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Mode switch — Adaptive use of delay-sensitive or energy-aware communication in IEEE 802.15.4-based networks

机译:模式切换—在基于IEEE 802.15.4的网络中自适应使用对延迟敏感或能量敏感的通信

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We propose “mode switch”, an adaptive load-sensitive solution that supports both an energy-efficient operation mode for transmitting normal sensor data and an QoS-aware low-latency mode for high priority emergency messages. Typically, sensor networks are considered to operate efficiently w.r.t. energy consumption. A good example is the IEEE 802.15.4 protocol, which has mainly been designed for this purpose. The standard IEEE 802.15.4 beacon-enabled cluster-tree topology supports energy-efficient operation for low-rate data transmissions. However, in the case of detected alarms, high-priority emergency messages need to be transmitted with low-latency and guaranteed delivery. In this case, the cluster-tree topology appears to be inefficient and cannot provide the needed support. In this paper, we show how energy-efficiency and delay-sensitivity can be combined by developing an adaptive solution that completely switches between the fundamentally different operation modes beacon-enabled cluster-tree mode and non-beacon-enabled mesh mode. The key challenge is to provide a fast mode switch that also keeps track of necessary topology information. We present a protocol for this mode switch and demonstrate, based on extensive simulations, that the performance demands can be fulfilled with only reasonable overhead even for mid-size networks. Our simulation results clearly indicate that the system achieves the objected QoS and energy-efficiency with “mode switch” in real-time.
机译:我们提出了“模式切换”,这是一种自适应负载敏感的解决方案,既支持用于传输常规传感器数据的节能操作模式,也针对高优先级紧急消息支持QoS感知的低延迟模式。通常,传感器网络被认为可以有效地工作。能源消耗。一个很好的例子是IEEE 802.15.4协议,它主要是为此目的而设计的。支持IEEE 802.15.4信标的标准群集树拓扑支持低速率数据传输的节能操作。但是,在检测到警报的情况下,高优先级的紧急消息需要以低延迟和有保证的传递的方式发送。在这种情况下,群集树拓扑似乎效率低下,无法提供所需的支持。在本文中,我们展示了如何通过开发一种自适应解决方案来组合能量效率和延迟灵敏度,该解决方案可以在根本不同的操作模式(支持信标的集群树模式和不支持信标的网格模式)之间完全切换。关键的挑战是提供一个快速模式切换器,该切换器还要跟踪必要的拓扑信息。我们提出了用于此模式切换的协议,并基于大量的仿真证明,即使对于中型网络,也可以通过合理的开销来满足性能要求。我们的仿真结果清楚地表明,该系统通过“模式切换”实时实现了目标QoS和能效。

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