可重构高性能架构:它们为安全关键型应用做好了多少准备?

D. Sabena, L. Sterpone, Mario Schölzel, T. Koal, H. Vierhaus, S. Wong, R. Glein, F. Rittner, C. Stender, Mario Porrmann, J. Hagemeyer
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引用次数: 15

摘要

可重构架构越来越多地应用于大量嵌入式应用程序中,主要是因为它们能够提供高性能和高灵活性,并且可以根据它们所处理的特定任务进行调整。可重构系统目前用于多个应用领域,也适用于安全关键环境中使用的系统。该领域的实际发展趋势集中在利用可重构特性来提高系统的容错能力和自测试自修复能力。当前最先进的可重构系统以超长指令字(VLIW)处理器和基于部分可重构sram的fpga的可重构系统为代表。在本文中,我们对这两种类型的可重构系统进行了概述和准确分析。本文的内容侧重于分析设计阶段应用的自适应缓解和冗余方法的设计特征、故障安全和可重构特征。实验结果报告了清晰的测试数据状态和容错鲁棒性,并进行了详细的评论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reconfigurable high performance architectures: How much are they ready for safety-critical applications?
Reconfigurable architectures are increasingly employed in a large range of embedded applications, mainly due to their ability to provide high performance and high flexibility, combined with the possibility to be tuned according to the specific task they address. Reconfigurable systems are today used in several application areas, and are also suitable for systems employed in safety-critical environments. The actual development trend in this area is focused on the usage of the reconfigurable features to improve the fault tolerance and the self-test and the self-repair capabilities of the considered systems. The state-of-the-art of the reconfigurable systems is today represented by Very Long Instruction Word (VLIW) processors and reconfigurable systems based on partially reconfigurable SRAM-based FPGAs. In this paper, we present an overview and accurate analysis of these two type of reconfigurable systems. The content of the paper is focused on analyzing design features, fail-safe and reconfigurable features oriented to self-adaptive mitigation and redundancy approaches applied during the design phase. Experimental results reporting a clear status of the test data and fault tolerance robustness are detailed and commented.
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