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Aggregated Modeling and Control of a Boost-Buck Cascade Converter for Maximum Power Point Tracking of a Thermoelectric Generator

机译:用于热电发电机的最大功率点跟踪的Boost-Buck级联转换器的聚合建模与控制

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For a wide output voltage ranged thermoelectric generator, it is necessary to have a dc-dc converter that allows voltage boost and buck functions. In this paper, a boost-buck cascade dc-dc converter is adopted to allow input voltage range from near 0 V to 25 V and output voltage range from 12.3 V to 16.5 V, needed for vehicle battery charging. To ensure a smooth operating mode change, a modified maximum power point tracking controller is used to control the first stage converter duty cycle while regulating the second stage output voltage. A conventional duty cycle controller is then used to control the second stage converter while regulating the middle dc bus voltage. In order to avoid intricate relationship between two controller duty cycles, a novel aggregated modeling approach is proposed. The small signal model is analyzed, and the design guidelines for the power converter and controller are provided. Experimental results indicate smooth transition between changes and load steps, and the effectiveness of the proposed modeling and the controller design is verified.
机译:对于宽输出电压范围的热电发电机,有必要具有DC-DC转换器,可允许电压升压和降压功能。在本文中,采用了升压降压级联DC-DC转换器来允许输入电压范围从近0 V至25 V,输出电压范围为12.3 V至16.5 V,需要车辆电池充电。为了确保平稳的操作模式改变,改进的最大功率点跟踪控制器用于在调节第二级输出电压的同时控制第一级转换器占空比。然后使用传统的占空比控制器来控制第二级转换器,同时调节中间直流总线电压。为了避免两个控制器占空比之间的复杂关系,提出了一种新的聚合建模方法。分析了小信号模型,提供了电力转换器和控制器的设计指南。实验结果表明改变和负载步骤之间的平滑过渡,验证了所提出的建模和控制器设计的有效性。

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