Achievable throughput and queueing delay for imperfect cooperative retransmission MAC protocols

S. Weber, A. Petropulu
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引用次数: 1

Abstract

Cooperative retransmission (CR) for cellular uplink employs recovery epochs where colliding packets are retransmitted until all packets are recoverable by the base station. We consider a general class of queueing dynamics, appropriate for cellular uplink MAC protocols, where time slots are grouped into epochs, and each epoch results in some subset of the active nodes completing a transmission to the base station. Employing moment generating functions, we express the queue length in terms of the number of arrivals during each epoch, and from here we obtain general expressions for throughput and delay (queueing plus service). We specialize these general results for four MAC uplink protocols: i) independent queues with no collisions (providing an upper bound on performance), ii) slotted Aloha, iii) perfect cooperative retransmission (each time slot yields a new independent signal combination), and iv) imperfect cooperative retransmission (a time slot gives useful information with probability 1 - q).
不完全合作重传MAC协议的可实现吞吐量和排队延迟
蜂窝上行链路的协同重传(CR)采用恢复时间,其中重传发生碰撞的分组,直到所有分组被基站恢复。我们考虑了一类一般的队列动态,适用于蜂窝上行MAC协议,其中时隙被分组为epoch,每个epoch导致活动节点的某些子集完成向基站的传输。利用矩生成函数,我们用每个epoch的到达人数来表示队列长度,并由此得到吞吐量和延迟(排队加上服务)的一般表达式。我们将这些一般结果专门用于四种MAC上行协议:i)没有冲突的独立队列(提供性能上界),ii)槽Aloha, iii)完美合作重传(每个时隙产生一个新的独立信号组合),iv)不完美合作重传(时隙给出概率为1 - q的有用信息)。
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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