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Waveform Design and Accurate Channel Estimation for Frequency-Hopping MIMO Radar-Based Communications

机译:基于跳频MIMO雷达通信的波形设计与准确信道估计

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摘要

Frequency-hopping (FH) MIMO radar-based dual-function radar communication (FH-MIMO DFRC) enables communication symbol rate to exceed radar pulse repetition frequency, which requires accurate estimations of timing offset and channel parameters. The estimations, however, are challenging due to unknown, fast-changing hopping frequencies and the multiplicative coupling between timing offset and channel parameters. In this article, we develop accurate methods for a single-antenna communication receiver to estimate timing offset and channel for FH-MIMO DFRC. First, we design a novel FH-MIMO radar waveform, which enables a communication receiver to estimate the hopping frequency sequence (HFS) used by radar, instead of acquiring it from radar. Importantly, the novel waveform incurs no degradation to radar ranging performance. Then, via capturing distinct HFS features, we develop two estimators for timing offset and derive mean squared error lower bound of each estimator. Using the bounds, we design an HFS that renders both estimators applicable. Furthermore, we develop an accurate channel estimation method, reusing the single hop for timing offset estimation. Validated by simulations, the accurate channel estimates attained by the proposed methods enable the communication performance of DFRC to approach that achieved based on perfect timing and ideal knowledge of channel.
机译:基于频率跳跃(FH)基于MIMO雷达的双功能雷达通信(FH-MIMO DFRC)使得通信符号率超过雷达脉冲重复频率,这需要准确地估计定时偏移和信道参数。然而,由于未知,快速变化的跳频频率和定时偏移和信道参数之间的乘法耦合,估计是具有挑战性的。在本文中,我们开发用于单天线通信接收器的准确方法,以估计FH-MIMO DFRC的定时偏移和信道。首先,我们设计一种新颖的FH-MIMO雷达波形,这使得通信接收器能够估计雷达使用的跳频序列(HFS),而不是从雷达获取它。重要的是,新颖的波形会引起雷达测距性能的劣化。然后,通过捕获不同的HFS功能,我们开发了两个用于定时偏移的估计值,并导出每个估计器的均方方误差。使用界限,我们设计一个渲染两个估计器适用的HFS。此外,我们开发了一种准确的信道估计方法,重用单跳进行定时偏移估计。通过仿真验证,所提出的方法获得的准确信道估计能够实现DFRC的通信性能,以基于完美时序和频道理想知识实现的方法。

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