• 中国计算机学会会刊
  • 中国科技核心期刊
  • 中文核心期刊

Computer Engineering & Science

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Performance analysis for laregescale heterogeneous cellular
networks with massive MIMO relays based on stochastic geometry

ZHOU Meng1,JIA Xiangdong1,2,XIE Mangang1   

  1. (1.College of Computer Science and Engineering,Northwest Normal University,Lanzhou 730070;
    2.Wireless Communication Key Laboratory of Jiangsu Province,
    Nanjing University of Posts and Telecommunications,Nanjing 210003,China)

     
  • Received:2016-08-16 Revised:2017-04-01 Online:2018-06-25 Published:2018-06-25

Abstract:

By using stochastic geometry theorem, we investigate the spectral efficiency (SE) of largescale heterogeneous cellular networks (HetNets) with massive MIMO relays, where the maximum ratio combining/ maximal ratio transmission, zeroforcing processing scheme as well as amplifyandforward are employed at base stations and the macro cells are overlaid with dense small cells. To obtain the aggregate SE in target cell, we first formulate the signaltointerference noise ratios (SINR) for a user pair as well as the expression of power amplification factor. We then achieve the closedform expressions of aggregate SE. We find that when the radius of small cells is less than the guard radius we can acquire optimal (or suboptimal) system performance. For the guard radius, there is an upper bound, only under which the increase of the guard radius can contribute to the improvement of SE. Meanwhile, the radius of small cells has an optimal lower bound and only when the radius of macro cells is less than the optimal lower bound, the aggregate SE increases with the macro cell radius.
 

Key words: heterogeneous network, amplifyandforward, massive MIMO, relay, stochastic geometry