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A Oneself Adjusts Backoff Mechanism for Channel Access in IEEE 802.11 DCF WLAN

机译:自行调整IEEE 802.11 DCF WLAN中的信道访问退避机制

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In recent years, Wireless Local Area Networks (WLANs) are becoming more and more popular. The IEEE 802.11 protocol is one of the most widely deployed wireless access technologies. In order to minimize the collision probability due to multiple simultaneous transmissions, all stations compete for the wireless channel with a contention resolution method, namely the Binary Exponential Back off (BEB). In the BEB scheme, the contention window (CW) is doubled every time a station experiences transmission collision and decreases to its minimum value after a successful transmission. However, the performance degradation will be resulted from the aggressive reduction in the CW size. Accordingly, Exponential Increase Exponential Decrease (EIED) is proposed to suggest a slower reduction in a back off period after a successful transmission. Actually, the variation of CW causes unsteady system performance. In this paper, we proposed an Oneself Adjusts Back off (OAB) mechanism to improve system performance over contention-based Distributed Coordination Function (DCF) WLANs. In the OAB, the variation of CW state will be kept based on the number of the consecutive collision or successful transmission. The numerical results show that the OAB mechanism provides a better system throughput and collision rate than the related back off schemes.
机译:近年来,无线局域网(WLAN)越来越流行。 IEEE 802.11协议是部署最广泛的无线访问技术之一。为了最小化由于多次同时传输而引起的冲突概率,所有站点都使用竞争解决方法(即二进制指数退避(BEB))争夺无线信道。在BEB方案中,每当站点遇到传输冲突时,竞争窗口(CW)就会加倍,并在成功传输后降低到其最小值。但是,性能的下降将归因于CW尺寸的大幅减小。因此,提出了指数增加指数减小(EIED),以建议在成功传输之后,退避周期的减小较慢。实际上,CW的变化会导致系统性能不稳定。在本文中,我们提出了一种自行调整退避(OAB)机制,以提高基于竞争的分布式协调功能(DCF)WLAN的系统性能。在OAB中,将基于连续冲突或成功传输的次数来保持CW状态的变化。数值结果表明,与相关的退避方案相比,OAB机制提供了更好的系统吞吐量和冲突率。

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