期刊文献+

基于LabVIEW的多线圈电磁式振动发电机测试系统设计

Design of Multi-coil Electromagnetic Vibration Generator Test System Based on LabVIEW
下载PDF
导出
摘要 电磁式振动发电机可收集生活中的振动能量,它的存在对节能减排、开发清洁能源具有重要意义。为了解决多线圈电磁式振动发电机各线圈电压信号相位差的测量问题,利用LabVIEW开发了多线圈电磁式振动发电机测试系统,设计了读取模块、通信模块、显示模块、存储模块。系统可对波峰和相位差进行手动、自动两种模式的检测和计算。与现有技术相比,采用该系统解决了传统电压波形分析模式中运用示波器只能显示两通道,或多通道示波器价格昂贵的问题,降低了测量成本,为多线圈电磁式振动发电机的设计提供了数据支持。 Electromagnetic vibration generators can collect vibration energy in life, which is of great significance for energy conservation and emission reduction, and development of clean energy. In order to solve the problem of measuring the phase difference of the voltage signal of each coil of the multi-coil electromagnetic vibration generator, a multi-coil electromagnetic vibration generator test system was developed by using LabVIEW, and the reading module, communication module, display module and storage module were designed. The system can detect and calculate the wave crest and phase difference in two modes:manual and automatic. Compared with the existing technology, this system solves the problem that the oscilloscope can only display two-channel or multi-channel oscilloscopes in the traditional voltage waveform analysis mode, which is expensive, reduces the measurement cost, and provides support data for the design of multi-coil electromagnetic vibration generators.
作者 俞海猛 汪振东 潘凌 YU Haimeng;WANG Zhendong;PAN Ling(Guodian NARI Nanjing Control System Co.,Ltd.,Nanjing 211106,Jiangsu,China;Marketing Department,State Grid Xinjiang Electric Power Company,Urumqi 830022,Xinjiang,China;Marketing Service Center,State Grid Urumqi Power Supply Company,Urumqi 830022,Xinjiang,China)
出处 《能源与节能》 2023年第1期69-73,共5页 Energy and Energy Conservation
关键词 振动发电机 多线圈 测试系统 模块设计 自动检测 相位差 vibration generator multi-coil test system module design automatic detection phase difference
  • 相关文献

参考文献2

二级参考文献45

  • 1李晓娟,李全禄,谢妙霞,郝淑娟,杨贵考,周九茹,马晴.国内外压电陶瓷的新进展及新应用[J].硅酸盐通报,2006,25(4):101-107. 被引量:23
  • 2戴魏,余海涛,胡敏强.基于虚功法的直线同步电机电磁力计算[J].中国电机工程学报,2006,26(22):110-114. 被引量:44
  • 3Beeby S P,Tudor M J,White N M. Energy Harvesting Vibration Sources for Microsystems Applications [J]. Measurement Science and Technology, 2006,17(12): 175-195.
  • 4Kuah H, Najafi K. Energy Scavenging from Low-frequency Vibrations by Using Frequency Up-conversion for Wireless Sensor Applications[J]. IEEE Sensors Journal,2008,8(3):261-268.
  • 5Liu W Q,Feng Z H,He J,et al. Maximum Mechanical Energy Harvesting Strategy for a Piezoelement [J]. Smart Materials and Struetures, 2007,16 (6): 2130-2136.
  • 6Beeby S P,Tudor M J,Torah R N, et al. Macro and Micro Scale Electromagnetic Kinetic Energy Harvesting Generators [C]//Symposium on Design, Test,Integration and Packaging of MEMS/MOEMS - DTIP' 06. Stresa, Lago Maggiore, Italy, 2006: 1-6.
  • 7Kim H, Tadesse Y, Priya S. Piezoelectric Energy Harvesting[M]. New York: Springer, 2009.
  • 8Qi Y,Jafferis N T,Lyons K,et al. Piezoelectric Ribbons Printed onto Rubber for Flexible Energy Conversion[J]. Nano Letter, 2010,10 (2) : 524-528.
  • 9Roundy S,Wrignt P K,Rabaey J. A Study of Low Level Vibrations as a Power Source for Wireless Sensor Nodes [J]. Computer Communications, 2003,26(11):1131-1144.
  • 10Renno J M,Daqaq M F,Inman D J. On the Optimal Energy Harvesting from a Vibration Source [J]. Journal of Sound and Vibration, 2008,320(1): 386-405.

共引文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部