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A high-efficiency, self-powered nonlinear interface circuit for bi-stable rotating piezoelectric vibration energy harvesting with nonlinear magnetic force

机译:一种高效率,自供电的非线性接口电路,用于非线性磁力的双稳态旋转压电振动能量收集

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摘要

Parallel synchronized switch harvesting on inductor (P-SSHI) circuits have been proved to enhance piezoelectric vibration energy harvesting (PVEH), but the maximum conversion efficiency is obtained only when the voltage across the storage capacitor (VSC) equates to the optimal value. For bi-stable rotating PVEH with nonlinear magnetic force in engineering applications, however, the VSC will change greatly when powering real electric loads, thus it is impossible to maintain high conversion efficiency. In order to solve this problem, this paper presents an improved P-SSHI circuit with controllable optimal voltage (COV-PSSHI) by using a voltage control strategy between the storage capacitor and the electric load. The innovation is to control and maintain the VSC close to the optimal value. Firstly, the COV-PSSHI circuit is proposed and its theoretic model is built in detail. Then its average harvested power (AHP) is theoretically derived and AHP of the COV-PSSHI circuit is proved to be more than that of a classical P-SSHI circuit. In the end, experiments are performed to validate the performance of the COV-PSSHI circuit. It can be seen that the COV-PSSHI circuit can increase the AHP by factor 1.25 compared with classical P-SSHI circuits, which is enough to intermittently power the wireless sensor node. Also power consumption of the voltage control circuit has few effects on the COV-PSSHI circuit. In particular, it needs to optimize the envelop capacitor, the parallel inductor and two threshold voltages of the voltage controller in order to implement the COV-PSSHI circuit well in practice.
机译:已证明在电感器(P-SSHI)电路上并行同步开关收集可以增强压电振动能量收集(PVEH),但是只有在存储电容器(VSC)两端的电压等于最佳值时才能获得最大转换效率。然而,在工程应用中,对于具有非线性磁力的双稳态旋转PVEH,在为实际电负载供电时,VSC会发生很大变化,因此无法保持高转换效率。为了解决这个问题,本文提出了一种改进的P-SSHI电路,该电路通过在存储电容器和电负载之间使用电压控制策略来控制最佳电压(COV-PSSHI)。创新之处在于控制和维持VSC接近最佳值。首先,提出了COV-PSSHI电路,并详细建立了其理论模型。然后,从理论上推导其平均收获功率(AHP),事实证明COV-PSSHI电路的AHP大于经典P-SSHI电路的AHP。最后,进行实验以验证COV-PSSHI电路的性能。可以看出,与传统的P-SSHI电路相比,COV-PSSHI电路可以将AHP增加1.25倍,足以为无线传感器节点间歇供电。同样,电压控制电路的功耗对COV-PSSHI电路影响很小。特别地,需要优化包络电容器,并联电感器和电压控制器的两个阈值电压,以便在实践中很好地实现COV-PSSHI电路。

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