首页> 外文期刊>International Journal of Innovative Computing Information and Control >SYNTHESIS AND ANALYSIS OF A DUAL-INPUT PARALLEL DC-DC CONVERTER DESIGNED BY USING SWITCHED CAPACITOR TECHNIQUES
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SYNTHESIS AND ANALYSIS OF A DUAL-INPUT PARALLEL DC-DC CONVERTER DESIGNED BY USING SWITCHED CAPACITOR TECHNIQUES

机译:利用开关电容技术设计的双输入并联DC-DC转换器的合成与分析

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摘要

As a building block of mobile equipments, single-input switched-capacitor (SC) power converters have been used. However, the single-input converter is difficult to improve battery runtime by adjusting a voltage conversion ratio, because the ratio of the voltage conversion is predetermined by circuit structure. To solve this problem, a dual-input parallel-connected converter designed by the SC technique is proposed in this paper. Although the conventional single-input converter uses a lithium battery as an input energy source, the proposed dual-input converter uses not only a lithium battery but also solar cells. For the conventional SC converters, the energy conversion of clean energy is difficult, because the voltage of clean energy sources such as solar cells is sensitive to weather condition. To adopt the change in the voltage of clean energy input, the proposed converter provides the multi-state step-up conversion. By converting clean energy, the proposed converter realizes long battery runtime. Moreover, to design the multiple-input converter, the theoretical analysis to clarify circuit characteristics is required, because de tailed analyses concerning multiple-input SC DC-DC converters have not been performed yet. Therefore, concerning circuit characteristics of the proposed dual-input converter, handy theoretical formulas are given in this paper. Through SPICE simulations, theoret ical analyses and experiments, the validity of the proposed converter is confirmed. The theoretical results correspond well with SPICE simulation results. Therefore, the pro posed analysis technique can be extended to the circuit design of other multiple-input SC DC-DC converters. Furthermore, the experimental results show that the proposed con verter can generate the stepped-up voltage in spite of the change in the voltage of solar cells. Therefore, the proposed converter can realize long battery runtime.
机译:作为移动设备的组成部分,已使用单输入开关电容器(SC)功率转换器。然而,单输入转换器难以通过调节电压转换率来改善电池运行时间,因为电压转换率是由电路结构预先确定的。为了解决这个问题,本文提出了一种采用SC技术设计的双输入并联转换器。尽管常规的单输入转换器使用锂电池作为输入能源,但是所提出的双输入转换器不仅使用锂电池,而且还使用太阳能电池。对于常规的SC转换器,清洁能源的能量转换是困难的,因为清洁能源如太阳能电池的电压对天气条件敏感。为了采用清洁能源输入电压的变化,建议的转换器提供了多态升压转换。通过转换清洁能源,建议的转换器可实现较长的电池运行时间。此外,由于尚未进行关于多输入SC DC-DC转换器的详细分析,因此设计多输入转换器需要进行理论分析以阐明电路特性。因此,关于所提出的双输入转换器的电路特性,本文给出了方便的理论公式。通过SPICE仿真,理论分析和实验,验证了所提出转换器的有效性。理论结果与SPICE仿真结果非常吻合。因此,提出的分析技术可以扩展到其他多输入SC DC-DC转换器的电路设计。此外,实验结果表明,尽管太阳能电池的电压发生了变化,但所提出的转换器仍可以产生升压电压。因此,提出的转换器可以实现较长的电池运行时间。

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