"Review Article: Multicarrier Communication for Underwater Acoustic Channel"
written by Hamada Esmaiel, Danchi Jiang,
published by International Journal of Communications, Network and System Sciences, Vol.6 No.8, 2013
has been cited by the following article(s):
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[2] Assessment of UWAC System Performance Using FBMC Technique
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[7] Performance Analysis of Multiband Transmission Technique in Underwater Acoustic Communication
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[8] Non-Orthogonal Multiple Access (NOMA) for Underwater Acoustic Communication
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[9] Orthogonal Angle Domain Subspace Projection-Based Receiver Algorithm for Underwater Acoustic Communication
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[10] Real-time video transmission using massive MIMO in an underwater acoustic channel
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[11] UW-OFDM over long tap delay channel with a concatenated channel estimation technique
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[12] A comparative study on underwater communications for enabling C/U plane splitting based hybrid UWSNs
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[13] Active Electro-Location of Objects in the Underwater Environment Based on the Mixed Polarization Multiple Signal Classification Algorithm
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[14] Adaptive Video Transmission Designs Over Underwater Acoustic Channels
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[15] 수중 음향 통신에서 다중 밴드 전송 기법의 성능 분석
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[16] Damped Zero-Pseudorandom Noise OFDM Systems
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[17] A Weighted Turbo Equalized Multi-Band Underwater Wireless Acoustic Communications
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[18] Underwater Electro-Location Method Based on Improved Matrix Adaptation Evolution Strategy
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[19] Multi-parameter Estimation and Its Cramer-Rao Lower Bound for Underwater Acoustic Signal
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[20] An Improved Zero-Forcing Detection Algorithm of Spread OFDM for Underwater Acoustic Communications
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[21] Multiple Signal Classification Algorithm Based Electric Dipole Source Localization Method in an Underwater Environment
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[22] Performance analysis of BPSK system in the underwater acoustic channel with additive Laplacian noise
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[23] Generalized frequency division multiplexing for acoustic communication in underwater systems
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[24] Nonbinary LDPC code for noncoherent underwater acoustic communication under non-Gaussian noise
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[25] Doppler compensation method using carrier frequency pilot for OFDM-based underwater acoustic communication systems
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[26] MIMO-OFDM underwater acoustic communication systems—A review
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[27] Experimental study on multiple-input/multiple-output communication with time reversal in deep ocean
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[28] MIMO-OFDM underwater acoustic communication systems–A review
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[29] Modeling of Doppler power spectrum for underwater acoustic channels
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[30] ЭКСПЕРИМЕНТАЛЬНОЕ ИССЛЕДОВАНИЕ ВЛИЯНИЯ ФАЗОЧАСТОТНОЙ ХАРАКТЕРИСТИКИ ГИДРОАКУСТИЧЕСКОЙ АНТЕННЫ НА …
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[31] Research on Technologies of Underwater Wireless Optical Communication System with Fuzzy Multi-decision Evaluation
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[32] 基于 OFDM 的水声通信非一致多普勒补偿方法
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[33] Compressive Sensing Based Underwater Communication System
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[34] Performance evaluation of filterbank multicarrier systems in an underwater acoustic channel
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[35] A time synchronization method for OFDM-based underwater acoustic communication systems
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[36] Power allocation for covert communication, with application to underwater acoustic channel
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[37] 基于犗犉犇犕的水声通信非一致多普勒补偿方法
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[38] Review on Enhanced Data Rate Receiver Design using Efficient Modulation Techniques for Underwater Acoustic Communication
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[39] ЭКСПЕРИМЕНТАЛЬНОЕ ИССЛЕДОВАНИЕ ВЛИЯНИЯ ФАЗОЧАСТОТНОЙ ХАРАКТЕРИСТИКИ ГИДРОАКУСТИЧЕСКОЙ АНТЕННЫ НА ИНТЕНСИВНОСТЬ …
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[40] SINR analysis of OFDM systems using a geometry-based underwater acoustic channel model
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[41] Distributed video coding for underwater acoustic channels
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[42] Advanced multi-band modulation technology for underwater communication systems
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[43] 基于短时傅里叶变换的水声通信自适应 OFDM 均衡
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[44] Zero-pseudorandom noise training OFDM
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[45] Time reversal time-domain synchronisation orthogonal frequency division multiplexing over multipath fading channels with significant tap delays
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[46] Optimum bit rate for image transmission over underwater acoustic channel
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[47] PAPR REDUCTION TECHNIQUE USING COMBINED DCT AND LDPC BASED OFDM SYSTEM FOR UNDERWATER ACOUSTIC COMMUNICATION
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