Real-Time Simulation and Hardware-in-the-Loop Testbed for Distribution Synchrophasor Applications

Real-Time Simulation and Hardware-in-the-Loop Testbed for Distribution Synchrophasor Applications
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适用于分布同步相量应用的实时仿真和硬件在环测试台

DOI:
10.3390/en11040876
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发表时间:
2018
期刊:
影响因子:
3.2
通讯作者:
R. Arghandeh
R. Arghandeh
中科院分区:
工程技术4区
文献类型:
--
作者:
M. Stifter;Jose Cordova;J. Kazmi;R. Arghandeh

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随着配电相量测量单元 (D-PMU) 和微同步相量 (Micro-PMU) 的出现,配电系统中的态势感知将利用时间同步提升到新的水平。然而,设计、分析和测试这种精确测量装置仍然具有挑战性。由于缺乏同步相量在配电级应用的可用知识和足够的历史记录,因此真实的仿真和验证环境对于 D-PMU 的开发和部署至关重要。本文提出了一个与供应商无关的 PMU 实时仿真和硬件在环 (PMU-RTS-HIL) 测试台,有助于多个 PMU 的验证和研究。真实和虚拟 PMU 网络建立在完全时间同步的环境中,用于 PMU 应用程序的验证。拟议的测试床还包括一个模拟通信网络 (CNS) 层,用于复制 PMU 数据流问题固有的带宽、数据包丢失和冲突条件。实验结果通过在典型的正常和异常配电网运行条件下产生大量测量结果证明了所开发的 PMU-RTS-HIL 测试平台的灵活性和可扩展性。
With the advent of Distribution Phasor Measurement Units (D-PMUs) and Micro-Synchrophasors (Micro-PMUs), the situational awareness in power distribution systems is going to the next level using time-synchronization. However, designing, analyzing, and testing of such accurate measurement devices are still challenging. Due to the lack of available knowledge and sufficient history for synchrophasors’ applications at the power distribution level, the realistic simulation, and validation environments are essential for D-PMU development and deployment. This paper presents a vendor agnostic PMU real-time simulation and hardware-in-the-Loop (PMU-RTS-HIL) testbed, which helps in multiple PMUs validation and studies. The network of real and virtual PMUs was built in a full time-synchronized environment for PMU applications’ validation. The proposed testbed also includes an emulated communication network (CNS) layer to replicate bandwidth, packet loss and collisions conditions inherent to the PMUs data streams’ issues. Experimental results demonstrate the flexibility and scalability of the developed PMU-RTS-HIL testbed by producing large amounts of measurements under typical normal and abnormal distribution grid operation conditions.
用于电力系统事件分类的基于形状的数据分析
DOI: 10.1109/ptc.2017.7980950
发表时间: 2017
期刊: 2017 IEEE Manchester PowerTech
影响因子: --
作者:
Cordova, Jose;Arghandeh, Reza;Zhou, Yuxun;Wesolowski, Sergiusz;Wu, Wei;Matthias, Stifter
通讯作者: Matthias, Stifter