Thermal Energy Harvesting for WSNs

被引:0
|
作者
Lu, Xin [1 ]
Yang, Shuang-Hua [1 ]
机构
[1] Univ Loughborough, Dept Comp Sci, Loughborough, Leics, England
来源
IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN AND CYBERNETICS (SMC 2010) | 2010年
关键词
Energy havesing; thermal energy harvestign system; thermoelectric; wireless sensor network; ZigBee; DC-C converter; power mangement;
D O I
暂无
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Because of the recent developments in both wireless technologies and low power electronics, wireless devices consume less and less power and are promising the possibility to operate continuously by using energy harvesting technologies. The interest in Wireless Sensor Networks (WSNs), powered by environment energy harvesters, has been increasing over the last decade, especially those using thermal energy harvesting. In this paper, a low temperature thermal energy harvesting system, which can harvest heat energy from a temperature gradient and convert it into electrical energy, which can be used to power wireless electronics, is proposed. A prototype based on three subsystems is presented to extract heat energy from a radiator and use it to power ZigBee electronics. High efficiency and a long system lifetime are two of the main advantages of this design. The experimental results show that a maximum of 150mW power can be harvested by the prototype and the system can continue to operate normally when the harvesting voltage is as low as 0.45V. Theoretical calculations suggest that by placing the two AA batteries by proposed thermal energy harvesting system, a ZigBee Wireless Radiator Valve can operate for more than eight years.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Thermal Energy Harvesting WSNs Node for Temperature Monitoring in IIoT
    Hou, Liqun
    Tan, Shudong
    Zhang, Zhijuan
    Bergmann, Neil W.
    IEEE ACCESS, 2018, 6 : 35243 - 35249
  • [2] Energy Harvesting and Management of Continuously Powered WSNs
    Schneider, Eric
    Derbel, Faouzi
    Strakosch, Florian
    2017 14TH INTERNATIONAL MULTI-CONFERENCE ON SYSTEMS, SIGNALS & DEVICES (SSD), 2017, : 347 - 353
  • [3] A unified approach of energy and data cooperation in energy harvesting WSNs
    Yousaf, Roomana
    Ahmad, Rizwan
    Ahmed, Waqas
    Zheng, Fu-chun
    SCIENCE CHINA-INFORMATION SCIENCES, 2018, 61 (08)
  • [4] A unified approach of energy and data cooperation in energy harvesting WSNs
    Roomana YOUSAF
    Rizwan AHMAD
    Waqas AHMED
    Fu-chun ZHENG
    Science China(Information Sciences), 2018, 61 (08) : 170 - 182
  • [5] A unified approach of energy and data cooperation in energy harvesting WSNs
    Roomana Yousaf
    Rizwan Ahmad
    Waqas Ahmed
    Fu-chun Zheng
    Science China Information Sciences, 2018, 61
  • [6] FYPSim: An Estimation Framework for Energy Harvesting and Energy Prediction for WSNs
    Ahmed, Faisal
    Le Moullec, Yannick
    Annus, Paul
    2016 IEEE INTERNATIONAL CONFERENCE ON CONSUMER ELECTRONICS-TAIWAN (ICCE-TW), 2016, : 291 - 292
  • [7] Preserving Source Location Privacy for Energy Harvesting WSNs
    Huang, Changqin
    Ma, Ming
    Liu, Yuxin
    Liu, Anfeng
    SENSORS, 2017, 17 (04)
  • [8] A Measurement Platform for Energy Harvesting and Software Characterization in WSNs
    Glatz, Philipp M.
    Meyer, Philipp
    Janek, Alex
    Trathnigg, Thomas
    Steger, Christian
    Weiss, Reinhold
    2008 1ST IFIP WIRELESS DAYS (WD), 2008, : 90 - 94
  • [9] Energy-Balanced Backpressure Routing for Stochastic Energy Harvesting WSNs
    Liu, Zheng
    Yang, Xinyu
    Zhao, Peng
    Yu, Wei
    WIRELESS ALGORITHMS, SYSTEMS, AND APPLICATIONS, 2015, 9204 : 767 - 777
  • [10] Energy Allocation for Sensing and Transmission in WSNs with Energy Harvesting Tx/Rx
    Hentati, Amina
    Abdelkefi, Fatma
    Ajib, Wessam
    2015 IEEE 82ND VEHICULAR TECHNOLOGY CONFERENCE (VTC FALL), 2015,