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Robust Frequency Cascaded Adaptive Complex Filter Control for Grid Interactive PV System

机译:电网交互式PV系统的鲁棒频率级联自适应复滤波器控制

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This article deals with a robust frequency cascaded adaptive complex filter (ACF) control for the grid interactive photovoltaic (PV) system. The incorporated control algorithm rejects lower order harmonics too unlike the conventional quadrature signal generators; thus, this control algorithm extracts accurate fundamental frequency orthogonal components of load current. The voltage source converter (VSC) acts as a distribution static compensator (DSTATCOM) when generation from the PV array is unavailable, besides injecting active power in the distribution network, and reducing reactive power loading on the utility network by mitigating harmonics in presence of generation from the PV array. Thus, the VSC utility is enhanced. This PV system performance is robust against the weak utility grid parameter variation and at load perturbation. The presented algorithm improves transient response at dynamic loading and irradiance change. The harmonic contents in distribution network voltage and utility current are reduced within the IEEE-519 standard.
机译:本文对电网交互式光伏(PV)系统的强大频率级联自适应复滤波器(ACF)控制。与传统的正交信号发生器不同,该控件算法也拒绝较低的谐波;因此,该控制算法提取了载荷电流的精确基频正交分量。除了在分配网络中注入电源的产生时,电压源转换器(VSC)作为分布静态补偿器(DSTATCOM)是不可用的,并且在发电的情况下通过减轻谐波减少了公用设施的无功电荷从PV阵列。因此,增强了VSC实用程序。该PV系统性能对弱实用网格参数变化和负载扰动牢固。呈现的算法在动态加载和辐照度变化时提高了瞬态响应。在IEEE-519标准中减少了分配网络电压和公用电流的谐波内容。

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