TY - JOUR
T1 - Integrated Communications and Positioning System with Low Probability of Interception and Anti-Jamming Waveform
AU - Gao, Yixuan
AU - Zhang, Zhaolin
AU - Gong, Yanyun
AU - Xu, Qian
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - localization and communications are two fundamental requirements for unmanned aerial vehicle (UAV) clusters. However, in certain severe environments, the satellite positioning and navigation service is unavailable. Moreover, the information exchange among UAV nodes also faces the risk of eavesdropping and jamming. How to realize relative positioning as well as low probability of interception (LPI) and reliable communications is an urgent issue. Inspired by the above considerations, this paper proposes an integrated communications and positioning protocol with LPI and anti-jamming waveform. We design a flexible frame structure that exploits pilots and the following data symbols for distance measurement and degree of arrival estimation. The data symbols are specially processed via the weighted fractional Fourier 4 transform (WFRFT). Compared to the traditional spread spectrum frequency communication and positioning integration technologies, the WFRFT-based LPI method not only realizes high-precision positioning but also has better security performance. In this way, secure transmission in complex electromagnetic conditions can be achieved and physical layer security can be further improved. Simulation and analysis results show that the low interception communication and positioning integration technology based on an array antenna provides a more secure and accurate solution for wireless communication and positioning, showing considerable potential for development.
AB - localization and communications are two fundamental requirements for unmanned aerial vehicle (UAV) clusters. However, in certain severe environments, the satellite positioning and navigation service is unavailable. Moreover, the information exchange among UAV nodes also faces the risk of eavesdropping and jamming. How to realize relative positioning as well as low probability of interception (LPI) and reliable communications is an urgent issue. Inspired by the above considerations, this paper proposes an integrated communications and positioning protocol with LPI and anti-jamming waveform. We design a flexible frame structure that exploits pilots and the following data symbols for distance measurement and degree of arrival estimation. The data symbols are specially processed via the weighted fractional Fourier 4 transform (WFRFT). Compared to the traditional spread spectrum frequency communication and positioning integration technologies, the WFRFT-based LPI method not only realizes high-precision positioning but also has better security performance. In this way, secure transmission in complex electromagnetic conditions can be achieved and physical layer security can be further improved. Simulation and analysis results show that the low interception communication and positioning integration technology based on an array antenna provides a more secure and accurate solution for wireless communication and positioning, showing considerable potential for development.
KW - beamforming
KW - Integrated Sensing and Communication (ISAC)
KW - LPI waveform
KW - Physical Layer Security (PLS)
KW - WFRFT
UR - http://www.scopus.com/inward/record.url?scp=105006597470&partnerID=8YFLogxK
U2 - 10.1109/ICCC62609.2024.10942303
DO - 10.1109/ICCC62609.2024.10942303
M3 - 会议文章
AN - SCOPUS:105006597470
SN - 2837-7109
SP - 1303
EP - 1308
JO - Proceedings of the IEEE International Conference on Computer and Communications, ICCC
JF - Proceedings of the IEEE International Conference on Computer and Communications, ICCC
IS - 2024
T2 - 10th International Conference on Computer and Communications, ICCC 2024
Y2 - 13 December 2024 through 16 December 2024
ER -