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Proactive Channel Adjustment to Improve Polar Code Capability for Flash Storage Devices

机译:主动通道调整,以提高闪存存储设备的极性代码能力

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With the low encoding/decoding complexity and the high error correction capability, polar code with the support of list-decoding and cyclic redundancy check can outperform LDPC code in the area of data communication. Thus, it also draws a lot of attentions on how to adopt and enable polar codes in storage applications. However, the code construction and encoding length limitation issues obstruct the adoption of polar codes in flash storage devices. To enable polar codes in flash storage devices, we propose a proactive channel adjustment design to extend the effective time of a code construction to improve the error correction capability of polar codes. This design pro-actively tunes the quality of the critical flash cells to maintain the correctness of the code construction and relax the constraint of the encoding length limitation, so that polar codes can be enabled in flash storage devices. A series of experiments demonstrates that the proposed design can effectively improve the error correction capability of polar codes in flash storage devices.
机译:通过低编码/解码复杂性和高纠错功能,极码代码具有列表解码和循环冗余校验的支持和循环冗余校验可以优于数据通信区域中的LDPC码。因此,它还涉及如何在存储应用中采用和启用极性代码的大量关注。然而,代码构造和编码长度限制问题妨碍了在闪存存储设备中采用极性代码。为了在闪存存储设备中启用极性代码,我们提出了一个主动通道调整设计,以扩展代码结构的有效时间,以提高极性代码的纠错能力。该设计主动调整关键闪存单元的质量,以保持代码构造的正确性,并放宽编码长度限制的约束,从而可以在闪存存储设备中启用极性代码。一系列实验表明,所提出的设计可以有效地提高闪存存储设备中极码的误差校正能力。

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