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Parallel Decodable Multi-Level Unequal Burst Error Correcting Codes for Memories of Approximate Systems

机译:近似系统存储器的并行可解码多级不等速突发纠错码

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Processing at the nanometric scales presents unique challenges that may require new computational paradigms such as approximate computing. In this paper a novel approach to memory protection using an unequal protection code (UEP) is proposed; this approach is in synergy with approximate (or inexact) computing. Multi-level burst error correcting UEP codes are analyzed. These codes improve over previously presented two-level burst error correcting UEP codes, because they utilize different conditions and criteria in the code partitions and decoder construction. An analysis by which multiple partitions can be selected to reduce the expected error magnitude, is provided. The area and power consumption of the parallel decoders closely depend on the desired code function. Simulation shows that the area and power consumption of the parallel error pattern generator are proportional to the partition length; the gate depth however is not strongly related to the partition length. The results of this manuscript confirm that the proposed multi-level burst error correcting UEP codes reduce the hardware overhead with no significant degradation in storage protection as potential storage application for approximate computing systems.
机译:纳米尺度的处理提出了独特的挑战,可能需要新的计算范例,例如近似计算。在本文中,提出了一种使用不平等保护码(UEP)的新颖的内存保护方法。这种方法与近似(或不精确)计算协同工作。分析了多级突发纠错UEP码。这些代码比先前介绍的两级突发错误校正UEP代码有所改进,因为它们在代码分区和解码器构造中利用了不同的条件和准则。提供了一种分析,通过该分析可以选择多个分区以减少预期的误差幅度。并行解码器的面积和功耗密切取决于所需的代码功能。仿真表明,并行误差模式发生器的面积和功耗与分区长度成正比。然而,浇口深度与分隔壁的长度并不密切相关。该手稿的结果证实,作为近似计算系统的潜在存储应用,所提出的多级突发纠错UEP代码可减少硬件开销,并且不会显着降低存储保护。

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