南京电子技术研究所,江苏南京 210039
Revised:2025-04-22,
Accepted:30 April 2025,
Published:15 March 2025
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章明, 李震宇, 高兵, 等. 基于NOMA的16QAM雷达通信一体化波形设计[J]. 新一代信息技术, 2025, 8(3): 06-11
ZHANG Ming, LI Zhen-yu, GAO Bing, et al. Design of NOMA-Based 16QAM Radar-Communication Integrated Waveform[J]. New Generation of Information Technology, 2025, 8(3): 06-11
章明, 李震宇, 高兵, 等. 基于NOMA的16QAM雷达通信一体化波形设计[J]. 新一代信息技术, 2025, 8(3): 06-11 DOI: 10.12263/newIT.2025.03.002.
ZHANG Ming, LI Zhen-yu, GAO Bing, et al. Design of NOMA-Based 16QAM Radar-Communication Integrated Waveform[J]. New Generation of Information Technology, 2025, 8(3): 06-11 DOI: 10.12263/newIT.2025.03.002.
针对雷达通信一体化波形设计中发射信号饱和放大使得调幅信号无法正确解码的问题,本文应用非正交多址(Non-Orthogonal Multiple Access,NOMA)叠加编码和串行干扰消除(Successive Interference Cancellation,SIC)技术,提出了一种基于NOMA的16正交幅度调制(Quadrature Amplitude Modulation,QAM)一体化波形,阐述了设计一体化信号的调制编码和解调过程,并进行误码率的理论推导和模糊函数的仿真分析。结果表明本文设计的16QAM一体化波形具有良好的雷达和通信性能,可作为调幅信号在雷达通信一体化波形中应用的一种解决思路。
Aiming at the issue where the saturation amplification of transmitted signals in integrated radar-communication waveform design prevents the correct decoding of amplitude-modulated (AM) signals
this paper proposes a 16QAM (Quadrature Amplitude Modulation) integrated waveform based on non-orthogonal multiple access (NOMA) superposition coding and successive interference cancellation (SIC) technology. We elaborate the modulation-encoding scheme and demodulation process of the designed integrated signal
while conducting theoretical derivation of bit error rate and simulation analysis of ambiguity function. Results demonstrate that the proposed 16QAM integrated waveform exhibits favorable radar detection and communication performance
serving as a viable solution for implementing AM signals in integrated radar-communication waveform systems.
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