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EFFECTS OF IN-THE-LOOP INTERFACE FIDELITY ON THE SIMULATION OF NPP PROCESSES

机译:环路界面保真度对NPP过程仿真的影响

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The use of software in-the-loop (SWIL) and hardware in-the-loop (HIL) simulation to establish confidence in digital control systems with application to nuclear power plants (NPPs) is becoming increasingly common. In-the-loop simulation solutions; however, are often re-invented despite proven commercial platforms from dSPACE, National Instruments (NI) Veristand and Opal-RT. The capability of these custom in-the-loop simulation interface devices to provide accurate simulation results for verification and validation (V&V) purposes varies. Recently, a measurement of fidelity, namely transparency, for in-the-loop interfaces has been defined, calculated, and optimized for a simple HIL simulation platform. This paper introduces the study of in-the-loop interface fidelity to the nuclear industry whereby the fidelities of both a SWIL and HIL technique are measured. Further, an analysis of the measured fidelity and the accuracy of the respective simulations is performed. The two custom in-the-loop simulation platforms utilize Ethernet connectivity as is common practice within industry. As a benchmark, an actual single input single output (SISO) level control plant is utilized. Whereas, for in-the-loop simulations, a first principle model of the plant is executed within the MATLAB/Simulink simulation environment. The interface devices are composed of: for SWIL, object linking and embedding (OLE) for process control (OPC) communication which resides on top of dynamic data exchange (DDE) communications technology, and; for HIL, a National Instruments Virtual Instrument and Data Acquisition (DAQ) workstation, the User Datagram Protocol (UDP) and industrial 4-20 mA signals. An Invensys Tricon v9 programmable logic controller (PLC) with proportional integral (PI) controller is installed as SUT.
机译:使用软件在循环(SWIL)和硬件中(HIL)仿真中的使用,以建立数字控制系统的信心与核电厂(NPP)越来越普遍。在环路中的仿真解决方案;然而,尽管经过验证从DSPACE,国家仪器(NI)Veristand和Opal-Rt的商业平台,通常是重新发明的。这些自定义内仿真接口设备的能力为验证和验证(V&V)目的提供准确的仿真结果。最近,已经定义了对循环界面的保真度,即透明度的测量,并针对简单的HIL仿真平台进行了优化。本文介绍了对核工业环路界面保真度的研究,从而测量了SWIL和HIL技术的保真品。此外,执行测量保真度和各个模拟的准确性的分析。两个定制的环路仿真平台利用以太网连接和行业内的常见做法。作为基准测试,使用实际单输入单输出(SISO)电平控制设备。然而,对于环路仿真,植物的第一个原理模型在Matlab / Simulink仿真环境中执行。接口设备由以下组成:用于用于过程控制(OPC)通信的SWIL,对象链接和嵌入(OLE),其驻留在动态数据交换(DDE)通信技术之上,以及;对于HIL,国家仪器虚拟仪器和数据采集(DAQ)工作站,用户数据报协议(UDP)和工业4-20 mA信号。具有比例积分(PI)控制器的Invensys Tricon V9可编程逻辑控制器(PLC)作为SUT安装。

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