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Optimal Control of a Grid Connected Photovoltaic System with Constant Switching Frequency

机译:具有恒定开关频率的电网连接光伏系统的最佳控制

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This paper presents maximum power point tracking (MPPT) algorithms for grid connected photovoltaic system. Due to the instantaneous changing of solar irradiance and temperature, it is desirable to determine the optimal voltage that ensures maximum energy yield. In order to optimize the photovoltaic energy generation, the MPPT is integrated in the inverter control. Perturb & Observ (P&O), Incremental Conductance (Inc Cond) techniques and fuzzy logic controller (FLC) are applied. A comparison shows the effectiveness of the FLCT The maximum power generated by the photovoltaic system is sent to the power grid to be consumed by the nearest customers. A constant switching frequency is used for the current controlled inverter. The main idea of this method is to superpose an adequate triangular signal having the desired switching frequency to the reference current. The new modulated reference current is then compared to the calculated current in hysteresis controller. Simulation results and some experimental ones are presented to prove the feasibility of the studied system.
机译:本文介绍了网格连接光伏系统的最大功率点跟踪(MPPT)算法。由于太阳辐照度和温度的瞬时改变,期望确定确保最大能量产量的最佳电压。为了优化光伏能量产生,MPPT集成在逆变器控制中。扰动和观察(P&O),应用增量电导(Inc Cond)技术和模糊逻辑控制器(FLC)。比较显示了FLCT的有效性,光伏系统产生的最大功率被发送到最近的客户消耗的电网。恒定的开关频率用于电流控制的逆变器。该方法的主要思想是使具有所需的开关频率的足够的三角形信号叠加到参考电流。然后将新的调制参考电流与滞后控制器中的计算电流进行比较。提出了仿真结果和一些实验结果来证明研究的系统可行性。

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