A bidirectional integrated sensing and communication (ISAC) system is proposed, in which a pair of transceivers carry out two-way communication and mutual sensing. Both full-duplex and half-duplex operations in narrowband and wideband systems are conceived for the bidirectional ISAC. 1) For the narrowband system, the conventional full-duplex and half-duplex operations are redesigned to take into account sensing echo signals. Then, the transmit beamforming design of both transceivers is proposed for addressing the sensing and communication (S\&C) tradeoff. A one-layer iterative algorithm relying on successive convex approximation (SCA) is proposed to obtain Karush-Kuhn-Tucker (KKT) optimal solutions. 2) For the wideband system, the new full-duplex and half-duplex operations are proposed for the bidirectional ISAC. In particular, the frequency-selective fading channel is tackled by delay pre-compensation and path-based beamforming. By redesigning the proposed SCA-based algorithm, the KKT optimal solutions for path-based beamforming for characterizing the S\&C tradeoff are obtained. Finally, the numerical results show that: i) For both bandwidth scenarios, the existence of the interference introduced by sensing results in full-duplex may not always outperform half-duplex, especially in the sensing-prior regime or when the communication channel is line-of-sight-dominated; and ii) For both duplex operations, it is sufficient to reuse communication signals for sensing in the narrowband system, while an additional dedicated sensing signal is required in the wideband system.
翻译:提议双向综合遥感和通信系统(ISAC)为窄带和宽带系统设想双向综合遥感和通信系统(ISAC)。(1) 对于窄带系统,对传统的全光和半光化操作进行重新设计,以考虑到遥感回声信号。随后,提议对两个传输器的传送系统进行双向组合设计,处理感应和通信交换。建议采用依靠连续的 convex近似(SCA)的一次性迭代算法,以获得窄带和宽带系统的全双向和半双向操作。(2) 对于宽带系统,为双向ISAC提出新的全光和半光化操作。特别是,通过延迟前补和基于路径的转换,解决频率选择变形频道。通过重新设计基于ASA的拟议算法,对直线近线调(SCA)的一端迭代代算法最优化的计算法,对路径-KKT-T-Tucker (KKT) 最佳的计算法,同时对路径-KRT) 直线(KT) 最佳的计算方法进行最优化的计算,同时对路路路段的传输系统进行预测算,最终显示SlevildLY结果。