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An Accurate Clock Synchronization Method among Moving Objects Based on Maximum Likelihood Estimation

机译:基于最大似然估计的移动物体中精确的时钟同步方法

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We consider a problem of accurate clock synchronization among multiple moving objects in a three-dimensional (3D) region. To estimate clock offset between two objects, One Way Ranging and Two Way Ranging methods have been commonly applied, but in this paper, we first reveal that they do not perform accurately at all when they are in motion. Next, to solve the problem, we propose a clock offset estimation method among two objects, where each object broadcasts not only its own clock information but also its own location information. The proposed clock offset estimation method is based on Maximum Likelihood (ML) estimation taking into consideration that the measured distance between them is not Gaussian- but 3D-Rician-distributed. Then, we propose a clock synchronization method among multiple objects using the ML-based clock offset estimation results, which is Based on a consensus algorithm. In computer simulation, we show that the proposed clock synchronization method is effective, achieving the clock synchronization accuracy of less than ten nanoseconds among ten moving objects, accuracy of which is required for future wireless communication tools among moving cellular base stations.
机译:我们考虑三维(3D)区域中多个移动物体之间准确时钟同步的问题。为了估计两个物体之间的时钟偏移,一种方式测距和两种方式的测距方法已经普遍应用,但在本文中,我们首先揭示它们在运动时不会准确地执行。接下来,为了解决问题,我们提出了两个对象中的时钟偏移估计方法,其中每个对象不仅广播其自己的时钟信息,还广播其自己的位置信息。所提出的时钟偏移估计方法基于考虑到它们之间的测量距离而不是高斯 - 但是3D-Rician分布的最大似然(ML)估计。然后,我们使用基于ML的时钟偏移估计结果提出多个对象之间的时钟同步方法,其基于共识算法。在计算机仿真中,我们表明所提出的时钟同步方法是有效的,在十个移动物体中实现少于十个纳秒的时钟同步精度,其准确性在移动蜂窝基站之间的未来无线通信工具所需的精度。

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