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首页> 外文期刊>Journal of intelligent material systems and structures >Integration of a torsion-based shear-mode energy harvester and energy management electronics for a sensor module
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Integration of a torsion-based shear-mode energy harvester and energy management electronics for a sensor module

机译:集成了基于扭力的剪切模式能量采集器和用于传感器模块的能量管理电子设备

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摘要

This work demonstrates the ability of a torsion-based shear-mode energy harvester to power a sensor module by integrating a temperature sensor circuit with a purpose developed piezoelectric energy harvester. A 10-cm(3) energy harvester was developed for this application and was found to produce over 200 mu W of maximum power through an optimal load resistance under 0.25 g(pk) acceleration excitation at its resonant frequency of 237 Hz. This harvester was then tested with two interface circuits: a standard interface diode bridge rectifier and a nonlinear synchronous electrical charge extraction circuit that were compared for their suitability in powering the sensor module. Through this, the synchronous electrical charge extraction nonlinear conditioning circuit was found to have superior performance when charging a capacitor and with DC loads at low voltages and was capable of providing a maximum power output of 37 mu W under 0.25 g(pk) acceleration at 237 Hz. This output power was then used to successfully power a temperature sensor module consisting of a temperature sensor, a microcontroller, and a radio-frequency identification memory chip at a sensing frequency of 0.5 Hz.
机译:这项工作证明了通过将温度传感器电路与专门开发的压电能量采集器集成在一起,基于扭转的剪切模式能量采集器能够为传感器模块供电。为此应用开发了一个10 cm(3)的能量收集器,发现该能量收集器通过在237 g共振频率下的0.25 g(pk)加速激励下的最佳负载电阻产生200μW的最大功率。然后对该收割机进行了两个接口电路测试:一个标准接口二极管桥式整流器和一个非线性同步电荷提取电路,对它们在为传感器模块供电时的适用性进行了比较。通过这种方法,发现同步电荷提取非线性调节电路在电容器充电和低压直流负载时具有优越的性能,并且在237 g的0.25 g(pk)加速度下能够提供37μW的最大功率输出。赫兹。然后,该输出功率用于以0.5 Hz的感测频率成功地为温度传感器模块供电,该模块由温度传感器,微控制器和射频识别存储芯片组成。

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