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Power management and control strategies for off-grid hybrid power systems with renewable energies and storage

机译:具有可再生能源和储能的离网混合动力系统的电源管理和控制策略

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This paper presents a simulation study of standalone hybrid Distributed Generation Systems (DGS) with Battery Energy Storage System (BESS). The DGS consists of Photovoltaic (PV) panels as Renewable Power Source (RPS), a Diesel Generator (DG) for power buck-up and a BESS to accommodate the surplus of energy, which may be employed in times of poor PV generation. While off-grid DGS represent an efficient and cost-effective energy supply solution particularly to rural and remote areas, fluctuations in voltage and frequency due to load variations, weather conditions (temperature, irradiation) and transmission line short-circuits are major challenges. The paper suggests a hierarchical Power Management (PM) and controller structure to improve the reliability and efficiency of the hybrid DGS. The first layer of the overall control scheme includes a Fuzzy Logic Controller (FLC) to adjust the voltage and frequency at the Point of Common Coupling (PCC) and a Clamping Bridge Circuit (CBC) which regulates the DC bus voltage. A maximum power point tracking (MPPT) controller based on FLC is designed to extract the optimum power from the PV. The second control layer coordinates among PV, DG and BESS to ensure reliable and efficient power supply to the load. MATLAB Simulink is used to implement the overall model of the off-grid DGS and to test the performance of the proposed control scheme which is evaluated in a series of simulations scenarios. The results demonstrated the good performance of the proposed control scheme and effective coordination between the DGS for all the simulation scenarios considered.
机译:本文介绍了带有电池储能系统(BESS)的独立混合分布式发电系统(DGS)的仿真研究。 DGS由作为可再生电源(RPS)的光伏(PV)面板,用于功率补偿的柴油发电机(DG)和用于容纳多余能量的BESS组成,这些电池可在光伏发电不佳时使用。离网DGS代表了一种高效且具有成本效益的能源供应解决方案,特别是对于农村和偏远地区,由于负载变化,天气条件(温度,辐射)和传输线短路而引起的电压和频率波动是主要挑战。本文提出了一种分层电源管理(PM)和控制器结构,以提高混合DGS的可靠性和效率。总体控制方案的第一层包括:模糊逻辑控制器(FLC),用于调节公共耦合点(PCC)的电压和频率;钳位桥电路(CBC),用于调节DC总线电压。基于FLC的最大功率点跟踪(MPPT)控制器旨在从PV中提取最佳功率。第二控制层在PV,DG和BESS之间进行协调,以确保为负载提供可靠,高效的电源。 MATLAB Simulink用于实现离网DGS的整体模型,并测试所提出的控制方案的性能,该方案在一系列模拟场景中进行了评估。结果表明,所提出的控制方案具有良好的性能,并且在所考虑的所有模拟情况下DGS之间均能有效协调。

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