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An advanced beamforming approach based on two-channel echo-train system to cancel interference within an NQR signal resonance spectrum

机译:基于双通道回波训练系统的先进波束成形方法,可消除NQR信号共振频谱内的干扰

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Interference can be a huge challenge for Nuclear Quadrupole Resonance (NQR) signal detection in real life settings. The problem is particularly challenging when interference is strong around the resonant frequency band of the targeted NQR signal (to which we refer as the NQR band). This paper first proves the beamforming characteristics of a designed two-channel echo-train (TE) data acquisition system, and then presents a novel beamforming approach which is based on the TE system and is able to cancel interference effectively within the NQR band. After interference cancellation, NQR signal detection can be done successfully by applying an "echo train" approximate maximum likelihood (ETAML) algorithm to the residual data. The proposed algorithm is shown to be superior to previously proposed algorithms, including the classical beamforming algorithms/detectors constructed on the TE system, for detecting NQR signal polluted by interference. (C) 2018 Elsevier B.V. All rights reserved.
机译:对于现实生活中的核四极共振(NQR)信号检测,干扰可能是一个巨大的挑战。当在目标NQR信号的谐振频带(我们称为NQR频带)周围的干扰很强时,该问题尤其具有挑战性。本文首先证明了设计的两通道回波训练(TE)数据采集系统的波束形成特性,然后提出了一种基于TE系统并且能够有效消除NQR频带内干扰的新颖波束形成方法。在干扰消除之后,可以通过对残余数据应用“回波训练”近似最大似然(ETAML)算法来成功完成NQR信号检测。所提出的算法显示出优于先前提出的算法,包括在TE系统上构建的经典波束成形算法/检测器,用于检测受干扰污染的NQR信号。 (C)2018 Elsevier B.V.保留所有权利。

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