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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Traffic differentiation and dynamic duty cycle adaptation in IEEE 802.15.4 beacon enabled WSN for real-time applications
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Traffic differentiation and dynamic duty cycle adaptation in IEEE 802.15.4 beacon enabled WSN for real-time applications

机译:支持IEEE 802.15.4信标的WSN中的流量区分和动态占空比自适应,适用于实时应用

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摘要

The wireless sensor networks (WSNs) based on the IEEE 802.15.4 beacon enabled mode provide a deterministic resource allocation offered by the guaranteed time slot (GTS) mechanism which is ideal for real-time traffic applications that requires high quality of service (QoS). In the beacon enabled mode the active and optional inactive period is governed by superframe order (SO) and beacon order (BO). Adapting the duty cycle using the SO and BO is desirable to accommodate the changing context of the WSNs traffic for network optimisation. However, existing approaches assumed a fixed SO and BO and segregate the evaluation of the contention access period and the contention free period that forms the active segment. To improve the performance of the IEEE 802.15.4 protocol in respect of the trade-off between power consumption and end-to-end delay, within a required QoS, a combination of dynamic priorities for traffic differentiation and dynamic duty cycle adaptation in the GTS allocation process are introduced. This work demonstrates that the proposed solution provides significantly better performance than the standard allocation method by simultaneously satisfying QoS and service differentiation demands with considerable power savings which is essential for WSNs. The specific novel use of this solution is in an application scenario where the deployed network is situated in an assisted living environment with a rich suite of heterogeneous wireless based communications in place.
机译:基于IEEE 802.15.4信标启用模式的无线传感器网络(WSN)提供了由保证时隙(GTS)机制提供的确定性资源分配,该机制非常适合需要高服务质量(QoS)的实时流量应用。在信标启用模式下,活动和可选的非活动时间段由超帧顺序(SO)和信标顺序(BO)控制。需要使用SO和BO调整占空比,以适应WSN流量不断变化的环境,以实现网络优化。但是,现有方法假定SO和BO固定,并且将形成活动段的竞争访问周期和无竞争周期的评估分开。为了在功耗和端到端延迟之间的折衷方面提高IEEE 802.15.4协议的性能,在要求的QoS内,结合了用于流量区分的动态优先级和GTS中的动态占空比适应介绍分配过程。这项工作表明,所提出的解决方案通过同时满足QoS和服务差异化需求并同时节省大量功率(这对WSN至关重要),可提供比标准分配方法更好的性能。此解决方案的特定新颖用途是在以下应用场景中:部署的网络位于辅助生活环境中,该环境中有丰富的基于异构无线的通信套件。

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