DiSync: Accurate distributed clock synchronization in mobile ad-hoc networks from noisy difference measurements

Chenda Liao, P. Barooah
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引用次数: 9

Abstract

To perform clock synchronization in mobile ad-hoc networks, nodes need to estimate current time of a global clock based on the readings of their local clocks along with time-stamped messages from their neighbors. We formulate the problem as nodes simultaneously estimating skews and offsets of their own clocks with respect to a global clock from noisy difference measurements of logarithm of skews and that of offsets. These measurements can be obtained by exchanging time stamped messages. A leader-following consensus-based algorithm is proposed to estimate these parameters in a distributed manner. Ideas from stochastic approximation are used to ensure mean square convergence of estimation error under certain conditions. A sequence of scheduled update times is used to meet the requirement of specific decreasing time-varying gains that need to be synchronized across nodes with unsynchronized clocks. Simulations indicate that high accuracy of global time estimation can be maintained for long time duration with the proposed algorithm. Performance of the proposed algorithm is compared through simulations with the virtual clock synchronization algorithm ATS [1]. It is seen that the proposed algorithm is more robust than ATS to measurement noise resulting from random delays in message exchange.
DiSync:移动ad-hoc网络中从噪声差分测量中精确的分布式时钟同步
为了在移动ad-hoc网络中执行时钟同步,节点需要根据本地时钟的读数以及来自邻居的带有时间戳的消息来估计全局时钟的当前时间。我们将问题表述为节点同时估计其自身时钟的偏度和偏移量,相对于一个全局时钟,从偏度和偏移量的对数的噪声差分测量。这些度量可以通过交换带有时间戳的消息来获得。提出了一种基于领导者跟随共识的分布式参数估计算法。利用随机逼近的思想,保证了在一定条件下估计误差的均方收敛性。预定的更新时间序列用于满足特定时变增益递减的要求,这些增益需要在具有非同步时钟的节点之间同步。仿真结果表明,该算法能在较长时间内保持较高的全局时间估计精度。通过仿真比较了该算法与虚拟时钟同步算法ATS[1]的性能。结果表明,该算法对消息交换中随机延迟引起的噪声测量具有较强的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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