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期刊信息
  • 中国标准连:ISSN1005-2895
  • 续出版物号: CN 33-1180/TH
  • 主管单位:轻工业杭州机电设计研究院有限公司
  • 主办单位:轻工业杭州机电设计研究院有限公司、中国轻工机械协会、中国轻工业机械总公司
  • 社  长:刘安江
  • 主  编:黄丽珍
  • 地  址:杭州市余杭区高教路970号西溪联合科技广场4-711
  • 电子邮件:qgjxzz@126.com
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祖洪飞1, 马俊俊1, 金正韬1, 陈章位2, 张翔3, 吴贤欢3.基于压电效应的道路振动能量俘获系统研究[J].轻工机械,2024,42(4):56-62
基于压电效应的道路振动能量俘获系统研究
Research on Road Vibration Energy Harvesting System Based on Piezoelectric Effect
  
DOI:10.3969/j.issn.1005 2895.2024.04.008
中文关键词:  能量俘获  道路振动  压电效应  压电振子  激振器
英文关键词:energy harvesting  road vibration  piezoelectric effect  piezoelectric transducer  exciter
基金项目:宁波市重点研发计划暨“揭榜挂帅”项目(2023Z135);宁波市重点研发计划暨“揭榜挂帅”项目(2023Z131);浙江省市场监督管理局雏鹰计划培育项目(CY2022215)。
作者单位
祖洪飞1, 马俊俊1, 金正韬1, 陈章位2, 张翔3, 吴贤欢3 1.浙江理工大学 机械工程学院 浙江 杭州310018  2.杭州亿恒科技有限公司 浙江 杭州310015 3.浙江谱麦科技有限公司 浙江 宁波315000 
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中文摘要:
      针对目前车辆振动能量回收率较低的问题,为探究路面振动能量俘获技术,笔者对基于压电效应的道路振动能量俘获系统进行了研究。设计并搭建了能量俘获模拟系统,并进行了测试。首先,基于PZT 5H系列压电陶瓷设计了压电振子,并对影响压电振子能量转化效率的振动模态及支撑方式进行分析及设计;然后,对整流电路、稳压电路及储能电路进行了分析,并基于集成芯片LTC3588 1设计了外围电路,通过引脚选择3.3 V的输出电压并将其输出的电能储存在超级电容中;最后,利用激振器搭建了道路振动能量俘获模拟系统对压电振子进行了测试。LED灯的模拟负载电路验证了该能量俘获系统的可行性;激振器载荷加载试验结果表明该能量俘获系统的能量转换效率约为0.5%。
英文摘要:
      Aiming at the low recovery rate of vehicle vibration energy, in order to explore the technology of road vibration energy harvesting, the energy harvesting system of road vibration based on piezoelectric effect was studied..The simulation system of energy harvesting was designed and built, and the testing was conducted accordingly. Firstly, the piezoelectric transducer was designed based on the PZT 5H series piezoelectric ceramics, and the vibration mode and support method which affect the energy conversion efficiency of piezoelectric transducer were analyzed and designed. Then, the rectifier circuit, voltage regulator circuit and energy storage circuit were analyzed, and the peripheral circuit was designed based on the integrated chip LTC3588 1. The 3.3 V output voltage was selected through pins and the output energy was stored in a supercapacitor. Finally, the road vibration energy harvesting simulation system was built using an exciter and tested the piezoelectric transducer. The feasibility of the energy harvesting system was verified through the simulated load circuit of LED light. The results of vibration exciter loading test show that the energy conversion efficiency of the energy harvesting system is about 0.5%.
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