TY - GEN
T1 - Study on wireless energy and data transmission for long-range projectile
AU - Yu, Chunlai
AU - Lu, Rengui
AU - Su, Conghao
AU - Zhu, Chunbo
PY - 2012
Y1 - 2012
N2 - In this paper, a compact wireless energy and data transmission device which can be used on the remote projectile is described. This device uses magnetic field generated by the coupled coil to receive the energy and data and transfers the internal data. These functions above can be realized by operating the control circuit in different modes, which requires only one coil in the projectile. In energy transmission mode, energy can be transferred into the projectile wirelessly, as well as the external data by data encoding technology. High-frequency magnetic field is generated by internal device when the internal data is delivered to the external receiver coil. Interference between the energy and data transmission can be avoided by adjusting the data resonant frequency which is different from the energy transfer frequency by changing the resonant circuit topology and the internal capacitance. The device works at zero voltage switching mode, and produces lower loss, which is beneficial for improving the efficiency. The experiment results show that the device can transfer energy at 1MHz, and internal data at 500 kHz.
AB - In this paper, a compact wireless energy and data transmission device which can be used on the remote projectile is described. This device uses magnetic field generated by the coupled coil to receive the energy and data and transfers the internal data. These functions above can be realized by operating the control circuit in different modes, which requires only one coil in the projectile. In energy transmission mode, energy can be transferred into the projectile wirelessly, as well as the external data by data encoding technology. High-frequency magnetic field is generated by internal device when the internal data is delivered to the external receiver coil. Interference between the energy and data transmission can be avoided by adjusting the data resonant frequency which is different from the energy transfer frequency by changing the resonant circuit topology and the internal capacitance. The device works at zero voltage switching mode, and produces lower loss, which is beneficial for improving the efficiency. The experiment results show that the device can transfer energy at 1MHz, and internal data at 500 kHz.
UR - https://www.scopus.com/pages/publications/84869201804
U2 - 10.1109/EML.2012.6325171
DO - 10.1109/EML.2012.6325171
M3 - 会议稿件
AN - SCOPUS:84869201804
SN - 9781467303057
T3 - Conference Proceedings - 2012 16th International Symposium on Electromagnetic Launch Technology, EML 2012
BT - Conference Proceedings - 2012 16th International Symposium on Electromagnetic Launch Technology, EML 2012
T2 - 2012 16th International Symposium on Electromagnetic Launch Technology, EML 2012
Y2 - 15 May 2012 through 19 May 2012
ER -