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Resonant based control algorithm for grid supportive solar PV power generating system

机译:基于谐振的电网支持太阳能光伏发电系统控制算法

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This study deals with the two stage solar photovoltaic (SPV) system employing resonant based control algorithm. This system not only feeds the power to the distribution network, moreover it also includes the features of load balancing, harmonics reduction and power factor correction. In first stage of the SPV system, a DC-DC boost converter is used. The duty ratio of the DC-DC boost converter is adjusted in such away so that system could track the maximum power. The maximum power is extracted from the SPV generator by utilizing an INC based MPPT (Maximum Power Point Tracking) control algorithm. In second stage, resonant control technique is utilized to estimate the fundamental active and reactive power components of the load currents. These are utilized to extract the peak value of reference grid currents. Simulation results are demonstrated to validate the control of SPV system.
机译:本研究涉及采用基于谐振的控制算法的两个阶段太阳能光伏(SPV)系统。该系统不仅向配电网络提供电源,而且还包括负载平衡,谐波减小和功率因数校正的功能。在SPV系统的第一阶段,使用DC-DC升压转换器。 DC-DC Boost转换器的占空比在如此之外调整,以便系统可以跟踪最大功率。通过利用基于INC的MPPT(最大功率点跟踪)控制算法,从SPV发生器提取最大功率。在第二阶段,利用谐振控制技术来估计负载电流的基本主动和无功功率分量。这些用于提取参考网格电流的峰值。仿真结果被证明是为了验证SPV系统的控制。

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