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A Novel Synchronization Scheme Based on a Dynamic Superframe for an Industrial Internet of Things in Underground Mining

机译:一种基于地下挖掘工业互联网动态超帧的新型同步方案

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摘要

The Industrial Internet of Things (IIoT) has a wide range of applications, such as intelligent manufacturing, production process optimization, production equipment monitoring, etc. Due to the complex circumstance in underground mining, the performance of WSNs faces enormous challenges, such as data transmission delay, packet loss rate, and so on. The MAC (Media Access Control) protocol based on TDMA (Time Division Multiple Access) is an effective solution, but it needs to ensure the clock synchronization between the transmission nodes. As the key technology of IIoT, synchronization needs to consider the factors of tunnel structure, energy consumption, etc. Traditional synchronization methods, such as TPSN (Timing-sync Protocol for Sensor Networks), RBS (Reference Broadcast Synchronization), mainly focus on improving synchronization accuracy, ignoring the impact of the actual environment, cannot be directly applied to the IIoT in underground mining. In underground mining, there are two kinds of nodes: base-station node and sensor node, which have different topologies, so they constitute a hybrid topology. In this paper, according to hybrid topology of unground mining, a clock synchronization scheme based on a dynamic superframe is designed. In this scheme, the base-station and sensor have different synchronization methods, improving the TPSN and RBS algorithm, respectively, and adjusts the period of the superframe dynamically by estimating the clock offset. The synchronization scheme presented in this paper can reduce the network communication overhead and energy consumption, ensuring the synchronization accuracy. Based on theCC2530 (Asystem-on-chip solution for IEEE 802.15.4, Zigbee and RF4CE applications), the experiments are compared and analyzed, including synchronization accuracy, energy consumption, and robustness tests. Experimental results show that the synchronization accuracy of the proposed method is at least 11% higher than that of the existing methods, and the energy consumption can be reduced by approximately 13%. At the same time, the proposed method has better robustness.
机译:物联网的产业网络(IIoT)具有广泛的应用,如智能制造,生产工艺优化,生产设备监控等由于地下开采的复杂情况下,无线传感器网络的性能面临着巨大的挑战,如数据传输延迟,丢包率,等等。基于TDMA(时分多址)的MAC(媒体访问控制)协议是一种有效的解决方案,但它需要保证传输节点之间的时钟同步。作为IIoT的关键技术,同步需求考虑隧道结构,能量消耗等传统同步方法,如TPSN(用于传感器网络定时同步协议),RBS(参考广播同步),主要着眼于提高的因素同步精度,忽略了实际环境的影响,不能直接适用于地下开采的IIoT。在地下采矿中,有两个不同的节点:基站节点和传感器节点,其具有不同的拓扑结构,因此它们构成了一个混合拓扑。在本文中,根据未研磨挖掘的混合拓扑,基于动态超帧中的时钟同步方案被设计。在该方案中,基站和传感器具有不同的同步方法,从而提高TPSN和RBS算法,分别和动态通过估计时钟偏移调节超帧的时段。在本文提出的同步方案可以减少网络的通信开销和能量消耗,保证了同步精度。基于theCC2530(Asystem片上的解决方案为IEEE 802.15.4,Zigbee和RF4CE应用),实验进行了比较和分析,包括同步精度,能量消耗,和鲁棒性的测试。实验结果表明,所提出的方法的同步精度比现有方法高至少11%,并且可以通过大约13%来降低能量消耗。同时,该方法具有更好的鲁棒性。

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