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缓存与MIMO回程联合的内容传递方法

Content Delivery Method Combined with Cache and MIMO Backhaul
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摘要 毫米波小蜂窝网络可提供较高的区域吞吐量,但其回程链路容量受限易造成阻塞。针对该问题,提出一种缓存小基站(SBS)与无线自回程SBS联合的内容传递方法。将部分流行内容预存储在缓存中,未存储内容由部署多输入多输出的宏基站传送。采用毫米波天线模式和视距球模型并借助随机几何工具,推导出缓存与回程联合内容传递异构网络的覆盖概率、平均区域速率和平均区域能量效率的表达式。实验结果表明,该方法可使波束变窄且传输更具有方向性,能够提高自回程传输的平均区域速率及接入链路的性能。 Millimeter-wave small cell networks can provide high regional throughput,but its limited return link capacity often results in block.To address the problem,a content delivery method based on the combination of cache Small Base Station(SBS)and wireless self-backhaul SBS is proposed.Some popular content is pre-stored in the cache,and the content that is not stored is transmitted by the Macro Base Station(MBS)with deployed Multi-Input and Multi-Output(MIMO).Then the expressions of coverage probability,Average Area Rate(AAR)and average area Energy Efficiency(EE)of heterogeneous network of cache and backhaul joint content delivery are derived by using the millimeter wave antenna mode,the horizon sphere model and the stochastic geometry tool.Experimental results show that this method makes the beam narrower and the transmission more directional,and improves the performance of average area rate and access link of self-backhaul transmission.
作者 徐文娟 贾向东 陈玉宛 XU Wenjuan;JIA Xiangdong;CHEN Yuwan(College of Computer Science and Engineering,Northwest Normal University,Lanzhou 730070,China;Wireless Communication Key Lab of Jiangsu Province,Nanjing University of Posts and Telecommunications,Nanjing 210003,China)
出处 《计算机工程》 CAS CSCD 北大核心 2020年第6期164-171,共8页 Computer Engineering
基金 国家自然科学基金(61861039,61561043,61261015) 甘肃省科技计划项目(18YF1GA060)。
关键词 异构网络 多输入多输出 缓存 自回程传输 毫米波 Heterogeneous Network(HetNet) Multi-Input and Multi-Output(MIMO) cache self-backhaul transmission millimeter wave
作者简介 徐文娟(1994-),女,硕士研究生,主研方向为无线通信关键理论与技术;贾向东,教授、博士,E-mail:jiaxd@nwnu.edu.cn;陈玉宛,硕士研究生。
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  • 1高西奇,尤肖虎,江彬,潘志文.面向后三代移动通信的MIMO-GMC无线传输技术[J].电子学报,2004,32(F12):105-108. 被引量:10
  • 2METIS. Mobile and wireless communications enablers for the 2020 information society. In: EU 7th Framework Programme Project, https://www.metis2020.com.
  • 3Wen T, Zhu P Y. 5G: A technology vision. Huawei, 2013. http://www.huawei.com/en/about-huawei/publications/ winwin-magazine/hw-329304.htm.
  • 4Wang C X, Haider F, Gao X Q, et al. Cellular architecture and key technologies for 5G wireless communication networks. IEEE Commun Mag, 2014, 52: 122-130.
  • 53GPP. Physical Channels and Modulation (Release 11). 3GPP TS36.211. 2010.
  • 6Marzetta T L. How Much training is required for multiuser MIMO? In: Proceedings of the 40th Asilomar Conference on Signals, Systems, & Computers, Pacific Grove, 2006. 359-363.
  • 7Marzetta T L. Noncooperative cellular wireless with unlimited numbers of base station antennas. IEEE Trans Wirel Commun, 2010, 9: 3590-3600.
  • 8Ngo H Q, Larsson E G, Marzetta T L. Energy and spectral efficiency of very large multiuser MIMO systems. IEEE Trans Commun, 2013, 61: 1436-1449.
  • 9You X H, Wang D M, Sheng B, et al. Cooperative distributed antenna systems for mobile communications. IEEE Wirel Commun, 2010, 17: 35-43.
  • 10You X H, Wang D M, Zhu P C, et al. Cell edge performance of cellular systems. IEEE J Sel Area Commun, 2011, 29: 1139-1150.

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