paper 49, Improving Software Reliability by Application of Software Engineering Approach
Table of Contents
- Session 1 Software Technology and Engineering
- 1. Trust in a Hybrid Recommender System
- Session 2 Software Technology and Engineering
- 11. ReChaP Prototype: A Tool for Simplifying Requirement Change Propagation to Software Design
- 12. Risk Based Analysis for Detention Pond Overflow at Wilayah Pembangunan Iskandar (Nusajaya), Johor
- 20. A Comparative Evaluation of State-of-the-Art Approaches in the Design of an Adaptive Software System
- Session 3 Software Technology and Engineering
- 21. MiPAF: A Policy-Based Middleware Framework to Control Negative Effects of Software Evolution
- Session 4 Software Technology and Engineering
- 33. MobileObject: Fundamentals
- Session 5 Software Technology and Engineering
- 44. Abasic for Intrusion Detection System
- 48. Inhibiting Pyrolysis Process for Fiber-Reinforced Composites by Using Flame Retardants Additions
- Session 6 Computer Design and Engineering
- 55. Awareness for the Protection of Endangered Species with Augmented Reality
- Session 7 Computer Design and Engineering
- 66. Low Noise Amplifier at 5.8Ghz with Cascode and Cascaded Techniques UsingT-Matching Network for Wireless Applications
- Session 8 Computer Design and Engineering
- 75. Towards Aeroacoustic Characterization of the Sibilant [S] Production from a Simplified Parameterized Geometric Model of the Oral Cavity
- 81. Computational Algorithm to Estimate Final Costs Based on the Number of Users in Space Structures
- Session 9 Energy and Electrical Systems
- 86. Fault Diagnosis of Power Transformers with Neural Network
- 87. Influence of Particle Size and Temperature on Gasification Performance in Externally Heated Gasifier
- 90. Application of Mesh Adaptive Direct Search Method to Power System Valve-Point Economic Load Dispatch
- Session 10 Energy and Electrical Systems
- 98. Effect of Segmented Contacts on Fuel Cell Performance Using 3-D Modelling
Chapter Contents
- Abstract
- Keywords
- 1. Introduction
- 2. Software Development Methodologies
- 3. Computer-Aided Software Engineering
- 4. Integrated Development Environment
- 5. Software Reliability Modeling Selection Algorithm
- 6. Conclusions
- References
Excerpt
Software Reliability is an important contribution towards software quality. Software reliability is the probability of the failure free operation of a computer program for a specified period of time in a specified environment. It is different from hardware reliability because it reflects design perfection, rather than manufacturing perfection. This article provides a general idea of software reliability and an overview of improving software reliability by improving the different development models by incorporating software engineering methodologies. It also provides with an algorithm for the right selection of software development model.
©2011 ASME


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