首页> 外文期刊>Journal of microanolithography, MEMS, and MOEMS >Effect of shape of seismic mass on potential generated by MEMS-based cantilever-type piezoelectric energy harvester
【24h】

Effect of shape of seismic mass on potential generated by MEMS-based cantilever-type piezoelectric energy harvester

机译:地震质量的形状对基于MEMS的悬臂式压电能量采集器产生的电势的影响

获取原文
获取原文并翻译 | 示例
           

摘要

A vibration-based piezoelectric energy harvester has received increasing attention as a potential power source for microelectronics because of its simplicity of design, operation, and fabrication of devices using microelectromechanical system (MEMS) technology. Energy harvesting provides unending sources of energy for low-power electronics such as wireless sensor nodes where replacement of batteries is not practically possible. Piezoelectric energy harvesters are widely considered because of their compact design, compatibility to MEMS devices, and ability to respond to a wide range of frequencies freely available in the environment. A model for cantilever-based piezoelectric energy harvester is designed and optimized by investigating the effect of seismic mass geometry on the potential generated. The effect of the shape geometry of the seismic mass on the resultant potential generated due to center of mass shift is calculated and compared. A seismic mass with a triangular-shaped geometry with fields concentrated at the tip of the triangle gives a resultant center of mass for a cantilever structure and the seismic mass at a higher point as compared with the rectangular or pyramidal shapes that were investigated. This shift in the center of mass of the combined geometry (cantilever beam and seismic mass) toward the applied pressure results in exerting a higher force and thus increasing the potential. This paper reports that an increased potential of 0.0533 V at a boundary load of 1 bar pressure (minimum feasible pressure) is generated by the energy harvester when a triangular-shaped seismic mass is used; this innovative shape is also compared with other geometries.
机译:基于振动的压电能量采集器由于其设计,操作和使用微机电系统(MEMS)技术的设备制造简单性,作为微电子设备的潜在电源已受到越来越多的关注。能量收集为低功率电子设备(例如,实际上不可能更换电池的无线传感器节点)提供了无限的能源。压电式能量收集器因其紧凑的设计,与MEMS器件的兼容性以及对环境中自由可用的各种频率的响应能力而被广泛考虑。通过研究地震质量几何形状对产生的电势的影响,设计和优化了基于悬臂的压电能量收集器的模型。计算并比较了地震质量的形状几何形状对由于质心偏移而产生的合成电势的影响。与研究的矩形或金字塔形状相比,具有三角形几何形状且场集中在三角形尖端的地震质量给出了悬臂结构的合成质量中心,并且在较高点处给出了地震质量。组合几何体(悬臂梁和地震质量)的质心朝所施加压力的这种偏移导致施加更大的力,从而增加了电势。本文报道,当使用三角形地震质量块时,能量收集器在1 bar压力(最小可行压力)的边界负载下会产生0.0533 V的增加电势。还将这种创新的形状与其他几何形状进行比较。

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