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Dithering digital ripple correlation control for photovoltaic maximum power point tracking

机译:光伏最大功率点跟踪的抖动数字纹波相关控制

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This work develops and simulates a new maximum power point tracking algorithm for use in switching power converters for photovoltaic applications. Building upon previous work in ripple correlation control (RCC), an average-based RCC approach is introduced which makes use of quasi steady-state converter operation to drive the converter duty ratio to the optimal value. Dithering Digital Ripple Correlation Control (DDRCC) combines the need for high PWM resolution with the need to operate at the panel MPP. Together these two requirements can be used to form a complementary solution in which the technique of PWM dithering for improved average PWM resolution, forms the ripple required for RCC. By sampling data at two selected times during each dithering cycle, the converter is able to converge to the maximum power point of the PV array while avoiding complications previously experienced using the RCC technique at the converter switching frequency.
机译:该工作开发并模拟了用于光伏应用的开关功率转换器的最大功率点跟踪算法。 在以前的工作中进行纹波相关控制(RCC),介绍了一种平均的RCC方法,这是利用准稳态转换器操作来驱动转换器占空比与最佳值。 抖动数字纹波相关控制(DDRCC)结合了对PAGE MPP的需要操作的高PWM分辨率的需求。 这两个要求可用于形成互补解决方案,其中PWM抖动的技术用于改进的平均PWM分辨率,形成RCC所需的纹波。 通过在每个抖动周期中的两个选定时间进行采样,转换器能够收敛到PV阵列的最大功率点,同时避免使用RCC技术在转换器开关频率下使用的并发症。

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