Why do we need a Sparse Global Time-Base in Dependable Real-time Systems?

H. Kopetz
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引用次数: 3

Abstract

In many hi-dependability applications (such as a fly-by-wire system) triple-modular redundancy (TMR) is deployed to mask arbitrary failures of any of its constituent components. A TMR system will only work properly if the three replicated channels are synchronized, operate independently and exhibit a deterministic behavior. Determinism requires that two inputs that are presented to the three independent channel at the same instant must be ordered in the same way by all three channels, i.e., simultaneity must be resolved consistently at the system level. In order to resolve this issue of system-wide consistent temporal ordering of events, a global time base of known precision-as established by the IEEE 1588 standard-is of utmost utility. Given such a global time-base of known precision, one can establish a global sparse time model that supports the consistent ordering of events.
在可靠的实时系统中为什么需要稀疏全局时基?
在许多高可靠性应用程序(如电传控制系统)中,采用三模冗余(TMR)来掩盖其任何组成组件的任意故障。TMR系统只有在三个复制通道同步、独立操作并表现出确定性行为的情况下才能正常工作。决定论要求在同一时刻呈现给三个独立通道的两个输入必须由所有三个通道以相同的方式排序,也就是说,同时性必须在系统级别一致地解决。为了解决系统范围内事件时间顺序一致的问题,一个已知精度的全局时间基(由IEEE 1588标准建立)是最实用的。给定这样一个已知精度的全局时基,就可以建立一个支持事件一致排序的全局稀疏时间模型。
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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