Joint Communication and Parameter Estimation in MIMO Channels

IF 2.2
Gökhan Yılmaz;Franz Lampel;Hamdi Joudeh;Giuseppe Caire
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Abstract

We study a joint communication and sensing setting comprising a transmitter, a receiver, and a sensor, all equipped with multiple antennas. The transmitter sends an encoded signal over the channel with the dual purpose of communicating an information message to the receiver, and enabling the sensor to estimate a target parameter vector by generating back-scattered signals. We assume that the transmitter and sensor are co-located, or fully connected, giving the latter access to the transmitted signal. The target parameter vector is randomly drawn from a continuous distribution, yet remains fixed throughout the transmission block. We establish the fundamental performance trade-off between the communication and sensing tasks, captured in terms of a capacity-MSE function. In doing so, we identify optimal coding schemes for this multi-antenna joint communication and sensing setting. Moreover, we particularize our result to two practically-inspired scenarios where we showcase optimal schemes and trade-offs.
MIMO信道中的联合通信及参数估计
我们研究了一个联合通信和传感设置,包括一个发射器,一个接收器和一个传感器,都配备了多个天线。发射器通过信道发送编码信号,其双重目的是向接收器传递信息消息,并使传感器能够通过产生反向散射信号来估计目标参数矢量。我们假设发射机和传感器位于同一位置,或完全连接,使后者能够访问传输的信号。目标参数向量从连续分布中随机抽取,但在整个传输块中保持固定。我们建立了通信和传感任务之间的基本性能权衡,以容量- mse功能的形式捕获。在此过程中,我们确定了这种多天线联合通信和传感设置的最佳编码方案。此外,我们将结果具体到两个实际启发的场景,在这些场景中我们展示了最优方案和权衡。
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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0.00%
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