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TEST BASED RELIABILITY ASSESSMENT METHOD FOR A SAFETY CRITICAL SOFTWARE IN REACTOR PROTECTION SYSTEM

机译:基于测试的反应堆保护系统安全关键软件的可靠性评估方法

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Digitalization of the instrumentation and control systems in nuclear power plant entails some new features which do not exist in analog systems. When the new features are applied in safety critical systems, the risk stemming from them should be quantified properly to assure the reliability of the entire power plant. Among the new features, software is considered as the most important factor because it can cause common cause failure to many redundant systems. Therefore, in this work, a test based reliability assessment method for a safety-critical software is developed. An output of a software is determined by not only inputs but also the internal state of the software at the time. In the case of safety critical software developed for usage in nuclear power plant, it is possible to directly investigate probable internal states thanks to detailed design specification and programing features, and the probable inputs also can be identified based on the physical linearity of each process parameter and hardware characteristics related to data acquisition. In this work, a development method for practical exhaustive test case consisting of investigation of internal state and probable input sets to a specific internal state are suggested. In addition to this, software logic simulator for execution of software logic test and the reliability quantification method based on the test result are developed. The feasibility of the suggested method is demonstrated via a case study.
机译:核电厂中仪表和控制系统的数字化需要模拟系统中不存在的一些新功能。当新功能适用于安全关键系统中时,应妥善量化它们的风险,以确保整个电厂的可靠性。在新功能中,软件被认为是最重要的因素,因为它可能导致许多冗余系统造成共同的原因失败。因此,在这项工作中,开发了一种用于安全关键软件的基于测试的可靠性评估方法。软件的输出不仅由输入而且当时的软件的内部状态决定。在安全关键软件的情况下,在核电厂开发的情况下,由于详细的设计规范和编程特征,可以直接调查可能的内部状态,并且还可以基于每个过程参数的物理线性来识别可能的输入与数据采集相关的硬件特征。在这项工作中,提出了一种用于实际详尽测试案例的开发方法,包括对内部状态和可能输入组的调查到特定内部状态。除此之外,开发了用于执行软件逻辑测试的软件逻辑模拟器以及基于测试结果的可靠性量化方法。通过案例研究证明了建议方法的可行性。

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