Transmit Antenna Selection and OSTBC in adaptive multiuser OFDMA systems with different user priorities and imperfect CQI

A. Kühne, A. Klein
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引用次数: 5

Abstract

In this paper, an adaptive multiuser OFDMA system in the downlink with multiple antennas at the transmitter and the receivers is investigated which serves two sets of users differing in their priority regarding channel access. At the transmitter either Transmit Antenna Selection (TAS) or Orthogonal Space Time Block Coding (OSTBC) is performed. In addition, Maximum Ratio Combining (MRC) is performed at each receiver side. A Weighted Proportional Fair Scheduling (WPFS) approach is applied using the different user priorities and the instantaneous Signal-to-Noise-Ratios (SNRs) of the corresponding equivalent Single Input Single Output (SISO) channels of the users as Channel Quality Information (CQI) to allocate the different subcarriers to the different users. These CQI values are assumed to be imperfect due to time delays and estimation errors. The joint impact of imperfect CQI and user priority on the system performance is analytically investigated for both transmission schemes. Numerical results show that serving users with different priorities comes at the expense of reduced system data rate and less robustness against imperfect CQI. Furthermore, it is beneficial to switch from TAS to OSTBC in scenarios for fast varying channels due to the additional exploitation of spatial diversity applying OSTBC.
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不同用户优先级和不完善CQI的自适应多用户OFDMA系统的发射天线选择和OSTBC
本文研究了一种下行链路自适应多用户OFDMA系统,该系统在发送端和接收端具有多个天线,服务于两组不同优先级的用户。在发射端,执行发射天线选择(TAS)或正交空时分组编码(OSTBC)。此外,在每个接收端执行最大比率合并(MRC)。采用加权比例公平调度(WPFS)方法,利用用户的不同优先级和相应的等效单输入单输出(SISO)信道的瞬时信噪比(SNRs)作为信道质量信息(CQI),为不同的用户分配不同的子载波。由于时间延迟和估计错误,假设这些CQI值是不完美的。分析了两种传输方案中不完善的CQI和用户优先级对系统性能的共同影响。数值结果表明,为不同优先级的用户提供服务的代价是降低系统数据速率和对不完美CQI的鲁棒性。此外,在信道快速变化的情况下,从TAS切换到OSTBC是有利的,因为使用OSTBC可以额外利用空间多样性。
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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