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    Effect of different platforms on coupling compensation matrices in AOA estimation algorithms using small size UCA

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    Publication date
    2014
    Author
    Ghazaany, Tahereh S.
    Zhu, Shaozhen (Sharon)
    Jones, Steven M.R.
    Abd-Alhameed, Raed A.
    Noras, James M.
    Van Buren, T.
    Marker, S.
    Keyword
    Subspace-based algorithm; Mutual coupling; Uniform circular array; Interferometer
    Peer-Reviewed
    Yes
    
    Metadata
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    Abstract
    In this paper the sensitivity of the decoupling matrix used for mutual coupling compensation in small size uniform circular arrays has been studied. The compensation matrix is calculated using the receiving mode technique for a 5-element uniform circular array and applied to two groups of direction finding algorithms, namely phase comparison-based (interferometry) and subspace-based algorithms. In the tracking application considered the receiver array is deployed on a car roof or aircraft, so the geometry of the platform influences the compensation results. In this work, the effect of different ground plane geometries in terms of the standard deviation of angular error for each estimation algorithm using simulation results is investigated. The results show that the calibration conditions used to determine the compensation matrix affect the AOA estimation accuracy.
    URI
    http://hdl.handle.net/10454/10637
    Version
    No full-text available in the repository
    Citation
    Ghazaany TS, Zhu S, Jones SMR et al (2014) Effect of different platforms on coupling compensation matrices in AOA estimation algorithms using small size UCA. In: Proceedings of the IEEE Radio and Wireless Symposium. 19-23 Jan 2014, Newport Beach, CA, US: 277-279.
    Type
    Conference Paper
    Collections
    Engineering and Informatics Publications

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