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Yuyu Liu, Jinbao Zhang and Dan Zhang
Given the mutual information of finite-alphabet inputs cannot be calculated concisely and accurately over fading channels, this paper proposes a new method to calculate the mutual information. First, the applicability of the saddle point method is studie...
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Issa Chihaoui,Mohamed Lassaad Ammari
Pág. 52 - 58
In this paper, we propose and analyze a wirelesstransmitter, for multiple-input multiple-output (MIMO) systems,that relies exclusively on energy harvesting. We consider wirelesstransceivers where the transmitter harvests the total requiredenergy from its...
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Domingo Rodriguez, Cesar Aceros, Juan Valera and Edwin Anaya
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Razvan-Florentin Trifan, Andrei-Alexandru Enescu and Constantin Paleologu
Multi-User (MU) Multiple-Input-Multiple-Output (MIMO) systems have been extensively investigated over the last few years from both theoretical and practical perspectives. The low complexity Linear Precoding (LP) schemes for MU-MIMO are already deployed i...
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Sajjad Alizadeh,Hossein Khaleghi Bizaki,Reza Saadat
Pág. 17 - 26
Conventional Time Reversal (TR) technique suffers from performance degradation in time varying Multiple-Input Multiple-Output Ultra-Wideband (MIMO-UWB) systems due to outdating Channel State Information (CSI) over time progressions. That is, the outdated...
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Prateek Saurabh Srivastav, Lan Chen and Arfan Haider Wahla
Channel estimation is a formidable challenge in mmWave Multiple Input Multiple Output (MIMO) systems due to the large number of antennas. Therefore, compressed sensing (CS) techniques are used to exploit channel sparsity at mmWave frequencies to calculat...
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Kostantiv Vasyuta, Fedor Zots, Irina Zakharchenko
Pág. 33 - 43
The subject matter of the paper is a covert information and measuring system based on orthogonal chaotic signals. The goal of the work is to synthesize a covert information measuring system built on the basis of orthogonal chaotic signals. The tasks to b...
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Kostantiv Vasyuta, Fedor Zots, Irina Zakharchenko
Pág. 33 - 43
The subject matter of the paper is a covert information and measuring system based on orthogonal chaotic signals. The goal of the work is to synthesize a covert information measuring system built on the basis of orthogonal chaotic signals. The tasks to b...
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