Modeling of Phasor Measurement Unit for Wide Area Monitoring and control of Smart Grids with Distributed Energy Resources

L. Ashok Kumar, S. Karthikeyan
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引用次数: 7

Abstract

In this paper, the modeling of a Phasor Measurement based Wide Area Monitoring and Control System was developed and presented. The proposed system emphasizes the need for monitoring and control of transmission lines connected to Distributed Energy Resources. In this work, the modeling for a complete scenario of a Discrete Fourier Transform based Synchronized Phasor Measurement Unit is presented. The performance of the developed Phasor Measurement Unit was evaluated by computing Total Vector Error and validated in accordance with IEEE C37.118.1 standard for synchrophasor measurements. The proposed system was simulated using MATLAB/Simulink environment and it is tested under two possible cases; normal operation and fault state. It was verified that the power system status can be easily monitored and controlled in real time by using the measured bus data. This improves the overall system reliability and avoids cascaded blackout during fault occurrence. For smart grid applications the simulation results confirm the validity of the proposed Phasor Measurement based Wide Area Monitoring System.
分布式能源智能电网广域监控相量测量单元建模
本文提出了一种基于相量测量的广域监控系统的建模方法。该系统强调了对连接分布式能源的输电线路进行监测和控制的必要性。在这项工作中,建模为一个完整的场景的离散傅立叶变换为基础的同步相量测量单元提出。根据IEEE C37.118.1同步相量测量标准,通过计算总矢量误差对所开发的相量测量单元的性能进行了评价。在MATLAB/Simulink环境下对所提出的系统进行了仿真,并在两种可能的情况下进行了测试;正常运行状态和故障状态。实验证明,利用实测母线数据可以方便地对电力系统状态进行实时监测和控制。提高了系统的整体可靠性,避免了故障发生时的级联停电。在智能电网应用中,仿真结果验证了基于相量测量的广域监测系统的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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