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A mechanical solution of self-powered SSHI interface for piezoelectric energy harvesting systems

机译:压电能量收集系统自供电SSHI接口的机械解决方案

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The synchronized switch interface circuits, e.g., synchronized switch harvesting on inductor (SSHI), can significantly enhance the harvesting capability of piezoelectric energy harvesting (PEH) systems. In these power conditioning circuits, the piezoelectric voltage is flipped with respect to a bias voltage at the instants when the piezoelectric element is at maximum deforming positions. Voltage peak detection and in time switching action are required for implementing these functions. The state-of-the-art solutions are mostly realized by electronic methods, i.e., both functions are carried out by electronic comparators and electronic switches. However, the peak detectors usually introduce switching phase lag; while the electronic switches function only when the vibration magnitude is above a threshold level. When the vibration is lower than such threshold, the SSHI interface shows no improvement. In this paper, we propose a mechanical solution for constructing the self-powered SSHI interface for PEH systems. This technique is realized by installing a low cost vibration sensor switch (VSS) at the free end of a piezoelectric cantilever. It senses the maximum deflecting places of the cantilever and automatically carries out synchronized switching actions. Compared to the existing electronic solutions, this mechanical solution is compact and has relative low switching threshold. Therefore, with this self-powered solution, the advantage of SSHI interface circuit can be sufficiently released, in particular, at low level vibration. Experiment shows the feasibility of this mechanical solution. The advantages and limitations are also discussed in this paper.
机译:同步开关接口电路,例如电感器上的同步开关采集(SSHI),可以显着增强压电能量采集(PEH)系统的采集能力。在这些功率调节电路中,在压电元件处于最大变形位置的瞬间,压电电压相对于偏置电压发生翻转。实现这些功能需要电压峰值检测和及时切换动作。最新的解决方案主要通过电子方法来实现,即,两个功能都由电子比较器和电子开关来执行。但是,峰值检波器通常会引起开关相位滞后。而电子开关仅在振动幅度高于阈值水平时起作用。当振动低于此阈值时,SSHI界面没有任何改善。在本文中,我们提出了一种构建PEH系统自供电SSHI接口的机械解决方案。通过在压电悬臂的自由端安装一个低成本的振动传感器开关(VSS)来实现此技术。它可以感应悬臂的最大偏转位置,并自动执行同步切换动作。与现有的电子解决方案相比,该机械解决方案紧凑且开关阈值相对较低。因此,利用这种自供电解决方案,可以充分释放SSHI接口电路的优势,特别是在低水平振动的情况下。实验证明了这种机械解决方案的可行性。本文还讨论了优点和局限性。

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