TY - JOUR
T1 - 基于 VTR-PLFM 扩频调制的移动水声通信方法
AU - Ji, Zhao Sheng
AU - Wang, Hai Yan
AU - Shen, Xiao Hong
AU - Li, Fu Long
N1 - Publisher Copyright:
© 2021 Science China Press. All rights reserved.
PY - 2021/8
Y1 - 2021/8
N2 - Aimed at solving the serious problems of multipath effects and Doppler effect in mobile underwater acoustic communication, this study presents a mobile underwater acoustic communication method based on virtual time reversal -piecewise linear frequency modulation(VTR-PLFM) spread spectrum modulation, to resist both Doppler and multipath interference. Using the piecewise linear frequency modulation(PLFM) signal to perform orthogonal spread spectrum modulation, the PLFM signal can resist broadband Doppler frequency shift, but the PLFM system cannot perform Doppler frequency shift compensation; the virtual time reversal(VTR) technology can be used to gather the energy of multipath signals, weaken the influence of multipath, and improve the performance of the system. In addition, due to the good correlation of PLFM signals, frequency division multiplexing(FDM) can be introduced to improve the utilization rate of the spectrum and the communication rate of the system. The simulation results show that the anti-Doppler frequency shift and VTR technology can effectively improve the performance of the PLFM system. The resulting PLFM system has a lower bit error rate at a lower signal-to-noise ratio and a higher data rate. A field test is conducted to verify the feasibility of the proposed method.
AB - Aimed at solving the serious problems of multipath effects and Doppler effect in mobile underwater acoustic communication, this study presents a mobile underwater acoustic communication method based on virtual time reversal -piecewise linear frequency modulation(VTR-PLFM) spread spectrum modulation, to resist both Doppler and multipath interference. Using the piecewise linear frequency modulation(PLFM) signal to perform orthogonal spread spectrum modulation, the PLFM signal can resist broadband Doppler frequency shift, but the PLFM system cannot perform Doppler frequency shift compensation; the virtual time reversal(VTR) technology can be used to gather the energy of multipath signals, weaken the influence of multipath, and improve the performance of the system. In addition, due to the good correlation of PLFM signals, frequency division multiplexing(FDM) can be introduced to improve the utilization rate of the spectrum and the communication rate of the system. The simulation results show that the anti-Doppler frequency shift and VTR technology can effectively improve the performance of the PLFM system. The resulting PLFM system has a lower bit error rate at a lower signal-to-noise ratio and a higher data rate. A field test is conducted to verify the feasibility of the proposed method.
KW - frequency division multiplexing
KW - mobile underwater acoustic communication
KW - orthogonal spread spectrum modulation
KW - virtual time reversal
UR - http://www.scopus.com/inward/record.url?scp=85173607067&partnerID=8YFLogxK
U2 - 10.11993/j.issn.2096-3920.2021.04.004
DO - 10.11993/j.issn.2096-3920.2021.04.004
M3 - 文章
AN - SCOPUS:85173607067
SN - 2096-3920
VL - 29
SP - 391
EP - 399
JO - Journal of Unmanned Undersea Systems
JF - Journal of Unmanned Undersea Systems
IS - 4
ER -