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Realization of Time Synchronization Protocol Based on Frequency Skew Bid and Dynamic Topology Using Embedded Linux System

机译:嵌入式Linux系统基于频率偏差出价和动态拓扑的时间同步协议的实现。

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The time synchronization of network will encounter a severe challenge due to the proliferation of scale in wireless sensor networks. In order to improve the precision of time synchronization in network, a time synchronization protocol based on frequency skew bid and dynamic topology (FBDT) is designed in the paper as well as realized on Embedded Linux System. To be able to effectively inhibit synchronization error accumulation in multi-hop, a clustering mechanism in network region is adopted to reduce synchronization hops. In the protocol, every node selects the parent node which has a more stable clock frequency and fewer synchronization hops to restrain accumulation of synchronization error, meanwhile, combining fast and slow synchronization strategy is utilized to meet requirement on two performance indicators of synchronization accuracy and convergence time. Availing itself of hops information to select the parent node dynamically, the protocol can fit well in the network of dynamic topology, with good resistance to destructive and scalability. A method similar with TPSN protocol is used to eliminate transmission delay during synchronization between two nodes. Testing results on embedded Linux development board indicate that the FBDT synchronization protocol can reach the precision of μs, which can satisfy the requirements for practical applications.
机译:由于无线传感器网络规模的扩大,网络的时间同步将面临严峻的挑战。为了提高网络中时间同步的精度,本文设计了一种基于频偏出价和动态拓扑(FBDT)的时间同步协议,并在嵌入式Linux系统上实现。为了能够有效抑制多跳中的同步错误积累,在网络区域采用了一种聚类机制来减少同步跳。在该协议中,每个节点选择时钟频率更稳定,同步跳数更少的父节点来抑制同步误差的累积,同时结合快慢同步策略来满足对同步精度和收敛性两个性能指标的要求。时间。该协议利用跳信息本身来动态选择父节点,因此可以很好地适应动态拓扑网络,并且具有良好的抗破坏性和可伸缩性。使用类似于TPSN协议的方法来消除两个节点之间的同步过程中的传输延迟。嵌入式Linux开发板上的测试结果表明,FBDT同步协议可以达到μs的精度,可以满足实际应用的要求。

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