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A High Efficiency MAC Protocol for WLANs: Providing Fairness in Dense Scenarios

机译:WLAN的高效MAC协议:在密集场景中提供公平性

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Collisions are a main cause of throughput degradation in wireless local area networks. The current contention mechanism used in the IEEE 802.11 networks is called carrier sense multiple access with collision avoidance (CSMA/CA). It uses a binary exponential backoff technique to randomize each contender attempt of transmitting, effectively reducing the collision probability. Nevertheless, CSMA/CA relies on a random backoff that while effective and fully decentralized, in principle is unable to completely eliminate collisions, therefore degrading the network throughput as more contenders attempt to share the channel. To overcome these situations, carrier sense multiple access with enhanced collision avoidance (CSMA/ECA) is able to create a collision-free schedule in a fully decentralized manner using a deterministic backoff after successful transmissions. Hysteresis and fair share are two extensions of CSMA/ECA to support a large number of contenders in a collision-free schedule. CSMA/ECA offers better throughput than CSMA/CA and short-term throughput fairness. This paper describes CSMA/ECA and its extensions. In addition, it provides the first evaluation results of CSMA/ECA with non-saturated traffic, channel errors, and its performance when coexisting with CSMA/CA nodes. Furthermore, it describes the effects of imperfect clocks over CSMA/ECA and presents a mechanism to leverage the impact of channel errors and the addition/withdrawal of nodes over collision-free schedules. Finally, the experimental results on throughput and lost frames from a CSMA/ECA implementation using commercial hardware and open-source firmware are presented.
机译:冲突是无线局域网中吞吐量下降的主要原因。 IEEE 802.11网络中使用的当前争用机制称为带冲突避免的载波侦听多路访问(CSMA / CA)。它使用二进制指数补偿技术来随机化每个竞争者的传输尝试,从而有效地降低了碰撞概率。但是,CSMA / CA依靠随机退避,尽管退避有效且完全分散,但原则上不能完全消除冲突,因此随着更多竞争者尝试共享信道,网络吞吐量会下降。为了克服这些情况,具有增强的冲突避免能力的载波侦听多路访问(CSMA / ECA)能够在成功传输后使用确定性的退避权以完全分散的方式创建无冲突调度。磁滞和公平份额是CSMA / ECA的两个扩展,可在无冲突的时间表中支持大量竞争者。 CSMA / ECA提供了比CSMA / CA更好的吞吐量,并具有短期吞吐量公平性。本文介绍了CSMA / ECA及其扩展。此外,它还提供了CSMA / ECA的第一个评估结果,包括与CSMA / CA节点共存时的非饱和流量,信道错误及其性能。此外,它描述了不完美的时钟对CSMA / ECA的影响,并提出了一种机制来利用信道错误的影响以及节点在无冲突调度上的增加/减少。最后,介绍了使用商用硬件和开源固件从CSMA / ECA实现的吞吐量和丢失帧的实验结果。

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