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FT-LFSR: A Fault Tolerant Architecture for Linear Feedback Shift Registers

机译:FT-LFSR:用于线性反馈移位寄存器的容错架构

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Linear Feedback Shift Registers (LFSR) are extensively used in variety of applications such as Built-In-Self-Test circuits or Pseudo Random Number Generators. Hence, fault tolerant design of LFSR is essential for the applications with high reliability demands. Traditional fault tolerant LFSRs include large number of Single-Point-of-Failures (SPoFs) in which any fault results in the whole system failure. In this paper, a new fault tolerant architecture for LFSR (named as FT-LFSR) is proposed in which the number of SPoFs are significantly reduced compared to the previous ones. To this end, a modified version of Triple Modular Redundancy (TMR) empowered with some extra controlling units for identifying the operational module is used. In addition, a novel metric called Reliability-Area-Factor (RAF) is introduced to evaluate the efficacy of the redundancy-based fault tolerant techniques (such as FT-LFSR) in terms of number of SPoFs and the area overhead. Experimental results show that, the FT-LFSR is resilient to all single transient and permanent faults except in its limited SPoFs and many patterns of multiple faults.
机译:线性反馈移位寄存器(LFSR)广泛用于各种应用,例如自检电路或伪随机数发生器。因此,LFSR的容错设计对于具有高可靠性需求的应用是必不可少的。传统的容错LFSR包括大量单点故障(SPOFS),其中任何故障都会导致整个系统故障。在本文中,提出了一种用于LFSR的新的容错架构(命名为FT-LFSR),其中与前一个人相比,SPOF的数量显着降低。为此,使用用于识别用于识别操作模块的一些额外控制单元的三重模块化冗余(TMR)的修改版本。此外,引入了一种名为可靠性区域因子(RAF)的新型度量,以评估冗余的容错技术(例如FT-LFSR)的功效在SPOFS和区域开销的数量方面。实验结果表明,除了其有限的SPOFS和许多故障模式之外,FT-LFSR对所有单一瞬态和永久性故障都是弹性的。

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