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Scope as a Leading Indicator for Managing Software Development

机译:范围作为管理软件开发的领先指标

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Historically there has been a significant problem with scope on software projects. This study looks to computational intelligence to facilitate the monitoring of scope to provide useful information to project managers. Software projects are difficult to manage with an alarming number of projects ending as highly expensive failures. A recent study of complex projects sponsored by the Project Management Institute found that "soft issues" such as "gut feelings" might provide early warning signs on problem projects. That study suggested that additional measures beyond cost and time must be found to identify project problems. Adding scope as an additional constraint to ascertain project status can be done through the use of Computational Intelligence (CI) tools. Scope for information technology projects has properties of imprecision and vagueness, therefore fuzzy logic would be an appropriate CI tool for monitoring scope. Other papers have illustrated how Zadeh's fuzzy data collector could be used to gather scope status as a practical application of the "computing with words" paradigm. A major benefit of monitoring scope is that scope status can be a leading indicator for managing software projects. Traditional project management measures time and cost which are lagging indicators, representing resources that are unrecoverable once spent. If the status of the scope constraint is collected and correctly analyzed before the expenditure of other fixed resources, there is the potential for scope to be a predictor, or leading indicator. One analysis technique would be to adjust the status for tasks on the critical path using linguistic hedges. By adding scope as a leading indicator, a faster recognition and response to problems in software development should increase project success.
机译:历史上,软件项目的范围一直存在重大问题。这项研究着眼于计算智能,以促进对范围的监视,从而为项目经理提供有用的信息。软件项目难以管理,而数量惊人的项目最终以非常昂贵的失败而告终。由项目管理协会赞助的一项对复杂项目的最新研究发现,诸如“胆量感觉”之类的“软问题”可能会为问题项目提供预警信号。该研究表明,必须找到成本和时间以外的其他措施来确定项目问题。可以通过使用计算智能(CI)工具来将范围添加为确定项目状态的附加约束。信息技术项目的范围具有不精确性和模糊性,因此模糊逻辑将是监视范围的适当CI工具。其他论文也说明了Zadeh的模糊数据收集器如何作为“用词计算”范例的实际应用来收集示波器状态。监视范围的主要好处是范围状态可以作为管理软件项目的主要指标。传统的项目管理衡量的时间和成本是滞后的指标,代表一旦花费就无法回收的资源。如果在支出其他固定资源之前收集范围约束的状态并对其进行正确的分析,则范围有可能成为预测变量或领先指标。一种分析技术是使用语言树篱调整关键路径上任务的状态。通过将范围添加为主要指标,更快地识别和响应软件开发中的问题应该可以提高项目的成功率。

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