Modelling of NHPP Based Software Reliability Growth Model from the Perspective of Testing Coverage, Error Propagation and Fault Withdrawal Efficiency

Author:

Khurshid Shozab1,Iqbal Javaid1ORCID,Malik Ishfaq Ahmad2,Yousuf Basrah1

Affiliation:

1. Department of Computer Science, University of Kashmir, Srinagar 190006, Jammu and Kashmir, India

2. Department of Mathematics, University of Kashmir, Srinagar 190006, Jammu and Kashmir, India

Abstract

This paper presents a software reliability growth model framework modeled from a non-homogenous poisson process (NHPP). Invariably, software testing continues to be a paramount measure for validating the standard of software. Test coverage measures appraise and estimate the proportion and gradation of testing in software. Therefore, presenting a correct picture of the test coverage becomes a prime requisite to guarantee software reliability. As an enhancement over the existing models, the proposed model integrates testing coverage (TC), error propagation, and fault withdrawal efficiency while keeping the number of parameters restrained to make the framework more reliable for parameter estimation. A relative analysis to assess the efficacy of the proposed model and some existing models has been carried out on the failure data obtained from three real-world software applications using six comparison criteria. Finally, the weighted criteria rank method has been used to rank the models and assess their performance. In addition, sensitivity analysis has been carried out to demonstrate the effect of the parameters of the proposed model on the mean value function.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Safety, Risk, Reliability and Quality,Nuclear Energy and Engineering,General Computer Science

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1. Developing an Innovative Imperfect Debugging Software Reliability Growth Model with Enhanced Testing Coverage Strategies;International Journal of Reliability, Quality and Safety Engineering;2024-06-17

2. A software reliability model incorporating fault removal efficiency and it’s release policy;Computational Statistics;2023-11-09

3. Integrating Burr type testing effort functions in logistic reliability growth model with uncertainty factor;International Journal of System Assurance Engineering and Management;2023-08-10

4. Software reliability modeling under an uncertain testing environment;International Journal of Modelling and Simulation;2023-04-12

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