混合实时电力系统模拟器在保护控制设备设置及闭环测试中的应用

A. Prokhorov, Y. Borovikov, M. Andreev
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引用次数: 7

摘要

本文介绍了一种用于保护、自动化和控制设备(PACE)建立和综合闭环测试的新工具。本文还描述了该工具在智能电网(SG)设计过程中的作用。只有使用实时软件和硬件模拟器,才能在考虑被测设备与其他自动化之间可能的相互作用的情况下,对电力系统(PS)各种制度中的PACE进行全面的闭环测试。但数字仿真是基于数值积分的方法,对PS数学模型的微分阶数和刚度都有一定的限制,且微分方程积分的每一步都会产生累积误差,无法消除。因此,模拟时间是非常有限的,而且模拟本身永远不可能是连续的。使用混合仿真概念提供了新的功能,该概念没有提到的限制。混合仿真的概念是在托木斯克理工大学提出的,并成为构建混合实时电力系统模拟器(HRTSim)的基础。HRTSim是一个多用途的工具,适用于各种电力工程任务,其中包括PACE设置和测试。本文介绍了HRTSim在秋明PS中的实际应用结果。HRTSim在那里用于测试和建立苏尔古特热电联产电厂发电机组的瞬时和持续快速涡轮阀控(FTVC)系统。
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Application of hybrid real-time power system simulator for setting up and close loop testing of protection and control equipment
This paper presents new tool for setting up and comprehensive close loop testing of protection, automation and control equipment (PACE). The role of this tool for Smart Grid (SG) design process is also described. Comprehensive close loop tests of PACE in power system (PS) various regimes with consideration of possible interactions between tested equipment and other automation are possible only with the use of real-time software and hardware simulators. But digital simulators are based on numerical methods of integration and therefore impose constraints on differential order and stiffness of a mathematical model of PS. Besides, each step of differential equation integration causes the error which is accumulated and cannot be eliminated. Because of this a simulation time is very restricted and simulation itself can never be continuous. New capabilities are provided with the use of a hybrid simulation concept which has no mentioned limitations. The concept of hybrid simulation was created at Tomsk Polytechnic University and became a base for construction of Hybrid Real-Time Power System Simulator (HRTSim). HRTSim is a multipurpose tool suitable for various power engineering tasks, among which are PACE setting up and testing. Practical results of HRTSim application in the Tyumen PS are presented in this paper. HRTSim was used there for testing and setting up of momentary and sustained fast turbine valving control (FTVC) systems of the generating unit of the Surgut co-generation power plant.
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