Planar rotating permanent magnetic mechanical antenna array for beamforming

  • Bickford, J. A., McNabb, R. S., Ward, P. A., Freeman, D. K. & Weinberg, M.S. Low frequency mechanical antennas: Electrically short transmitters from mechanically-actuated dielectrics. In 2017 IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting 1475–1476 (2017).

  • Cui, Y. et al. ‘Extremely-low-frequency transmitter based on oscillating electret toward increasing data rate with low power consumption. IEEE Trans. Ind. Inform. 21(7), 5381–5389 (2025).

    Google Scholar 

  • Cui, Y., Wang, C., & Song, X., et al. A survey of mechanical antennas applied for low-frequency transmitting. iScience 26(1), (2023).

  • Bickford, J. A. et al. ‘Performance of electrically small conventional and mechanical antennas. IEEE Trans. Antenna. Propag. 67(4), 2209–2223 (2019).

    Google Scholar 

  • Cui, Y. et al. A directional pattern reconfigurable low-frequency antenna based on permanent magnet ARRAY. IEEE Trans. Antenna. Propag. 73(6), 3517–3526 (2025).

    Google Scholar 

  • Yang, S. et al. Long-range EM communication underwater with ultracompact ELF magneto-mechanical antenna. IEEE Trans. Antenna. Propag. 71(3), 2082–2097 (2023).

    Google Scholar 

  • Cui, Y. et al. A novel positioning method for UAV in GNSS-denied environments based on mechanical antenna. IEEE Trans. Ind. Electron. 71(10), 13461–13469 (2024).

    Google Scholar 

  • Zhang, J., Zhou, Q., He, X. & Liang, C. Super low frequency transmitting system based on mechanical antenna with horizontal rotating magnet array. In 2024 IEEE 10th International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications (MAPE) 1–4 (2024).

  • Chen, Y. L. et al. 3-D positioning method of pipeline robots based on a rotating permanent magnet mechanical antenna. IEEE Sens. J 23(7), 7095–7104 (2023).

    Google Scholar 

  • He, X., Zhou, Q. & Zhang, J. Rotating magnet-based mechanical antenna for magnetic inductive communications. IEEE Trans. Antenna. Propag. 72(7), 5502–5510 (2024).

    Google Scholar 

  • Sun, F., Zhang, F., Ma, X., Ji, Y. & Fang, G. Rotating permanent magnet antenna array based on near-field polarization modulation. IEEE Antenna. Wirel. Propag. Lett. 21(6), 1193–1197 (2022).

    Google Scholar 

  • Wang, X., Yang, X., Li, Z., Zhang, B. & Cao, Z. Research on radiation field and driving based on super-low frequency mechanical antenna array. iScience 26(5), (2023).

  • Mysore Nagaraja, S.P. Directly Modulated Magnetic Pendulum Arrays for Efficient Ultra Low Frequency Transmission. Ph.D. (2020).

  • Srinivas Prasad, M. N. et al. ‘Magnetic pendulum arrays for efficient ULF transmission. Sci. Rep. 9(1), 13220 (2019).

    Google Scholar 

  • Mysore Nagaraja, S. P. et al. Magnetic pendulum arrays for efficient wireless power transmission. J. Phys. Conf. Ser. 1407(1), 012049 (2019).

    Google Scholar 

  • Srinivas, P. M. N., Tok, R. U., & Wang, Y. E. Magnetic pendulum arrays for ULF transmission. In 2018 IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting 71–72, (2018).

  • Manteghi, M. A navigation and positining system for unmanned underwater vehicles based on a mechanical antenna. In 2017 IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting 1997–1998 (2017).

  • Continue Reading