基于信噪比优先级的信道分配方案在平坦衰落信道上的传输容量和吞吐量

Ronghong Mo, Y. Chew
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引用次数: 3

摘要

提出了一种基于信噪比优先级的多址衰落信道自适应分配方案。该方案的性能是传统TDMA方案(信道接入等待时间短但频谱效率差)和最佳信噪比用户传输方案(带宽效率高但信道接入等待时间长)之间的折衷。研究了该方案获得的容量,并与传统速率自适应TDMA系统进行了比较。该方案的操作需要在所有N个移动设备的帧周期内进行信道估计。对于基于信噪比优先级的系统,帧周期被划分为K个时隙,并且只分配K个观察到前K个最佳信道条件的移动设备进行传输。在假设只服务尽力而为业务的情况下,研究了采用速率自适应MQAM调制技术实现的基于信噪比优先级的TDMA系统的信道容量和系统吞吐量。通过仿真研究了该系统的平均信道间访问时间。
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Capacity and throughput for transmission over flat fading channels employing SNR-priority-based channel allocation scheme
An adaptive SNR-priority-based channel allocation scheme over multiple access fading channel is proposed. The performance of this scheme is a compromise between the conventional TDMA scheme which has short channel access waiting time but poor spectral efficiency, and the best SNR user transmitting scheme which has better bandwidth efficiency but longer channel access waiting time. The capacity achieved by this scheme is studied and compared with the conventional rate adaptive TDMA systems. The operation of this scheme requires channel estimation which is performed at the frame period for all N mobiles. For the SNR-priority -based system, the frame period is divided into K slots and only K mobiles that observe the first K best channel conditions are assigned to transmit. By assuming that only best-effort traffic is served, the channel capacity and the system throughput of the SNR-priority-based TDMA system achieved with rate adaptive MQAM modulation technique are studied. The average channel inter-access time for such a system is also studied through simulation.
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