论文标题
多点集成感应和通信:融合模型和功能选择
Multi-Point Integrated Sensing and Communication: Fusion Model and Functionality Selection
论文作者
论文摘要
集成感应和通信(ISAC)代表了范式转移,以前竞争的无线传输是共同设计的,可通过共同使用硬件平台来提高光谱和能源效率来和谐地运行。但是,由于诸如褪色和干扰之类的对抗性因素,ISAC可能会遭受高感知的不确定性。本文提出了一个多点ISAC(MPISAC)系统,该系统通过利用多视图数据冗余来融合来自多个ISAC设备的输出,以实现更高的传感性能。此外,我们建议通过功能选择模块有效地探索感应和通信之间的性能权衡,该功能选择模块可以自适应地确定ISAC设备的工作状态(即传感或通信)。我们方法的症结在于得出一个通过假设检验和最佳投票分析来预测融合精度的融合模型。仿真结果表明,MPISAC优于各种基准方案,并表明所提出的方法可以有效地跨越ISAC系统中的权衡区域。
Integrated sensing and communication (ISAC) represents a paradigm shift, where previously competing wireless transmissions are jointly designed to operate in harmony via the shared use of the hardware platform for improving the spectral and energy efficiencies. However, due to adversarial factors such as fading and interference, ISAC may suffer from high sensing uncertainties. This paper presents a multi-point ISAC (MPISAC) system that fuses the outputs from multiple ISAC devices for achieving higher sensing performance by exploiting multi-view data redundancy. Furthermore, we propose to effectively explore the performance trade-off between sensing and communication via a functionality selection module that adaptively determines the working state (i.e., sensing or communication) of an ISAC device. The crux of our approach is to derive a fusion model that predicts the fusion accuracy via hypothesis testing and optimal voting analysis. Simulation results demonstrate the superiority of MPISAC over various benchmark schemes and show that the proposed approach can effectively span the trade-off region in ISAC systems.