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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >A Closed-Loop Reconfigurable Switched-Capacitor DC-DC Converter for Sub-mW Energy Harvesting Applications
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A Closed-Loop Reconfigurable Switched-Capacitor DC-DC Converter for Sub-mW Energy Harvesting Applications

机译:适用于低于mW能量收集应用的闭环可重配置开关电容DC-DC转换器

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Energy harvesting is an emerging technology for powering wireless sensor nodes, enabling battery-free operation of these devices. In an energy harvesting sensor, a power management circuit is required to regulate the variable harvested voltage to provide a constant supply rail for the sensor circuits. The power management circuit needs to be compact, efficient, and robust to the variations of the input voltage and load current. A closed-form power expression and custom control algorithm for regulation of a switched-capacitor DC-DC converter with optimal conversion efficiency are proposed in this paper. The proposed regulation algorithm automatically adjusts both the voltage gain and switching frequency of a switched-capacitor DC-DC converter based on its input voltage and load current, increasing the power efficiency across a wide input voltage range. The design and simulation of a fully integrated circuit based on the proposed power managing approach is presented. This power management circuit has been simulated in a 0.25 standard CMOS process and simulation results confirm that with an input voltage ranging from 0.5 V to 2.5 V, the converter can generate a regulated 1.2 V output rail and deliver a maximum load current of 100 . The power conversion efficiency is higher than 74% across a wide range of the input voltage with a maximum efficiency of 83%.
机译:能量收集是一种为无线传感器节点供电的新兴技术,可实现这些设备的无电池操作。在能量采集传感器中,需要电源管理电路来调节可变的采集电压,以为传感器电路提供恒定的供电轨。电源管理电路必须紧凑,高效且坚固,以适应输入电压和负载电流的变化。提出了一种具有最优转换效率的闭环功率表达式和定制控制算法,用于调节开关电容器DC-DC变换器。提出的调节算法可根据开关电容器DC-DC转换器的输入电压和负载电流自动调节其电压增益和开关频率,从而在较宽的输入电压范围内提高了电源效率。提出了一种基于所提出的功率管理方法的全集成电路设计和仿真。该电源管理电路已在0.25标准CMOS工艺中进行了仿真,仿真结果证实,在0.5 V至2.5 V的输入电压范围内,该转换器可产生稳定的1.2 V输出轨,并提供最大100的负载电流。在很宽的输入电压范围内,功率转换效率都高于74%,最大效率为83%。

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