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Cross-layer adaptive multipath routing for multimedia Wireless Sensor Networks under duty cycle mode

机译:在占空比模式下多媒体无线传感器网络的跨层自适应多路径路由

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Multimedia transport over Wireless Sensor Networks (WSN) has been a challenging task due to the limited available resources of such networks. The capability of Multipath routing to balance and distribute the load of a given flow on different disjoint non correlated paths is a viable solution to ensure the required high throughput. Moreover, operating the WSN under a duty-cycle mode reinforces the challenge as nodes become subject to frequent alternation between the active and inactive states in the quest to prolong the network life and minimize the energy consumption. In this context, we propose a cross-layer multi-path routing approach taking into account diverse contextual information in order to establish non-correlated and node-disjoint paths able to concurrently transport multimedia content from sources to the sink. The approach relies on a tight cooperation between the routing and MAC layers in order to appropriately adjust and regulate the wake-up scheduling of involved nodes in the forwarding phase. It incorporates a continuous observation of local contextual data to improve the routing process. Independently of the initial duty-cycle scheduling, the conducted mathematical analysis proves that our adjustment rules provide a maximal overlapping interval between the activity periods of the involved nodes. We compare our approach against the single path option and FMRP, a multipath routing protocol designed for always-on WSNs using non-correlated paths. Simulation results showed significant improvements in terms of latency and throughput. The proposed approach attains 27% energy conservation, and it enhances the delay and goodput by 50% over the single path option and up to 90% over the FMRP.
机译:由于此类网络的可用资源有限,无线传感器网络(WSN)通过无线传感器网络(WSN)是一个具有挑战性的任务。多径路由要平衡和分配给定流量的负载的能力是一种可行的解决方案,以确保所需的高吞吐量。此外,随着节点在寻求延长网络寿命并最大限度地减少能量消耗的情况下,在占空比模式下,在占空比模式下,在占空比模式下,将WSN加强了挑战。在这种情况下,我们提出了一种跨层多路径路由方法,考虑了不同的上下文信息,以便建立能够将能够从源传输到宿源的多媒体内容的非相关和节点不相交的路径。该方法依赖于路由和MAC层之间的紧密合作,以便适当地调整和调节转发阶段中所涉及的节点的唤醒调度。它包含了对本地上下文数据的连续观察,以改善路由过程。独立于初始占空比调度,所进行的数学分析证明我们的调整规则在所涉及节点的活动期间提供最大重叠间隔。我们将我们的方法与单路径选项和FMRP进行比较,是使用非相关路径始终开启WSN的多路径路由协议。仿真结果表明延迟和吞吐量的显着改进。该拟议的方法得到了27%的节能,它通过单路径选项提高了50%的延迟和矿量,并且在FMRP上高达90%。

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