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A Novel Method for Soft Error Mitigation in FPGA Using Modified Matrix Code

机译:一种采用改进矩阵码的FPGA软错误缓解新方法

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Field programmable gate arrays (FPGAs) are readily affected by transient faults in the presence of radiation and other environmental hazards compared to application specific integrated circuits. Hence, error mitigation and recovery techniques are necessary to protect the FPGA hardware from soft errors arising from transient faults. In this letter, modified matrix code (MMC) is used for multibit error correction in FPGA-based systems, and dynamic partial reconfiguration is considered to reduce the reconfiguration time. We propose a first of its kind methodology for novel transient fault correction using MMC for FPGAs. To validate the design, the proposed method has been tested on a Kintex FPGA and its performance has been estimated in terms of hardware complexity, power consumption, overhead, and error correction efficiency.
机译:与专用集成电路相比,在存在辐射和其他环境危害的情况下,现场可编程门阵列(FPGA)容易受到瞬态故障的影响。因此,必须采用错误缓解和恢复技术来保护FPGA硬件免受瞬态故障引起的软错误的影响。在这封信中,修改后的矩阵码(MMC)用于基于FPGA的系统中的多位纠错,并且考虑了动态部分重新配置以减少重新配置时间。我们为FPGA使用MMC提出了一种新颖的瞬态故障校正方法。为了验证设计,该建议的方法已经在Kintex FPGA上进行了测试,并在硬件复杂性,功耗,开销和纠错效率方面评估了其性能。

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