Integrated sensing and communication improves the design of systems by combining sensing and communication functions for increased efficiency, accuracy, and cost savings. The optimal integration requires understanding the trade-off between sensing and communication, but this can be difficult due to the lack of unified performance metrics. In this paper, an information-theoretical approach is used to design the system with a unified metric. A sensing rate is introduced to measure the amount of information obtained by a pulse-Doppler radar system. An approximation and lower bound of the sensing rate is obtained in closed forms. Using both the derived sensing information and communication rates, the optimal bandwidth allocation strategy is found for maximizing the weighted sum of the spectral efficiency for sensing and communication. The simulation results confirm the validity of the approximation and the effectiveness of the proposed bandwidth allocation.
翻译:综合遥感和通信通过将遥感和通信功能结合起来,提高效率、准确性和节约成本,改进了系统的设计; 最佳一体化需要理解遥感和通信之间的权衡,但由于缺乏统一的性能衡量标准,这可能很困难; 本文采用信息理论方法,以统一的度量设计系统; 采用遥感率,以测量脉冲-多普勒雷达系统获得的信息量; 以封闭形式获得近似和较低程度的感测率; 利用衍生的感测信息和通信率,发现最佳带宽分配战略,以最大限度地实现光谱感测和通信效率的加权和; 模拟结果证实近似的有效性和拟议带宽分配的有效性。