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Methodology for testing loss of mains detection algorithms for microgrids and distributed generation using real-time power hardware-in-the-loop based technique

机译:基于基于实时功耗硬件的技术的微电网和分布式发电的电源检测算法丢失的方法

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The effective integration of distributed energy resources in distribution networks demands powerful simulation and test methods in order to determine both system and component behaviour, and understand their interaction. Unexpected disconnection of a significant volume of distributed generation (DG) could have potentially serious consequences for the wider power system, and this means DG sources can no longer be treated as purely negative load. This paper proposes a method of testing loss-of-mains (LOM) detection and protection schemes for distributed energy resources (DER) using realtime power hardware-in-the-loop (RT PHIL). The approach involves connecting the generator and interface under test (e.g. motor-generator set or inverter, controlled by an RTS — Real Time Station) to a real-time simulator (in this case an RTDS — Real Time Digital Simulator) which simulates the local loads and upstream power system. This arrangement allows observation of the interaction with other controls in the network beyond the local microgrid area. These LOM detection schemes are of increasing importance because with growing penetration levels of distributed generation the network operator has less visibility and control of the connected generation. Furthermore when the generation and load in a particular network area are closely matched (e.g. a grid-connected microgrid), it becomes increasingly difficult to detect a loss of grid supply at the generator. This work builds upon the existing LOM testing methodology developed previously for the Energy Networks Association in the United Kingdom. By utilising RT PHIL and a laboratory microgrid, the testing environment has been brought to a new level of functionality where system integrity can be more rigorously and realistically evaluated.
机译:分布式网络中分布式能源资源的有效集成需要强大的仿真和测试方法,以确定系统和组件行为,并了解它们的交互。意外断开大量分布式发电(DG)可能对更广泛的电力系统具有可能的严重后果,这意味着DG源不能再被视为纯负载。本文提出了一种使用实时功耗硬件(RT PHIL)的分布式能源(DER)测试电源损失(LOM)检测和保护方案的方法。该方法涉及将经过测试的发电机和接口连接到实时模拟器(在这种情况下,使用RTS - 实时站控制的电动发电机组或逆变器),该模拟器模拟本地的RTDS - 实时数字模拟器)负载和上游电源系统。这种布置允许观察与网络中的网络中的其他控件相互作用,超出本地微电网区域。这些LOM检测方案的重要性越来越重要,因为随着分布生成的增长渗透水平,网络运营商的可见性和控制所连接的产生较少。此外,当特定网络区域中的生成和负载紧密匹配时(例如,连接的微电网),在发电机处越来越难以检测电网供应的损失变得越来越困难。这项工作基于先前为英国能源网络协会开发的现有LOM测试方法。通过利用RT Phil和实验室微电网,已经进入了测试环境的新功能,系统完整性可以更加严格和实际评估。

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