Fault-tolerant clock synchronization for embedded distributed multi-cluster systems

M. Paulitsch, W. Steiner
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引用次数: 8

Abstract

When time-triggered (TT) systems are to be deployed for large embedded real-time (RT) control systems in cars and airplanes, one way to overcome bandwidth limitations and achieve complexity reduction is the organization in clusters of strongly interacting computing nodes with well-defined interfaces. In this case, clock synchronization of different cluster times supports meaningful exchange of time-related data between clusters and allows coordinated control. This paper addresses fault-tolerant clock synchronization of clusters for TT systems that are already internally synchronized. By addressing systematic and stochastic errors of cluster times differently, the influence of systematic errors is eliminated and the quality of synchronization only depends on stochastic errors. Since systematic errors of cluster times are at least an order of magnitude larger than stochastic errors for typical RT embedded control systems, the presented algorithm achieves a significant improvement to known synchronization algorithms. An implementation of the proposed clock synchronization algorithm on top of the Time-Triggered Architecture and experiments show that synchronization is achieved with accuracy values of less than one microsecond.
嵌入式分布式多集群系统的容错时钟同步
当时间触发(TT)系统被部署到汽车和飞机上的大型嵌入式实时(RT)控制系统中时,克服带宽限制并实现复杂性降低的一种方法是在具有良好定义接口的强交互计算节点集群中组织。在这种情况下,不同集群时间的时钟同步支持集群之间有意义的时间相关数据交换,并允许协调控制。本文讨论了TT系统内部已经同步的集群的容错时钟同步。通过对集群时间的系统误差和随机误差进行不同的处理,消除了系统误差的影响,使同步质量只依赖于随机误差。由于典型RT嵌入式控制系统的集群时间的系统误差至少比随机误差大一个数量级,因此本文算法对已知的同步算法有了显著的改进。基于时间触发架构的时钟同步算法的实现和实验表明,同步精度值小于1微秒。
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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