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Design and operation of a multifunction photovoltaic power system with shunt active filtering using a single-stage three-phase multilevel inverter

机译:具有单级三相多电平逆变器并联有源滤波的多功能光伏发电系统的设计与运行

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摘要

In this paper, the control of a multifunction grid-connected photovoltaic (PV) system with a three-phase three-level (3L) neutral point clamped (NPC) inverter is proposed, which can perform shunt active filtering. Normally, the shunt active filtering is achieved by detecting the harmonic and reactive currents of the nonlinear load and then injecting the compensating current into the grid. Therefore, the proposed system can inject PV power to a grid with power factor correction and current harmonic filtering features simultaneously. In addition, a single-stage compact and efficient transformerless power conversion topology is used in this paper for the grid-connected solar PV system with maximum power point tracking capability. In order to control the multilevel inverter-based combined system, a synchronous reference frame control technique and hysteresis current control pulse width modulation method have been applied. The system configuration and control strategy are verified and validated by simulations based on MATLAB/Simulink and implemented in real-time using the dSPACE DS1103 controller board. The simulation with experimental results indicates that the injected currents are sinusoidal and current total harmonic distortion is about 3.9%, lower than the IEEE 519 harmonic limit.
机译:本文提出了一种具有三相三电平(3L)中性点钳位(NPC)逆变器的多功能并网光伏(PV)系统的控制,该系统可以执行并联有源滤波。通常,通过检测非线性负载的谐波和无功电流,然后将补偿电流注入电网,来实现并联有源滤波。因此,所提出的系统可以同时利用功率因数校正和电流谐波滤波功能将PV功率注入电网。此外,本文将单级紧凑高效的无变压器功率转换拓扑结构用于具有最大功率点跟踪能力的并网太阳能光伏系统。为了控制基于多电平逆变器的组合系统,已经采用了同步参考系控制技术和磁滞电流控制脉冲宽度调制方法。系统配置和控制策略已通过基于MATLAB / Simulink的仿真进行了验证和验证,并使用dSPACE DS1103控制器板进行了实时实施。实验结果表明,注入的电流为正弦波,电流总谐波失真约为3.9%,低于IEEE 519谐波限值。

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