一种利用变步长摄动和观察算法对连接三相电网的光伏系统进行最大功率点跟踪

©. N. Zerzouri, N. Ben, Siddique Ali, N. B. Udc, N. Zerzouri, N. Benalia, Ben Si
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摘要

目的。太阳能发电是必要的,因为全球都在消耗这种能源。本文的研究是基于通过改进最大功率点跟踪(MPPT)来增加能量提取。在已有的各种MPPT技术中,扰动与观测(P&O)技术因其实现成本低、易于实现而得到了发展。方法。与传统的固定步长方法相比,研究了一种改进的变步长P&O MPPT算法,该算法利用模糊逻辑自动调整步长以更好地跟踪最大功率点。变步长P&O提高了跟踪速度和精度。该控制器在升压DC-DC功率转换器上实现,以跟踪最大功率点。所建议的受控太阳能系统包括升压变换器、电压源逆变器和电网滤波器。研究了基于MPPT算法和前馈补偿的三相电流控制同步旋转坐标d-q脉宽调制逆变器的控制方案。结果。光伏并网系统控制器采用多环控制,内环采用逆变器滤波电感电流实现快速动态响应,外环采用MPPT控制母线电压,在MATLAB/Simulink环境下实现了光伏发电机三相并网的建模与控制,并通过仿真结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A maximum power point tracking of a photovoltaic system connected to a three-phase grid using a variable step size perturb and observe algorithm
Purpose. The production of electricity from solar energy is necessary because of the global consumption of this energy. This article’s study is based on increased energy extraction by improving maximum power point tracking (MPPT). From different MPPT techniques proposed, the perturb and observe (P&O) technique is developed because of its low implementation cost and ease of implementation. Methods. A modified variable step-size P&O MPPT algorithm is investigated which uses fuzzy logic to automatically adjust step-size to better track maximum power point, compared with the conventional fixed step-size method. The variable step P&O improves the speed and the tracking accuracy. This controller is implemented on a boost DC-DC power converter to track the maximum power point. The suggested controlled solar energy system includes a boost converter, a voltage-source inverter, and a grid filter. The control scheme of a three-phase current-controlled pulse-width modulation inverter in rotating synchronous coordinate d-q with the proposed MPPT algorithm and feed-forward compensation is studied. Results. The photovoltaic grid-connected system controller employs multi-loop control with the filter inductor current of the inverter in the inner loop to achieve a fast dynamic response and the outer loop to control bus voltage for MPPT, the modeling, and control of three phase grid connected to photovoltaic generator is implemented in the MATLAB/Simulink environment and validated by simulation results.
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