An Information-Theoretic Approach to Collaborative Integrated Sensing and Communication for Two-Transmitter Systems

Mehrasa Ahmadipour;Michèle Wigger
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引用次数: 1

Abstract

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.
双发射机系统协同集成传感与通信的信息论方法
本文研究了基于多址信道(MAC)和设备对设备(D2D)通信的集成传感与通信(ISAC)的信息论模型。这些模型是通用的,并作为特殊情况包括MAC接收器有或没有完美或不完美状态信息以及D2D终端的因果状态信息。对于这两种设置,我们提出了协作感知ISAC方案,其中终端不仅向其他终端传输数据,而且还从先前的观测中提取状态信息。这些状态信息可以被其他终端利用,以提高它们的传感性能。事实上,正如我们通过例子所展示的那样,我们的方案在可实现的费率扭曲权衡方面优于以前的非协作方案。对于D2D,我们提出了两种方案,一种是将状态信息的压缩与信道编码分离,另一种是通过混合编码方法将其集成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
8.20
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