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Application of a MW-scale motor-generator set to establish power-hardware-in-the-loop capability

机译:应用兆瓦级电动发电机组建立功率硬件在环能力

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摘要

This paper presents a Power-Hardware-in-the-Loop (P-HiL) testbed coupled to a MW-scale Motor-Generator (MG) set. The P-HiL configuration interfaces an 11 kV physical distribution network with a transmission network modeled in a Real Time Digital Simulator (RTDS) through the MG set. Uniquely, and in contrast with other P-HiL arrangements, the MG set used is equipped with a proprietary frequency controller with an inherent response that does not provide the desired characteristics to cater for a P-HiL interface. The paper describes a methodology to tackle this problem associated with undesirable response of the MG set’s existing controller by introducing additional frequency and phase control loops. Experimental results are presented and show that the P-HiL testbed is capable of maintaining a high level of synchronization during disturbances and allows the power interaction between the model and physical network. The testbed offers a realistic and flexible testing environment for prototype systems connected to distribution networks with a specific focus on testing systems that control demand side resources for frequency response during loss of generation events.
机译:本文介绍了一种与硬件规模的电动发电机(MG)装置耦合的动力硬件在环(P-HiL)测试平台。 P-HiL配置通过MG集将11 kV物理配电网络与以实时数字模拟器(RTDS)建模的传输网络连接。与其他P-HiL布置不同的是,所使用的MG套件配备了专有的频率控制器,其固有响应无法提供满足P-HiL接口所需的特性。本文介绍了一种方法,通过引入额外的频率和相位控制回路来解决与MG设备现有控制器的不良响应相关的问题。实验结果表明,P-HiL测试台能够在干扰期间保持较高的同步水平,并允许模型与物理网络之间进行电源交互。该测试平台为连接到配电网络的原型系统提供了一个现实而灵活的测试环境,尤其侧重于测试系统,这些系统控制需求方资源,以防止发生发电事件时的频率响应。

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