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首页> 外文期刊>Signal Processing, IEEE Transactions on >Phase-Difference Ambiguity Resolution for a Single-Frequency Signal in the Near-Field Using a Receiver Triplet
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Phase-Difference Ambiguity Resolution for a Single-Frequency Signal in the Near-Field Using a Receiver Triplet

机译:使用接收器三重态的近场中单频信号的相位差歧义分辨率

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摘要

The problem of ambiguity in the phase-difference of a signal received by widely spaced receivers is considered. It is shown that a collinear receiver triplet with a specific configuration combined with a proposed algorithm can be utilized for phase-difference disambiguation. The identifiability condition is that the difference of the two smaller inter-receiver spacings is not greater than a half-wavelength of the impinging signal and is greater than zero. The effect of the emitter location relative to the receiver array and the effect of noise are studied. Analytic formulae for the mean-square error (MSE) under Gaussian white noise are obtained and are used to directly determine performance versus signal-to-noise ratio (SNR) given the emitter location and the receiver configuration. Performance is found to exhibit an SNR threshold effect that depends on the emitter location and the sensor configuration. The analytic performance predictions are found to be close to the performance obtained in simulation.
机译:考虑了由宽间隔的接收器接收的信号的相位差中的歧义性问题。结果表明,具有特定配置的共线接收器三元组与所提出的算法相结合可用于相位差消歧。可识别性条件是两个较小的接收器间距离之差不大于撞击信号的半波长,并且大于零。研究了发射器位置相对于接收器阵列的影响以及噪声的影响。获得了高斯白噪声下均方误差(MSE)的解析公式,并用于在给定发射器位置和接收器配置的情况下直接确定性能与信噪比(SNR)的关系。发现性能表现出取决于发射器位置和传感器配置的SNR阈值效应。发现分析性能预测接近仿真中获得的性能。

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