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Interpretive structural modelling of critical risk factors in software engineering project

机译:软件工程项目中关键风险因素的解释性结构建模

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摘要

Purpose - Success of software projects depends on identification of project risks and managing the risks in a proactive manner. Risk management requires thorough insights into interrelationship of various risk factors for proposing strategies to minimize failure rate. The purpose of this paper is to develop a comprehensive structural model to interrelate important risk factors affecting the success of software projects. Design/methodology/approach - Specifically, this study reveals how interpretive structural modelling helps the risk managers in identifying and understanding the interrelationship among various risk factors. A total of 23 risk factors (or risk sources) have been identified through an extensive literature review. Findings - Necessary modelling information has been gathered from expert through a structured questionnaire survey. Matrice d'Impacts croises-multipication applique an classment analysis has been employed to classify the risk factors into four clusters such as autonomous, dependent, linkage and independent based on their driving and dependence power. Risk factors with strong dependence and weak driving power need urgent attention from managerial perspective. Originality/value - The proposed model is useful for software managers/practitioners to address risk factors associated with complicated projects.
机译:目的-软件项目的成功取决于项目风险的识别和主动管理风险。风险管理需要深入了解各种风险因素之间的相互关系,以提出将故障率降至最低的策略。本文的目的是开发一个综合的结构模型,以相互关联影响软件项目成功的重要风险因素。设计/方法/方法-具体来说,本研究揭示了解释性结构建模如何帮助风险管理人员识别和理解各种风险因素之间的相互关系。通过广泛的文献综述,总共发现了23种风险因素(或风险来源)。调查结果-通过结构化的问卷调查从专家那里收集了必要的建模信息。基于矩阵的croises-multipicic贴花矩阵,已进行分类分析,根据风险因素的驱动力和依赖性,将危险因素分为四个类别,例如自主,依存,关联和独立。从管理的角度来看,依赖性强,驱动力弱的风险因素迫在眉睫。原创性/价值-提出的模型对于软件经理/从业人员解决与复杂项目相关的风险因素很有用。

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