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Virtual environment modeling for requirements validation of high consequence systems

机译:高后果系统需求验证的虚拟环境建模

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An essential type of "evidence" of the correctness of the requirements formalization process can be provided by human-based calculation. Human calculation can be significantly amplified by shifting from symbolic representation to graphical representations. Having a formally defined system model, we can visualize formulas that represent functional behavior of the system and associated safety constraints. This, in turn, provides an environment for validation of system models. The visual model strengthens specifier's ability to grasp the complexity, build a correct mental model of the system and write the symbolic specification. The visual model can also serve as a bridge between the domain expert and symbolic specification, and provide evidence of the correctness of the formalization process. As a case study, we developed a virtual environment model for the Production Cell robotic system. The model runs in ImmersaDesk Virtual Reality environment. We used this model to evaluate the applicability of virtual reality environments for software requirements validation. Although it introduces higher cost in the requirements formalization phase, this approach can be very beneficial in the development of high consequence systems.
机译:可以通过基于人的计算可以提供要求正式化过程的正确性“证据”的基本类型。通过从符号表示到图形表示,可以显着放大人的计算。具有正式定义的系统模型,我们可以可视化表示系统的功能行为的公式和相关的安全约束。反过来,这提供了用于验证系统模型的环境。视觉模型加强了说明符掌握复杂性的能力,构建了系统的正确心理模型,并写出了符号规范。视觉模型还可以用作域专家和符号规范之间的桥梁,并提供正式化过程的正确性证据。作为一个案例研究,我们为生产细胞机器人系统开发了一种虚拟环境模型。该模型在沉浸式虚拟现实环境中运行。我们使用此模型来评估虚拟现实环境对软件需求验证的适用性。虽然它在要求正式化阶段介绍了更高的成本,但这种方法在高后果系统的发展中可以非常有益。

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