首页> 外文会议>IEEE Energy Conversion Congress and Exposition >Control Hardware-in-the-loop for Voltage Controlled Inverters with Unbalanced and Non-linear Loads in Stand-alone Photovoltaic (PV) Islanded Microgrids
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Control Hardware-in-the-loop for Voltage Controlled Inverters with Unbalanced and Non-linear Loads in Stand-alone Photovoltaic (PV) Islanded Microgrids

机译:独立光伏(PV)孤岛微电网中具有不平衡和非线性负载的压控逆变器的控制在环硬件

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Unbalanced and nonlinear loads connected to micro grids (MG) with local distributed energy resources (DERs) are two of the leading causes of power quality problems. Nonlinear loads introduce voltage and current harmonics, and single phase loads can cause voltage and current imbalances in a three phase network. This paper presents a hierarchical control scheme for voltage controlled photovoltaic (PV) inverters with unbalanced and nonlinear loads in micro-grids. The hierarchical control consists of primary control, voltage compensation control (VCC) and a DC voltage regulator (VR). The primary control scheme controls active and reactive power sharing and the VCC regulates the unbalanced voltage and harmonics distortion. The effectiveness of the scheme is verified using Opal-RT real-time simulation and experimentally using control hardware-in-the-loop. The voltage distortion at point of common coupling (PCC) decreased from 6.38 percent to 1.91 percent after compensation, while the unbalanced and harmonic load are shared proportionally among the DG units.
机译:连接到具有本地分布式能源(DER)的微电网(MG)的不平衡和非线性负载是导致电能质量问题的两个主要原因。非线性负载会引入电压和电流谐波,单相负载会导致三相网络中的电压和电流不平衡。本文提出了一种在微电网中具有不平衡和非线性负载的电压控制光伏(PV)逆变器的分层控制方案。分级控制由主控制,电压补偿控制(VCC)和直流稳压器(VR)组成。主控制方案控制有功和无功功率分配,VCC调节不平衡电压和谐波失真。该方案的有效性通过Opal-RT实时仿真以及实验性使用控制在环硬件进行了验证。补偿后,公共耦合点(PCC)的电压失真从6.38%降低到1.91%,而DG单元则按比例分配不平衡负载和谐波负载。

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