安全关键汽车应用中的容错:作为限制因素的协议成本

S. Poledna
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引用次数: 16

摘要

目前,汽车电子产品的高可用性和安全性要求几乎完全由特定应用的工程解决方案来解决,而不是通过系统的方法。目前,由于成本的原因,系统的方法被排除在外。这样做的原因是系统的容错方法需要:组件的复制;以及复制组件之间的通信,以在不确定性的情况下实现协议。通过多路总线连接不同的控制单元,可以获得越来越多的复制组件,但研究表明,传感器输入的一致性成本将成为系统容错方法的限制因素。为此,提出了一种新的协议算法,该算法综合考虑了协议和传感器输入的问题。该算法利用了对复制传感器输入最大偏差的先验知识。该算法的最优性体现在协议的最小比特数方面。该算法允许在汽车应用中更广泛地应用系统容错。这项工作的结果将用于安全关键汽车应用的原型实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault tolerance in safety critical automotive applications: cost of agreement as a limiting factor
The high availability and safety requirements for automotive electronics are currently almost exclusively addressed by application specific engineering solutions to fault tolerance rather than by systematic approaches. Currently, systematic approaches are ruled out because of cost. The reason for this is that a systematic approach to fault tolerance requires: replication of components; and communication between replicated components to achieve agreement despite nondeterminism. While replicated components become more and more available with the connection of different control units by means of a multiplex bus, it is shown that the cost of agreement on sensor inputs will become the limiting factor for systematic approaches to fault tolerance. For that reason a new agreement algorithm is introduced which considers the problem of agreement and sensor inputs in an integrated fashion. This algorithm takes advantage of the a priori knowledge on the maximum deviation of replicated sensor inputs. Optimality of this algorithm is shown with respect to the minimum number of bits for agreement. This algorithm allows broader application of systematic fault tolerance to automotive applications. The result of this work will be used for a prototype implementation of a safety critical automotive application.<>
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