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68 times that of the SECE, and it can reach 6 times the ORVR of the S–SSHI. It was written by MDPI for Sciforum in 2014. 23×1. This paper aims to design an ultra-low power control circuit that can harvest weak go to the website vibrational energy on the order of several microwatts to power heavy loads such as wireless sensors. This publication has not been cited yetView this article in digital edition. ; Geng, X.

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School of Microelectronics, Xidian University, 2 Taibai Road, Xi’an City, Shaanxi, P. R. 20944/preprints201701. Lumentut.

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Preprints 2017, 2017010062 (doi: 10. php with some tweaks. org/10. . China
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School of Microelectronics, Xidian University, 2 Taibai Road, Xi’an City, Shaanxi, P.

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Preprints 2017, 2017010062 (doi: 10.
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The intermittent control strategy proposed in this paper can drastically reduce power consumption of the control circuit. v1). 1016/j. The circuit proposed can harvest energy through S–SSHI and SECE in positive and negative half cycles, respectively. Learn more about Institutional subscriptionsCorrespondence to
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This control circuit can also achieve an ultra-low consumption of 0. In addition, the circuit shows a simpler implementation compared with state-of-the-art designs. An Adaptive Self-powered Piezoelectric Energy Harvesting Circuit and Its Application on Bridge Condition Monitoring. By using the AOR active diode and the P-SSHI with precise switch-on-time controlled circuit, a good performance improvement has been achieved for the proposed interface circuit.

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15, which is 1. Further, a parallel synchronized switch harvesting on inductor (P-SSHI) with precise switch-on-time controlled circuit is proposed to achieve higher voltage flipping efficiency and improve the power extraction capability of the rectifier. Moreover, the figure of merit (FOM), optimal rectified voltage range (ORVR) and region of interest (SRoI) of simulation and experiment results are discussed. Skip to Main Content
A not-for-profit organization, IEEE is the world’s largest technical professional organization dedicated to advancing technology for the benefit of humanity. SRoI factor of the proposed circuit show that the proposed method has better performance.

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The two methods have been used for comparison giving accurate results. . 2022. F. Without dedicated cold-start modules and DC auxiliary supply, the circuit can achieve optimal efficiency within one input cycle, if the input signal is larger than voltage threshold.

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All articles published by MDPI are made immediately available worldwide under an open access license. /math. The rendering of the mark-up is based on Wiky. 12mm2.

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The power test of the PEH based on array composite particle chains in the self-powered system was realized. Copyright 2022 IEEE – All rights reserved. $$, or MathML format math . . We encourage comments and feedback from a broad range of readers. Secondly, an experimental system was established to test the performance of the PEH, including the stability of the system under a continuous impact load, the power adjustment under different resistances, and the influence of the number of particle chains on the energy harvesting efficiency.

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The proposed control strategy is especially favorable for harvesting energy from natural vibrations and can be a promising solution for other PEH circuits as well.

Visit our dedicated information section to learn more about MDPI. 81 times more output power compared with a traditional rectifier. Finally, a self-powered supply system was established with the PEH composed of three composite particle chains to realize the power supply of the microelectronic components.

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An adaptive on-resistance active diode (AOR active diode) is proposed to replace the traditional active diode to achieve higher current zero-crossing detection accuracy, improve the input current range and the output power of the rectifier. .