NFLMS Algorithm for Solar PV-Battery Based Microgrid With Seamless Operation

Gaurav Modi, Shailendra Kumar, Bhim Singh
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Abstract

This paper proposes a new control of a three phase solar PV-battery based microgrid. This microgrid has the capability of seamless transfer of power when the system mode of operation changes from grid connected mode to standalone mode and vice-versa. It provides an uninterruptible power to the load even in the absence of the grid and solar PV power. It also provides the power quality features at the point of common coupling (PCC) by mitigating the current harmonics drawn by the nonlinear load. The voltage source converter (VSC) works in a current controlled mode when the grid is present. However, in the absence of the grid, the VSC works in voltage controlled mode. In the current controlled mode, the normalized fractional least mean square (NFLMS) algorithm is used to estimate the load active fundamental component. An additional feed-forward term is used to improve the system dynamic in the inconsistent solar PV array output condition. In the voltage controlled mode, the synchronous rotating frame (SRF) based control algorithm is used to maintain the rated voltage across the load at rated frequency. An enhanced phase locked loop (EPLL) is used for the resynchronization process. The performance of the microgrid is validated by experimental results in various dynamics conditions.
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基于太阳能光伏电池的微电网无缝运行的NFLMS算法
本文提出了一种基于三相太阳能光伏电池的微电网控制方法。该微电网具有系统运行模式从并网模式转变为独立模式时的无缝输电能力,反之亦然。即使在没有电网和太阳能光伏发电的情况下,它也可以为负载提供不间断的电力。它还通过减轻非线性负载产生的电流谐波,提供了在共耦合点(PCC)的电能质量特征。当电网存在时,电压源变换器(VSC)工作在电流控制模式下。然而,在没有电网的情况下,VSC工作在电压控制模式下。在电流控制模式下,采用归一化分数阶最小均方(NFLMS)算法估计负载主动基分量。在太阳能光伏阵列输出不一致的情况下,通过增加前馈项来改善系统的动态特性。在电压控制模式下,采用基于同步旋转框架(SRF)的控制算法,在额定频率下维持整个负载的额定电压。再同步过程采用增强型锁相环(EPLL)。实验结果验证了微电网在各种动态条件下的性能。
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