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Executable Behavioral Modeling of System and Software Architecture Specifications to Inform Resourcing Decisions

机译:系统和软件体系结构规范的可执行行为建模,以通知资源决策

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The size, cost, and slow rate of change of DoD Information Technology (IT) systems in comparison with commercial IT makes introduction of a new DoD system or capability challenging. Making design decisions without consideration of the whole system and its environment may result in unintended behaviors that have operational and financial impacts, often not visible until later testing. The complexity of these system interactions isn’t cheap, impacting intellectual, programmatic, and organizational resources. Precise behavioral modeling offers a way to assess architectural design decisions prior to, during, and after implementation to mitigate the impacts of complexity, but in and of itself does not lead to estimates of the effort and the cost of those design decisions. This research introduces a methodology to extract Unadjusted Function Point (UFP) counts from architectural behavioral models utilizing a framework called Monterey Phoenix (MP), lightweight formal methods, and high level pseudocode for use in cost estimation models such as COCOMO II. Additionally, integration test estimates are informed by extracts of MP model event traces. These unambiguous, executable architecture models and their views can be inspected and revised, in order to facilitate communication with stakeholders, reduce the potential for software failure, and lower costs in implementation.
机译:与商业IT相比,DoD信息技术(IT)系统的大小,成本和缓慢的变化速度使得引入新的DoD系统或功能具有挑战性。在不考虑整个系统及其环境的情况下做出设计决策可能会导致意想不到的行为,从而影响运营和财务,通常在以后的测试中才可见。这些系统交互的复杂性并不便宜,会影响知识,程序和组织资源。精确的行为建模提供了一种在实施之前,之中和之后评估架构设计决策的方法,以减轻复杂性的影响,但是其本身并不能导致对这些设计决策的工作量和成本的估计。这项研究引入了一种方法,该方法利用称为Monterey Phoenix(MP)的框架,轻量形式方法和高级伪代码从体系结构行为模型中提取未调整的功能点(UFP)计数,以用于成本估算模型(例如COCOMO II)。此外,通过MP模型事件跟踪的提取来告知集成测试估计。这些明确,可执行的体系结构模型及其视图可以进行检查和修改,以促进与利益相关者的沟通,减少软件故障的可能性,并降低实施成本。

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