期刊文献+

基于分布式天线的全双工中继系统最大化和速率波束成形设计 被引量:1

Sum-rate Maximizing Beamforming Design for Distributed-antenna Based Full-duplex Relay Systems
下载PDF
导出
摘要 基于分布式天线的全双工中继系统结合了全双工中继两跳同时同频传输的能力和分布式天线高效覆盖的特性,为提升小区边缘和严重阴影衰落区域的频谱效率提供了一种有效途径。在自干扰抵消非理想的多用户场景下,利用分布式多天线波束成形可实现对系统中自干扰和多用户干扰的联合抑制。为此,该文首先建立了在各分布式天线节点独立发射功率约束下最大化多用户端到端和速率的最优化系统模型,进而提出一种双层迭代算法,解决原问题的非凸性求解难题。仿真结果验证了算法的有效性,表明在多用户分布式天线全双工中继系统中,所提波束成形设计能够有效抑制自干扰和多用户干扰,显著提高系统频谱效率。 Distributed antenna based full-duplex relay system is capable of simultaneous transmission and reception in the same frequency band on two hops, and it provides uniform coverage for cell edge and deep shadow fading areas with increased spectral efficiency. In multiuser scenarios with non-ideal self interference cancellation, beamforming using multiple distributed antennas is proposed to suppress self interference and multiuser interference jointly. A system model for multiuser end-to-end sum-rate maximization under individual power constraints at distributed antennas is established first. Then, a dual-layer iterative algorithm is proposed to resolve the non-convexity of the problem. Simulation results validate the effectiveness of the proposal algorithm, showing that the proposed beamforming design can be used in distributed-antenna based full-duplex relay systems, to suppress both self interference and multiuser interference efficiently, and increase system spectral efficiency significantly.
出处 《电子与信息学报》 EI CSCD 北大核心 2015年第11期2657-2663,共7页 Journal of Electronics & Information Technology
基金 国家973计划项目(2012CB316002) 国家863计划项目(2014AA01A707) 国家重大专项(2014ZX03003003-002) 国家自然科学基金(61201192) 华为科研合作项目~~
关键词 全双工中继 分布式天线 波束成形 干扰抑制 和速率 Full-duplex relay Distributed antenna Beamforming Interference suppression Sum-rate
  • 相关文献

参考文献18

  • 1Laneman J N, Tse D N C, and Wornell G W. Cooperative diversity in wireless networks: efficient protocols and outage behavior[J]. IEEE Transactions on Information Theory, 2004, 50(12): 3062-3080.
  • 2Xu W, Dong X, and Lu W S. Joint precoding optimization for multiuser multi-antenna relaying downlinks using quadratic programming[J]. IEEE Transactions on Communications, 2011, 59(5): 1228-1235.
  • 3李敏,林敏.同信道干扰条件下的多天线放大转发中继中断概率分析[J].电子与信息学报,2015,37(1):163-168. 被引量:6
  • 4Sabharwal A, Schniter P, Guo D, et al.. In-band full-duplex wireless: challenges and opportunities[J]. IEEE Journal on Selected Areas in Communications, 2014, 32(9): 1637-1652.
  • 5Liu G, Yu R, Ji H, et al.. In-band full-duplex relaying: A survey, research issues and challenges[J]. IEEE Communications Surveys ~ Tutorials, 2015, 17(2): 500-524.
  • 6王俊,赵宏志,卿朝进,唐友喜.同时同频全双工场景中的射频域自适应干扰抵消[J].电子与信息学报,2014,36(6):1435-1440. 被引量:19
  • 7Day B P, Margetts A R, Bliss D W, et al.. Full-duplex MIMO relaying: Achievable rates under limited dynamic range[J].IEEE Journal on Selected Areas in Communications, 2012, 30(8): 1541-1553.
  • 8Cirik A C, Rong Y, euad Hua Y. Achievable rates of full-duplex MIMO radios in fast fading channels with imperfect channel estimation[J]. IEEE Transactions on Signal Processing, 2014, 62(15): 3874-3886.
  • 9Taniguchi T and Karasawa Y. Design and analysis of MIMO multiuser system using full-duplex multiple relay nodes[C]. Proceedings of Wireless Days (WD), Dublin, 2012: 1-8.
  • 10Jin H and Leung V C M. Performance analysis of full-duplex relaying employing fiber-connected distributed antennas[J]. IEEE Transactions on Vehicular Technology, 2014, 63(1): 146-160.

二级参考文献37

  • 1Rappaport T S, Shu S, Mayzus R, et al. Millimeter wavemobile communications for 5G cellular: it will work![J]. IEEEAccess, 2013,1: 335-349.
  • 2Cadambe V R and Jafar S A. Degrees of freedom of wirelessnetworks with relays, feedback, cooperation, and full duplexoperation [J]. IEEE Transactions on Information Theory,2009,55(5): 2334-2344.
  • 3Elsayed A, Eltawil A M, and Sabharwal A. Rate gain regionand design tradeoffs for full-Duplex wireless communications[J]. IEEE Transactions on Wireless Communications, 2013,12(7): 3556-3565.
  • 4Lbpez-Valcarce R, Antonio-Rodriguez E, Mosquera C, et al.An adaptive feedback canceller for full-duplex relays based onspectrum shaping[J]. IEEE Journal on Selected Areas inCommunications, 2012, 30(8): 1566-1577.
  • 5Oppenheim A and Schafer R. Discrete Time SignalProcessing[M]. 3rd Ec}.,New Jersey; Prentice Hall Inc, 2009:183-197.
  • 6Choi J I, Jain M, Srinivasan K, et q.1. Achieving singlechannel, full duplex wireless communication[C]. MobiCom,10,New York, USA, 2010: 1-12.
  • 7Radutiovic B, Gynawardena D, Key P, et al. Rethinkingindoor wireless mesh design: low power, low frequency,full-duplex[C]. WIMESH, Boston, Massachusetts, 2010: 1-6.
  • 8Jain M, Choi J, Kim T M, et al.. Practical, real-time, fullduplex wireless[C]. Mobile Computing and Networking, NewYork, USA, 2011: 301-312.
  • 9Hong S, Mehlman J, and Katti S. Picasso: flexible RF andspectrum slicing[C]. SIGCOMM,12,Helsinki, Finland, 2012:13-17.
  • 10Gordon L S. Principles of Mobile Communication[M]. 3rd Ed.,Berlin: Springer, 2011: 198-203.

共引文献23

同被引文献1

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部