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Improved Control for Three Phase dual-Stage Grid-Connected PV Systems Based on Predictive Control Strategy

机译:基于预测控制策略的三相双阶段并网光伏系统的改进控制

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This paper focuses on the control of three phase dual-stage grid connected photovoltaic (PV) system. The control objective is to extract the maximum power delivered by PV array under irradiation variations and to inject it into the network, as well as, the reactive power requested by grid operator while providing high grid currents quality. A fast and accurate control method based on variable step size incremental conductance and predictive current control is proposed and applied to the first stage (DC-DC Boost converter) in order to achieve a fast maximum power point tracking MPPT with less oscillations. Furthermore, a voltage oriented control based on both predictive control strategy and space vector modulation SVM (PS-VOC) is applied to the second stage (Two-level inverter) in order to control the d-q axis grid currents. The proposed system is simulated using Matlab/Simulink and simpower system packages. As results, the proposed MPPT provides a fast and accurate tracking with significant oscillation reduction around the MPP in comparison with conventional methods under irradiation changes. Besides, the injection of the extracted PV power and reactive power requested by the grid operator is provided with high current quality due to the capability of the proposed PS-VOC control method.
机译:本文着重于三相双阶段光伏并网发电系统的控制。控制目标是提取光伏阵列在辐照变化下传递的最大功率,并将其注入电网,以及电网运营商要求的无功功率,同时提供较高的电网电流质量。提出了一种基于可变步长增量电导和预测电流控制的快速准确的控制方法,并将其应用于第一阶段(DC-DC Boost转换器),以实现具有更少振荡的快速最大功率点跟踪MPPT。此外,将基于预测控制策略和空间矢量调制SVM(PS-VOC)的面向电压的控制应用于第二级(两级逆变器),以控制d-q轴电网电流。使用Matlab / Simulink和simpower系统软件包对提出的系统进行了仿真。结果,与常规方法相比,在辐照变化下,所提出的MPPT提供了快速准确的跟踪,并且MPP周围的振荡明显减少。此外,由于所提出的PS-VOC控制方法的能力,向电网运营商请求的提取的PV功率和无功功率的注入提供了高电流质量。

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