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Unbiased Circular Leakage Centered Adaptive Filtering Control For Power Quality Improvement of Wind–Solar PV Energy Conversion System

机译:无偏见的圆形泄漏居中式自适应滤波控制,用于风光太阳能光伏能量转换系统的电能质量改进

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摘要

The hybrid renewable energy conversion systems and their increased penetration into the utility grid are intensifying the power quality (PQ) issues especially in the form of increased total harmonic distortion of voltages and currents at point of common coupling. The objective of the proposed grid-tied wind-solar photovoltaic (PV) energy conversion system is to analyze PQ issues and to mitigate them by utilizing the unbiased circular leakage centered (UCLC) adaptive filtering control. An implementation of UCLC adaptive control improves the PQ indices and system performance by overcoming the intermittency issues associated with solar and wind energies. UCLC adaptive control effectively extracts the fundamental load current component and mitigates the grid current harmonics. It has simple structure, enhanced convergence rate, and better performance with noise corrupted input and output signals. It effectively resolves the weight drift problem depicted by the conventional least mean square (LMS) control and leaky LMS control algorithm by avoiding biased estimates. The averaging theory and the deterministic stability analysis provide the relying facts of the performance of UCLC adaptive control. The extraction of maximum power from solar PV array energy and wind generation is carried out by perturb and observe scheme. A prototype is made in the laboratory and verified for environmental variations of solar insolation level, wind speed, and perturbing load demand. The PQ issues are effectively alleviated. Test results confirm the effective performance of the proposed system.
机译:混合可再生能源转换系统及其增加的渗透到公用事业网格中正在强化电力质量(PQ)问题,特别是在共同耦合点的电压和电流的总谐波变形的形式中。所提出的电网绑风 - 太阳能光伏(PV)能量转换系统的目的是分析PQ问题并通过利用所无偏的圆形泄漏中心(UCLC)自适应滤波控制来减轻它们。通过克服与太阳能和风能相关的间歇性问题,UCLC自适应控制的实施提高了PQ指数和系统性能。 UCLC自适应控制有效提取基本负载电流分量并减轻电网电流谐波。它具有简单的结构,增强的收敛速度,以及噪声损坏的输入和输出信号的性能更好。它通过避免偏置估计有效地解析了传统最小均方(LMS)控制和泄漏LMS控制算法所描绘的重量漂移问题。平均理论和确定性稳定性分析提供了UCLC自适应控制性能的依赖事实。通过扰动和观察方案来进行来自太阳能光伏阵列能量和风发电的最大功率的提取。在实验室中制作了原型,并验证了太阳能缺失水平,风速和扰动负荷需求的环境变化。 PQ问题有效缓解。测试结果证实了所提出的系统的有效性能。

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