基于并联电感同步开关控制的振动能量回收方法研究

曹军义;任晓龙;周生喜;曹秉刚

振动与冲击 ›› 2012, Vol. 31 ›› Issue (17) : 56-60.

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振动与冲击 ›› 2012, Vol. 31 ›› Issue (17) : 56-60.
论文

基于并联电感同步开关控制的振动能量回收方法研究

  • 曹军义,任晓龙,周生喜,曹秉刚
作者信息 +

Vibration Energy Harvesting Based on Synchronized Switch Control of Parallel Inductor

  • CAO Junyi, REN Xiaolong, Zhou shengxi, CAO Binggang
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文章历史 +

摘要


针对振动能量回收使用的并联电感同步开关(SSHI)控制方法研究中未考虑的控制损耗、储能负载和激励环境等问题,设计了一种基于电流监控、比较器、单片机和双向电子开关的低功耗回收控制电路。单片机通过比较器产生的中断信号控制双向开关适时闭合,成功实现了并联SSHI回收控制电路的功能。以储能装置为负载时,分析了整流电压、振子电容、激励幅值和频率对并联SSHI回收电路控制效果的影响,结果表明该方法在整流电压值较高、振子电容较大、激励频率较高、激励力较小时能够更有效地提高回收效率,为并联SSHI控制方法的应用奠定了一定的理论基础。



Abstract

In order to improve the efficiency of vibration energy harvesting and study the effect of ambience excited force and storage energy Load, a low power synchronized switch control circuit of parallel inductor is proposed, which comprises a current shunt monitor, a comparator, a microcomputer and a bidirectional electronic switch. When the microcomputer turns on or off the switch at the appropriate time according to the interrupt signal generated by the comparator, the control method for parallel Synchronized Switch Harvesting on Inductor(SSHI) can be achieved. In the case that the energy storage unit is considered as load of SSHI, the effect of rectified voltage, piezoelectric oscillator capacitor, the amplitude and frequency of excitation on the efficiency is analyzed. The experimental results show that the proposed method can improve the vibration harvesting efficiency in case of higher rectified voltage, smaller excitation amplitude, larger capacitor and excitation frequency. Meanwhile, they support the theoretical basis for the application of SSHI.

关键词

振动能量回收 / 并联SSHI / 低功耗电路 分类号:TM282 / TP27

Key words

Vibration energy harvesting / parallel synchronized switch harvesting on inductor / low power circuit

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导出引用
曹军义;任晓龙;周生喜;曹秉刚. 基于并联电感同步开关控制的振动能量回收方法研究[J]. 振动与冲击, 2012, 31(17): 56-60
CAO Junyi;REN Xiaolong;Zhou shengxi;CAO Binggang. Vibration Energy Harvesting Based on Synchronized Switch Control of Parallel Inductor[J]. Journal of Vibration and Shock, 2012, 31(17): 56-60

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