Outage Performance of Multi-Antenna Multicasting for Wireless Networks

被引:18
|
作者
Park, Seung Young [1 ]
Love, David J. [2 ]
机构
[1] Kangwon Natl Univ, Sch Informat Technol, Chunchon 200170, South Korea
[2] Purdue Univ, Sch Elect & Comp Eng, W Lafayette, IN 47907 USA
基金
美国国家科学基金会;
关键词
Multicast channel; multiple antenna; repetition transmission; outage capacity; LIMITS;
D O I
10.1109/TWC.2009.080321
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Wireless cellular networks often need to convey the same data to multiple users simultaneously. This kind of transmission is known as physical layer multicasting. Unfortunately, when any user fails to receive the data correctly, the information must be retransmitted to all the users, resulting in a waste of radio resources. Thus, it is important to investigate the outage probability of multicast channels, which is defined as the probability that the smallest maximum achievable rate among all of the users is smaller than a specified transmission rate. In this paper, we consider the use of multiple antenna multicast channels where the transmitter is equipped with M-t antennas and independent data is transmitted on each antenna to K users. Using extreme value theory, we derive a closed form limiting distribution that the exact distribution of the multicasting channel converges to when the number of users K is taken to infinity. From this result, we find upper and lower-bounds on the outage probability. It is shown that for a given outage probability the upper-bound becomes sufficiently tight to approximate the exact outage probability with K such that it converges to the exact one with a speed faster than circle minus(.) (K-1/mt). Using this upper-bound, we identify conditions on the transmission rate and the transmit power necessary to maintain constant outage performance as K increases. Specifically, the transmission rate should be decreased as circle minus (K-1/mt) or the transmit power should be increased as circle minus (K-1/Mt). This means that the outage performance improves as the number of transmit antennas increases, because spatial diversity can be well exploited. However, this increase in the number of transmit antennas requires a significant cost. To improve the performance without requiring additional cost, we consider a multiple-slot multicasting that transmits the same data over multiple slots and an antenna subset selection scheme that transmits the data over some subset of the transmit antennas. It is shown that the transmission rate of multiple-slot scheme can be increased when the number of slots is carefully chosen and the diversity-multiplexing trade-off is the same as that of K = 1. Also, the gain in the transmission rate from selecting some subset of the transmit antennas is derived.
引用
收藏
页码:1996 / 2005
页数:10
相关论文
共 50 条
  • [1] Delay Performance of Multi-Antenna Multicasting in Wireless Networks
    Kountouris, Marios
    Avranas, Apostolos
    [J]. 2018 IEEE 19TH INTERNATIONAL WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS (SPAWC), 2018, : 341 - 345
  • [2] Cooperative Multi-Antenna Multicasting for Wireless Networks
    Zhang, Hua
    You, Xiaohu
    Wu, Gang
    Wang, Haifeng
    [J]. 2010 IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE GLOBECOM 2010, 2010,
  • [3] Outage Performance and Diversity Analysis for Multi-antenna Multi-relay Networks
    Liu Ning
    Yi Ping
    Li Jianing
    Li Jianhua
    Wu Yue
    [J]. CHINA COMMUNICATIONS, 2010, 7 (03) : 53 - 63
  • [5] Interference Analysis and Outage Performance of Finite Multi-antenna Ad Hoc Networks
    Chen, Jiayi
    Zhang, Q. T.
    Ding, Minhua
    [J]. 2011 7TH INTERNATIONAL WIRELESS COMMUNICATIONS AND MOBILE COMPUTING CONFERENCE (IWCMC), 2011, : 1618 - 1623
  • [6] Outage Performance of Integrated Satellite-Terrestrial Multi-Antenna Relay Networks
    Liu, Xiaoyu
    Wu, Xuewen
    Ouyang, Jian
    Huang, Qingquan
    Lin, Min
    [J]. 2018 CROSS STRAIT QUAD-REGIONAL RADIO SCIENCE AND WIRELESS TECHNOLOGY CONFERENCE (CSQRWC), 2018,
  • [7] Federated Learning in Multi-antenna Wireless Networks
    Song, Zhendong
    Sun, Hongguang
    Yang, Howard H.
    Wang, Xijun
    Quek, Tony Q. S.
    [J]. 2021 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS WORKSHOPS (ICC WORKSHOPS), 2021,
  • [8] Outage Probability Performance Analysis of Multi-Antenna AF Relaying
    Lai, Ping
    Bai, Hang
    Li, Jianjian
    Shen, Zheqing
    [J]. PROCEEDINGS OF 2016 8TH IEEE INTERNATIONAL CONFERENCE ON COMMUNICATION SOFTWARE AND NETWORKS (ICCSN 2016), 2016, : 280 - 283
  • [9] Outage Analysis of Spectrum Sharing Multi-Antenna Multi-Relay Networks
    Hu, Zhenzhen
    Cheng, Julian
    Zhang, Zhongpei
    [J]. 2017 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC), 2017,
  • [10] Secrecy Outage Performance for DF Buffer-Aided Relaying Networks With a Multi-Antenna Destination
    Wei, Chen
    Yang, Wendong
    Cai, Yueming
    Tang, Xuanxuan
    Kang, Guoqin
    [J]. IEEE ACCESS, 2019, 7 : 41349 - 41364