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Comparing three different energy harvesting circuits for a ZnO nanowire based nanogenerator

机译:比较基于ZnO纳米线的纳米发电机的三种不同的能量收集电路

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Three different output circuits for a zinc oxide (ZnO) nanogenerator are investigated. A full-bridge rectifier, synchronized switch harvesting on inductor (SSHI) and the LTC3588 IC are investigated through simulations and practical experimentation. A nanogenerator supplying a maximum of 5 V at 1.25 μA is used for practical tests. The full-bridge rectifier functions well under small current situations, but does not charge the capacitor during an entire bending cycle. This is due to the diodes operating in the reverse-biased condition more, due to the charging of the output capacitor. The SSHI circuit is used to solve this problem by inversion of the piezoelectric voltage, thus charging the output capacitor during an entire cycle. This circuit, however, does not work under small current conditions, because it has additional circuit components, requiring more current than the nanogenerator can supply. Lastly the LTC3588 IC is used to drive an LED for 2 s at 1.8 V and a current of 0.17 mA. Although the LTC3588 cannot supply a constant voltage, but rather functions in a burst mode, it is the best candidate for the nanogenerator to date.
机译:研究了用于氧化锌(ZnO)纳米发电机的三种不同的输出电路。通过仿真和实际实验,研究了全桥式整流器,同步开关电感收集器(SSHI)和LTC3588 IC。纳米发电机在1.25μA时可提供最大5 V的电压,用于实际测试。全桥整流器在小电流情况下运行良好,但不会在整个弯曲周期内为电容器充电。这是由于二极管由于输出电容器的充电而更多地处于反向偏置状态。 SSHI电路用于通过反转压电电压来解决此问题,从而在整个周期内为输出电容器充电。但是,该电路无法在小电流条件下工作,因为它具有额外的电路组件,需要的电流超过纳米发电机所能提供的电流。最后,LTC3588 IC用于在1.8 V和0.17 mA电流下驱动LED 2 s。尽管LTC3588无法提供恒定的电压,但以突发模式工作,但它是迄今为止纳米发电机的最佳选择。

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