Subcarrier allocation in OFDMA with time varying channel and packet arrivals

Engin Toktas, E. Uysal-Biyikoglu, A. O. Yılmaz
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引用次数: 5

Abstract

This study considers the design of efficient low-complexity algorithms for dynamic allocation of subcarriers to users in a multiuser transmitter using Orthogonal Frequency Division. The effects upon throughput and delay performances of several canonical algorithms of varying the number of users, the number of subcarriers, and the statistical characteristics of incoming packets are investigated. Consequently, a subcarrier allocation algorithm with low computational complexity and satisfactory performance in almost all cases of interest is developed. The significance of channel v.s. queue state information with respect to various statistical properties of packet arrival processes is explored through extensive simulations. The results carry implications for the amount of channel estimation and feedback necessary. Finally, a new experimental method is proposed and applied for obtaining the stability regions of the algorithms in consideration.
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具有时变信道和数据包到达的OFDMA子载波分配
研究了一种基于正交频分的多用户发射机子载波动态分配算法。研究了不同用户数量、子载波数量和入包统计特征对几种典型算法吞吐量和延迟性能的影响。在此基础上,提出了一种计算复杂度低、在几乎所有情况下都能满足性能要求的子载波分配算法。通过广泛的模拟,探讨了通道与队列状态信息在数据包到达过程的各种统计特性方面的重要性。结果对必要的信道估计和反馈量有影响。最后,提出了一种新的实验方法,并应用于得到所考虑算法的稳定区域。
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Frequency Domain receivers for IEEE 802.15.4a short range communication systems User fairness analysis of a game theory based power allocation scheme in OFDMA relay systems Key re-establishment protocols in hierarchical wireless sensor networks Threshold list subset detector for turbo MIMO systems Performance evaluation of non-ideal RF transmitter in LTE/LTE-Advanced systems
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