In this paper, we present a novel reconfigurable intelligent surface (RIS)-assisted integrated sensing and communication (ISAC) system with 1-bit quantization at the ISAC base station. An RIS is introduced in the ISAC system to mitigate the effects of coarse quantization and to enable the co-existence between sensing and communication functionalities. Specifically, we design transmit precoder to obtain 1-bit sensing waveforms having a desired radiation pattern. The RIS phase shifts are then designed to modulate the 1-bit sensing waveform to transmit M-ary phase shift keying symbols to users. Through numerical simulations, we show that the proposed method offers significantly improved symbol error probabilities when compared to MIMO communication systems having quantized linear precoders, while still offering comparable sensing performance as that of unquantized sensing systems.
翻译:在本文中,我们提出了一个新型的可重新配置的智能表面(RIS)辅助综合遥感和通信系统(ISAC),该系统在ISAC基地台站使用1位位数的集成式综合遥感和通信系统(ISAC),在ISAC系统中引入了RIS,以减轻粗微量化的影响,并使遥感和通信功能之间能够共存。具体地说,我们设计了预译器,以获得具有理想辐射模式的1位位数的感测波形。然后,RIS阶段转换设计了1位数的感测波形,以向用户传输M-ary阶段转换键性符号。我们通过数字模拟表明,拟议方法与具有定量线形预科的MIMO通信系统相比,提供了显著改进的符号误差概率,同时仍然提供与非定量感测系统类似的感测性功能。