This paper considers information-theoretic models for integrated sensing and communication (ISAC) over multi-access channels (MAC) and device-to-device (D2D) communication. The models are general and include as special cases scenarios with and without perfect or imperfect state-information at the MAC receiver as well as causal state-information at the D2D terminals. For both setups, we propose collaborative sensing ISAC schemes where terminals not only convey data to the other terminals but also state-information that they extract from their previous observations. This state-information can be exploited at the other terminals to improve their sensing performances. Indeed, as we show through examples, our schemes improve over previous non-collaborative schemes in terms of their achievable rate-distortion tradeoffs. For D2D we propose two schemes, one where compression of state information is separated from channel coding and one where it is integrated via a hybrid coding approach.
翻译:本文考虑多存取通道和设备对设备通信场景下整合感知和通信的信息论模型。该模型包括有关无完美或不完全状态信息情况下MAC接收器的场景,以及D2D终端处有因果状态信息的场景,具有很强的普适性。针对上述两个场景,我们提出了协同感知的ISAC方案,其中终端不仅向其他终端传递数据,还从之前的观测中提取状态信息。其他终端可以利用该状态信息来提高其感知性能。正如我们通过实例所展示的那样,我们的方案在实现的速率-失真权衡方面优于以往的非协同方案。针对D2D,我们提出了两个方案。一个方案将状态信息压缩与信道编码分开,另一个方案则通过混合编码方法进行整合。