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Quality, Reliability and Infocom Technology: Trends and Future Directions

Quality, Reliability and Infocom Technology: Trends and Future Directions


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About the Book

Producing and maintaining the high quality of products and processes are at the core of engineering and only a comprehensive quality improvement and assessment program that have successful outcome can assure it. Reliability of computer systems has become a major concern for our society. Software reliability is the key factor in software quality since it qualities software failures – the most unwanted event which makes software useless or even harmful to the whole system. Achieving highly reliable software in the customer’s perspective is a demanding job to all software engineers and reliability engineers. Papers in this book are classified into four main areas: RELIABILITY, QUALITY, OPTIMIZATION AND INFOCOM TECHNOLOGY. This book will benefit wider audiences amongst the scientific and research community in academia and industry.

Table of Contents:
Preface Acknowledgements Optimal Release Problem Based on Flexible Hazard Rates for an Embedded OSS Development Testing Time Allocation Problem for N-Version Modular Software System Genetic Algorithm based Mixed-Integer Nonlinear Programming in Reliability Optimization Problems Uncertainty Analysis in PSA with Correlated Input Parameters The Long Jump in Linear Optimization using Transformation that Converts the ‘n’ to a ‘2’ Variable LP Problem Change-Point Modeling with Difference in Software Failure-Occurrence Time-Interval for Reliability Assessment Software Reliability Growth Modeling for Successive Release Failure Prediction of Rail Considering Rolling Contact Fatigue Six Sigma Approach in Quality Improvement of Pressure Vessels in Water Purifier Fuzzy Logic Model for Iron Ore Pellet Grading Performance Optimizations in Adhoc Networks using Cross Layer Processing and Designs Stochastic Differential Equation based Modeling for Multiple Generations of Software Reliability Analysis of M-out-of-N:G System with Multiple Types of Warm Standby Maintenance Interval Optimisation for Large Engineering Plants Operational Analysis of a 2-Out-of-3 Redundant System with Inspection Subject to Degradation An Optimal Resource Allocation Model Incorporating Switching in Fault Detection Rate: A New Insight Information Systems Organization – A Strategic Asset Fuzzy Model for Gene Regulatory Networks based on Fuzzy Reasoning Petri Nets The Increase of Customer Satisfaction through Total Quality Management Technique On the Development of Software Reliability Growth Model for Distributed Environment Mathematical Model for Optimum Replacement Interval of Grinding Mill Liners Generalized Framework for Fault Detection and Correction Processes for Successive Release of Software Evaluating the Fuzzy Reliability of Basement Flooding using Trapezoidal Intuitionistic Fuzzy Number NHPP Error Detection Software Model with Repair Process Improvement Studies: An Industrial Engineering Application Available Transfer Capability in Deregulated Power Systems: A Review Unification Scheme for Testing Effort Allocation – A Dynamic Approach Reliability Analysis and Resource Allocation of an Industrial System Control Chart based Reliability Monitoring – A Model Development Analysis of Employees Satisfaction in a Manufacturing Organization Multiple E-Node in Backtracking Technique for all Optimal Solutions of General M-Machine Flow-Shop Scheduling Problem Application of Intuitionistic Fuzzy Sets (IFS) in Medical Diagnosis of Headache Embedding Testing-Effort and Stochastic Differential Equation in Fault-Dependency based SRGMs Functional Reliability Analysis of Passive Safety Grade Decay Heat Removal System of PFBR by Moments Method Release Time Problem with Change-Point Incorporating the Effect of Imperfect Debugging and Fault Generation.

About the Author :
P. K. Kapur.: Department of Operational Research, Faculty of Mathematical Sciences, University of Delhi, Delhi A. K. Verma.: Department of Electrical Engineering, Indian Institute of Technology, Bombay, Mumbai Sunil Kumar Khatri.: Department of Computer Applications, Lingaya's University, Faridabad Ompal Singh.: Department of Operational Research, Faculty of Mathematical Sciences, University of Delhi, Delhi


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Product Details
  • ISBN-13: 9788184871722
  • Publisher: Narosa Publishing House
  • Publisher Imprint: Narosa Publishing House
  • Height: 240 mm
  • No of Pages: 412
  • Sub Title: Trends and Future Directions
  • Width: 185 mm
  • ISBN-10: 8184871724
  • Publisher Date: 30 Jan 2012
  • Binding: Hardback
  • Language: English
  • Returnable: N
  • Weight: 968 gr


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