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Research Article Sparse Array Angle Estimation Using Reduced-Dimension ESPRIT-MUSIC in MIMO Radar

by Chaozhu Zhang, Yucai Pang
"... License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Sparse linear arrays provide better performance than the filled linear arrays in terms of angle estimation and resolutionwith reduced size and low cost. However, they ..."
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, they are subject to manifold ambiguity. In this paper, both the transmit array and receive array are sparse linear arrays in the bistatic MIMO radar. Firstly, we present an ESPRIT-MUSIC method in which ESPRIT algorithm is used to obtain ambiguous angle estimates. The disambiguation algorithm uses MUSIC

Article Sparse Auto-Calibration for Radar Coincidence Imaging with Gain-Phase Errors

by Xiaoli Zhou, Hongqiang Wang, Yongqiang Cheng, Yuliang Qin , 2015
"... sensors ..."
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Abstract not found

Wireless Communications

by Andrea Goldsmith, Anaïs Nin , 2005
"... Copyright c ○ 2005 by Cambridge University Press. This material is in copyright. Subject to statutory exception and to the provisions of relevant collective licensing agreements, no reproduction of any part may take place without the written permission of Cambridge University ..."
Abstract - Cited by 1129 (32 self) - Add to MetaCart
Copyright c ○ 2005 by Cambridge University Press. This material is in copyright. Subject to statutory exception and to the provisions of relevant collective licensing agreements, no reproduction of any part may take place without the written permission of Cambridge University

Wavelets and Subband Coding

by Martin Vetterli, Jelena Kovačević , 2007
"... ..."
Abstract - Cited by 608 (32 self) - Add to MetaCart
Abstract not found

Chebyshev and Fourier Spectral Methods

by John P. Boyd , 1999
"... ..."
Abstract - Cited by 778 (12 self) - Add to MetaCart
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Spatiotemporal arrayed MIMO Radar

by Harry Commin , 2013
"... In the last decade, Multiple Input Multiple Output (MIMO) radar has emerged as a leading candidate for stimulating major new advancement in radar theory. A fundamental challenge in MIMO radar is to identify a theoretical framework within which the radar system may be represented and analysed. In the ..."
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between SIMO and MIMO by developing a manifold representation of the MIMO radar system. A new differential geometric framework, based on the complex Cartan matrix, is exploited in this thesis for characterising array manifold curves. New formulas are presented for recursively calculating the strictly

Article Adaptive Sparse Representation for Source Localization with Gain/Phase Errors

by Ke Sun, Yimin Liu, Huadong Meng, Xiqin Wang , 2011
"... sensors ..."
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CHAPTER 25 BISTATIC RADAR

by Nicholas J. Willis
"... Bistatic radar employs two sites that are separated by a considerable distance. A transmitter is placed at one site, and the associated receiver is placed at the sec-ond site. Target detection is similar to that of monostatic radar: target illuminated by the transmitter and target echoes detected an ..."
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and processed by the receiver. Tar-get location is similar to but more complicated than that of a monostatic radar: total signal propagation time, orthogonal angle measurements by the receiver, and some estimate of the transmitter location are required to solve the transmitter-target-receiver triangle, called

Parameter Estimation based on Fractional Correlation under Alpha-Stable Distribution Noise Environment in Bistatic MIMO Radar System

by Li Li A
"... distribution Abstract. This paper takes the α-stable distribution as the noise model and works on the parameter estimation problem of bistatic Multiple-Input Multiple-Output (MIMO) radar system in the impulsive noise environment.This paper presents a signal model and a novel method for parameter est ..."
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estimation in bistatic MIMO radar system in the impulsive noise environment. Firstly, a signal array model is constructed based on the α-stable distribution model. Secondly, Doppler parameters are jointly estimated by searching the optimal rotation angle to meet concentrated-energy of the FLOS

MIMO Radar: Target Localisation

by Kai Luo , 2013
"... ..."
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