A novel distributed approach based reactive power support in microgrids

Bharat Chetry, A. Carvalho, Rui Brito
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Abstract

Microgrid is one of the suitable answers to handle the challenge of electricity demand and supply imbalance by integrating Renewable Energy Sources (RES) to the main grid without redesigning the distribution system. However, increased penetration of RES in the conventional power system has led to new challenges as well, such as loss of inertia, low short circuit ratio, difficulty in reactive power support, the problem of storage in islanded condition, which need to be handled properly. Among other challenges, the reactive power sharing is one of the major problems in a Microgrid that leads to the voltage limit violation and increase in losses. This paper proposes a new methodology to control the reactive power through the distributed approach by measuring locally the change in the Thevenin equivalent impedance across the terminals of Voltage Source Converter (VSC) due to the change in the load. A vector control in dq frame of reference by decoupling the active and reactive power is implemented by fixing the active power support from the VSC. The reactive power demand is computed based on the impedance seen by the controller at the Point of Common Coupling (PCC). This distributed approach has been implemented in a power system with Microgrid using PSIM simulation platform.
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一种基于微电网无功支持的分布式方法
微电网是在不重新设计配电系统的情况下,将可再生能源纳入主网,解决电力供需失衡问题的理想解决方案之一。然而,可再生能源在传统电力系统中的普及也带来了新的挑战,如惯性损失、短路比低、无功支持困难、孤岛状态下的存储问题等,需要妥善处理。其中,无功共享是微电网的主要问题之一,它会导致电压极限的突破和损耗的增加。本文提出了一种通过局部测量电压源变换器(VSC)两端的Thevenin等效阻抗随负载变化而变化的分布式控制无功功率的方法。通过固定VSC的有功功率支持,实现了dq参照系有功功率和无功功率解耦的矢量控制。无功功率需求是根据控制器在共耦合点(PCC)处看到的阻抗计算的。利用PSIM仿真平台,在一个微电网电力系统中实现了这种分布式方法。
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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