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An improved adjustable step adaptive neuron based control approach for grid supportive SPV system

机译:一种改进的电网支持SPV系统的可调节步骤自适应神经元控制方法

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This paper deals with a three phase grid supportive kind of PV generation system. The proposed system is said grid supportive as it not only feeds the energy generated by solar PV system intro the grid but also helps at power quality improvement front of distribution system. A two stage topology is proposed, wherein the first stage is a boost converter which extracts the energy from the PV array and the second stage is a grid interfaced VSC (Voltage Source Converter). The VSC feeds extracted solar energy into the grid along with harmonics elimination, reactive power compensation and grid currents balancing. An improved adjustable step adaptive neuron based control approach is used for estimation of average power consuming component of load current. Moreover, a feed forward term is added as PV array contribution to grid currents, which helps in fast dynamic response due to ambience changes. The DC link voltage is regulated using a PI controller on DC link of the VSC. The output of PI controller is designated as loss component of system. In the proposed approach, the load, PV array and loss contributions are kept decoupled. The experimental results confirm the feasibility of the proposed control algorithm. The THD (Total Harmonics Distortion) of grid currents has been found well under IEEE-519 standard even under nonlinear loads at CPI (Common Point of Interconnection).
机译:本文涉及三相网格支持性的光伏生成系统。所提出的系统是所述电网支持,因为它不仅为太阳能光伏系统引进电网产生的能量而且有助于电力质量改进的分配系统。提出了两个阶段拓扑,其中第一级是升压转换器,其从PV阵列提取能量,第二级是网格连接的VSC(电压源转换器)。 VSC将太阳能提取到网格中以及谐波消除,无功功率补偿和栅格电流平衡。一种改进的可调节步骤自适应神经元基于神经元的控制方法用于估计负载电流的平均功耗分量。此外,向前往复术语作为PV阵列添加到网格电流的贡献,这有助于由于环境的变化有助于快速动态响应。 DC链路电压使用VSC的DC链路上的PI控制器调节。 PI控制器的输出被指定为系统的损耗组件。在所提出的方法中,负载,光伏阵列和损耗贡献保持解耦。实验结果证实了所提出的控制算法的可行性。即使在CPI的非线性负载下(共互连的常用点),在IEEE-519标准下已经发现了电流电流的THD(总谐波失真)。

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