论文标题
通过双域波形叠加的集成感测和通信系统
Integrated Sensing and Communication System via Dual-Domain Waveform Superposition
论文作者
论文摘要
集成传感和通信(ISAC)系统被认为是第六代(6G)网络的关键要素之一。 ISAC中的一个具有挑战性的话题是设计单波形的设计,该波形在相同的时间空间资源上结合了通信和传感功能,从而可以通过部分或完整的硬件共享来调整性能。本文提出了一种双域波形设计方法,该方法将遗留正交频次频施加到频率时间(ft)域上,并有意在延迟多普勒域中设计了一种传感信号。具有适当的传感信号W.R.T.的功率降低。 OFDM,有可能超越规范多载波系统的监管带宽限制,以提高感应性能,同时使沟通不受影响。数值和实验结果证明了双域波形的有效性,尽管与用于通信的信号相比,至少有30 dB的信号的功率减小。双重域ISAC波形的表现优于OFDM和正交时频空间(OTFS),就Cramér-Rao限制了延迟估计(最高20 dB),这要归功于其出色的分辨率,并且对可达到的率的罚款可忽略不计。
Integrated Sensing and Communication (ISAC) systems are recognised as one of the key ingredients of the sixth generation (6G) network. A challenging topic in ISAC is the design of a single waveform combining both communication and sensing functionalities on the same time-frequency-space resources, allowing to tune the performance of both with partial or full hardware sharing. This paper proposes a dual-domain waveform design approach that superposes onto the frequency-time (FT) domain both the legacy orthogonal frequency division multiplexing (OFDM) signal and a sensing one, purposely designed in the delay-Doppler domain. With a proper power downscaling of the sensing signal w.r.t. OFDM, it is possible to exceed regulatory bandwidth limitations proper of legacy multicarrier systems to increase the sensing performance while leaving communication substantially unaffected. Numerical and experimental results prove the effectiveness of the dual-domain waveform, notwithstanding a power abatement of at least 30 dB of the signal used for sensing compared to the one used for communication. The dual-domain ISAC waveform outperforms both OFDM and orthogonal time-frequency-space (OTFS) in terms of Cramér-Rao bound on delay estimation (up to 20 dB), thanks to its superior resolution, with a negligible penalty on the achievable rate.