吉林大学学报(工学版) ›› 2026, Vol. 56 ›› Issue (3): 843-850.doi: 10.13229/j.cnki.jdxbgxb.20240934
• 通信与控制工程 • 上一篇
Tian-xiang ZHANG1,2(
),Yu-long GAO1(
),Chen-xing JI1
摘要:
针对Costas差分相移键控(DPSK)一体化波形通信速率和频谱效率低的问题,提出了一种基于Costas编码的高性能一体化波形设计方法。该方法通过相移键控(PSK)调制将信息嵌入Costas波形子脉冲之中,同时整合Costas波形的时频资源,挖掘利用雷达接收等待时间进行信息传输。仿真结果表明,本文波形具有“图钉型”模糊函数,相较于相同Costas编码长度的传统Costas-DPSK波形,通信速率和频谱效率提升近一个数量级。
中图分类号:
| [1] | Mahipathi A C, Pardhasaradhi B, Lingadevaru P,et al. A survey on waveform design for radar-communication convergence[J]. IEEE Access, 2024, 12: 75442-75461. |
| [2] | Li A, Bodanese E, Poslad S, et al. An integrated sensing and communication system for fall detection and recognition using ultrawideband signals[J]. IEEE Internet of Things Journal, 2024,11(1): 1509-1521. |
| [3] | Liu F, Cui Y, Masouros C, et al. Integrated sensing and communications: toward dual-functional wireless networks for 6G and beyond[J]. IEEE Journal on Selected Areas in Communications, 2022, 40(6): 1728-1767. |
| [4] | 张若愚, 袁伟杰, 崔原豪, 等. 面向6G的大规模MIMO通信感知一体化:现状与展望[J]. 移动通信, 2022, 46(6): 17-23. |
| Zhang Ruo-yu, Yuan Wei-jie, Cui Yuan-hao, et al. Integreted sensing and communications with massive MIMO for 6G: status and prospect[J]. Mobile Communications, 2022, 46(6): 17-23. | |
| [5] | 刘凡, 袁伟杰, 原进宏, 等. 雷达通信频谱共享及一体化: 综述与展望[J]. 雷达学报, 2021, 10(3): 467-484. |
| Liu Fan, Yuan Wei-jie, Yuan Jin-hong, et al. Radar-communication spectrum sharing and integration: overview and prospect[J]. Journal of Radars, 2021, 10(3): 467-484. | |
| [6] | Zhang J, Liu F, Masouros C, et al. An overview of signal processing techniques for joint communication and radar sensing[J]. IEEE Journal of Selected Topics in Signal Processing. 2021,15(6): 1295-1315. |
| [7] | Liu F, Masouros C, Petropulu A P, et al. Joint radar and communication design: applications, state-of-the-art, and the road ahead[J]. IEEE Transactions on Communications, 2020,68(6): 3834-3862. |
| [8] | 吕明, 陈昊, 丰光银, 等. 面向通信感知一体化的信号波形设计综述[J]. 无线电通信技术, 2024, 50(3): 469-483. |
| Ming Lü, Chen Hao, Feng Guang-yin, et al. Survey on integrated sensing and communication waveform design[J]. Radio Communication Technology, 2024, 50(3): 469-483. | |
| [9] | 李振华, 姜雪, 朱炳祺. 基于导频的OFDM雷达通信一体化波形设计[J].制导与引信, 2023, 44(3):1-7. |
| Li Zhen-hua, Jiang Xue, Zhu Bing-qi. OFDM integrated waveform design for radar and communication based on piloy[J]. Guidance & Fuze, 2023,44(3):1-7. | |
| [10] | 赵玉振, 陈龙永, 张福博, 等. 一种基于OFDM-chirp的雷达通信一体化波形设计与处理方法[J]. 2021, 10(3): 453-466. |
| Zhao Yu-zhen, Chen Long-yong, Zhang Fu-bo, et al. A new method of joint radar and communication waveform design and signal processing based on OFDM-chirp[J]. Journal of Radars, 2021, 10(3): 453-466. | |
| [11] | Nowak M J, Wicks M, Zhang Z, et al. Co-designed radar-communication using linear frequency modulation waveform[J]. IEEE Aerospace and Electronic Systems Magazine, 2016, 31(10): 28-35. |
| [12] | 曾浩, 吉利霞, 李凤, 等. 16QAM-LFM雷达通信一体化信号设计[J]. 通信学报, 2020, 41(3): 182-189. |
| Zeng Hao, Ji Li-xia, Li Feng, et al. 16QAM-LFM waveform design for integrated radar and communication[J]. Journal on Communications, 2020, 41(3): 182-189. | |
| [13] | Lyu Z, Zhang L, Zhang H, et al. Radar-centric photonic terahertz integrated sensing and communication system based on LFM-PSK waveform[J]. IEEE Transactions on Microwave Theory and Techniques, 2023, 71(11): 5019-5027. |
| [14] | Yang H, Chen J. Design of Costas/PSK continuous wave LPI radar signal[J]. International Journal of Electronics, 2016, 104(3): 404-415. |
| [15] | 刘罡, 李永胜, 石磊, 等. 基于Costas-DPSK编码的水下探测通信一体化波形[J]. 舰船科学技术, 2024,46(16): 125-129. |
| Liu Gang, Li Yong-sheng, Shi Lei, et al. A waveform for underwater detection and communication integration based on Costas-DPSK[J]. Ship Science and Technology, 2024, 46(16): 125-129. | |
| [16] | 付银娟, 李勇, 徐丽琴, 等. NLFM⁃Costas射频隐身雷达信号设计及分析[J]. 吉林大学学报:工学版, 2019,49(3): 994-999. |
| Fu Yin⁃juan, Li Yong, Xu Li⁃qin, et al.Design and analysis of NLFM⁃Costas RF stealth radar signal[J]. Journal of Jilin University(Engineering and Technology Edition), 2019,49(3): 994-999. | |
| [17] | Xiao Z, Zeng Y. Waveform design and performance analysis for full-duplex integrated sensing and communication[J]. IEEE Journal on Selected Areas in Communications, 2022, 40(6): 1823-1837. |
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