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On the coexistence of 802.11 and 802.15.4 networks with delay constraints

机译:具有延迟约束的802.11和802.15.4网络的共存

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Coexisting 802.11 and 802.15.4 single-cell wireless networks are experiencing significant performance degradation due to the aggressive nature of 802.11 (when compared to 802.15.4) and to their different traffic characteristics [1]. Providing tight delay guarantees to certain 802.15.4 applications (e.g., health monitoring with unsaturated, periodic traffic) is becoming increasingly infeasible, in the presence of coexisting WiFi with bursty and bandwidth-hungry traffic. Optimizing the performance of these coexisting networks (e.g., WiFi throughput maximization, while satisfying 802.15.4 deadlines) has been a challenging task, primarily due to the lack of: i) analytical models that take into consideration realistic network traffic conditions; and ii) accurate simulators for coexistence. In this paper, we address the aforementioned research challenges by modeling the transmission buffers of wireless devices as M/G/1 queues, and employ queuing theory and Markov Chain models to derive, for the first time, closed form solutions for throughput and delay in 802.11/802.15.4 coexisting networks. Using our proposed models, this paper presents a novel approach for joint MAC protocol tuning, that maximizes 802.11 throughput while satisfying delay constraints of 802.15.4. We validate our proposed solutions and models through new 802.11/802.15.4 coexistence capabilities in the ns-3 simulator (important for the research community).
机译:由于802.11的攻击性(与802.15.4相比)和它们的不同流量特性,共存的802.11和802.15.4单小区无线网络正在经历明显的性能下降。在存在突发流量和带宽需求流量的WiFi共存的情况下,为某些802.15.4应用提供严格的延迟保证(例如,使用不饱和的定期流量进行健康监控)变得越来越不可行。优化这些共存网络的性能(例如,在满足802.15.4期限的情况下实现WiFi吞吐量最大化)一直是一项艰巨的任务,这主要是由于缺乏:i)考虑实际网络流量条件的分析模型; ii)精确的共存模拟器。在本文中,我们通过将无线设备的传输缓冲区建模为M / G / 1队列来解决上述研究挑战,并采用排队论和Markov Chain模型首次推导了吞吐量和延迟的封闭式解决方案。 802.11 / 802.15.4共存网络。使用我们提出的模型,本文提出了一种用于联合MAC协议调整的新颖方法,该方法可以在满足802.15.4延迟约束的同时最大化802.11吞吐量。我们通过ns-3仿真器中的新802.11 / 802.15.4共存功能验证了我们提出的解决方案和模型(对于研究社区而言很重要)。

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