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Transient Analysis for Multihop Wireless Networks Under Static Routing

机译:静态路由下多跳无线网络的瞬态分析

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In this article, we investigate the transient behavior of a sequence of packets/bits traversing a multi-hop wireless network under static routing. Our work is motivated by novel applications from the domain of process automation, MachineType Communication (MTC) and cyber- physical systems, where short messages are communicated and statistical guarantees need to be provided on a per-message level. In order to optimize such a network, apart from understanding the stationary system dynamics, an understanding of the short-term dynamics (i.e. transient behavior) is also required. To this end, we derive novel Wireless Transient Bounds (WTB) for end-to-end delay and backlog in a multi-hop wireless network using stochastic network calculus approach. We start by analyzing a single end-toend path, i. e. a line topology, and then we show how the obtained results can be applied to a mesh network with static routing using a concept called 'leftover service'. WTB depends on the initial backlog at each node as well as the instantaneous channel states. We numerically compare WTB with Kernel-Based-Transient Bound ( KBTB), which can be obtained by adapting existing stationary bound, as well as simulated end-to- end delay of the investigated network. While KBTB and stationary bounds are not able to capture the short-term system dynamics well, WTB provides relatively tight upper bound and has a decay rate that closely matches the simulation. This is achieved by WTB only with a slight increase in the computational complexity, by a factor of O(T + N), where T is the duration of the arriving sequence and N is the number of hops in the network. We believe that the presented analysis and the bounds are necessary tools for future work on transient network optimization for many important emerging applications, e.g., massive MTC, critical MTC, edge computing and autonomous vehicle.
机译:在本文中,我们调查在静态路由下遍历多跳无线网络的一系列分组/比特的瞬态行为。我们的作品是由流程自动化领域,机械型通信(MTC)和网络物理系统的新应用程序,其中传达短消息并需要在每个消息级别提供统计保证。为了优化这样的网络,除了了解静止系统动态,还需要了解对短期动态(即瞬态行为)。为此,我们使用随机网络微积分方法派生用于多跳无线网络的端到端延迟和积压的新型无线瞬态界限(WTB)。我们首先分析一个端部倒数路径,i。 e。线拓扑,然后我们展示如何使用名为“剩余服务”的概念的静态路由所获得的结果应用于网状网络。 WTB取决于每个节点的初始积压以及瞬时信道状态。我们使用基于内核的瞬态绑定(KBTB)进行数字比较WTB,这可以通过调整现有的静止绑定以及调查网络的模拟端到端延迟来获得。虽然KBTB和静止界限无法捕获短期系统动态,但WTB提供相对紧的上限,并且具有与模拟密切匹配的衰减速率。这是通过WTB实现的,仅在计算复杂性的略微增加,o(t + n)的因子,其中t是到达序列的持续时间,n是网络中的跳数。我们认为,对于许多重要的新兴应用,例如,大规模的MTC,关键MTC,边缘计算和自主车辆,所提出的分析和界限是未来对瞬态网络优化工作的工具。

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