Joint communications and sensing is a promising 6G technology, and the challenge is how to integrate them efficiently. Existing frequency-division and time-division coexistence can hardly bring a gain of integration. Directly using orthogonal frequency-division multiplexing (OFDM) to sense requires complex in-band full-duplex to cancel the selfinterference (SI). To solve these problems, this paper proposes novel coexistence schemes to gain super sensing range (SSR) and simple SI cancellation. SSR enables JCS to gain a sensing range of a sensing-only scheme and shares the resources with communications. Random time-division is proposed to gain a super Doppler range. Flexible sensing implanted OFDM (FSIOFDM) is also proposed. FSI-OFDM uses random sensing occasions to gain super Doppler range, as well as utilizes the fixed tail sensing occasions to achieve supper distance range. The simulation results show that the proposed schemes can gain SSR with limited resources.
翻译:联合通信和遥感是一种充满希望的6G技术,其挑战在于如何有效地整合这些技术。现有的频率司和时间司共存很难带来整合的收益。直接使用正方位频率司多功能转换(OFDM)来感知需要复杂的带内全复体来取消自干预(SI) 。为解决这些问题,本文件提出新的共存计划,以获得超感测范围(SSR)和简单的SI取消。SSR使JCS能够获取一系列只使用感测系统的感测范围,并与通信共享资源。随机时间司建议获得超级多普勒射程。还提议采用灵活感测植入的DM(FSI-ODM)来获取超级多普勒射程,并利用固定尾部感测时间实现晚餐距离。模拟结果表明,拟议的计划可以用有限的资源获得SSR。