一种有效的可变振幅振动自主增加输入范围的SSHI接口

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Saman Shoorabi Sani
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引用次数: 0

摘要

提出了一种新型的压电能量采集器接口电路,改善了电感同步开关采集技术在变振幅振动环境下的启动问题。在提出的电感上增加输入范围同步开关采集(IIR-SSHI)方案中,一旦SSHI方案由于激励幅度的变化而停止运行,则激活一个低功率峰值检测器,通过连续的偏置翻转动作积累PEH寄生电容的电荷,而不需要任何外部能量投入,即能量启动。因此,当激励幅度大幅降低时,所提出的电路可以在能量提取的最高性能(即formmopir)下自主地保持能量提取过程的活性。采用0.18 μm CMOS标准工艺对电路进行了仿真和验证,保证了能量提取性能和鲁棒性。基于布局后仿真结果,该电路在最小输入激励幅值仅为800 mV的情况下,能较好地从PEH中提取能量。在降低输入幅度的情况下,相对于标准能量收集(SEH)和标准SSHI电路的最大输出功率改进分别为5.5和2.75。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Autonomous Increased Input Range SSHI Interface for a Variable Amplitude Vibration
This article proposes a new interface circuit for Piezoelectric Energy Harvesters (PEHs), which improves the startup issue of the Synchronized Switch Harvesting on Inductor (SSHI) technique in variable amplitude vibration environments. In the proposed Increased Input Range Synchronized Switch Harvesting on Inductor (IIR-SSHI), once the SSHI scheme stops operating because of the change in the excitation amplitude, a low-power peak detector is activated to accumulate the charge of the parasitic capacitance of the PEH by successive bias-flipping actions, without requiring any external energy investment, i.e., energy kick start. Therefore, the proposed circuit can autonomously maintain the energy extraction procedure active at the highest performance of energy extraction, i.e., FoMMOPIR, when the excitation amplitude is reduced considerably. The proposed circuit is simulated and verified using a 0.18-μm CMOS standard technology, ensuring energy extraction performance and robustness. Based on the post-layout simulation results, the proposed circuit can extract energy from PEH significantly for a minimum input excitation amplitude of only 800 mV. The maximum output power improvement relative to the Standard Energy Harvesting (SEH) and standard SSHI circuits is 5.5 and 2.75 in decreased input amplitude scenarios, respectively.
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来源期刊
CiteScore
8.60
自引率
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