6 BSN Reliability; 6.3 Hierarchical Cubic Network (HCN); 6.3.1 HCN Degree and Diameter; 6.4 HINs versus HCNs; 6.4.1 Topological Cost; 6.5 The Hyper-Torus Network (HTN); 6.6 Summary; References; Chapter 7 Fault Tolerance and Reliability of Computer Networks; 7.1 Background Material; 7.2 Fault Tolerance in Loop Networks; 7.2.1 Reliability of Token-Ring Networks; 7.2.2 Reliability of Bypass-Switch Networks; 7.2.3 Double Loop Architectures; 7.2.4 Multi-Drop Architectures; 7.2.5 Daisy-Chain Architectures; 7.3 Reliability of General Graph Networks. | |
520 | |a Covering both the theoretical and practical aspects of fault-tolerant mobile systems, and fault tolerance and analysis, this book tackles the current issues of reliability-based optimization of computer networks, fault-tolerant mobile systems, and fault tolerance and reliability of high speed and hierarchical networks.The book is divided into six parts to facilitate coverage of the material by course instructors and computer systems professionals. The sequence of chapters in each part ensures the gradual coverage of issues from the basics to the most recent developments. A useful set of refere. | ||
650 | 0 | |a Fault-tolerant computing. |0 http://id.loc.gov/authorities/subjects/sh85047488 | |
650 | 0 | |a Computer systems |x Reliability. | |
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author | Abd-El-Barr, Mostafa, 1950- |
author_GND | http://id.loc.gov/authorities/names/n2004009393 |
author_facet | Abd-El-Barr, Mostafa, 1950- |
author_role | |
author_sort | Abd-El-Barr, Mostafa, 1950- |
author_variant | m a e mae |
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callnumber-first | Q - Science |
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callnumber-raw | QA76.9.F38 A52 2007eb |
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contents | Preface; Acknowledgements; Contents; Chapter 1 Fundamental Concepts in Fault Tolerance and Reliability Analysis; 1.1 Introduction; 1.2 Redundancy Techniques; 1.2.1 Hardware Redundancy; 1.2.1.1 Passive (Static) Hardware Redundancy; 1.2.1.2 Active (Dynamic) Hardware Redundancy; 1.2.1.3 Hybrid Hardware Redundancy; 1.2.2 Software Redundancy; 1.2.2.1 Static Software Redundancy Techniques; 1.2.2.2 Dynamic Software Redundancy Techniques; 1.2.3 Information Redundancy; 1.2.3.1 Error Detecting Codes; 1.2.3.2 Error Correcting Codes; 1.2.3.3 SEC-DED Codes; 1.2.3.4 CRC Codes; 1.2.3.5 Convolution Codes. 1.2.4 Time Redundancy1.2.4.1 Permanent Error Detection with Time Redundancy; 1.3 Reliability Modeling and Evaluation; 1.3.1 Empirical Models; 1.3.2 The Analytical Technique; 1.4 Summary; References; Chapter 2 Fault Modeling Simulation and Diagnosis; 2.1 Fault Modeling; 2.2 Fault Simulation; 2.3 Fault Simulation Algorithms; 2.3.1 Serial Fault Simulation Algorithm; 2.3.2 Parallel Fault Simulation; 2.3.3 Deductive Fault Simulation; 2.3.4 Concurrent Fault Simulation; 2.3.5 Critical Path Tracing; 2.4 Fault Diagnosis; 2.4.1 Combinational Fault Diagnosis; 2.4.2 Sequential Fault Diagnosis Methods. 2.5 SummaryReferences; Chapter 3 Error Control and Self-Checking Circuits; 3.1 Error-Detecting/Error-Correcting Codes; 3.2 Self-Checking Circuits; 3.3 Summary; References; Chapter 4 Fault Tolerance in Multiprocessor Systems; 4.1 Fault Tolerance in Interconnection Networks; 4.2 Reliability and Fault Tolerance in Single Loop Architectures; 4.3 Introduction to Fault Tolerance in Hypercube Networks; 4.4 Introduction to Fault Tolerance in Mesh Networks; 4.5 Summary; References; Chapter 5 Fault-Tolerant Routing in Multi-Computer Networks; 5.1 Introduction. 5.2 Fault-Tolerant Routing Algorithms in Hypercube5.2.1 Depth-First Search Approach; 5.2.2 Iterative-Based Heuristic Routing Algorithm; 5.3 Routing in Faulty Mesh Networks; 5.3.1 Node Labeling Technique; 5.3.2 A FT Routing Scheme for Meshes with Non-Convex Faults; 5.4 Algorithm Extensions; 5.4.1 Multidimensional Meshes; 5.4.2 Faults with f-Chains; 5.5 Summary; References; Chapter 6 Fault Tolerance and Reliability in Hierarchical Interconnection Networks; 6.1 Introduction; 6.2 Block-Shift Network (BSN); 6.2.1 BSN Edges Groups; 6.2.2 BSN Construction; 6.2.3 BSN Degree and Diameter. 6.2.4 BSN Connectivity6.2.5 BSN Fault Diameter; 6.2.6 BSN Reliability; 6.3 Hierarchical Cubic Network (HCN); 6.3.1 HCN Degree and Diameter; 6.4 HINs versus HCNs; 6.4.1 Topological Cost; 6.5 The Hyper-Torus Network (HTN); 6.6 Summary; References; Chapter 7 Fault Tolerance and Reliability of Computer Networks; 7.1 Background Material; 7.2 Fault Tolerance in Loop Networks; 7.2.1 Reliability of Token-Ring Networks; 7.2.2 Reliability of Bypass-Switch Networks; 7.2.3 Double Loop Architectures; 7.2.4 Multi-Drop Architectures; 7.2.5 Daisy-Chain Architectures; 7.3 Reliability of General Graph Networks. |
ctrlnum | (OCoLC)648411158 |
dewey-full | 004.2 |
dewey-hundreds | 000 - Computer science, information, general works |
dewey-ones | 004 - Computer science |
dewey-raw | 004.2 |
dewey-search | 004.2 |
dewey-sort | 14.2 |
dewey-tens | 000 - Computer science, information, general works |
discipline | Informatik |
format | Electronic eBook |
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id | ZDB-4-EBA-ocn648411158 |
illustrated | Illustrated |
indexdate | 2024-10-25T16:17:40Z |
institution | BVB |
isbn | 1860948901 9781860948909 |
language | English |
oclc_num | 648411158 |
open_access_boolean | |
owner | MAIN |
owner_facet | MAIN |
physical | 1 online resource (1 online resource) |
psigel | ZDB-4-EBA |
publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
publisher | Imperial College Press, |
record_format | marc |
spelling | Abd-El-Barr, Mostafa, 1950- https://id.oclc.org/worldcat/entity/E39PCjCcyHTgwrRb7JvyxCrYHd http://id.loc.gov/authorities/names/n2004009393 Design and analysis of reliable and fault-tolerant computer systems / Mostafa Abd-El-Barr. London : Imperial College Press, ©2007. 1 online resource (1 online resource) text txt rdacontent computer c rdamedia online resource cr rdacarrier Includes bibliographical references. Preface; Acknowledgements; Contents; Chapter 1 Fundamental Concepts in Fault Tolerance and Reliability Analysis; 1.1 Introduction; 1.2 Redundancy Techniques; 1.2.1 Hardware Redundancy; 1.2.1.1 Passive (Static) Hardware Redundancy; 1.2.1.2 Active (Dynamic) Hardware Redundancy; 1.2.1.3 Hybrid Hardware Redundancy; 1.2.2 Software Redundancy; 1.2.2.1 Static Software Redundancy Techniques; 1.2.2.2 Dynamic Software Redundancy Techniques; 1.2.3 Information Redundancy; 1.2.3.1 Error Detecting Codes; 1.2.3.2 Error Correcting Codes; 1.2.3.3 SEC-DED Codes; 1.2.3.4 CRC Codes; 1.2.3.5 Convolution Codes. 1.2.4 Time Redundancy1.2.4.1 Permanent Error Detection with Time Redundancy; 1.3 Reliability Modeling and Evaluation; 1.3.1 Empirical Models; 1.3.2 The Analytical Technique; 1.4 Summary; References; Chapter 2 Fault Modeling Simulation and Diagnosis; 2.1 Fault Modeling; 2.2 Fault Simulation; 2.3 Fault Simulation Algorithms; 2.3.1 Serial Fault Simulation Algorithm; 2.3.2 Parallel Fault Simulation; 2.3.3 Deductive Fault Simulation; 2.3.4 Concurrent Fault Simulation; 2.3.5 Critical Path Tracing; 2.4 Fault Diagnosis; 2.4.1 Combinational Fault Diagnosis; 2.4.2 Sequential Fault Diagnosis Methods. 2.5 SummaryReferences; Chapter 3 Error Control and Self-Checking Circuits; 3.1 Error-Detecting/Error-Correcting Codes; 3.2 Self-Checking Circuits; 3.3 Summary; References; Chapter 4 Fault Tolerance in Multiprocessor Systems; 4.1 Fault Tolerance in Interconnection Networks; 4.2 Reliability and Fault Tolerance in Single Loop Architectures; 4.3 Introduction to Fault Tolerance in Hypercube Networks; 4.4 Introduction to Fault Tolerance in Mesh Networks; 4.5 Summary; References; Chapter 5 Fault-Tolerant Routing in Multi-Computer Networks; 5.1 Introduction. 5.2 Fault-Tolerant Routing Algorithms in Hypercube5.2.1 Depth-First Search Approach; 5.2.2 Iterative-Based Heuristic Routing Algorithm; 5.3 Routing in Faulty Mesh Networks; 5.3.1 Node Labeling Technique; 5.3.2 A FT Routing Scheme for Meshes with Non-Convex Faults; 5.4 Algorithm Extensions; 5.4.1 Multidimensional Meshes; 5.4.2 Faults with f-Chains; 5.5 Summary; References; Chapter 6 Fault Tolerance and Reliability in Hierarchical Interconnection Networks; 6.1 Introduction; 6.2 Block-Shift Network (BSN); 6.2.1 BSN Edges Groups; 6.2.2 BSN Construction; 6.2.3 BSN Degree and Diameter. 6.2.4 BSN Connectivity6.2.5 BSN Fault Diameter; 6.2.6 BSN Reliability; 6.3 Hierarchical Cubic Network (HCN); 6.3.1 HCN Degree and Diameter; 6.4 HINs versus HCNs; 6.4.1 Topological Cost; 6.5 The Hyper-Torus Network (HTN); 6.6 Summary; References; Chapter 7 Fault Tolerance and Reliability of Computer Networks; 7.1 Background Material; 7.2 Fault Tolerance in Loop Networks; 7.2.1 Reliability of Token-Ring Networks; 7.2.2 Reliability of Bypass-Switch Networks; 7.2.3 Double Loop Architectures; 7.2.4 Multi-Drop Architectures; 7.2.5 Daisy-Chain Architectures; 7.3 Reliability of General Graph Networks. Covering both the theoretical and practical aspects of fault-tolerant mobile systems, and fault tolerance and analysis, this book tackles the current issues of reliability-based optimization of computer networks, fault-tolerant mobile systems, and fault tolerance and reliability of high speed and hierarchical networks.The book is divided into six parts to facilitate coverage of the material by course instructors and computer systems professionals. The sequence of chapters in each part ensures the gradual coverage of issues from the basics to the most recent developments. A useful set of refere. Fault-tolerant computing. http://id.loc.gov/authorities/subjects/sh85047488 Computer systems Reliability. Computer architecture. http://id.loc.gov/authorities/subjects/sh85029479 Tolérance aux fautes (Informatique) Systèmes informatiques Fiabilité. Ordinateurs Architecture. COMPUTERS Systems Architecture General. bisacsh Computer architecture fast Computer systems Reliability fast Fault-tolerant computing fast Computer Science. hilcc Engineering & Applied Sciences. hilcc FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=516731 Volltext CBO01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=516731 Volltext |
spellingShingle | Abd-El-Barr, Mostafa, 1950- Design and analysis of reliable and fault-tolerant computer systems / Preface; Acknowledgements; Contents; Chapter 1 Fundamental Concepts in Fault Tolerance and Reliability Analysis; 1.1 Introduction; 1.2 Redundancy Techniques; 1.2.1 Hardware Redundancy; 1.2.1.1 Passive (Static) Hardware Redundancy; 1.2.1.2 Active (Dynamic) Hardware Redundancy; 1.2.1.3 Hybrid Hardware Redundancy; 1.2.2 Software Redundancy; 1.2.2.1 Static Software Redundancy Techniques; 1.2.2.2 Dynamic Software Redundancy Techniques; 1.2.3 Information Redundancy; 1.2.3.1 Error Detecting Codes; 1.2.3.2 Error Correcting Codes; 1.2.3.3 SEC-DED Codes; 1.2.3.4 CRC Codes; 1.2.3.5 Convolution Codes. 1.2.4 Time Redundancy1.2.4.1 Permanent Error Detection with Time Redundancy; 1.3 Reliability Modeling and Evaluation; 1.3.1 Empirical Models; 1.3.2 The Analytical Technique; 1.4 Summary; References; Chapter 2 Fault Modeling Simulation and Diagnosis; 2.1 Fault Modeling; 2.2 Fault Simulation; 2.3 Fault Simulation Algorithms; 2.3.1 Serial Fault Simulation Algorithm; 2.3.2 Parallel Fault Simulation; 2.3.3 Deductive Fault Simulation; 2.3.4 Concurrent Fault Simulation; 2.3.5 Critical Path Tracing; 2.4 Fault Diagnosis; 2.4.1 Combinational Fault Diagnosis; 2.4.2 Sequential Fault Diagnosis Methods. 2.5 SummaryReferences; Chapter 3 Error Control and Self-Checking Circuits; 3.1 Error-Detecting/Error-Correcting Codes; 3.2 Self-Checking Circuits; 3.3 Summary; References; Chapter 4 Fault Tolerance in Multiprocessor Systems; 4.1 Fault Tolerance in Interconnection Networks; 4.2 Reliability and Fault Tolerance in Single Loop Architectures; 4.3 Introduction to Fault Tolerance in Hypercube Networks; 4.4 Introduction to Fault Tolerance in Mesh Networks; 4.5 Summary; References; Chapter 5 Fault-Tolerant Routing in Multi-Computer Networks; 5.1 Introduction. 5.2 Fault-Tolerant Routing Algorithms in Hypercube5.2.1 Depth-First Search Approach; 5.2.2 Iterative-Based Heuristic Routing Algorithm; 5.3 Routing in Faulty Mesh Networks; 5.3.1 Node Labeling Technique; 5.3.2 A FT Routing Scheme for Meshes with Non-Convex Faults; 5.4 Algorithm Extensions; 5.4.1 Multidimensional Meshes; 5.4.2 Faults with f-Chains; 5.5 Summary; References; Chapter 6 Fault Tolerance and Reliability in Hierarchical Interconnection Networks; 6.1 Introduction; 6.2 Block-Shift Network (BSN); 6.2.1 BSN Edges Groups; 6.2.2 BSN Construction; 6.2.3 BSN Degree and Diameter. 6.2.4 BSN Connectivity6.2.5 BSN Fault Diameter; 6.2.6 BSN Reliability; 6.3 Hierarchical Cubic Network (HCN); 6.3.1 HCN Degree and Diameter; 6.4 HINs versus HCNs; 6.4.1 Topological Cost; 6.5 The Hyper-Torus Network (HTN); 6.6 Summary; References; Chapter 7 Fault Tolerance and Reliability of Computer Networks; 7.1 Background Material; 7.2 Fault Tolerance in Loop Networks; 7.2.1 Reliability of Token-Ring Networks; 7.2.2 Reliability of Bypass-Switch Networks; 7.2.3 Double Loop Architectures; 7.2.4 Multi-Drop Architectures; 7.2.5 Daisy-Chain Architectures; 7.3 Reliability of General Graph Networks. Fault-tolerant computing. http://id.loc.gov/authorities/subjects/sh85047488 Computer systems Reliability. Computer architecture. http://id.loc.gov/authorities/subjects/sh85029479 Tolérance aux fautes (Informatique) Systèmes informatiques Fiabilité. Ordinateurs Architecture. COMPUTERS Systems Architecture General. bisacsh Computer architecture fast Computer systems Reliability fast Fault-tolerant computing fast Computer Science. hilcc Engineering & Applied Sciences. hilcc |
subject_GND | http://id.loc.gov/authorities/subjects/sh85047488 http://id.loc.gov/authorities/subjects/sh85029479 |
title | Design and analysis of reliable and fault-tolerant computer systems / |
title_auth | Design and analysis of reliable and fault-tolerant computer systems / |
title_exact_search | Design and analysis of reliable and fault-tolerant computer systems / |
title_full | Design and analysis of reliable and fault-tolerant computer systems / Mostafa Abd-El-Barr. |
title_fullStr | Design and analysis of reliable and fault-tolerant computer systems / Mostafa Abd-El-Barr. |
title_full_unstemmed | Design and analysis of reliable and fault-tolerant computer systems / Mostafa Abd-El-Barr. |
title_short | Design and analysis of reliable and fault-tolerant computer systems / |
title_sort | design and analysis of reliable and fault tolerant computer systems |
topic | Fault-tolerant computing. http://id.loc.gov/authorities/subjects/sh85047488 Computer systems Reliability. Computer architecture. http://id.loc.gov/authorities/subjects/sh85029479 Tolérance aux fautes (Informatique) Systèmes informatiques Fiabilité. Ordinateurs Architecture. COMPUTERS Systems Architecture General. bisacsh Computer architecture fast Computer systems Reliability fast Fault-tolerant computing fast Computer Science. hilcc Engineering & Applied Sciences. hilcc |
topic_facet | Fault-tolerant computing. Computer systems Reliability. Computer architecture. Tolérance aux fautes (Informatique) Systèmes informatiques Fiabilité. Ordinateurs Architecture. COMPUTERS Systems Architecture General. Computer architecture Computer systems Reliability Fault-tolerant computing Computer Science. Engineering & Applied Sciences. |
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work_keys_str_mv | AT abdelbarrmostafa designandanalysisofreliableandfaulttolerantcomputersystems |