An adaptive control of voltage source converter based scheme for grid connected solar PV - battery system

U. Kalla, M. Mantri
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引用次数: 9

Abstract

This paper presents an adaptive back propagation learning scheme for three phase four wire grid integrated solar PV - battery microgrid feeding three phase and single phase nonlinear loads simultaneously. The proposed power quality improved 3 phase 4 wire solar PV - battery micogrid is capable of delivering highly non-sinusoidal currents to nonlinear and unbalance loads of different types such that single and three phase industrial and domestic loads, while the source currents in all three phases remains balanced and sinusoidal. An adaptive back propagation learning scheme is used to control the microgrid voltage control and power quality improvement under various loading conditions through mitigation of harmonic currents, reactive power compensation and active power balancing in the system. It also improve the system power factor in highly nonlinear and unbalanced loading conditions. The proposed scheme significantly improves the steady state and dynamic performances of the 3 phase 4 wire grid integrated solar PV - battery micogrid system.
基于电压源变换器的并网太阳能光伏电池系统自适应控制方案
提出了一种三相四线网太阳能光伏电池集成微网同时馈送三相和单相非线性负荷的自适应反向传播学习方案。提出的电能质量改进的3相4线太阳能光伏电池微电网能够向不同类型的非线性和不平衡负载(如单相和三相工业和家庭负载)提供高度非正弦电流,而所有三相的源电流保持平衡和正弦。采用自适应反向传播学习方案,通过减缓系统谐波电流、无功补偿和有功平衡来控制各种负载条件下的微电网电压控制和电能质量改善。它还提高了系统在高度非线性和不平衡负载条件下的功率因数。该方案显著改善了三相四线并网太阳能光伏电池集成微网系统的稳态和动态性能。
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