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Predictive current control in multifunctional grid connected inverter interfaced by PV system

机译:光伏系统接口的多功能并网逆变器的预测电流控制

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This study deals with a three-phase double-stage multifunctional grid-connected inverter interfaced with a photovoltaic system. The studied system consists of a photovoltaic array, a dc-dc boost converter and a three-phase voltage source inverter connected to the utility at the point of common coupling. To ensure the multifunctional feature, we propose a predictive current control which uses a discrete-time model of the system to predict the future value of the filter current for different voltage vectors. Selection of the optimal voltage vector aims to minimize the error between reference and predicted current by using a cost function. Then, perturb and observe Maximum Power Point Tracking is applied to the dc-dc boost converter to extract maximum power from the photovoltaic array. The main benefits of the proposed system are: harmonic and reactive currentelimination, reactive power compensation and feeding photovoltaic power into the utility. The proposed control algorithm is performed on a Matlab environment, simulation and experimental results confirm the effectiveness of the proposed control method in term of total harmonic distortion and power factor correction. The performance of the proposed control has been compared with hysteresis and direct power control strategies. Dynamic state results show that the proposed method provides a better performance and more stability under fast environmental conditions changing than hysteresis current control. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究涉及与光伏系统接口的三相双级多功能并网逆变器。所研究的系统包括一个光伏阵列,一个DC-DC升压转换器和一个在公用耦合点连接到公用事业的三相电压源逆变器。为了确保多功能性,我们提出了一种预测电流控制,该控制使用系统的离散时间模型来预测不同电压矢量的滤波器电流的未来值。最佳电压矢量的选择旨在通过使用成本函数来最大程度地减小参考电流和预测电流之间的误差。然后,扰动并观察将最大功率点跟踪应用于dc-dc升压转换器,以从光伏阵列中提取最大功率。拟议系统的主要优点是:消除谐波和无功电流,无功补偿以及将光伏电馈入公用事业。所提出的控制算法是在Matlab环境下执行的,仿真和实验结果证实了所提出的控制方法在总谐波失真和功率因数校正方面的有效性。所提出的控制性能已与磁滞和直接功率控制策略进行了比较。动态状态结果表明,与磁滞电流控制相比,该方法在快速变化的环境条件下具有更好的性能和更高的稳定性。 (C)2016 Elsevier Ltd.保留所有权利。

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