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Cramer-Rao Bound of Direction Finding Using Uniform Arc Arrays

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dc.contributor.author Nyokabi, Veronicah
dc.contributor.author Kitavi, Dominic M.
dc.contributor.author Ngari, Cyrus G.
dc.date.accessioned 2020-06-19T11:36:46Z
dc.date.available 2020-06-19T11:36:46Z
dc.date.issued 2019
dc.identifier.citation Journal of Advances in Mathematics and Computer Science 33(1): 1-15, 2019; Article no.JAMCS.48578 en_US
dc.identifier.issn 2456-9968
dc.identifier.uri DOI: 10.9734/JAMCS/2019/v33i130168
dc.identifier.uri http://repository.embuni.ac.ke/handle/embuni/2370
dc.description.abstract Direction-of-Arrival estimation accuracy using arc array geometry is considered in this paper. There is a scanty use of Uniform Arc Array (UAA) in conjunction with Cram er-Rao bound (CRB) for Direction-of-Arrival estimation. This paper proposed to use Uniform Arc Array formed from a considered Uniform Circular Array (UCA) in conjunction with CRB for Direction-of-Arrival estimation. This Uniform Arc Array is obtained by squeezing all sensors on the Uniform Circular Array circumference uniformly onto the Arc Array. Cram er-Rao bounds for the Uniform Arc Array and that of the Uniform Circular Array are derived. Comparison of performance of the Uniform Circular Array and Uniform Arc Array is done. It was observed that Uniform Arc Array has better estimation accuracy as compared to Uniform Circular Array when number of sensors equals four and ve and azimuth angle ranging between π 9 7 and π and also 18 10 9 π and 25 18π. However, UCA and UAA have equal performance when the number of sensors equals three and the azimuth angle ranging between 0 and 2π. UCA has better estimation accuracy as compared to UAA when the number of sensors equals four and ve and the azimuth angle ranging between π 2 and π and also 32 π and 2π en_US
dc.language.iso en en_US
dc.subject Array signal processing en_US
dc.subject direction-of-arrival estimation en_US
dc.subject direction fi nding en_US
dc.subject Cramer-Rao bound en_US
dc.subject uniform arc array en_US
dc.title Cramer-Rao Bound of Direction Finding Using Uniform Arc Arrays en_US
dc.type Article en_US


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