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Enhancing the Selection of Backoff Interval Using Fuzzy Logic over Wireless Ad Hoc Networks

机译:在无线临时网络上使用模糊逻辑增强反馈间隔的选择

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IEEE 802.11 is the de facto standard for medium access over wireless ad hoc network. The collision avoidance mechanism (i.e., random binary exponential backoff—BEB) of IEEE 802.11 DCF (distributed coordination function) is inefficient and unfair especially under heavy load. In the literature, many algorithms have been proposed to tune the contention window (CW) size. However, these algorithms make every node select its backoff interval between [0, CW] in a random and uniform manner. This randomness is incorporated to avoid collisions among the nodes. But this random backoff interval can change the optimal order and frequency of channel access among competing nodes which results in unfairness and increased delay. In this paper, we propose an algorithm that schedules the medium access in a fair and effective manner. This algorithm enhances IEEE 802.11 DCF with additional level of contention resolution that prioritizes the contending nodes according to its queue length and waiting time. Each node computes its unique backoff interval using fuzzy logic based on the input parameters collected from contending nodes through overhearing. We evaluate our algorithm against IEEE 802.11, GDCF (gentle distributed coordination function) protocols using ns-2.35 simulator and show that our algorithm achieves good performance.
机译:IEEE 802.11是无线临时网络中媒体访问的事实标准。 IEEE 802.11 DCF(分布式协调函数)的碰撞避免机制(即随机二进制指数退避BEB)效率低,尤其是在重载下。在文献中,已经提出了许多算法来调整争用窗口(CW)大小。然而,这些算法使每个节点以随机且均匀的方式在[0,CW]之间选择其退避间隔。该随机性被纳入以避免节点之间的碰撞。但是,这种随机退避间隔可以改变竞争节点之间的信道访问的最佳顺序和频率,从而导致不公平和增加的延迟。在本文中,我们提出了一种以公平有效的方式调度媒体访问的算法。该算法增强了IEEE 802.11 DCF,其具有附加级别的争用分辨率,该分辨率优先考虑竞争节点的队列长度和等待时间。每个节点使用基于从竞争节点收集的输入参数通过曝光来计算其唯一的退避间隔。我们使用NS-2.35 Simulator评估我们对IEEE 802.11,GDCF(温和分布式协调功能)协议的算法,并显示我们的算法实现了良好的性能。

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