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A ripple-based maximum power point tracking method for three-phase grid-connected photovoltaic inverter

机译:三相网格连接光伏逆变器的基于纹波的最大功率点跟踪方法

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摘要

As a prevailing solar energy utilization equipment, the three-phase grid-connected photovoltaic (PV) inverter is widely operated in partially shaded conditions and thus tends to generate multiple local maximum power points on its power-to-voltage and current-to-voltage characteristic curves. In order to identify the global maximum power point (GMPP) quickly and precisely, this paper proposes a ripple-based maximum power point tracking method. It aims to perform the optimization of tracking using the segmented scanning of DC-side voltage. An improved adaptive perturb and observe (AP&O) method is introduced to maximize the solar conversion and to increase working stability. This method applies a hybrid model of fixed and variable step-size perturbation to restrain the fluctuation of PV-side voltage. It belongs to a two-stage GMPP tracking method. That is, when environmental factors such as irradiance and temperature change quickly PV power fluctuates sharply. Correspondingly, the AP&O method tracks the latest maximum power point (MPP) with a large fixed-step voltage reference command. When the PV power fluctuates smoothly under a slow environmental change rate, the algorithm applies multiple small and variable step-size voltage perturbations to vibrate round the location of GMPP. Simulation and experimental results show that this method improves the efficiency of the PV inverter tracking performance. In addition, the stability of DC bus voltage is guaranteed, and the operational stability of the photovoltaic power generation system is improved.
机译:作为普遍的太阳能利用设备,三相电网连接的光伏(PV)逆变器在部分阴影条件下广泛运行,因此倾向于在​​其电源到电压和电流 - 电压上产生多个局部最大功率点特征曲线。为了快速且精确地识别全局最大功率点(GMPP),本文提出了一种基于纹波的最大功率点跟踪方法。它旨在使用DC侧电压的分段扫描来执行跟踪的优化。引入了改进的自适应扰动和观察(AP&O)方法以最大化太阳能转换并提高工作稳定性。该方法应用固定和可变阶梯大小扰动的混合模型,以抑制PV侧电压的波动。它属于两级GMPP跟踪方法。也就是说,当诸如辐照度和温度变化的环境因素快速PV功率急剧波动。相应地,AP&O方法跟踪具有大固定步骤电压参考命令的最新最大功率点(MPP)。当PV功率在慢速环境变化率下平滑波动时,该算法应用多个小型和可变的步长电压扰动,以振动GMPP的位置。仿真和实验结果表明,该方法提高了PV逆变器跟踪性能的效率。另外,保证了直流母线电压的稳定性,改善了光伏发电系统的操作稳定性。

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