成果展示-2015-通信-汪學思-尊龙凯时人生就是博(中国)電子工程系

尊龙凯时人生就是博(中国)

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成果展示-2015-通信-汪學思

姓名 :

汪學思

導師 :

王勁濤

聯繫方式 :

wxsthu@icloud.com

所屬專業 :

信息與通信工程

研究成果題目 :

多天線場景下非正交多址技術研究

研究成果簡介 :

已發表一作國際期刊論文(SCI收錄)

1. X. Wang, J. Wang, L. He, and J. Song, 「Spectral Efficiency Analysis for Downlink NOMA Aided Spatial Modulation with Finite Alphabet Inputs,」 IEEE Trans. Veh. Technol., vol. 66, no. 11, pp. 10562-10566, Nov. 2017.

2. X. Wang, J. Wang, L. He, Z. Tang, and J. Song, 「On the Achievable Spectral Efficiency of Spatial Modulation Aided Downlink Non-Orthogonal Multiple Access,」 IEEE Commun. Lett., vol. 21, no. 9, pp. 1937-1940, Sep. 2017.

3. X. Wang, J. Wang, L. He, and J. Song, 「Spectral Efficiency Analysis for Spatial Modulation Aided Layered Division Multiplexing Systems With Gaussian and Finite Alphabet Inputs,」 IEEE Trans. Broadcast.,vol. 64, no. 4, pp. 909-914, Dec. 2018.

4. X. Wang, J. Wang, L. He, and J. Song, 「Outage Analysis for Downlink NOMA with Statistical Channel State Information,」 IEEE Wireless Commun. Letters, vol. 7, no. 2, pp. 142-145, Apr. 2018.

5. X. Wang, J. Wang, L. He, C. Pan, and J. Song, 「Basis Expansion Model Based Spectral Efficient Channel Recovery Scheme for Spatial-Temporal Correlated Massive MIMO Systems,」 IET Commun., vol. 11, no. 17, pp. 2621-2629, Dec. 2017.(SCI檢索 ,影響因子1.443)

已發表一作國際會議論文(EI收錄)

1. X. Wang, J. Wang, L. He, and J. Song, 「Doubly Selective Underwater Acoustic Channel Estimation with Basis Expansion Model,」 in Proc. IEEE ICC 2017, Paris, France.

2. X. Wang, J. Wang, L. He, and J. Song, 「Basis Expansion Model Based Spectral Efficient Channel Estimation Scheme for Massive MIMO Systems,」 in Proc. IEEE IWCMC 2017, Valencia, Spain.

3. X. Wang, J. Wang, X. Ma, and C. Pan, 「Pilot Allocation for MIMO-OFDM Systems: A Structured Compressive Sensing Perspective,」 in Proc. IEEE IWCMC 2016, Paphos, Cyprus.

4. X. Wang, J. Wang, and W. Ding, 「Optimal Pilot Pattern for Sparse Channel Estimation in TFT-OFDM Systems,」 in Proc. IEEE BMSB 2015, Ghent, Belgium.

5. X. Wang, and J. Wang, 「Pilot Allocation for MIMO-ZP-OFDM Systems in Underwater Acoustic Channel Based on Structured Compressive Sensing,」 in Proc. IEEE/OES COA 2016, Harbin, China.

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