Design of novel fractional order FPGA based reactor protection and safety controllers for ACP1000 nuclear power plant in LabVIEW

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
A. H. Malik, Feroza Arshad, A. Memon, Raheela Laghari
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引用次数: 0

Abstract

In this research work, an advanced most modern ACP1000 Nuclear Power Plant is addressed. An enhanced fractional order model of ACP1000 nuclear power plant is adopted with an addition of protection and safety systems. The whole plant model is developed by using innovative hybrid technology of Visual Basic, LabVIEW, Fractional Order and Field Programmable Gate Array (FPGA). A reactor trip system is designed and modeled using FPGA technology in LabVIEW. Plant parameters are systematically modeled and panels are designed in LabVIEW for reactor protection controllers. Twenty one reactor trip controllers are designed and modeled based on complex digital logics using FPGA programming in LabVIEW. Two fractional order trip controllers are designed for over temperature protection and over power protection in LabVIEW. FPGA based safety controllers are designed for Engineered Safety Features (ESF) in LabVIEW. For enhanced model of ACP1000 nuclear power plant, 374 systems are modeled in modular form in Visual Basic Environment. Nine process controllers are configured in ANFIS framework in LabVIEW. In this research work, process controllers are used in conjunction with protection and safety controllers using FPGA. The parametric display of simulations is carried out in Visual Basic. The closed loop performance of proposed protection controllers is evaluated under reactor trip and turbine trip while that of safety controllers are evaluated under inadvertent opening of safety valves of pressurizer. Various parameters are simulated for severe transient conditions and the results are evaluated and validated against reference design data and Final Safety Analysis Report (FSAR) of ACP1000 nuclear power plant. All the results are well within the trip and safety systems design bounds under abnormal and severe operating conditions.
基于分数阶FPGA的ACP1000核电站反应堆保护与安全控制器的LabVIEW设计
在这项研究工作中,介绍了最先进、最现代化的ACP1000核电站。ACP1000核电站采用了一种增强的分数阶模型,增加了保护和安全系统。利用Visual Basic、LabVIEW、分数阶和现场可编程门阵列(FPGA)的创新混合技术开发了全厂模型。在LabVIEW中,利用FPGA技术对停堆系统进行了设计和建模。在LabVIEW中为反应堆保护控制器系统建模并设计面板。在LabVIEW中使用FPGA编程,基于复杂的数字逻辑设计和建模了21个反应堆跳闸控制器。在LabVIEW中设计了两个用于过温保护和过功率保护的分数阶跳闸控制器。基于FPGA的安全控制器是为LabVIEW中的工程安全功能(ESF)而设计的。对于ACP1000核电站的增强型模型,在Visual Basic环境中对374个系统进行了模块化建模。在LabVIEW的ANFIS框架中配置了9个过程控制器。在这项研究工作中,过程控制器与使用FPGA的保护和安全控制器结合使用。仿真的参数显示是在Visual Basic中执行的。拟用保护控制器的闭环性能在反应堆停堆和汽轮机停堆下进行评估,而安全控制器的闭环特性在稳压器安全阀意外打开下进行评估。针对严重瞬态条件模拟了各种参数,并根据参考设计数据和ACP1000核电站的最终安全分析报告(FSAR)对结果进行了评估和验证。在异常和恶劣的操作条件下,所有结果都在跳闸和安全系统设计范围内。
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40 weeks
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