MIMO-OFDMA rate allocation and beamformer design using a multi-access channel framework

A. Khanafer, Teng Joon Lim, R. Doostnejad, Taiwen Tang
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引用次数: 3

Abstract

This paper tackles the downlink user scheduling and transmit beamforming problems in MIMO-OFDMA by extending a recent algorithm that maximizes the weighted sum rate (WSR) to all users in MIMO flat fading channels. The proposed method has a complexity that is proportional to the number of OFDMA subcarriers, which makes it practically attractive. Having assigned users to each subcarrier and designed beamformers for each user in each subcarrier, it remains to find the best, in terms of rate maximization, adaptive modulation and coding (AMC) mode to use for each data stream. The latter problem is solved in the second half of the paper through viewing the channel from the base station to the k-th receiver as a multiple access channel (MAC) with Nk “users”, where Nk is the number of antennas at receiver k. The proposed method maps the available AMC modes to the space of allowed theoretical rates, using the signal-to-noise ratio (SNR) gap to capacity concept, and selects the operating point with the largest sum-rate.
MIMO-OFDMA速率分配和波束形成设计,采用多址信道框架
本文通过对MIMO- ofdma中所有用户加权和速率(WSR)最大化的最新算法进行扩展,解决了MIMO- ofdma下行链路用户调度和发送波束形成问题。该方法的复杂度与OFDMA子载波数量成正比,具有实际应用价值。在为每个子载波分配了用户并为每个子载波中的每个用户设计了波束形成器之后,仍然需要找到在速率最大化方面最佳的自适应调制和编码(AMC)模式来用于每个数据流。后一个问题在本文的后半部分通过将从基站到第k个接收机的信道视为具有Nk个“用户”的多址信道(MAC)来解决,其中Nk为接收机k处的天线数。本文提出的方法利用信噪比(SNR)差距与容量的概念,将可用的AMC模式映射到允许的理论速率空间,并选择求和速率最大的工作点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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