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Extensible Multi-Input Synchronous Electronic Charge Extraction Circuit Based on Triple Stack Resonance for Piezoelectric and Thermoelectric Energy Harvesting

机译:基于三堆叠谐振的可扩展多输入同步电子电荷提取电路,用于压电和热电能收割

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摘要

At present, research on interface circuits for environmental energy harvesting is mainly carried out around a single transducer. However, rich ambient energy sources can be harvested with multiple transducers. Hence, in this article, extensible multi-input synchronous electronic charge extraction (EMI-SECE) interface circuit based on triple-stack LC resonance for piezoelectric and thermoelectric energy harvesting is proposed. proposed EMI-SECE interface circuit can simultaneously extract energy from multiple piezoelectric transducers (PZTs) and thermoelectric generators when the peak open-circuit voltage of the PZTs is detected by the passive peak detectors. Theoretical analysis and experiments verify the effectiveness of the circuit. The experimental results show that the proposed EMI-SECE circuit can harvest energy from two PZTs with any phase difference (0-2 pi) based on single inductor. In addition, the circuit can harvest thermoelectric energy at an open-circuit voltage as low as 20 mV, and the maximum harvesting efficiency can be reached 85.7% at V-oc = 200 mV.
机译:目前,对环境能量收集的接口电路的研究主要是在单个换能器周围进行的。然而,可以用多个传感器收获丰富的环境能源。因此,在本文中,提出了基于用于压电和热电能量收集的三堆栈LC谐振的可伸展多输入同步电子电荷提取(EMI-SECE)接口电路。当被动峰值检测器检测到PZTS的峰值开路电压时,所提出的EMI-SECE接口电路可以同时提取来自多个压电换能器(PZT)和热电发电机的能量。理论分析和实验验证了电路的有效性。实验结果表明,所提出的EMI-SECE电路可以基于单电感器的任何相位差(0-2Pi)从两个PZ的能量收获能量。另外,电路可以在低至20 mV的开口电压下收获热电能,并且在V-oc = 200 mV下可以达到85.7%的最大收获效率。

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