Power Management Scheme with Cascaded Complex Coefficient Filter Control for SyRG DG-SPV-BES Based Standalone System for Remote Areas

Subhadip Chakraborty, Gaurav Modi, Rohini Sharma, Bhim Singh
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Abstract

This paper aims to provide a complete power management strategy for an isolated microgrid (MG) for remote areas and improve the power quality of the microgrid when local loads draw unbalanced nonlinear currents from the MG. The MG under consideration consists of a synchronous reluctance generator (SyRG) based diesel generator (DG) set, a dual stage photovoltaic (PV) array, and a battery energy storage (BES). Since the DG impedance is more than the grid, the DG currents and voltages are subjected to more distortion in the presence of nonlinear loads and single phase loads. To solve these power quality problems, an improved cascaded complex coefficient filter (CCCF) based algorithm is used during the DG operation. The power management scheme ensures minimum use of the DG set for power generation and aims for maximum power extraction from the PV array as much as possible. The PV array is operated by a modified de-rated perturb and observe (MDP&O) MPPT. The DG set is operated in its fuel economic zone (FEZ). The synchronization control ensures fast transition of the system between DG connected mode, and standalone mode (SAM) such that the power is fed to the load continuously. The system simulink model is developed, and the performance is analyzed under various dynamic conditions.
基于syg DG-SPV-BES的偏远地区单机系统级联复杂系数滤波控制电源管理方案
本文旨在为偏远地区的隔离微电网提供一种完整的电源管理策略,并改善局部负载从隔离微电网获取不平衡非线性电流时微电网的电能质量。考虑中的MG由基于同步磁阻发电机(syg)的柴油发电机(DG)机组、双级光伏(PV)阵列和电池储能(BES)组成。由于DG阻抗大于电网,因此DG电流和电压在非线性负载和单相负载的存在下会受到更多的畸变。为了解决这些电能质量问题,在DG运行过程中采用了一种改进的级联复系数滤波(CCCF)算法。电源管理方案确保发电时最少使用DG,并尽可能从光伏阵列中提取最大功率。采用改进的降级扰动和观测(MDP&O) MPPT操作光伏阵列。DG机组在其燃料经济区(FEZ)内运行。同步控制确保系统在DG连接模式和独立模式(SAM)之间快速过渡,从而连续向负载供电。建立了系统的simulink模型,分析了系统在各种动态条件下的性能。
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