三相并网光伏系统无功功率滑模控制

Amal Marrekchi, Soulaymen Kammoun, S. Sallem, M. B. A. Kammon
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引用次数: 2

摘要

并网光伏系统不应限制向电网注入有功功率。但它必须能够根据电网需求在一定时间内吸收或产生足够的无功功率,并维持电网电压。本文提出了对三相并网光伏系统进行有功和无功功率分别控制的滑模控制方法。滑模控制基于dq变换,在确定逆变器的期望电压Vd和旋转框架中的Vd后,表示一个无功量,它定义了电网电流与电压之间的夹角相位。利用Matlab/SIMULINK对该控制器在10mw光伏发电系统上进行了仿真。仿真结果证明了滑模控制对注入无功功率进行调节的有效性和鲁棒性。
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Sliding mode control of reactive power for Three-Phase Grid-Connected photovoltaic System
In Grid-Connected PV system should not be limited injecting the active power into the grid. However, it must be able to absorb or to generate sufficient reactive power for a certain amount of time according to the grid demand and maintain the grid voltage. This paper proposes sliding mode control that controls powers respectively the active and the reactive power for a Three-Phase Grid-Connected PV System. The sliding mode control based on dq transformation, after determining the desired voltage of the inverter Vd and Vd in the rotating frame, which means a reactive power quantity that defines the angle phase between the grid current and voltage. This controller is simulated on a 10 MW PV generator system using Matlab/SIMULINK. According to the simulation results prove the efficiency and robustness of the sliding mode control to regulate the injected reactive power.
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