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A simple hybrid MPPT technique for photovoltaic systems under rapidly changing partial shading conditions

机译:在局部阴影条件迅速变化的情况下,用于光伏系统的简单混合MPPT技术

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Maximum power point tracking (MPPT) is an important strategy to increase the power output from photovoltaic (PV) systems. Partial shading of PV panels is a serious problem which leads to multiple local maximum power points (MPPs) on the power versus voltage (P-V) curve. These multiple MPPs can result in conventional MPPT algorithms becoming trapped at a local MPP, resulting in a significant power loss. This paper presents a hybrid MPPT method to optimize the power output for the PV system under non-uniform conditions. It samples the operating point at locations on the I-V curve when partial shading is detected and uses these values to predict the global MPP region. After that, a conventional MPPT algorithm efficient for unimodal functions, such as P&O or extremum seeking control (ESC), is applied to the local area so that the system reaches the global MPP. Since it does not require irradiance sensors and can directly predict the MPP region, it features a relatively low cost, fast response, and simple structure. The effectiveness of the proposed MPPT method is verified with simulation results. A comparison with other popular MPPT techniques shows the advantages with respect to its fast tracking speed and high accuracy.
机译:最大功率点跟踪(MPPT)是增加光伏(PV)系统输出功率的重要策略。 PV面板的部分遮挡是一个严重的问题,会导致功率与电压(P-V)曲线上出现多个局部最大功率点(MPP)。这些多个MPP可能导致常规MPPT算法陷入本地MPP,从而导致明显的功率损耗。本文提出了一种混合MPPT方法,以在非均匀条件下优化光伏系统的功率输出。当检测到局部阴影时,它将在I-V曲线上的位置处对工作点进行采样,并使用这些值来预测全局MPP区域。之后,将对P&O或极值搜寻控制(ESC)等单峰函数有效的常规MPPT算法应用于局部区域,以使系统到达全局MPP。由于它不需要辐照度传感器并且可以直接预测MPP区域,因此它具有成本相对较低,响应速度快以及结构简单的特点。仿真结果验证了所提MPPT方法的有效性。与其他流行的MPPT技术的比较显示了其快速跟踪速度和高精度方面的优势。

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