Validation and robustness assessment of an automotive system

Marco Desogus, M. Reorda, L. Sterpone, V. Avantaggiati, G. Audisio, M. Sabatini
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引用次数: 5

Abstract

Due to the growing complexity of automotive systems, including various modules (e.g., microcontrollers, DSPs, memories and IP cores), validation and debug have become increasingly complex, with consequent impact on time-to-market and quality. In this paper we propose a novel flow for hardware and software validation and debug through the use of an FPGA-based emulation platform, which provides a valuable support for these important phases of the development flow. The same emulation platform is also able to support faults injection in the device under validation. Fault injection is intended not only to provide an evaluation of the system fault tolerance, but also to support the debug of the embedded fault tolerance mechanisms. Experimental results on a real industrial case study allow to evaluate the effectiveness and costs of the proposed solution.
汽车系统的验证与鲁棒性评估
由于汽车系统日益复杂,包括各种模块(如微控制器、dsp、存储器和IP核),验证和调试也变得越来越复杂,从而对上市时间和质量产生影响。在本文中,我们通过使用基于fpga的仿真平台提出了一种新的硬件和软件验证和调试流程,为开发流程的这些重要阶段提供了有价值的支持。该仿真平台还支持在验证设备中进行故障注入。故障注入不仅可以提供系统容错的评估,还可以支持对嵌入式容错机制的调试。实际工业案例研究的实验结果允许评估所提出的解决方案的有效性和成本。
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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