An Efficient Tool for Mitigating Voltage Unbalance with Reactive Power Control of Distributed Grid-Connected Photovoltaic Systems

Malinwo Estone Ayikpa
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Abstract

With the rapid increase of grid-connected PV systems over the last decades, genuine challenges have arisen for engineers and professionals of energy field in the planning and operation of existing distribution networks with the integration of new generation sources. However, the conventional distribution network, in its design was not expected to receive other generation outside the main power supply. The tools generally used to analyze the networks become inefficient and cannot take into account all the constraints related to the operation of grid-connected PV systems. Some of these constraints are voltage control difficulty, reverse power flow, and especially voltage unbalance which could be due to the poor distribution of single-phase PV systems in the network. In order to analyze the impact of the connection of small and large number of PV systems to the distribution networks, this paper presents an efficient optimization tool that minimizes voltage unbalance in three-phase distribution networks with active and reactive power injections from the allocation of single-phase and three-phase PV plants. Reactive power can be generated or absorbed using the available capacity and the adjustable power factor of the inverter. Good reduction of voltage unbalance can be achieved by reactive power control of the PV systems. The presented tool is based on the three-phase current injection method and the PV systems are modeled via an equivalent circuit. The primal-dual interior point method is used to obtain the optimal operating points for the systems.
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分布式光伏并网系统无功控制缓解电压不平衡的有效手段
在过去的几十年里,随着并网光伏系统的快速增长,工程师和能源领域的专业人士在规划和运行现有的配电网与新一代能源的整合方面遇到了真正的挑战。然而,传统的配电网,在其设计中并没有期望接收主电源以外的其他发电。通常用于分析电网的工具变得低效,并且不能考虑到与并网光伏系统运行相关的所有约束。其中一些限制是电压控制困难,反向潮流,特别是电压不平衡,这可能是由于单相光伏系统在网络中的分布不良。为了分析小型和大量光伏系统接入配电网的影响,本文提出了一种有效的优化工具,可以最大限度地减少单相和三相光伏电站分配的有功和无功注入对三相配电网的电压不平衡。利用逆变器的可用容量和可调功率因数,可以产生或吸收无功功率。通过对光伏系统进行无功控制,可以很好地降低电压不平衡。该工具基于三相电流注入法,并通过等效电路对光伏系统进行建模。采用原对偶内点法求解系统的最优工作点。
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