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An Energy Efficient Cross-layer Design by Using the Contention Window Optimization Scheme for Ad-hoc Wireless Networks Operating in Error-prone Channel Conditions

机译:通过使用争用窗口优化方案进行禁用频道条件的争用窗口优化方案,通过争用窗口优化方案

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A novel dynamic contention window control scheme is presented in this paper to improve the performance and energy efficiency of IEEE 802.11-based CSMA/CA DCF wireless networks operating in ad-hoc mode. The number of competing nodes in physical carrier sense systems is one of the major impact on DCF performance and on the energy consumed. A new approach in presented in this paper is using a cross layer framework to alleviating the problem in both MAC and PHY layers, which attempts to improve the performance and energy efficiency by controlling the contention window size in the MAC layer according to the number of competing nodes, and the length of the MPDU (MAC Protocol Data Unit) payload according to the physical channel condition in the PHY layer.
机译:本文提出了一种新颖的动态争用窗口控制方案,提高了在AD-hoc模式下操作的基于IEEE 802.11的CSMA / CA DCF无线网络的性能和能效。物理载波侦听系统中的竞争节点的数量是对DCF性能和消耗能量的主要影响之一。本文呈现的新方法是使用横梁框架来缓解MAC和PHY层中的问题,这试图根据竞争数量通过控制MAC层中的争用窗口大小来提高性能和能量效率节点,以及MPDU(MAC协议数据单元)有效载荷的长度根据PHY层中的物理信道条件。

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