Seamless Transition between Grid-Connected and Islanded Operation Modes for Hybrid PV-BESS Combination used in Single-Phase, Critical Load Applications

O. Jaga, S. Choudhuri
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引用次数: 2

Abstract

A single-phase, grid-connected, hybrid combination of Solar Photo Voltaic (PV) and Battery Energy Storage System (BESS) incorporating seamless transfer between grid-connected and islanded modes is presented in this paper. The purpose of the proposed combination is to supply reliable and uninterrupted power for critical load applications. Combination of BESS and Solar PV when connected to single-phase, AC utility mains enhances system reliability during transient conditions such as, variation in solar irradiation, sudden grid outage and resynchronisation with grid at the point of common coupling (PCC). Perturb and Observe (P&O) Maximum Power Point Tracking (MPPT) algorithm is used for the control of DC/DC boost converter between solar PV array and DC bus to extract maximum power at a given irradiation level. The control strategy for bi-directional, DC/DC converter regulates DC bus voltage and charging/discharging of BESS under different operating conditions. Controlled VSC operation ensures that the required critical load demand is supplied and the balance power gets distributed between the utility grid and the BESS. The system operates in Grid Control Mode (GCM) when connected to utility and in Islanded Mode (IM) on occurrence of grid outage. Synchronisation controller ensures smooth and transient free transition between GCM and IM respectively. Percentage (%) Total Harmonic Distortion (THD) of grid current (when tied to the grid) and load voltage (during grid outage) is observed within 5% respectively. The control strategy proposed for such a PV-BESS hybrid system is robust in nature and simple to realise. The proposed system and corresponding control strategy is designed for a 5 kW Solar PV array rating. The system is simulated in MATLAB/Simulink environment in Discrete-Time Frame (DTF) for a converter switching frequency (fs) of 10 kHz.
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用于单相关键负载应用的混合PV-BESS组合在并网和孤岛运行模式之间的无缝转换
本文提出了一种单相、并网、太阳能光伏(PV)和电池储能系统(BESS)的混合组合,结合并网和孤岛模式之间的无缝传输。所提出的组合的目的是为关键负载应用提供可靠和不间断的电源。BESS和太阳能光伏的组合,当连接到单相交流公用事业电源时,提高了系统在瞬态条件下的可靠性,如太阳辐照变化,电网突然中断和在公共耦合点与电网重新同步。采用扰动与观测(P&O)最大功率点跟踪(MPPT)算法对太阳能光伏阵列与直流母线之间的DC/DC升压变换器进行控制,提取给定辐照水平下的最大功率。双向DC/DC变换器控制策略对电池储能系统在不同工况下的直流母线电压和充放电进行调节。可控的VSC运行确保了所需临界负荷需求得到满足,平衡功率在公用电网和BESS之间得到分配。系统在连接公用事业时以电网控制模式(GCM)运行,在电网中断时以孤岛模式(IM)运行。同步控制器确保GCM和IM之间的平滑和瞬时自由转换。电网电流(当与电网相连时)和负载电压(在电网中断期间)的总谐波失真(THD)分别在5%以内。所提出的控制策略具有鲁棒性和易于实现的特点。针对5kw太阳能光伏阵列额定功率设计了该系统及相应的控制策略。在MATLAB/Simulink环境下,对开关频率为10khz的变换器进行了离散时间帧(DTF)仿真。
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