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Moving Photovoltaic Installations: Impacts of the Sampling Rate on Maximum Power Point Tracking Algorithms

机译:移动光伏装置:采样率对最大功率点跟踪算法的影响

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This paper investigates the impact of the solar radiation level on the available output power of moving photovoltaic (PV) installations with the help of PV simulation models and real-world environmental data. For moving PV installations, for example, on top of hybrid electric vehicles and battery-powered electric vehicles, the sampling rate was 6000 samples per second. We analyze the changes in the amount of solar radiation that can influence on the control of the operating voltage of PVs within maximum power point tracking (MPPT) algorithms. We present recommendations for the sampling rate of environmental data, which is used for PV simulation models. Furthermore, we discuss the update frequency of vital parameters of different MPPT techniques for controlling moving PV installations. Here, we concentrate on the degree of efficiency of the perturb and observe algorithm. In addition, we show how the sampling rate of environmental data influences the test criteria for MPPT algorithms.
机译:本文借助光伏仿真模型和实际环境数据,研究了太阳辐射水平对移动光伏(PV)装置的可用输出功率的影响。对于移动式光伏装置,例如在混合动力电动汽车和电池供电的电动汽车上,采样率为每秒6000个样本。我们分析了在最大功率点跟踪(MPPT)算法中,太阳辐射量的变化会影响PV的工作电压控制。我们提出了有关环境数据采样率的建议,该建议用于PV模拟模型。此外,我们讨论了用于控制移动光伏装置的不同MPPT技术的关键参数的更新频率。在这里,我们专注于扰动的效率程度并观察算法。此外,我们展示了环境数据的采样率如何影响MPPT算法的测试标准。

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