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An Error-Detection and Self-Repairing Method for Dynamically and Partially Reconfigurable Systems

机译:动态和部分可重构系统的错误检测和自修复方法

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Reconfigurable systems are gaining an increasing interest in the domain of safety-critical applications, for example in the space and avionic domains. In fact, the capability of reconfiguring the system during run-time execution and the high computational power of modern Field Programmable Gate Arrays (FPGAs) make these devices suitable for intensive data processing tasks. Moreover, such systems must also guarantee the abilities of self-awareness, self-diagnosis and self-repair in order to cope with errors due to the harsh conditions typically existing in some environments. In this paper we propose a self-repairing method for partially and dynamically reconfigurable systems applied at a fine-grain granularity level. Our method is able to detect correct and recover errors using the run-time capabilities offered by modern SRAM-based FPGAs. Fault injection campaigns have been executed on a dynamically reconfigurable system embedding a number of benchmark circuits. Experimental results demonstrate that our method achieves full detection of single and multiple errors, while significantly improving the system availability with respect to traditional error detection and correction methods.
机译:可重配置系统在安全关键型应用领域(例如在空间和航空电子领域)越来越受到关注。实际上,在运行时执行期间重新配置系统的能力以及现代现场可编程门阵列(FPGA)的强大计算能力使这些设备适合于密集数据处理任务。此外,这样的系统还必须保证自我意识,自我诊断和自我修复的能力,以应对由于某些环境中通常存在的恶劣条件而导致的错误。在本文中,我们为以细粒度级别应用的部分和动态可重配置系统提出了一种自修复方法。我们的方法能够使用现代基于SRAM的FPGA提供的运行时功能来检测正确并恢复错误。故障注入活动已在嵌入了许多基准电路的动态可重新配置系统上执行。实验结果表明,与传统的错误检测和纠正方法相比,我们的方法可以完全检测单个和多个错误,同时显着提高了系统可用性。

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