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Semi-infinite programming for global guarantees of robust fault detection and isolation in safety-critical systems

机译:SEMI-INFINITE编程,用于全球保证安全性故障检测和安全性 - 关键系统中的隔离

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The increasing uncertainty due to advances in modern systems has negatively impacted system health and safety. System health and safety problems associated with uncertainty can be attributed to (1) inadequate system design, (2) ill-suited controller and operating envelope, and (3) lack of robustness in system diagnostics. The latter issue (3) is the main focus of this paper. This work presents an algorithm for the design of active fault detection and isolation (FDI) tests that provide rigorous guarantees of robustness in safety-critical systems. A semi-infinite program with implicit functions embedded is formulated with the objective of maximizing FDI effectiveness at the worst-case realization of uncertainty by manipulating admissible system inputs, while taking into account system safety constraints. This problem is solved locally and globally illustrating deficiencies in the performance of FDI tests designed for the mean values of anticipated uncertainty. The resulting solution is an optimally performing fault diagnostic test that guarantees system safety over the entire domain of uncertainty. This is illustrated using a benchmark three-tank system and further analyzed through Monte Carlo simulation and k-NN classification. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于现代系统的进步导致的不确定性增加了对系统健康和安全产生的负面影响。与不确定性相关的系统健康和安全问题可归因于(1)的系统设计不足,(2)不适合的控制器和操作信封,(3)系统诊断中缺乏鲁棒性。后一个问题(3)是本文的主要重点。这项工作介绍了一种用于设计有源故障检测和隔离(FDI)测试的算法,提供安全关键系统中的鲁棒性的严格保证。嵌入隐式功能的半无限程序是通过操纵制造系统输入来最大限度地实现不确定性的最大化FDI效能的目标,同时考虑到系统安全约束。该问题在本地解决,并在全球范围内解释了设计用于预期不确定性的平均值的FDI测试的缺陷。由此产生的解决方案是最佳性能的故障诊断测试,可确保整个不确定性领域的系统安全性。这是使用基准三罐系统进行说明的,并通过蒙特卡罗模拟和K-NN分类进行进一步分析。 (c)2019 Elsevier Ltd.保留所有权利。

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