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Employing dual scaling mode for adaptive hill climbing method on buck converter

机译:采用双比例缩放模式的Buck变换器自适应爬山方法

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For adaptive hill climbing method, variable stepping is achieved by sizing the change of power over the change of voltage (d/d) and change of power over change of (d/d) to appropriate step size using a properly tuned scaling factor. However, the photovoltaic (PV) power versus voltage curve has two different slopes which are the left-hand side of the maximum power point (MPP), and right-hand side of MPP (ROM). The fine-tuned scaling factor for the left-hand side PV slope has good performance at left-hand side of MPP (LOM) but can cause overshoot when system operates at the ROM; while scaling factor properly tuned for the right-hand side PV slope has good performance at ROM but slow voltage response when the system operates at LOM. Dual scaling factor technique is proposed to achieve good performance at LOM and ROM. Besides that, the drawback of implementing hill climbing method on buck converter is discussed, where using constant step size, the hill climbing method has small voltage response at point far from MPP but large voltage response at point near MPP. Based on the results obtained from a lab-scale prototype, it is proven that the proposed method is simple and effective.
机译:对于自适应爬坡方法,通过使用适当调整的比例因子将功率随电压变化(d / d)的变化和功率随电压变化(d / d)的变化调整到适当的步长,可以实现可变步进。但是,光伏(PV)功率与电压的关系曲线具有两个不同的斜率,分别是最大功率点(MPP)的左侧和MPP(ROM)的右侧。左侧PV斜率的微调比例因子在MPP(LOM)左侧具有良好的性能,但是当系统在ROM上运行时会导致过冲;而针对右侧PV斜率正确调整的比例因子在ROM上具有良好的性能,但是当系统在LOM下运行时电压响应变慢。提出了双比例因子技术,以在LOM和ROM上实现良好的性能。除此之外,还讨论了在降压转换器上实现爬坡方法的缺点,即采用恒定步长,爬坡方法在远离MPP的点电压响应较小,而在靠近MPP的点电压响应较大。根据从实验室规模的原型获得的结果,证明了该方法简单有效。

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