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Multi-hop clock synchronization based on robust reference node selection for ship ad-hoc network

机译:基于稳健参考节点选择的船舶自组网多跳时钟同步

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Ship ad-hoc network (SANET) extends the coverage of the maritime communication among ships with the reduced cost. To fulfill the growing demands of real-time services, the SANET requires an efficient clock time synchronization algorithm which has not been carefully investigated under the ad-hoc maritime environment. This is mainly because the conventional algorithms only suggest to decrease the beacon collision probability that diminishes the clock drift among the units. However, the SANET is a very large-scale network in terms of geographic scope, e.g., with 100 km coverage. The key factor to affect the synchronization performance is the signal propagation delay, which has not being carefully considered in the existing algorithms. Therefore, it requires a robust multi-hop synchronization algorithm to support the communication among hundreds of the ships under the maritime environment. The proposed algorithm has to face and overcome several challenges, i.e., physical clock, e.g., coordinated universal time (UTC)/ global positioning system (GPS) unavailable due to the atrocious weather, network link stability, and large propagation delay in the SANET. In this paper, we propose a logical clock synchronization algorithm with multi-hop function for the SANET, namely multi-hop clock synchronization for SANET (MCSS). It works in an ad-hoc manner in case of no UTC/GPS being available, and the multi-hop function makes sure the link stability of the network. For the proposed MCSS, the synchronization time reference nodes (STRNs) are efficiently selected by considering the propagation delay, and the beacon collision can be decreased by the combination of adaptive timing synchronization procedure (ATSP) with the proposed STRN selection procedure. Based on the simulation results, we finalize the multi-hop frame structure of the SANET by considering the clock synchronization, where the physical layer parameters are contrived to meet the requirements of target applications.
机译:船舶自组织网络(SANET)以降低的成本扩展了船舶之间的海上通信范围。为了满足不断增长的实时服务需求,SANET需要一种有效的时钟时间同步算法,而在特殊海事环境下尚未对此进行仔细研究。这主要是因为常规算法仅建议降低信标冲突概率,从而减少单元之间的时钟漂移。但是,就地理范围而言,SANET是一个非常大规模的网络,例如,覆盖100公里。影响同步性能的关键因素是信号传播延迟,现有算法中并未对此进行仔细考虑。因此,它需要鲁棒的多跳同步算法来支持海上环境下数百艘船之间的通信。所提出的算法必须面对并克服几个挑战,即物理时钟,例如由于恶劣的天气,网络链路稳定性和SANET中的大传播延迟而无法使用的协调世界时(UTC)/全球定位系统(GPS)。在本文中,我们为SANET提出了一种具有多跳功能的逻辑时钟同步算法,即SANET的多跳时钟同步(MCSS)。在没有UTC / GPS的情况下,它以临时方式工作,并且多跳功能可确保网络的链路稳定性。对于所提出的MCSS,通过考虑传播延迟来有效地选择同步时间参考节点(STRN),并且可以通过将自适应定时同步过程(ATSP)与所提出的STRN选择过程相结合来减少信标冲突。基于仿真结果,我们通过考虑时钟同步来最终确定SANET的多跳帧结构,在其中构造物理层参数以满足目标应用程序的需求。

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