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A Novel Phase Locked Loop based Control Strategy for a Three-phase Grid-tied Solar PV System

机译:三相网格封闭太阳能光伏系统的基于阶段锁相环的基于阶段锁相环的控制策略

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This paper presents a novel control strategy for a three-phase grid-tied solar photovoltaic (PV) system and the proposed control strategy employs sliding discrete Fourier transform (SDFT) based Phase Locked Loop (PLL) for the extraction of the fundamental grid frequency component to generate accurate reference grid currents. The accurate and precise detection of phase angle and grid frequency defines the effectiveness of the proposed controller. The outer DC voltage control loop can effectively reduce the peak overshoot in DC-link voltage during transients. Multifunctional operation of the grid-connected VSI improves several power quality (PQ) issues and retains the power injection to ensure the consumer requirement. Finally, the performance of the proposed controller is validated by MATLAB®/Simulink and followed by dSPACE-1104 based hardware-in-loop (HIL) simulation results.
机译:本文提出了一种用于三相电网连接太阳能光伏(PV)系统的新型控制策略,所提出的控制策略采用滑动离散的傅立叶变换(SDFT)的锁相环(PLL),用于提取基底网格频率分量 生成准确的参考网格电流。 相位角和电网频率的精确和精确检测定义了所提出的控制器的有效性。 外部直流电压控制回路可以在瞬态期间有效地降低DC-Link电压中的峰值过冲。 网格连接的VSI的多功能操作提高了多种电力质量(PQ)问题并保留了电力注入以确保消费者要求。 最后,Matlab验证了所提出的控制器的性能 ® / Simulink并跟随基于DSPace-1104的硬件循环(HIL)仿真结果。

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