Abstract
In this letter, we propose a novel method to disambiguate the phase-difference of a single-frequency signal observed between a pair of spatially separated sensors, with inter-sensor spacing exceeding half the wavelength (λ/2) of the signal. We mathematically prove that, in a noiseless case, the true phase-difference can unambiguously be estimated utilizing a third collinear sensor, provided that the absolute difference between the two smaller inter-sensor spacings is less than λ/2. The performance of the method is characterized by estimating the probability of failure in noisy cases. © 2008 IEEE.
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CITATION STYLE
Ballal, T., & Bleakley, C. J. (2008). Phase-difference ambiguity resolution for a single-frequency signal. IEEE Signal Processing Letters, 15, 853–856. https://doi.org/10.1109/LSP.2008.2005439
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