A Diversity-Based Approach for Communication Integrity in Critical Embedded Systems

Amira Zammali, A. D. Bonneval, Y. Crouzet
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引用次数: 2

Abstract

We present, in this paper, a fault-tolerant approach to cope with accidental communication data corruption in critical embedded systems. One of the classical integrity approaches is the redundancy-based approach that consists particularly in replicating the message and sending all copies via the same communication channel consecutively or sending them via replicated communication channels. Yet, such approach is vulnerable to some cases of Common-Mode Failure. So, we propose to diversify the copies to be sent via two independent proposals: i) diversifying either the error detection function (which generate the check bits) or ii) the data payload. This paper focus on the first proposal by presenting experiments and results to validate its effectiveness. Besides, it describes basic theoretical concepts of the second proposal. Our case study is the Flight Control System (FCS). Yet, our approach could be deployed in other systems for which we describe the key properties.
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关键嵌入式系统中基于多样性的通信完整性方法
在本文中,我们提出了一种容错方法来处理关键嵌入式系统中的意外通信数据损坏。经典的完整性方法之一是基于冗余的方法,它主要包括复制消息并通过相同的通信通道连续发送所有副本,或者通过复制的通信通道发送它们。然而,这种方法容易受到某些共模故障的影响。因此,我们建议通过两个独立的建议来分散要发送的副本:i)分散错误检测功能(生成校验位)或ii)分散数据负载。本文重点介绍了第一种方案,并通过实验和结果验证了其有效性。并介绍了第二种方案的基本理论概念。我们的案例研究是飞行控制系统(FCS)。然而,我们的方法可以部署在我们描述关键属性的其他系统中。
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