A Novel Scheme for High-Accuracy Frequency Estimation in Non-Contact Heart Rate Detection Based on Multi-Dimensional Accumulation and FIIB. [PDF]
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Coherent DOA Estimation of Multi-Beam Frequency Beam-Scanning LWAs Based on Maximum Likelihood Algorithm. [PDF]
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Intra-grid location estimation of smartphone videos using ENF extraction and an improved super-pixel technique. [PDF]
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Optimizing imbalanced learning with genetic algorithm. [PDF]
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A Computationally Efficient MUSIC Algorithm with an Enhanced DOA Estimation Performance for a Crossed-Dipole Array. [PDF]
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Multiresolution ESPRIT algorithm
IEEE Transactions on Signal Processing, 1999Multiresolution ESPRIT is an extension of the ESPRIT direction finding algorithm to antenna arrays with multiple baselines. A short (half wavelength) baseline is necessary to avoid aliasing, and a long baseline is preferred for accuracy. The MR-ESPRIT algorithm allows the combination of both estimates.
Lemma, A. (author) +2 more
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Improved Cyclic ESPRIT Algorithm
2009 5th International Conference on Wireless Communications, Networking and Mobile Computing, 2009In order to improve the estimation precision of the cyclic ESPRIT, an improved cyclic ESPRIT is proposed by exploring the cyclostationarity of the narrow bandwidth signals received by antenna array. The improved algorithm uses a new method to choose the frequency for evaluating the steering vector.
Qiang Qu, Xuebo Chen, Minglu Jin
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Asymptotic performance analysis of ESPRIT, higher order ESPRIT, and virtual ESPRIT algorithms
IEEE Transactions on Signal Processing, 1996In this paper, we present an asymptotic performance analysis of three subspace-based methods for direction of arrival (DOA) estimation-the ESPRIT algorithm using second order statistics, the higher order ESPRIT algorithm using fourth-order cumulants, and the virtual ESPRIT (VESPA) algorithm using fourth-order cumulants.
N. Yuen, B. Friedlander
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The interpolated ESPRIT algorithm
[Proceedings] ICASSP 91: 1991 International Conference on Acoustics, Speech, and Signal Processing, 1991The technique of interpolated arrays is applied to ESPRIT-type direction-finding methods. The resulting method uses sensor arrays with arbitrary configuration, thus eliminating the basic restrictive requirement of ESPRIT for two (or more) identical arrays.
A.J. Weiss, M. Gavish
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