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Modeling and Verification of Control Logics in Safety Instrumented System for Chemical Industrial Processes

机译:化学工业过程安全仪表系统控制逻辑的建模与验证

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This study focuses on automatic verification and validation methods for the safety and correctness of control logics of the safety instrumented system (SIS) in chemical process industry. The models of discrete events, system behaviors and control programs for chemical processes and SIS are developed using automata theory. Symbolic model checking method, an automatic error finding approach, is used to verify its safety and reliability. The strength of this method is to synthesize a feasible sequence through a counter-example and to verify its correctness using computation tree logic (CTL) simultaneously. This method can be applied to determine the error-free location of SIS, to find the logical errors automatically which is difficult to find manually, and to verify the safety and feasibility of SIS. This paper addresses the model development of the SIS control logics of chemical industrial processes and presents how model checking approach can be used efficiently in the verification of SIS control logics through several case studies.
机译:本研究重点介绍了化工工业安全仪表系统(SIS)安全性和验证方法的自动验证和验证方法。使用自动机理论开发了用于化学过程和SIS的离散事件,系统行为和控制程序的模型。符号模型检查方法,自动误差发现方法,用于验证其安全性和可靠性。该方法的强度是通过逆示例综合可行的序列,并同时使用计算树逻辑(CTL)验证其正确性。该方法可以应用于确定SIS的无错误位置,以便自动找到逻辑错误,这很难手动查找,并验证SIS的安全性和可行性。本文介绍了化学工业流程SIS控制逻辑的模型开发,并提出了如何通过几种案例研究验证SIS控制逻辑的模型检查方法。

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