同步工业无线传感器网络与IEEE 802.11自组织数据传输

A. Berger, Albert Pötsch, A. Springer
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引用次数: 13

摘要

在无线传感器网络(WSNs)的工业应用中,通常需要在每个传感器节点上同步采样数据。因此,无线通信协议需要支持精确的定时同步。如果由于需要高采样率和高数据吞吐量,基于IEEE 802.15.4物理层的wsn往往不能提供足够的数据速率。基于完善的IEEE 802.11 (WLAN)标准的无线通信提供高数据吞吐量,但除非协议栈发生重大变化,否则无法实现精确的定时同步。我们提出了一种混合WSN,它使用WLAN进行高速率数据传输,并结合在Sub-GHz短距离设备上运行的专有无线通信系统进行同步。采用基于共识的同步算法,不受WSN节点数量和节点故障的影响。所提出的混合WSN采用两步同步算法,该算法易于在8位微控制器上执行,采样抖动小于50 μs。
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Synchronized industrial wireless sensor network with IEEE 802.11 ad hoc data transmission
In industrial applications of wireless sensor networks (WSNs) synchronized sampling of data on each sensor node is often required. Thus the wireless communication protocol needs to support accurate timing synchronization. If due to a high sampling rate also high data throughput is required, WSNs based on the IEEE 802.15.4 physical layer often do not provide sufficient data rate. Wireless communication based on the well established IEEE 802.11 (WLAN) standard provides high data throughput but not an accurate timing synchronization unless the protocol stack is severely changed. We propose a hybrid WSN which uses WLAN for high rate data transmission combined with a proprietary wireless communication system operating on Sub-GHz short range devices for synchronization. A consensus-based synchronization algorithm is used to be independent from the number of WSN nodes and node failure. The proposed hybrid WSN performs a two-step synchronization algorithm which can easily be executed on an 8-bit microcontroller and achieves a sampling jitter smaller than 50 μs.
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