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Enhanced IAF-PNLMS Based Control Algorithm for Power Quality Improvement in Weak Grid Interfaced Solar PV System

机译:基于IAF-PNLMS基于IAF-PNLMS的弱电网接口太阳能光伏系统电力质量改进控制算法

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This paper deals with the power quality improvement of a double stage solar PV (Photovoltaic) energy conversion system through an EIAF-PNLMS (Enhanced Individual Activation Factor Proportionate Normalized Least Mean Square) based control algorithm. This EIAF-PNLMS based algorithm uses the benefit of this scheme, which is used to improve the filter coefficient. Therefore, the dynamic and steady state oscillations from the load fundamental current component is eliminated. The control algorithm gives the fast convergence, good frequency response, harmonics mitigation, and noise cancellation. The UDDBC (Unidirectional DC-DC Boost Converter) is the bridge between the solar PV array and DC-link of the VSC (Voltage Source Converter). This UDDBC is to extract the peak power from the solar PV array and this UDDBC switching pattern is governed by adaptive P&O (Perturb and Observed) based MPPT (Maximum Power Point Tracking). This adaptive P&O based MPPT algorithm has good tracking capability and it has high immunity from the rapidly solar irradiance perturbation. Here, FOIQGI (Fourth Order Improved Quadrature Generalized Integrator) based voltage filter, is used to mitigate the grid voltage distortions. Test results of the proposed solar interfaced grid system demonstrates satisfactory operation and effectiveness of control algorithm.
机译:本文通过EIAF-PNLMS(增强的单独激活因子比例标准化最小均线)的控制算法,涉及双级太阳能光伏(光伏)能量转换系统的电能质量改进。基于EIAF-PNLMS的算法使用该方案的益处,该方案用于提高滤波器系数。因此,消除了来自负载基本电流分量的动态和稳态振荡。控制算法提供了快速收敛,良好的频率响应,谐波缓解和噪声消除。 UDDBC(单向DC-DC升压转换器)是VSC(电压源转换器)的太阳能光伏阵列和DC链路之间的桥。该UDDBC是从太阳能光伏阵列中提取峰值功率,并且该UDDBC切换模式由基于自适应P&O(Perturb和观察)的MPPT(最大功率点跟踪)控制。基于自适应P&O的MPPT算法具有良好的跟踪能力,并且从快速太阳辐照度扰动具有高免疫力。这里,FOIQGI(四排序改进的正交广义积分器)基于电压滤波器,用于减轻电网电压失真。所提出的太阳能界面电网系统的测试结果表明了控制算法的令人满意的运行和有效性。

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