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Alternative Source-Port-Tolerant Series-Connected Double-Input DC–DC Converter

机译:备用源端口兼容的串联双输入DC-DC转换器

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摘要

The two input sources of a series-connected double-input dc/dc converter (SCDIC) can power the load simultaneously or individually. But the two sources must supply the load simultaneously when the output voltage is greater than either of the two input voltages. This is a big issue, especially in double-input alternative power systems in which two input ports are, respectively, interfaced with a renewable energy source and a storage element due to the randomness and intermittency of renewable energy sources. This paper proposes a topology scheme using a combination of a charging switch and an SCDIC. In the case of one port powering or one input being short-circuit, the proposed topology forms a bootstrap circuit with the help of the charging switch and SCDIC switches to charge the powered off port and maintain the expected output voltage, which enhances the reliability of double-input conversion, making it robust against one input powering off and fault tolerance against one input short-circuit. The operation principle and the corresponding power management strategy are presented in detail. In addition, charge–discharge feature of the bootstrap mode is analyzed and the charging loss is calculated. Experimental results validate the feasibility of the proposed scheme.
机译:串联双输入dc / dc转换器(SCDIC)的两个输入源可以同时或分别为负载供电。但是,当输出电压大于两个输入电压中的任何一个时,两个电源必须同时为负载供电。这是一个大问题,尤其是在双输入替代电源系统中,由于可再生能源的随机性和间歇性,其中两个输入端口分别与可再生能源和存储元件连接。本文提出了一种结合了充电开关和SCDIC的拓扑方案。在一个端口供电或一个输入短路的情况下,建议的拓扑结构借助充电开关和SCDIC开关形成一个自举电路,以对断电的端口进行充电并维持预期的输出电压,从而提高了可靠性。双输入转换,使其对一个输入断电具有鲁棒性,并且对一个输入短路具有容错性。详细介绍了其工作原理和相应的电源管理策略。此外,分析了自举模式的充放电特性并计算了充电损耗。实验结果验证了该方案的可行性。

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