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An Energy Management Circuit for Self-Powered Ubiquitous Sensor Modules Using Vibration-Based Energy

机译:使用基于振动的能量的自供电无处不在传感器模块的能量管理电路

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摘要

An energy management circuit is proposed for self-powered ubiquitous sensor modules using vibration-based energy. With the proposed circuit, the sensor modules work with low duty cycle operation. Moreover, a two-tank circuit as a part of the energy management circuit is utilized to solve the problem that the average power density of ambient energy always varies with time while the power consumption of the sensor modules is constant and larger than it. In addition, the long start-up time problem is also avoided with the timing control of the proposed energy management circuit. The CMOS implementation and silicon verification results of the proposed circuit are also presented. Its validity is further confirmed with a vibration-based energy generation. The sensor module is used to supervise the vibration of machines and transfer the vibration signal discontinuously. A piezoelectric element acts as the vibration-to-electricity converter to realize battery-free operation.
机译:提出了一种能量管理电路,用于使用基于振动的能量的自供电普遍存在的传感器模块。利用提出的电路,传感器模块可以低占空比工作。而且,利用两罐式电路作为能量管理电路的一部分来解决以下问题:环境能量的平均功率密度总是随时间变化,而传感器模块的功耗恒定并且大于它。另外,通过提出的能量管理电路的定时控制也避免了长的启动时间问题。还介绍了该电路的CMOS实现和硅验证结果。通过振动产生的能量进一步证实了其有效性。传感器模块用于监督机器的振动并不连续地传递振动信号。压电元件用作振动电转换器,以实现无电池运行。

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