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Low cost digital-analog hybrid controlled photovoltaic battery charger based on interleaved BCM boost converter and improved MPPT algorithm

机译:基于交错BCM升压转换器的低成本数字模拟混合控制光电电池充电器及改进的MPPT算法

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Low cost digital-analog hybrid control for photovoltaic battery charger is studied in this paper. An interleaved boost circuit is used as the power converter. The interleaving control for the interleaved boost is realized with an analog IC. The change-discharge strategy for battery and an improved maximum power point tracking (MPPT) algorithm are realized with a low performance digital control chip. The digital control chip and the analog IC are connected through a conversion interface. The total cost of controller is reduced and the program work is also reduced. The maximum operation frequency under full load is up to 400kHz with this low cost control circuit. Variable step size incremental conductance method is introduced in this paper. By analyzing the disadvantage of this method, an improved method is proposed and the tracking oscillation in harsh environment is eliminated. The conventional method and the improved method were both simulated and compared with Matlab. Finally, a 120W experimental prototype with surface mounted inductors was built up to verify the theoretical analysis.
机译:本文研究了用于光伏电池充电器的低成本数字模拟混合控制。交错的升压电路用作功率转换器。用模拟IC实现交错提升的交织控制。用低性能数字控制芯片实现电池的变化 - 放电策略和改进的最大功率点跟踪(MPPT)算法。数字控制芯片和模拟IC通过转换接口连接。控制器的总成本降低,程序工作也降低。该低成本控制电路,全负载下的最大操作频率高达400kHz。本文介绍了可变步长增量电导方法。通过分析该方法的缺点,提出了一种改进的方法,消除了恶劣环境中的跟踪振荡。常规方法和改进的方法都模拟并与Matlab进行比较。最后,建立了一个120W的实验原型,建立了表面安装电感器,以验证理论分析。

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