CSMA over time-varying channels: optimality, uniqueness and limited backoff rate

Seyoung Yun, Jinwoo Shin, Yung Yi
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引用次数: 21

Abstract

Recent studies on MAC scheduling have shown that carrier sense multiple access (CSMA) algorithms can be throughput optimal for arbitrary wireless network topology. However, these results are highly sensitive to the underlying assumption on `static' or `fixed' system conditions. For example, if channel conditions are time-varying, it is unclear how each node can adjust its CSMA parameters, so-called backoff and channel holding times, using its local channel information for the desired high performance. In this paper, we study `channel-aware' CSMA (A-CSMA) algorithms in time-varying channels, where they adjust their parameters as some function of the current channel capacity. First, we show that the achievable rate region of A-CSMA equals to the maximum rate region if and only if the function is exponential. Furthermore, given an exponential function in A-CSMA, we design updating rules for their parameters, which achieve throughput optimality for an arbitrary wireless network topology. They are the first CSMA algorithms in the literature which are proved to be throughput optimal under time-varying channels. Moreover, we also consider the case when back-off rates of A-CSMA are highly restricted compared to the speed of channel variations, and characterize the throughput performance of A-CSMA in terms of the underlying wireless network topology. Our results not only guide a high-performance design on MAC scheduling under highly time-varying scenarios, but also provide new insights on the performance of CSMA algorithms in relation to their backoff rates and underlying network topologies.
时变信道上的CSMA:最优性、唯一性和有限的退步率
近年来对MAC调度的研究表明,对于任意无线网络拓扑结构,载波感知多址(CSMA)算法都是吞吐量最优的。然而,这些结果对“静态”或“固定”系统条件的基本假设高度敏感。例如,如果信道条件是时变的,则不清楚每个节点如何使用其本地信道信息来调整其CSMA参数,即所谓的回退和信道保持时间,以获得所需的高性能。在本文中,我们研究了时变信道中的“信道感知”CSMA (A-CSMA)算法,它们根据当前信道容量的某些函数来调整参数。首先,我们证明了当且仅当函数是指数函数时,A-CSMA的可实现速率区域等于最大速率区域。此外,给定A-CSMA中的指数函数,我们设计了其参数的更新规则,以实现任意无线网络拓扑的吞吐量最优性。它们是文献中第一个在时变信道下被证明是吞吐量最优的CSMA算法。此外,我们还考虑了与信道变化速度相比,A-CSMA的后退率受到高度限制的情况,并从底层无线网络拓扑的角度描述了A-CSMA的吞吐量性能。我们的研究结果不仅指导了高度时变场景下MAC调度的高性能设计,而且还为CSMA算法的性能与其后退率和底层网络拓扑结构的关系提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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