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Miscorrection Mitigation for Generalized Integrated Interleaved BCH Codes

机译:广义综合交错BCH代码的错误矫正缓解

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The generalized integrated interleaved (GII) codes nest BCH sub-codewords to form codewords of more powerful BCH codes. They can achieve hyper-throughput decoding with excellent error-correcting performance and are among the most suitable codes for next-generation memories. However, the new storage class memories require high code rate and short codeword length. In this case, the sub-codewords have small correction capability. The miscorrections of the sub-codewords lead to much more severe degradation on the GII error-correcting performance compared to the miscorrections of classic BCH codes. This letter investigates the miscorrections in GII decoding. Three low-complexity methods are developed to identify and mitigate the miscorrections by utilizing the nested syndromes, adding one single parity to each sub-codeword, and keeping track of the error locator polynomial degree. Besides, formulas for estimating the miscorrection rates are given. Using the proposed mitigation methods, the actual GII decoding performance becomes very close to that of the case without any miscorrections.
机译:广义集成交错(GII)代码嵌套BCH子码字,以形成更强大的BCH代码的码字。它们可以实现具有出色的纠错性能的超吞吐量解码,并且是下一代存储器的最合适的代码之一。但是,新的存储类存储器需要高码率和短码字长度。在这种情况下,子码字具有小的校正能力。与经典BCH代码的错误矫正相比,子码字的错误统格导致GII纠错性能更严重降解。这封信调查了GII解码中的错误矫揉液。开发了三种低复杂性方法来通过利用嵌套的综合体来识别和减轻错误矫正,并将单个奇偶校验添加到每个子码字,并跟踪错误定位器多项式程度。此外,给出了估计错误矫正率的公式。使用所提出的缓解方法,实际的GII解码性能变得非常接近没有任何错误矫正的情况。

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