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Unified algebraic synthesis of generalized Fibonacci Switched Capacitor Converters

机译:统一的代数合成广义Fibonacci开关电容转换器

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A unified algebraic approach to the synthesis of generalized Fibonacci Switched Capacitor Converters (SCC) has been developed. The proposed approach reduces the power losses by increasing the number of target voltages. It is shown that the binary and Fibonacci SCC are private cases of the proposed approach. Furthermore, the proposed generalized SCC is built around the same switch network as the binary and Fibonacci SCC. This feature is extremely beneficial since it provides the option to switch between the different target voltages, thereby increasing the resolution of attainable conversion ratios. In the case of three flying capacitors, six new conversion ratios were introduced in addition to the thirteen that have been realized already. The theoretical results were verified experimentally.
机译:已经开发出统一的代数方法,用于合成广义的Fibonacci开关电容转换器(SCC)。所提出的方法通过增加目标电压的数量来降低功率损耗。结果表明,二元和斐波纳契SCC是所提出的方法的私人案例。此外,所提出的广义SCC在与二进制和FIBONACCI SCC相同的交换机网络周围构建。此功能非常有利,因为它提供了在不同的目标电压之间切换的选项,从而增加可获得的转换比率的分辨率。在三个飞载电容器的情况下,除了已经实现的十三次,还引入了六个新的转换比。理论结果是通过实验验证的。

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