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Exploring design diversity redundancy to improve resilience in mixed-signal systems

机译:探索设计多样性冗余以提高混合信号系统的弹性

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摘要

Redundancy is the most popular technique to add fault tolerance at system level to electronic systems. Redundancy with hardware and software diversity of digital computers is currently employed in safety critical applications, as, for example, in spacecrafts and commercial aircrafts, to increase the reliability of such systems. This work presents a study of the design diversity redundancy technique in the context of mixed-signal systems, identifying the advantages and associated costs of applying this technique to subsystems with both analog and digital parts. The discussion is based on three case studies: two data acquisition systems and a low-pass filter, all of them prototyped in mixed-signal programmable platforms. In these systems, different combinations regarding the number of modules (double or triple modular redundancy) and specific issues related to the applied diversity modes are considered. Based on the results of fault injection campaigns by hardware emulation and one neutron irradiation test, the achieved reliability level of each studied system is discussed, as well as the tradeoffs of applying design diversity redundancy to mixed-signal systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:冗余是在电子系统中增加系统级别的容错能力的最流行的技术。当前,在安全关键的应用中,例如在航天器和商用飞机中,采用了数字计算机的硬件和软件多样性的冗余,以提高这种系统的可靠性。这项工作对混合信号系统中的设计多样性冗余技术进行了研究,确定了将该技术应用于具有模拟和数字部件的子系统的优势和相关成本。讨论基于三个案例研究:两个数据采集系统和一个低通滤波器,所有这些原型都在混合信号可编程平台中进行了原型设计。在这些系统中,考虑了有关模块数量(双重或三重模块化冗余)的不同组合以及与所应用的分集模式有关的特定问题。基于硬件仿真和一个中子辐照测试的故障注入活动的结果,讨论了每个研究系统的可靠性水平,以及在混合信号系统中应用设计多样性冗余的权衡。 (C)2015 Elsevier Ltd.保留所有权利。

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