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On the macroscopic optimization of multicell wireless systems with multiuser detection and multiple antennas - uplink analysis

机译:多用户检测多天线多小区无线系统的宏观优化-上行分析

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摘要

In this paper, we consider a system with K single-antenna client users, n/sub B/ base stations (each base station has n/sub R/ antennas), as well as a centralized controller. A client user could be associated with a single base station at any time. All the base stations operate at the same frequency and have optimal multiuser detection per base station which cancels intracell interference only. We consider a general problem of uplink macroscopic resource management where the centralized controller dynamically determines an appropriate association mapping of the K users with respect to the n/sub B/ base stations over a macroscopic time scale. We propose a novel analytical framework for the above macroscopic scheduling problems. A simple rule is to associate a user with the strongest base station (camp-on-the-strongest-cell), and this has been widely employed in conventional cellular systems. However, based on the optimization framework, we found that this conventional approach is in fact not optimal when multiuser detection is employed at the base station. We show that the optimal macroscopic scheduling algorithm is of exponential complexity, and we propose a simple greedy algorithm as a feasible solution.
机译:在本文中,我们考虑一个具有K个单天线客户端用户,n / sub B /个基站(每个基站具有n / sub R /个天线)以及一个集中控制器的系统。客户端用户可以随时与单个基站关联。所有基站均以相同的频率运行,并且每个基站具有最佳的多用户检测功能,仅能消除小区内干扰。我们考虑上行链路宏观资源管理的一般问题,其中集中控制器在宏观时间尺度上动态确定K个用户相对于n / sub B /个基站的适当关联映射。针对以上宏观调度问题,我们提出了一种新颖的分析框架。一个简单的规则是将用户与最强的基站(最强小区上的营地)相关联,并且这已在常规蜂窝系统中广泛使用。但是,基于优化框架,我们发现,当在基站采用多用户检测时,这种常规方法实际上并不是最佳的。我们证明了最优的宏观调度算法具有指数复杂性,并提出了一种简单的贪心算法作为可行的解决方案。

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