Joint Multistatic Sensing of Transmitter and Target in OFDM-Based JCAS System

Christopher Mollén, Gábor Fodor, R. Baldemair, J. Huschke, Julia Vinogradova
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Abstract

Joint communication and sensing (JCAS) systems use the same spectrum, hardware and antenna resources to jointly provide spectrally efficient communication, localization and sensing services. While previous work has analyzed the performance of communication with connected objects and localization of unconnected (passive) objects, the joint positioning of both connected and passive objects is less studied. In this paper, we consider a JCAS cellular system using orthogonal frequency-division multiplexing, in which the uplink communication signal is scattered on a moving target towards multiple receiving base stations. In this setting, multistatic sensing by cooperating base stations makes it possible to position the moving target while also positioning the transmitting user equipment based on the received communication signal at the base stations. We propose a channel model that can characterize the propagation of both the communication and sensing signals, and algorithms that facilitate the estimation of direction of arrivals and range, which in turn enables the system to infer the positions of both the communicating user and the passive target. We also show some illustrative results from the algorithms that indicate what such joint positioning practically can look like.
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基于ofdm的JCAS系统中发射机与目标的联合多静态传感
联合通信和传感(JCAS)系统使用相同的频谱、硬件和天线资源,共同提供频谱高效的通信、定位和传感服务。虽然之前的工作已经分析了与连接对象的通信性能和非连接(被动)对象的定位,但对连接和被动对象的联合定位研究较少。本文考虑了一种采用正交频分复用的JCAS蜂窝系统,其中上行通信信号分散在一个移动目标上,朝向多个接收基站。在这种情况下,通过合作基站进行多静态传感使得可以根据基站接收到的通信信号定位移动目标的同时也定位发射用户设备。我们提出了一个信道模型,可以表征通信和传感信号的传播,以及有助于估计到达方向和距离的算法,这反过来又使系统能够推断通信用户和被动目标的位置。我们还展示了一些来自算法的说明性结果,这些结果表明这种关节定位实际上可以是什么样子。
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