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RDIS: A recursively defined invertible set scheme to tolerate multiple stuck-at faults in resistive memory

机译:RDIS:一种递归定义的可逆集方案,可容忍电阻存储器中的多个卡在故障

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With their potential for high scalability and density, resistive memories are foreseen as a promising technology that overcomes the physical limitations confronted by charge-based DRAM and flash memory. Yet, a main burden towards the successful adoption and commercialization of resistive memories is their low cell reliability caused by process variation and limited write endurance. Typically, faulty and worn-out cells are permanently stuck at either ‘0’ or ‘1’. To overcome the challenge, a robust error correction scheme that can recover from many hard faults is required. In this paper, we propose and evaluate RDIS, a novel scheme to efficiently tolerate memory stuck-at faults. RDIS allows for the correct retrieval of data by recursively determining and efficiently keeping track of the positions of the bits that are stuck at a value different from the ones that are written, and then, at read time, by inverting the values read from those positions. RDIS is characterized by a very low probability of failure that increases slowly with the relative increase in the number of faults. Moreover, RDIS tolerates many more faults than the best existing scheme-by up to 95% on average at the same overhead level.
机译:由于它们具有高可扩展性和密度的潜力,因此预见到电阻存储器作为一种承诺的技术,克服了基于电荷的DRAM和闪存面对的身体限制。然而,在成功采用和商业化的主要负担,电阻存储器是由于过程变化和有限的写入耐久性引起的低电平电池可靠性。通常,故障和磨损的细胞永久地粘在“0”或'1'处。为了克服挑战,需要从许多硬故障中恢复的强大纠错方案。在本文中,我们提出并评估了RDI,一种新颖的方案,以有效地耐受困扰陷入困境。 RDI允许通过递归地确定和有效地跟踪与从写入不同的值的比特的位置进行依次确定和有效地跟踪数据的位置来正确检索数据,然后通过反转从这些位置读取的值来读取时间来读取时间。 RDIS的特征在于,由于断层次数的相对增加而缓慢增加的故障可能性非常低。此外,RDIS在相同的开销水平上平均容忍比最佳现有方案更高的最大故障 - 高达95%。

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