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A constraint scheme for correcting massive asymmetric magnitude-1 errors in multi-level NVMs

机译:用于在多级NVMS中校正大规模非对称幅度1误差的约束方案

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We present a constraint-coding scheme to correct large numbers of asymmetric magnitude-1 errors in multi-level non-volatile memories. The scheme is shown to deliver better correction capability compared to known alternatives, while admitting low-complexity of decoding. Our results include an algebraic formulation of the constraint, necessary and sufficient conditions for correctability, a maximum-likelihood decoder running in complexity linear in the alphabet size, and lower bounds on the probability to correct t errors. Besides the superior rate-correction tradeoff, another advantage of this scheme over standard error-correcting codes is the flexibility to vary the code parameters without significant modifications.
机译:我们介绍了一个约束编码方案,以在多级非易失性存储器中校正大量不对称幅度-1误差。与已知替代方案相比,该方案显示为提供更好的校正能力,同时承认解码的低复杂性。我们的结果包括对校正性的约束,必要和充分条件的代数配方,最大似然解码器在字母大小的复杂性线性上运行,概率下限为校正T错误。除了卓越的速率校正权衡外,该方案通过标准纠错码的另一个优点是改变代码参数而无需显着修改的灵活性。

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