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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Vibration Energy Scavenging System With Maximum Power Tracking for Micropower Applications
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Vibration Energy Scavenging System With Maximum Power Tracking for Micropower Applications

机译:具有最大功率跟踪功能的振动能量清除系统,适用于微功率应用

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摘要

In this work, we present a vibration-based energy scavenging system based on piezoelectric conversion for micropower applications. A novel maximum power point (MPP) tracking scheme is proposed to harvest the maximum power from the vibration system. A time-multiplexing mechanism is employed to perform energy harvesting and MPP tracking alternately. In the MPP tracking mode, a voltage reference that represents the optimal output voltage at the MPP is generated. A control unit then uses this reference to track the system operation around the MPP. The proposed system is capable of self-starting up without the help of an energy buffer. As a result, it is suitable for battery-less applications or when the energy buffer is completely drained. This tracking scheme has very small power overhead and is simple to implement in VLSI. Hence, it is especially applicable for micropower systems. The entire design was fabricated in a 0.35-$mu$ m CMOS process. Experimental results verified the proposed MPP tracking scheme and demonstrated the system operation. Measurement results show that the power harvesting efficiency of the electrical circuitry is higher than 90%.
机译:在这项工作中,我们提出了一种基于压电的基于振动的能量清除系统,用于微功率应用。提出了一种新颖的最大功率点(MPP)跟踪方案,以从振动系统中获取最大功率。采用时分复用机制来交替执行能量收集和MPP跟踪。在MPP跟踪模式下,将生成代表MPP处最佳输出电压的参考电压。然后,控制单元使用该参考来跟踪MPP周围的系统操作。所提出的系统能够在没有能量缓冲器的情况下自动启动。因此,它适用于无电池应用或能量缓冲器完全耗尽的情况。这种跟踪方案的功率开销非常小,并且在VLSI中易于实现。因此,它特别适用于微功率系统。整个设计是在0.35-μmCMOS工艺中制造的。实验结果验证了所提出的MPP跟踪方案并演示了系统操作。测量结果表明,电路的功率收集效率高于90%。

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