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首页> 外文期刊>ACM transactions on reconfigurable technology and systems >SATTA: A Self-Adaptive Temperature-Based TDF Awareness Methodology for Dynamically Reconfigurable FPGAs
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SATTA: A Self-Adaptive Temperature-Based TDF Awareness Methodology for Dynamically Reconfigurable FPGAs

机译:SATTA:用于动态可重新配置FPGA的基于温度的自适应TDF感知方法

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摘要

Dependability issues due to nonfunctional properties are emerging as a major cause of faults in modern digital systems. Effective countermeasures have to be developed to properly manage their critical timing effects. This article presents a methodology to avoid transition delay faults in field-programmable gate array (FPGA)-based systems, with low area overhead. The approach is able to exploit temperature information and aging characteristics to minimize the cost in terms of performances degradation and power consumption. The architecture of a hardware manager able to avoid delay faults is presented and analyzed extensively, as well as its integration in the standard implementation design flow.
机译:由于非功能性特性引起的可靠性问题正在成为现代数字系统中故障的主要原因。必须制定有效的对策以适当管理其关键的时序影响。本文提出了一种方法,可在基于现场可编程门阵列(FPGA)的系统中以较低的区域开销避免过渡延迟错误。该方法能够利用温度信息和老化特性来将性能降低和功耗方面的成本降至最低。提出并分析了能够避免延迟故障的硬件管理器体系结构,并将其集成到标准实现设计流程中。

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