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Improved PLL Tuning of Shunt Active Power Filter for Grid Connected Photo Voltaic Energy System

机译:光伏并网发电系统并联有源滤波器的PLL调整

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This research work brings out the unique predictive current control method for attaining an efficient grid connected Photo Voltaic (PV) system by Shunt Active Power Filter (SAPF) as grid connected converter. The major objective of the research work is to address the presence of Direct Current (DC) component, frequency improvement, quicker theta response, voltage magnitude estimation in the input signal of the Phase Locked Loop (PLL) which is challenging. This work focuses on tuning the PLL block (Kp,?Ki,?Kv?and Ko)?through Artificial Bee Colony (ABC) optimization algorithm. The proposed ABC based modified three-phase PLL method is based on adding a new loop inside the PLL structure. In power converters, ABC algorithm is used to select the optimal switching states. The voltage vector which minimizes a cost optimization function is selected. Simulation is carried out for both balanced and unbalanced system and the results validate that the performance of the proposed approach is better in terms of harmonic compensation as per the IEEE standards within ±5%, power factor improvement of the system, quicker theta tracking and suppression of frequency jump with the interconnection of PV system.
机译:这项研究工作提出了独特的预测电流控制方法,该方法可通过并联有源电力滤波器(SAPF)作为并网转换器来实现高效的并网光伏(PV)系统。研究工作的主要目的是解决锁相环(PLL)输入信号中直流(DC)分量的存在,频率改善,更快的theta响应,电压幅度估计的挑战。这项工作着重于通过人工蜂群(ABC)优化算法调整PLL块(Kp,?Ki,?Kv?和Ko)。所提出的基于ABC的改进的三相PLL方法是基于在PLL结构内部添加新环路的基础。在电源转换器中,ABC算法用于选择最佳开关状态。选择最小化成本优化功能的电压矢量。对平衡和不平衡系统都进行了仿真,结果验证了所提出方法的性能在按照IEEE标准的谐波补偿(±5%之内),系统的功率因数改进,更快的theta跟踪和抑制方面表现得更好。光伏系统互连带来的跳频变化

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