Controller Design of Paralleled Quasi-Z-Source Inverters with Battery for Application in Grid-Connected Photovoltaic Power Generation System

Mehran Moslehi Bajestan, H. Madadi, M. Shamsinejad
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引用次数: 1

Abstract

In this paper, a new control method for the paralleled quasi-Z-source inverters (qZSI) with a battery for application in grid-connected photovoltaic (PV) power generation systems is proposed. The use of paralleled inverters in distributed generation (DG) applications has several advantages, such as high degree of redundancy, ease of maintenance and high reliability. By introducing the shoot-through states in the permissible switching states of the inverter bridge, the qZSI can boost/buck the output voltage of PV panel in a wide range. Also, the energy storage system, which is assisted with quasi Z-source network, provides the full use possibility of PV power. The proposed control method can manage the battery power, extract the maximum power from the PV panel, control the inverters output power with desired power factor and maintain the balance of power injected by the paralleled inverters into the grid, simultaneously. Also, the controller system is able to suppress both types of circulating-current, including cross and zero-sequence circulating-currents through a modification of the conventional control schemes. The ability of the proposed PV system is investigated by simulation results carried out using MATLAB/Simulink.
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并网光伏发电系统并联准z源蓄电池逆变器控制器设计
提出了一种适用于并网光伏发电系统的带电池并联准z源逆变器(qZSI)的控制方法。在分布式发电(DG)应用中使用并联逆变器具有几个优点,例如冗余度高,易于维护和高可靠性。通过在逆变器桥的允许开关状态中引入通射状态,qZSI可以在大范围内升压/降压光伏板的输出电压。同时,准z源网络辅助的储能系统为光伏发电提供了充分的利用可能性。所提出的控制方法可以对电池功率进行管理,从光伏板中提取最大功率,并以所需的功率因数控制逆变器输出功率,同时保持并联逆变器向电网注入的功率平衡。此外,通过对传统控制方案的修改,控制器系统能够抑制两种类型的循环电流,包括交叉和零序循环电流。利用MATLAB/Simulink对所提出的光伏系统的性能进行了仿真研究。
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