Please use this identifier to cite or link to this item: http://drsr.daiict.ac.in//handle/123456789/524
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dc.contributor.advisorSunitha, V.
dc.contributor.advisorChakka, Vijay Kumar
dc.contributor.authorNivedita, S.
dc.date.accessioned2017-06-10T14:42:22Z-
dc.date.available2017-06-10T14:42:22Z-
dc.date.issued2014
dc.identifier.citationNivedita, S. (2014). Precoder design for beamforming in K-User MIMO interference chennel. Dhirubhai Ambani Institute of Information and Communication Technology, vii, 30 p. (Acc.No: T00487)
dc.identifier.urihttp://drsr.daiict.ac.in/handle/123456789/524-
dc.description.abstractBeamforming in MIMO wireless networks, is a techniques used for mitigating interference and achieve the best possible throughput. Accurate channel state information is essential for efficient design of beamforming vectors required for data transmission. According to [1], if accurate channel information is available, precoding vector design problem could be reduced to a problem of Generalised Eigen Vector computation for a matrix pencil. In this thesis, it is assumed that the channel state information available is incomplete. Thus, the eigen vector computation for precoding vector design is that of a noisy matrix pencil. In [2], some SVD based techniques have been explored for eigen value and eigen vector compuatation of noisy matrix pencils, in [2], performance of these methods has been analysed assuming that the matrix pencil involved has a know structure. This thesis analyses the performance of the SVD methods for the noisy matrix pencils that are involved in K-User MIMO networks (such a matrix pencil would not have a defined structure when the channel state information available is assumed to be incomplete).
dc.publisherDhirubhai Ambani Institute of Information and Communication Technology
dc.subjectMIMO Systems
dc.subjectWireless communication systems
dc.subjectPrecoder Design
dc.subjectK-User MIMO Interference
dc.classification.ddc621.384 NIV
dc.titlePrecoder design for beamforming in K-User MIMO interference chennel
dc.typeDissertation
dc.degreeM. Tech
dc.student.id201211047
dc.accession.numberT00487
Appears in Collections:M Tech Dissertations

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