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Optimized Adaptive Perturb and Observe Maximum Power Point Tracking Control for Photovoltaic Generation

机译:优化的自适应扰动并遵守光伏发电的最大功率点跟踪控制

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摘要

The power extracted from PV arrays is usually maximized using maximum power point tracking algorithms. One of the most widely used techniques is the perturb & observe algorithm, which periodically perturbs the operating point of the PV array, sometime with an adaptive perturbation step, and compares the PV power before and after the perturbation. This paper analyses the most suitable perturbation step to optimize maximum power point tracking performance and suggests a design criterion to select the parameters of the controller. Using this proposed adaptive step, the MPPT perturb & observe algorithm achieves an excellent dynamic response by adapting the perturbation step to the actual operating conditions of the PV array. The proposed algorithm has been validated and tested in a laboratory using a dual input inductor push-pull converter. This particular converter topology is an efficient interface to boost the low voltage of PV arrays and effectively control the power flow when input or output voltages are variable. The experimental results have proved the superiority of the proposed algorithm in comparison of traditional perturb & observe and incremental conductance techniques.
机译:通常使用最大功率点跟踪算法来最大化从光伏阵列中提取的功率。扰动和观察算法是使用最广泛的技术之一,该算法会周期性地扰动PV阵列的工作点,有时会采用自适应扰动步骤,并比较扰动前后的PV功率。本文分析了最合适的扰动步骤,以优化最大功率点跟踪性能,并提出了一种选择控制器参数的设计准则。使用此提议的自适应步骤,MPPT扰动和观察算法通过使扰动步骤适应PV阵列的实际工作条件,实现了出色的动态响应。所提出的算法已在实验室中使用双输入电感器推挽转换器进行了验证和测试。当输入或输出电压可变时,这种特定的转换器拓扑是一种有效的接口,可提高PV阵列的低压并有效控制功率流。实验结果证明了该算法与传统的扰动观测和增量电导技术相比具有优越性。

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