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首页> 外文期刊>IEEE Sensors Letters >Compensation of Motion-Induced Phase Errors and Enhancement of Doppler Unambiguity in TDM–MIMO Systems by Model-Based Estimation
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Compensation of Motion-Induced Phase Errors and Enhancement of Doppler Unambiguity in TDM–MIMO Systems by Model-Based Estimation

机译:基于模型的估计,通过基于模型的估计来补偿运动诱导的相位误差和TDM-MIMO系统中的多普勒美不曼梦

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摘要

Utilization of multiple input multiple output (MIMO) systems in radar and channel sounding has gained increased attention in recent years. Quite often, time-division multiplexing (TDM) is employed to realize orthogonal waveforms at the transmitter. Apart from its advantages, TDM has two severe drawbacks. First, motion-induced phase variations become indistinguishable from phase migration due to the signal's arrival direction. This is termed angle-Doppler coupling, which causes ambiguities in angle, and Doppler estimation. Second, the unambiguously resolvable Doppler, i.e., the Doppler bandwidth, is reduced. In this letter, a model-based estimation approach will be proposed, which compensates for angle-Doppler coupling, and restores the Doppler bandwidth. A data model for the MIMO observations is derived, which is exploited by a maximum likelihood estimator to infer angle, delay, and Doppler from the observations. The performance of the proposed approach will be testified by simulations.
机译:近年来,在雷达和通道声音中使用多个输入多输出(MIMO)系统的应用增长了很大程度上。通常,采用时分复用(TDM)来实现发射机处的正交波形。除了其优点,TDM有两个严重的缺点。首先,由于信号的到达方向,运动诱导的相变从相位迁移中无法区分。这被称为角度 - 多普勒耦合,这导致角度的模糊和多普勒估计。其次,减少了明确的可解析多普勒,即多普勒带宽。在这封信中,将提出一种基于模型的估计方法,这补偿了角度多普勒耦合,并恢复多普勒带宽。导出用于MIMO观察的数据模型,其由最大似然估计器利用以从观察结果推断出角度,延迟和多普勒。拟议方法的性能将通过模拟作证。

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