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A power hardware-in-loop based testing bed for auxiliary active power control of wind power plants

机译:基于功率硬件在环的测试台,用于风力发电厂的辅助有功功率控制

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Auxiliary active power control (AAPC) of wind power plants (WPP) has been an emerging subject of modern power systems. However, there is currently lack of appropriate platform to test AAPC performances of an actual WPP. Under the background, this paper presents a testing bed for AAPC in both frequency regulation and damping control of WPP. The main novelty is that the platform is designed based on power hardware-in-loop (PHIL) technologies. PHIL technologies enable a physical WPP to integrate to a virtual real-time power system, which is simulated with StarSim software. The technologies combine the advantages of software and hardware simulations. Based on the testing bed, this paper compares the frequency regulation and damping control performances of an aggregated wind farm integrated to an isolated system. The PHIL simulation results demonstrate the strength of the platform, which extends the flexibility of system configurations of software simulation to an actual physical WPP experiment. (C) 2015 Elsevier B.V. All rights reserved.
机译:风力发电厂(WPP)的辅助有功功率控制(AAPC)已成为现代电力系统的新兴主题。但是,目前缺乏适当的平台来测试实际WPP的AAPC性能。在此背景下,本文介绍了AAPC在WPP的频率调节和阻尼控制方面的测试平台。主要的新颖之处在于该平台是基于电源硬件在环(PHIL)技术设计的。 PHIL技术使物理WPP可以集成到由StarSim软件模拟的虚拟实时电源系统。这些技术结合了软件和硬件仿真的优势。本文基于试验台,比较了集成到隔离系统中的风电场的频率调节和阻尼控制性能。 PHIL仿真结果证明了平台的优势,将软件仿真的系统配置的灵活性扩展到了实际的物理WPP实验。 (C)2015 Elsevier B.V.保留所有权利。

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