ACES: adaptive clock estimation and synchronization using Kalman filtering

Benjamin R. Hamilton, Xiaoli Ma, Qi Zhao, Jun Xu
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引用次数: 95

Abstract

Clock synchronization across a network is essential for a large number of applications ranging from wired network measurements to data fusion in sensor networks. Earlier techniques are either limited to undesirable accuracy or rely on specific hardware characteristics that may not be available for certain systems. In this work, we examine the clock synchronization problem in resource-constrained networks such as wireless sensor networks where nodes have limited energy and bandwidth, and also lack the high accuracy oscillators or programmable network interfaces some previous protocols depend on. This paper derives a general model for clock offset and skew and demonstrates its applicability. We design efficient algorithms based on this model to achieve high synchronization accuracy given limited resources. These algorithms apply the Kalman filter to track the clock offset and skew, and adaptively adjust the synchronization interval so that the desired error bounds are achieved. We demonstrate the performance advantages of our schemes through extensive simulations obeying real-world constraints.
自适应时钟估计和同步使用卡尔曼滤波
跨网络的时钟同步对于从有线网络测量到传感器网络中的数据融合的大量应用是必不可少的。早期的技术要么局限于不期望的精度,要么依赖于特定的硬件特性,这些特性可能不适用于某些系统。在这项工作中,我们研究了资源受限网络中的时钟同步问题,例如无线传感器网络,其中节点的能量和带宽有限,并且还缺乏一些以前协议所依赖的高精度振荡器或可编程网络接口。本文推导了时钟偏置和偏置的通用模型,并对其适用性进行了论证。在此基础上设计了高效的算法,在有限的资源条件下实现了较高的同步精度。这些算法采用卡尔曼滤波跟踪时钟偏移和倾斜,并自适应调整同步间隔,以达到期望的误差范围。我们通过广泛的仿真来证明我们的方案的性能优势。
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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