首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Efficient Power Transfers in Piezoelectric Energy-Harvesting Switched-Inductor Chargers
【24h】

Efficient Power Transfers in Piezoelectric Energy-Harvesting Switched-Inductor Chargers

机译:压电能量收集开关电感器充电器的高效电源转印

获取原文
获取原文并翻译 | 示例

摘要

Piezoelectric -harvesting transducers can draw power from motion that can be used to energize a host of wireless microsystems that sense, process, and share vital information across a network. Since these tiny devices draw little power, maximizing the power they transfer is critical. Synchronized-discharge circuits are popular in this space because they can collect all the charge from the transducer and increase drawn power. Pre-charging the transducer can draw even more power, but only as much as voltage-breakdown limits allow. This brief examines how synchronous discharge circuits can output the most power possible from tiny difficult-to-overdamp piezoelectric transducers. Measurements will show how pre-charge symmetry and energy-transfer schemes alter the power drawn from the transducer and the power lost in the system. The charges are tested with a 10 x 50 x 1-mm(3) 15-nF transducer generates up to 10 mu A at 100 Hz and the breakdown voltage of the harvester circuit is 3 V. Indirect and direct transfers with symmetric pre-charges output 21% and 43% more power with the same inductor than the 4.2 mu W that indirect transfers without pre-charge can generate. Generating the highest power possible is important because, with more power, tiny piezoelectric transducers can power wireless microsensors with greater functionality and longer lifetime.
机译:压电热换能器可以从运动中汲取电源,该动作可用于激励一系列感知,处理和共享网络中的重要信息的无线微系统。由于这些微小的设备绘制了很少的功率,最大化它们传输的功率至关重要。同步 - 放电电路在此空间中流行,因为它们可以从换能器中收集所有电荷并增加汲取功率。预充电换能器可以吸取更多的功率,但只有电压 - 击穿限制允许的电量。本简要介绍了同步放电电路如何从微小难以过渡的压电传感器输出最大电源。测量结果将显示预充电对称和能量转移方案如何改变从换能器汲取的功率和系统中丢失的功率。用10×50×1mm(3)15-NF换能器测试电荷,在100Hz处产生高达10μA的10μA,并且收割机电路的击穿电压为3 V.间接和直接转移,具有对称的预充电。输出21%和43%的电力比4.2μm在没有预充电的间接传输的4.2μm的电感可能产生。产生最高功率可能是重要的,因为具有更多的功率,微小压电传感器可以电源具有更大功能和更长的寿命的无线微传感器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号