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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Performance analysis of Extended Non-Overlapping Binary Exponential Backoff algorithm over IEEE 802.15.4
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Performance analysis of Extended Non-Overlapping Binary Exponential Backoff algorithm over IEEE 802.15.4

机译:IEEE 802.15.4扩展的非重叠二进制指数退避算法的性能分析

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This paper evaluates the effects of the Extended Non-Overlapping Binary Exponential Backoff (ENO-BEB) algorithm over IEEE 802.15.4 by building its performance models based on a 2-dimensional Markov chain. This algorithm differs from the previously proposed Non-Overlapping Binary Exponential Backoff (NO-BEB) algorithm for IEEE 802.11, where the next backoff range is fixed as the second half of the conventional exponentially enlarged range. The ENO-BEB algorithm maps the next backoff range to the last 1/2~j-th subrange of the conventional range where j is an integer standing for the number of consecutive channel capture failures. To measure its impacts of the degree of separation between two backoff ranges at two adjacent backoff stages, we generalize the conventional IEEE 802.15.4 Markov chain model by including the behavior of the ENO-BEB algorithm. The analytical performance model predicts that the ENO-BEB technique achieves better throughput for larger j, for example, up to 113% and 21% than the conventional BEB and NO-BEB algorithm, respectively when j and the total number of nodes are 3 and 60. Simulations confirm these numerical results with a 7% difference.
机译:本文通过基于二维马尔可夫链建立性能模型,评估了基于IEEE 802.15.4的扩展非重叠二进制指数退避(ENO-BEB)算法的效果。该算法不同于先前针对IEEE 802.11提出的不重叠二进制指数退避(NO-BEB)算法,在该算法中,下一个退避范围固定为常规指数扩大范围的后半部分。 ENO-BEB算法将下一个退避范围映射到常规范围的最后一个1/2〜j个子范围,其中j是代表连续信道捕获失败次数的整数。为了测量其对两个相邻退避阶段中两个退避范围之间的分离程度的影响,我们通过包括ENO-BEB算法的行为来概括常规IEEE 802.15.4 Markov链模型。分析性能模型预测,当j和节点总数分别为3和3时,对于较大的j,ENO-BEB技术可实现更好的吞吐量,例如,分别比传统的BEB和NO-BEB算法高113%和21%。 60.模拟证实这些数值结果相差7%。

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