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A series-SSHI-Phi interface circuit for piezoelectric energy harvesting with 163 improvement in extracted power at off-resonance

机译:用于压电能量收集的串联SSHI-Phi接口电路,在失谐时提取功率提高了163%

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This paper presents the design and implementation of a series-SSHI-phi interface circuit for piezoelectric energy harvesting with improved operating frequency range. Adopting a nonlinear switching architecture, complex impedance matching can be achieved at off-resonance by introducing delay into switching timing. A buck-boost converter following the rectifier is used for resistive-load emulation and energy transfer. Implemented with a 0.25-μm CMOS HV process, experimental results with a commercially available piezoelectric device show a 56.1% improvement in 3-dB bandwidth compared to conventional series-SSHI interface. Furthermore, a 163% improvement in extracted power is demonstrated with -2% of frequency mismatch. When vibrating at resonant frequency of 126.7 Hz with 0.5 g acceleration and a 1.1-g tip mass, the harvester is able to extract 165 μW after considering the 12 μW of control power.
机译:本文介绍了具有改进的工作频率范围的串联式SSHI-phi接口电路的设计和实现,该接口电路用于压电能量收集。采用非线性开关架构,通过在开关时序中引入延迟,可以在非谐振状态下实现复杂的阻抗匹配。整流器后的降压-升压转换器用于电阻负载仿真和能量传输。通过采用0.25μmCMOS HV工艺实现,与常规的SSHI系列接口相比,使用市售压电器件的实验结果表明3dB带宽提高了56.1%。此外,在-2%的频率失配下,提取功率提高了163%。当以0.5g加速度和1.1g尖端质量以126.7 Hz的谐振频率振动时,在考虑12μW的控制功率后,收割机能够提取165μW。

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