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RT-Link: A Time-Synchronized Link Protocol for Energy-Constrained Multi-hop Wireless Networks

机译:RT-Link:能量受限的多跳无线网络的时间同步链接协议

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摘要

We propose RT-Link, a time-synchronized link protocol for real-time wireless communication in industrial control, surveillance and inventory tracking. RT-Link provides predictable lifetime for battery-operated embedded nodes, bounded end-to-end delay across multiple hops, and collision-free operation. We investigate the use of hardwarebased time-synchronization for infrastructure nodes by using an AM carrier-current radio for indoors and atomic clock receivers for outdoors. Mobile nodes are synchronized via in-band software synchronization within the same framework. We identify three key observations in the design and deployment of RT-Link: (a) Hardware-based global-time synchronization is a robust and scalable option to in-band softwarebased techniques. (b) Achieving global time-synchronization is both economical and convenient for indoor and outdoor deployments. (c) RT-Link achieves a practical lifetime of over 2 years. Through analysis and simulation, we show that RTLink outperforms energy-efficient link protocols such as BMAC in terms of node lifetime and end-to-end latency. The protocol supports flexible services such as on-demand endto- end rate control and logical topology control. We implemented RT-Link on the CMU FireFly sensor platform and have integrated it within the nano-RK real-time sensor OS. A 42-node network with sub-20us synchronization accuracy has been deployed for 3 weeks in the NIOSH Mining Research Laboratory and within two 5-story campus buildings.
机译:我们提出了RT-Link,这是一种用于工业控制,监视和库存跟踪中的实时无线通信的时间同步链接协议。 RT-Link可为电池供电的嵌入式节点提供可预测的使用寿命,跨多个跃点的有限端到端延迟以及无冲突操作。我们通过针对室内使用AM载波电流无线电和针对室外使用原子钟接收器来研究基础设施节点基于硬件的时间同步的使用。移动节点通过同一框架内的带内软件同步进行同步。我们确定了RT-Link的设计和部署中的三个主要观察结果:(a)基于硬件的全局时间同步是带内基于软件的技术的可靠且可扩展的选择。 (b)对于室内和室外部署,实现全局时间同步既经济又方便。 (c)RT-Link的实际使用寿命超过2年。通过分析和仿真,我们发现RTLink在节点寿命和端到端等待时间方面均优于节能链接协议(例如BMAC)。该协议支持灵活的服务,例如按需端到端速率控制和逻辑拓扑控制。我们在CMU FireFly传感器平台上实现了RT-Link,并将其集成在nano-RK实时传感器OS中。在NIOSH采矿研究实验室和两座5层高的校园大楼内,已部署了一个具有20us同步精度的42节点网络,为期3周。

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