分析电力系统和部件基于cil测试的标准化需求

G. Lauss, F. Andrén, F. Leimgruber, T. Strasser
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引用次数: 5

摘要

电网和并网发电机组的实时仿真研究方法日益成为当前研究领域的热点。虽然实验室测试方法是过去验证并网发电机组安全和质量相关特征的主要方法,但最近潮流建模验证方法已集成到最先进的标准化框架中。下一步是将实时仿真方法应用于配电网中集成的整个电力电子系统的符合性测试。控制器硬件在环(CHIL)方法是一种适当的方法,将数值模拟与软件建模方法和实验室中的经典硬件测试相结合。控制板是直接连接到电力电子外围的硬件设备,在实时仿真环境中对其进行全面仿真。从而实现电压、电流测量输入信号与电力系统控制输出信号的实时交换。通过这种设置,可以精确地模拟电网中整个发电机组的真实行为。应用CHIL技术可以缩短产品上市时间,降低产品开发阶段的风险。然而,从已实现的CHIL实验分析表明,需要更统一的程序。本文讨论了这一问题,并展望了未来CHIL标准化的必要需求。
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Analyzing standardization needs for CHIL-based testing of power systems and components
Real-time simulation methods for investigations on electric networks and integration of grid connected generation units are increasingly in the focus of ongoing research areas. While laboratory testing methods are the predominant method for the verification of safety and quality related features of grid-connected generation units in the past, load flow modeling verification methods have been integrated in state-of-the-art standardization frameworks recently. The next step is comprised in real-time simulation methodologies applied for compliance testing of entire power electronic systems integrated in power distribution networks. The Controller Hardware-in-the-Loop (CHIL) approach is an appropriate methodology that combines numerical simulations with software modeling approaches and classical hardware testing in labs. Control boards represent the hardware device directly connected to the power electronic periphery, which is entirely simulated in a real-time simulation environment. Hereby, input signals from voltage and current measurements and output signals for power system control are exchanged in real-time. Thanks to this setup the testing of the true behavior of entire generation units within the electric network can be emulated precisely. With the application of CHIL a shorter time to market and a lower risk in the development phase can be achieved. However, an analysis from realized CHIL experiments shows the need for more harmonized procedures. This paper addresses this topic and provides an outlook about necessary future CHIL standardization needs.
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