伍沛然
伍沛然,博士,中山大学“百人计划”引进人才、副教授、硕士生导师。博士毕业于加拿大不列颠哥伦比亚大学电气与计算机工程专业。2017年2月加入中山大学电子与信息工程学院。 主要研究方向为无线宽带移动通信。
Email: [email protected]
教育经历
2010年9月-2015年10月 加拿大不列颠哥伦比亚大学,电气与计算机工程,博士。
2008年9月-2010年8月 香港城市大学,电子工程,硕士。
2004年9月-2008年6月 中山大学,通信工程,本科。
工作经历
2017年2月-今 中山大学, 副教授,百人计划”引进人才。
2015年10月-2017年1月 加拿大不列颠哥伦比亚大学, 博士后研究员。
2014年6月-2014年11月 德国Friedrich-Alexander爱尔兰根-纽伦堡大学,Visiting Scientist。
授课课程
《数值计算方法》,《程序设计与实验》,《高级程序设计》。
研究方向
无线宽带移动通信技术,具体包括:非正交多址接入 (NOMA)、物理层新波形 (NOW),全双工通信 (Full-duplex),频域信道均衡 (FDE)、认知无线网络 (CRN) 等。
科研项目
中山大学“百人计划”引进人才启动经费
代表性科研成果
国际期刊论文著作列表:
- Peiran Wu and X.Li, "Robust Optimization of SC-FDE Based Multihop DF Relay Systems with Imperfect CSI," IEEE Transactions on Vehicular Technology, vol.66, no. 3, pp. 2862-2867 March 2017.
- Peiran Wu, X, Ge, and Z.Liu, "Linear Precoded THP-FDE for Single Carrier Broadband MIMO Systems," IEEE Transactions on Vehicular Technology, vol. 65, no. 11, pp. 9436-9441, November 2016.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Robust Transceiver Design for SC-FDE Multi-hop Full-Duplex Decode-and-Forward Relaying Systems," IEEE Transactions on Wireless Communications, vol. 15, no. 2, pp. 1129-1145, February 2016.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Robust Transceiver Design For Broadband Multiuser Multi-Relay Networks," IEEE Transactions on Wireless Communications, vol.14, no.10, pp.5643-5658, October 2015.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Transceiver Design For SC-FDE Based MIMO Relay Systems," IEEE Transactions on Wireless Communications, vol.12, no.9,pp.4376-4391, September 2013.
- Peiran Wu and R.Schober, "Cooperative Beamforming for Single-Carrier Frequency-Domain Equalization Systems with Multiple Relays," IEEE Transactions on Wireless Communications, vol.11, no.6, pp.2276-2286, June 2012.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Power Allocation for SC-FDE-Based CR Systems under Explicit Primary User Protection," IEEE Communications Letters, vol.20 no. 5, May 2016.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Rate Optimization for Hybrid SC-FDE/OFDM Decode-and-Forward MIMO Relay Systems," IEEE Communications Letters, vol.18, no.7, pp.1210-1213, July 2014.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Optimal Tx-BF for MIMO SC-FDE Systems," IEEE Communications Letters, vol.17, no.8, pp.1509-1512, August 2013.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Optimal Power Allocation for Wideband Cognitive Radio Networks Employing SC-FDMA ," IEEE Communications Letters, vol.17, no.4, pp.669-672, April 2013.
国际研讨会议论文著作列表:
- Xiuhua Li, Peiran Wu, Xiaofei Wang, Keqiu Li, Zhu Han, Victor C. M. Leung, "Collaborative hierarchical caching in cloud radio access networks,” IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS), Atlanta, GA, U.S.A, May 2017.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Robust MMSE Design for Full-Duplex Decode-and-Forward SC-FDE Relay Systems," in proceedings of IEEE International Conference on Communications (ICC), London, UK, June 2015.
- G.Xin, Peiran Wu, H.Jin, and V. Leung ``Secrecy Analysis of Multiuser Downlink Wiretap Networks with Opportunistic Scheduling", in proceedings of IEEE International Conference on Communications (ICC), London, UK, June 2015.
- Peiran Wu, R.Schober, and V.K.Bhargava, " Robust Cooperative Beamforming For SC-FDMA Based Multi-Relay Networks," in proceedings of IEEE International Conference on Communications (ICC), Sydney, Australia, June 2014.
- Peiran Wu, R.Schober, and V.K.Bhargava, "Joint Transceiver Design for MIMO Relay Systems Employing SC-FDE," in proceedings of IEEE Global Communications Conference (GlobeCom), Anaheim, CA, U.S.A, December 2012.
- Peiran Wu and R.Schober, "Cooperative Frequency-Domain Beamforming For Broadband SC-FDE Systems,” in proceedings of IEEE Global Communications Conference (GlobeCom), Houston, TX, U.S.A, December 2011.
- Peiran Wu and Q.T.Zhang, "Precoding of FRFD STBCs with Covariance Feedback," in proceedings of IEEE Wireless Communications and Networking Conference (WCNC), Sydney, Australia, April 2010.
- Peiran Wu and Q.T.Zhang, "Combined THP and Linear Precoding to Achieve the Maximum Equalization Gain,” in proceedings of IEEE Wireless Communications and Networking Conference (WCNC), Sydney, Australia, April 2010.