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MDP-Based MAC Design With Deterministic Backoffs in Virtualized 802.11 WLANs

机译:虚拟802.11 WLAN中具有确定性退避的基于MDP的MAC设计

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摘要

This paper presents medium access control (MAC) protocols for a virtualized 802.11 network aiming to improve network performance and isolation among service providers (SPs). Taking into account the statistical properties of arrival traffic, a Markov decision process (MDP) is formulated to maximize the network throughput subject to SP reservations. By introducing the policy tree of the MDP, we present an optimal access policy. Each user can track this policy tree by carrier sensing and learn its transmission opportunity. As the computational complexity of the policy tree exponentially grows with the total number of users, an efficient heuristic algorithm is proposed based on the MDP formulation, where each user is assigned a deterministic backoff value. Numerical results show that the performance of the proposed heuristic algorithm closely matches that of the optimal policy. Moreover, both optimal and heuristic algorithms significantly improve time-division multiple access (TDMA) and carrier-sense multiple access (CSMA) in terms of packet delivery ratio and isolation in unsaturated networks.
机译:本文提出了一种针对虚拟802.11网络的媒体访问控制(MAC)协议,旨在提高网络性能和服务提供商(SP)之间的隔离。考虑到到达流量的统计属性,制定了马尔可夫决策过程(MDP),以最大程度地提高SP保留下的网络吞吐量。通过介绍MDP的策略树,我们提出了一种最佳的访问策略。每个用户都可以通过载波侦听来跟踪此策略树,并了解其传输机会。随着策略树的计算复杂度随着用户总数的增加而呈指数增长,提出了一种基于MDP公式的高效启发式算法,其中为每个用户分配了确定性退避值。数值结果表明,该启发式算法的性能与最优策略的性能非常接近。此外,就不饱和网络中的数据包传输率和隔离性而言,最佳算法和启发式算法均显着改善了时分多址(TDMA)和载波侦听多址(CSMA)。

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