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Model-Based Testing for Objective Fidelity Evaluation of Engineering and Research Flight Simulators

机译:基于模型的工程和研究飞行模拟器的客观保真评估测试

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Simulator fidelity has been defined as the conformance of a flight simulator to the characteristics of the real aircraft Objective fidelity evaluation is an engineering approach that attacks the fidelity problem with comparison of simulator and the actual system behavior over some quantitative measures. Testing can be pronounced as the fundamental mean for this comparison. From the utilization perspective, flight simulators are classified as research, engineering and training simulators. Research simulators are both test beds for flight simulator research and computational tools for flight systems and human factors research. Engineering simulators are used for systems development and training simulators are utilized for flight training. While training simulators are subject to rare or few upgrades or modifications in their lifespan, engineering simulators are under occasional and research simulators are under frequent change. The test cases to evaluate the fidelity of training simulators are guided by standards whereas for engineering and research simulators, test cases may present a great variation depending on the scope of change and the use case. These two characteristics of engineering and research simulators, combined with the complexity of today's aircrafts necessitate new methodologies for efficient and effective testing. Model-Based Testing (MBT) targets flexibility and adaptability via utilization of models for specification of test cases and proposes workflows for automatic test case generation. The paper presents an MBT approach for objective fidelity evaluation of engineering and research simulators. The proposed approach is exercised with an infrastructure implementation and an example case study. Thus, evidences are collected that indicate increased efficiency and an effective test process.
机译:模拟器保真已经被定义为飞行模拟器的一致性,真正的飞机客观保真评估是一种工程方法,攻击了模拟器的比较和在某种定量措施上的实际系统行为的攻击问题。测试可以发音为此比较的基本均值。从利用角度来看,飞行模拟器被归类为研究,工程和培训模拟器。研究模拟器既是飞行模拟器研究和用于飞行系统和人类因素研究的计算工具的测试床。工程模拟器用于系统开发和培训模拟器用于飞行培训。虽然培训模拟器受到罕见或少数升级或改进的速度,但工程模拟器均在偶尔,研究模拟器经常发生变化。评估培训模拟器的保真度的测试用例由标准指导,而对于工程和研究模拟器,测试用例可能取决于改变范围和用例的范围。这两个工程和研究模拟器的特点,与当今飞机的复杂性相结合,需要新的方法,以实现高效且有效的测试。基于模型的测试(MBT)通过利用模型来定位用于测试用例的规范,并提出了自动测试案件的工作流程。本文介绍了工程和研究模拟器客观保真评估的MBT方法。拟议的方法是通过基础设施实施和示例案例研究行使。因此,收集证据,表示提高效率和有效的测试过程。

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