首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >A High-Voltage Energy-Harvesting Interface for Irregular Kinetic Energy Harvesting in IoT Systems with 1365 Improvement Using All-NMOS Power Switches and Ultra-low Quiescent Current Controller
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A High-Voltage Energy-Harvesting Interface for Irregular Kinetic Energy Harvesting in IoT Systems with 1365 Improvement Using All-NMOS Power Switches and Ultra-low Quiescent Current Controller

机译:使用全NMOS电源开关和超低静态电流控制器的高压能量收集接口用于物联网系统中不规则的动能收集改进了1365%

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摘要

An energy-harvesting interface for kinetic energy harvesting from high-voltage piezoelectric and triboelectric generators is proposed in this paper. Unlike the conventional kinetic energy-harvesting interfaces optimized for continuous sinusoidal input, the proposed harvesting interface can efficiently handle irregular and random high voltage energy inputs. An N-type mosfet (NMOS)-only power stage design is introduced to simplify power switch drivers and minimize conduction loss. Controller active mode power is also reduced by introducing a new voltage peak detector. For efficient operation with potentially long intervals between random kinetic energy inputs, standby power consumption is minimized by monitoring the input with a 43 pW wake-up controller and power-gating all other circuits during the standby intervals. The proposed harvesting interface can harvest energy from a wide range of energy inputs, 10 s of nJ to 10 s of µJ energy/pulse, with an input voltage range of 5–200 V and an output range of 2.4–4 V under discontinuous as well as continuous excitation. The proposed interface is examined in two scenarios, with integrated power stage devices (maximum input 45 V) and with discrete power stage devices (maximum input 200 V), and the harvesting efficiency is improved by up to 600% and 1350%, respectively, compared to the case when harvesting is performed with a full bridge rectifier.
机译:本文提出了一种从高压压电和摩擦发电机中收集动能的能量收集接口。与针对连续正弦输入进行了优化的常规动能采集界面不同,所提出的采集界面可以有效处理不规则和随机的高压能量输入。引入了仅N型MOSFET(NMOS)的功率级设计,以简化功率开关驱动器并最小化传导损耗。通过引入新的电压峰值检测器,还可降低控制器的活动模式功率。为了在随机动能输入之间可能存在较长间隔的情况下进行有效操作,可通过使用43 pW唤醒控制器监控输入并在待机间隔内为所有其他电路供电,从而将待机功耗降至最低。提议的采集接口可以采集各种能量输入中的能量,从10 s nJ到10 s µJ能量/脉冲,输入电压范围为5–200 V,输出范围为2.4–4 V(不连续)。以及连续激发。在集成的功率级设备(最大输入为45 V)和分立的功率级设备(最大输入为200 V)的两种情况下,对提议的接口进行了检查,采集效率分别提高了600%和1350%。与使用全桥整流器进行收割的情况相比。

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