A novel current control scheme using Lyapunov function to control the active and reactive power flow in a single phase hybrid PV inverter system connected to the grid

S. Dasgupta, S. K. Sahoo, S. K. Panda
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引用次数: 13

Abstract

In this paper, a novel current control technique is proposed to control both the active and reactive power of a single phase hybrid PV inverter connected to grid. The hybrid PV inverter not only maintains constant load voltage but also ensures active and reactive power flow from the grid with low THD even at the presence of non-linear load. A p-q theory based approach is used to find out the current reference of the parallel converter to ensure desired operating condition at the grid terminal. A novel current controller is also proposed. The proposed current controller is very simple to implement and gives superior performance over the conventional current controller such as rotating frame PI controller. The stability of the proposed controller is ensured by direct Lyapunov method. Detailed simulation as well as experimental results are presented to show the efficacy of the proposed current control scheme along with the proposed Non-Linear controller.
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提出了一种利用Lyapunov函数控制并网单相混合光伏逆变系统有功和无功潮流的新型电流控制方案
针对并网的单相混合式光伏逆变器的有功和无功功率控制问题,提出了一种新的电流控制技术。混合光伏逆变器在非线性负载存在时,既能保持负载电压恒定,又能保证低THD的有功和无功从电网流出。采用基于p-q理论的方法求出并联式变流器的基准电流,以保证并联式变流器在电网末端的理想运行状态。并提出了一种新的电流控制器。该电流控制器实现简单,性能优于传统的电流控制器,如旋转框架PI控制器。采用直接李雅普诺夫方法保证了控制器的稳定性。详细的仿真和实验结果表明了所提出的电流控制方案和所提出的非线性控制器的有效性。
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