A piezoelectric energy-harvesting interface circuit with fully autonomous conjugate impedance matching, 156% extended bandwidth, and 0.38μW power consumption

Yifeng Cai, Y. Manoli
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引用次数: 27

Abstract

Harvesting energy from ambient vibrations with piezoelectric transducers is an alternative solution for the surging needs of self-powered devices, such as IoT devices, condition and structural monitoring devices, or biomedical implants. A limiting factor for piezoelectric transducer is the narrow bandwidth due to the high mechanical quality factor. Therefore, the output power drops significantly when the excitation frequency deviates from the resonant frequency in a real environment. One solution is to introduce time delays into active harvesting-interface concepts such as Synchronous Electric-Charge Extraction (SECE) or Synchronized Switch Harvesting on Inductor (SSHI). This emulates conjugate impedance, which matches that of the transducer, resulting in higher power from vibrations at non-resonant frequencies.
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一种完全自主共轭阻抗匹配的压电能量采集接口电路,带宽扩展156%,功耗0.38μW
利用压电传感器从环境振动中收集能量是一种替代解决方案,可以满足自供电设备(如物联网设备、状态和结构监测设备或生物医学植入物)不断增长的需求。压电换能器的一个限制因素是由于机械质量系数高而导致的带宽较窄。因此,在实际环境中,当激励频率偏离谐振频率时,输出功率明显下降。一种解决方案是在主动采集接口概念中引入时间延迟,例如同步电荷提取(SECE)或电感上同步开关采集(SSHI)。这模拟了与换能器相匹配的共轭阻抗,从而从非谐振频率的振动中获得更高的功率。
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