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Binary Exponential Increment Half Decrement backoff algorithm for IEEE802.11 wireless LANs

机译:IEEE802.11无线局域网的二进制指数递增半递减退避算法

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Backoff algorithm is a technique to reduce packet collisions and to improve throughput efficiency in wireless local area network (WLAN). In this research, we propose a new backoff algorithm which is named Binary Exponential Increment Half Decrement (BEIHD) backoff algorithm. Furthermore, we introduce a new discrete Markov chain model for modeling the performance analysis of wireless local area network. A new model is called the Fixed Backoff stages and Fixed Contention windows (FBFC) technique. In FBFC scheme, the accuracy of the transmission probability parameter is derived from step by step procedure using the global balance equation concept in steady state condition. The saturated throughput efficiency of all backoff algorithms is compared under the same Physical layer (PHY) parameters and Medium Access Control (MAC) scheme in IEEE802.11a/b/g standards. Our numerical results show that the throughput performance of BEIHD backoff algorithm is better than the Binary Exponential Backoff (BEB) algorithm. Moreover, the distinction of BEIHD backoff algorithm is near the realistic system, and it can be implemented without to modify hardware in physical layer.
机译:退避算法是一种减少分组冲突并提高无线局域网(WLAN)中的吞吐效率的技术。在这项研究中,我们提出了一种新的退避算法,称为二进制指数增量减半(BEIHD)退避算法。此外,我们介绍了一种新的离散马尔可夫链模型,用于对无线局域网的性能分析进行建模。一种新模型称为固定退避阶段和固定竞争窗口(FBFC)技术。在FBFC方案中,在稳态条件下使用全局平衡方程概念从逐步过程中得出传输概率参数的精度。在IEEE802.11a / b / g标准中,在相同的物理层(PHY)参数和媒体访问控制(MAC)方案下,比较了所有退避算法的饱和吞吐效率。我们的数值结果表明,BEIHD退避算法的吞吐量性能优于二进制指数退避(BEB)算法。而且,BEIHD退避算法的区别很接近实际系统,可以在不修改物理层硬件的情况下实现。

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