无线电干涉仪阵列的亚纳秒时间同步机制

El Houssain Ait Mansour, B. Silva, S. Bosse, K. Klein
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引用次数: 3

摘要

在有线和无线网络中,时间同步是分布式系统中广泛应用的一项重要服务。这包括无线电干涉测量。然而,文献研究表明,由于不对称延迟误差、累积抖动以及计算和调整偏移量的策略,许多分布式协议无法满足sub-ns时间同步精度。提出了一种分布式网络中的全局时间同步算法。该算法允许我们在星型拓扑中计算和调整主从之间的偏移延迟,使不对称延迟最小化,精度优于10ps,实现全局时间同步。给出了该算法的原理,并对其进行了分析,证明了该算法能够实现全局时间同步。仿真结果显示了该算法的性能和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sub-nanosecond time synchronization mechanism for radio interferometer array
In both wired and wireless networks, time synchronization is an important service for a wide range of applications in distributed systems. This includes radio interferometry. However, literature researches show that many distributed protocols cannot satisfy sub-ns time synchronization accuracy due to asymmetric delay errors, accumulated jitters and because of the strategy used to compute and adjust offsets. This paper proposes a global time synchronization algorithm in distributed networks. The algorithm allows us to compute and adjust offsets delays between master and each slaves in star topology and minimize asymmetric delays with sub-ns accuracy better than 10 ps and achieved global time synchronization. The theory of the algorithm used is presented and analyzed to prove that it achieves global time synchronization. Simulation results are given to show the performance and limitations of the proposed algorithm.
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