Optimal Reactive Power or VAR Flow from Distributed Smart PV Inverters

A. M. Howlader, Md. Anwar Hossain, A. Saber, T. Senjyu
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引用次数: 1

Abstract

Nowadays, smart photovoltaic (PV) inverters can perform advanced functionalities e.g., volt-var, volt-watt, frequency-watt, power curtailment controls which can support the voltage and frequency adjustment for an electric power grid. In order to maintain the voltage within the allowable region, the voltage regulator, FACTS devices, capacitor is used to provide reactive power or Var to the power grid. Smart PV inverters can provide the reactive power or Var to control voltage for a power grid using volt-var control command. The control signal of smart PV inverters may send over the cloud to generate Var requirement, but it needs to send a large number of control signals to several inverters at a time. It increases network congestion, and probability for missing commands. Therefore, an optimal switching command signal is important that will reduce total number of switching for inverters, the network congestion, and total control commands to inject Var for a distribution power network. This paper proposed an optimal reactive power or Var flow strategy from a bunch of smart PV inverters. The proposed method reduces the total numbers of switching commands for smart PV inverters, and consequently decreases the control commands, network congestion, and missing commands.
分布式智能光伏逆变器的最优无功或无功流
如今,智能光伏(PV)逆变器可以执行先进的功能,如伏特-无功、伏特-瓦特、频率-瓦特、限电控制,可以支持电网的电压和频率调节。为了将电压保持在允许范围内,采用稳压器、FACTS装置、电容器向电网提供无功或无功功率。智能光伏逆变器可以通过电压- Var控制命令提供无功功率或Var来控制电网的电压。智能光伏逆变器的控制信号可以通过云发送来产生Var需求,但需要同时向多个逆变器发送大量的控制信号。它增加了网络拥塞和丢失命令的概率。因此,一个最优的开关命令信号是非常重要的,它将减少逆变器的总开关次数,减少网络拥塞,以及为配电网注入Var的总控制命令。本文提出了一种基于智能光伏逆变器的最优无功或无功潮流策略。该方法减少了智能光伏逆变器的切换命令总数,从而减少了控制命令、网络拥塞和丢失命令。
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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