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Efficiency Optimization of Supercapacitor Assisted Low Dropout (SCALDO) Regulators

机译:超级电容器的效率优化辅助低压辍学(ScalDO)调节器

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This study was primarily focused on presenting a novel method to enhance the efficiency of Supercapacitor Assisted Low Dropout (SCALDO) regulators. The main objective was to study SCALDO regulators under a specifically controlled condition where supply voltage is less than twice of the required minimum voltage for Low Dropout (LDO) regulators. Furthermore, design modifications to the switching controlling algorithm were performed to optimize number of capacitors with respect to the supply voltage in order to enhance the efficiency of SCALDO regulators. It was theoretically proven that the efficiency decline can be successfully reduced by varying the number of capacitors connected, according to the supply voltage and the minimum input voltages. The theoretical efficiency calculated for the proposed SCALDO technique falls within 81.5% - 88% range, which is well above the previously reported values. This was verified experimentally with the prototype developed using 2.7 V, 10 F supercapacitors, 5-3.3 V LDO.
机译:本研究主要集中于提高一种提高超级电容器辅助低辍学(ScalDO)调节剂的新方法。主要目的是在专门控制的条件下研究Scaldo调节器,其中电源电压低于所需最小电压的两倍,用于低压差(LDO)调节器。此外,执行对切换控制算法的设计修改以优化关于电源电压的电容器数量,以提高钢路DON调节器的效率。从理论证明,通过改变根据电源电压和最小输入电压,可以通过改变连接的电容数来成功降低效率下降。为提出的ScalDO技术计算的理论效率落在81.5%-88%范围内,远远超过先前报告的值。通过使用2.7 V,10 F超级电容器,5-3.3 V LDO开发的原型来实验验证。

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