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Airtime ping-pong effect characterization in IEEE 802.11s wireless mesh networks

机译:IEEE 802.11s无线网状网络中的通话时间乒乓效应表征

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Airtime is set as the default routing metric for the ongoing IEEE 802.11s wireless mesh networking standard. The metric is designed to minimize channel resource consumption by accounting for loss rate, bandwidth, and channel characteristics. However, the metric exhibits a noticeable ping-pong effect whose nature is still vague, and the very few references to this in the literature condemn it for being a perilous behavior. In this paper, we present a thorough study of the Airtime ping-pong effect, and highlight its correlation to the underlying rate control algorithms. Using different rate control algorithms (e.g., ARF, AARF, ONOE, AMRR and Constant rate), we establish that transmission rate adaptation is the principal cause behind the effect. We show that the effect is an inherent behavior, and that an accurate characterization of it can help improve network performance. We present a ping-pong-aware mechanism that, by detecting when a link undergoes such an effect, adapts the routing protocol for better network performance. The mechanism is O(1), decentralized, and can be easily integrated into the IEEE 802.11s routing protocol.
机译:对于正在进行的IEEE 802.11s无线网状网络标准,将“通话时间”设置为默认路由度量。该度量旨在通过考虑丢失率,带宽和信道特性来最大程度地减少信道资源消耗。但是,该度量标准表现出明显的乒乓效应,其性质仍然模糊不清,并且在文献中对此的引用很少,谴责它是一种危险的行为。在本文中,我们对通话时间乒乓效应进行了深入研究,并强调了其与基础速率控制算法的相关性。我们使用不同的速率控制算法(例如ARF,AARF,ONOE,AMRR和恒定速率),确定传输速率自适应是造成这种影响的主要原因。我们证明了这种影响是一种固有行为,并且对其进行准确的表征可以帮助改善网络性能。我们提出了一种感知乒乓的机制,该机制可以通过检测链路何时受到这种影响来适应路由协议,以获得更好的网络性能。该机制是O(1),分散式的,可以轻松集成到IEEE 802.11s路由协议中。

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