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A Traffic Differentiation Add-On to the IEEE 802.15.4 Protocol: Implementation and Experimental Validation over a Real-Time Operating system

机译:IEEE 802.15.4协议的流量区分附件:实时操作系统上的实现和实验验证

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The IEEE 802.15.4 is the most widespread used protocol for Wireless Sensor Networks (WSNs) and it is being used as a baseline for several higher layer protocols such as ZigBee, 6LoWPAN or Wireless HART. Its MAC (Medium Access Control) supports both contention-free (CFP, based on the reservation of guaranteed time-slots GTS) and contention based (CAP, ruled by CSMA/CA) access, when operating in beacon-enabled mode. Thus, it enables the differentiation between real-time and best-effort traffic. However, some WSN applications and higher layer protocols may strongly benefit from the possibility of supporting more traffic classes. this happens, for instance, for dense WSNs used in time-sensitive industrial applications. In this context, we propose to differentiate traffic classes within the CAP, enabling lower transmission delays and higher success probability to time critical messages, such as for event detection, GTS reservation and network management. Building upon a previously proposed methodology (TRADIF), in this paper we outline its implementation and experimental validation over a real-time operating system. Importantly, TRADIF is fully backward compatible with the IEEE 802.15.4 standard, enabling to create different traffic classes just by tuning some MAC parameters.
机译:IEEE 802.15.4是用于无线传感器网络(WSN)的最广泛使用的协议,它已被用作ZigBee,6LoWPAN或Wireless HART等几种更高层协议的基准。当其在启用信标的模式下运行时,其MAC(中等访问控制)既支持无争用(CFP,基于保留的时隙GTS的保留)又支持基于争用(CAP,由CSMA / CA规定)的访问。因此,它可以区分实时流量和尽力而为流量。但是,某些WSN应用程序和高层协议可能会从支持更多流量类别的可能性中受益匪浅。例如,在对时间敏感的工业应用中使用密集的WSN,就会发生这种情况。在这种情况下,我们建议区分CAP中的流量类别,从而为时间紧迫的消息提供更低的传输延迟和更高的成功概率,例如用于事件检测,GTS预留和网络管理。在先前提出的方法(TRADIF)的基础上,本文概述了其在实时操作系统上的实现和实验验证。重要的是,TRADIF与IEEE 802.15.4标准完全向后兼容,仅通过调整某些MAC参数即可创建不同的流量类别。

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