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A High Peak Output Power and High Power Conversion Efficiency SIMIMO Converter Using Optimal on-Time Control and Hybrid Zero Current Switching for Energy Harvesting Systems in IoT Applications

机译:高峰输出功率和高功率转换效率SIMIMO转换器使用最佳的可随机控制和混合零电流切换IOT应用中的能量收集系统

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This article proposes a single inductor multi-input multioutput (SIMIMO) converter with high peak output power and power conversion efficiency for energy harvesting systems in Internet of Things (IoT) applications. The proposed SIMIMO converter consists of inputs with four harvesters and a battery, and outputs with 1.8 V output, 3.3 V output, and a battery. The optimal on-time control method is proposed to optimally adjust the on time required to energize the inductor, thus increasing the peak output power to cover a wide distance range. In addition, the hybrid zero-current-switching (ZCS) method is proposed to adaptively calibrate the offset of the ZCS comparator, thus improving the power conversion efficiency. The proposed SIMIMO converter is fabricated using 0.18-mu m standard bipolar-CMOS-DMOS (BCD) process technology with 1.8- and 5-V devices. The measurement results show that the peak output power is achieved to be 462 mW, and the peak power conversion efficiencies at 1.8 V output, 3.3 V output, and battery are 89.2%, 84.5%, and 86.4%, respectively. Moreover, the quiescent current of the power management controller, which controls the proposed converter, is achieved to be only 1.6 mu A. Therefore, the proposed SIMIMO converter is suitable for energy harvesting systems in various IoT applications.
机译:本文提出了一种单一电感多输入多输出(SIMIMO)转换器,具有高峰输出功率和电力转换效率,用于内容互联网上的能量收集系统(IOT)应用。建议的SIMIMO转换器由具有四个收割机和电池的输入组成,输出为1.8 V输出,3.3 V输出和电池。提出了最佳的接通时间控制方法,以最佳地调整通电电感器所需的时间,从而增加峰值输出功率以覆盖宽距离范围。另外,提出了混合零电流切换(ZCS)方法以自适应地校准ZCS比较器的偏移,从而提高功率转换效率。建议的SIMIMO转换器采用0.18-mu M标准双极-CMOS-DMOS(BCD)工艺技术制造,具有1.8和5V器件。测量结果表明,峰值输出功率达到462兆瓦,分别为1.8V输出,3.3V输出和电池的峰值电力转换效率分别为89.2%,84.5%和86.4%。此外,控制所提出的转换器的电源管理控制器的静止电流仅为1.6μA。因此,所提出的SIMIMO转换器适用于各种IOT应用中的能量收集系统。

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