基于异构流量源的802.11 wlan服务时间估计

Rodolfo Oliveira, Luís Bernardo, Paulo Pinto, I. Koutsopoulos
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引用次数: 1

摘要

本文提出了一种估计IEEE 802.11分布式协调函数(DCF)服务时间的简单方法。这是传输给定帧所需的总时间,定义为从节点开始传输到传输任务有效完成的时刻的持续时间。我们的动机是IEEE 802.11 DCF不提供有时间限制的传输。因此,估计服务时间是很重要的,因为在大多数情况下,两个节点之间存在物理连接,但由于从节点获得响应的等待时间很长,上层会错误地解释它。在这种情况下,上层协议可以利用服务时间的估计来解决IEEE 802.11带来的一些问题,如超时导致路由失败,甚至TCP连接失败。由于CSMA/CA采用随机接入机制,IEEE 802.11中每次(重)传输前的拥塞时间增加了服务时间估计的难度。我们的方法只需要每个节点上可用的本地信息,并考虑一个现实的场景,其中流量源可能具有不同的数据生成速率(异构流量)。介绍了应用方法,并给出了仿真结果来评估其准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On service time estimation in 802.11 WLANs with heterogeneous traffic sources
This work presents a simple method to estimate IEEE 802.11 distributed coordination function (DCF) service time. This is the total amount of time needed to transmit a given frame, which is defined as the duration from the instant a node starts the transmission, until the instant when the transmission task effectively finishes. We are motivated by the fact that IEEE 802.11 DCF does not provide time-bounded transmissions. Thus, it is important to have an estimate of the service time because most of the times a physical connection between two nodes exists, but it is misinterpreted by the upper layers due to the long waiting time to obtain a response from a node. In this case, the estimate of the service time can be used by the upper layer protocols to solve some problems caused by IEEE 802.11, such as routing failures due to timeouts or even TCP connection failures. The congestion time in IEEE 802.11 before each (re)transmission, which is due to the random access mechanism employed in the CSMA/CA, makes it more difficult for service time to be estimated. Our approach needs only local information available at each node and considers a realistic scenario where the traffic sources may have different data generation rates (heterogeneous traffic). The applied methodology is described and we present simulation results to assess its accuracy.
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