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A Single-Stage Three-Phase Grid-Connected Photovoltaic System With Modified MPPT Method and Reactive Power Compensation

机译:改进型MPPT方法和无功补偿的单阶段三相并网光伏发电系统

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摘要

Single-stage grid-connected photovoltaic (PV) systems have advantages such as simple topology, high efficiency, etc. However, since all the control objectives such as the maximum power point tracking (MPPT), synchronization with the utility voltage, and harmonics reduction for output current need to be considered simultaneously, the complexity of the control scheme is much increased. This paper presents the implementation of a single-stage three-phase grid-connected PV system. In addition to realize the aforementioned control objectives, the proposed control can also remarkably improve the stability of the MPPT method with a modified incremental conductance MPPT method. The reactive power compensation for local load is also realized, so as to alleviate grid burden. A DSP is employed to implement the proposed MPPT controller and reactive power compensation unit. Simulation and experimental results show the high stability and high efficiency of this single-stage three-phase grid-connected PV system.
机译:单级并网光伏(PV)系统具有诸如拓扑简单,效率高等优点。但是,由于所有控制目标(例如最大功率点跟踪(MPPT),与市电电压的同步以及谐波的减少)因为需要同时考虑输出电流,所以控制方案的复杂性大大增加了。本文介绍了单级三相并网光伏系统的实现。除了实现上述控制目标之外,所提出的控制还可以通过改进的增量电导MPPT方法显着提高MPPT方法的稳定性。还实现了局部负荷的无功补偿,减轻了电网负担。采用DSP来实现建议的MPPT控制器和无功补偿单元。仿真和实验结果表明,这种单级三相并网光伏系统具有很高的稳定性和效率。

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