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A Decoder for Short BCH Codes With High Decoding Efficiency and Low Power for Emerging Memories

机译:用于新兴内存的具有高解码效率和低功耗的短BCH码解码器

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摘要

In this paper, a double-error-correcting and triple-error-detecting (DEC-TED) Bose-Chaudhuri-Hocquenghem (BCH) code decoder with high decoding efficiency and low power for error correction in emerging memories is presented. To increase the decoding efficiency, we propose an adaptive error correction technique for the DEC-TED BCH code that detects the number of errors in a codeword immediately after syndrome generation and applies a different error correction algorithm depending on the error conditions. With the adaptive error correction technique, the average decoding latency and power consumption are significantly reduced owing to the increased decoding efficiency. To further reduce the power consumption, an invalid-transition-inhibition technique is proposed to remove the invalid transitions caused by glitches of syndrome vectors in the error-finding block. Synthesis results with an industry-compatible 65-nm technology library show that the proposed decoders for the (79, 64, 6) BCH code take only 37%-48% average decoding latency and achieve more than 70% power reduction compared to the conventional fully parallel decoder under the 10(-4)-10(-2) raw bit-error rate.
机译:本文提出了一种具有高解码效率和低功耗的新兴纠错存储器的双纠错和三重错误检测(DEC-TED)的Bose-Chaudhuri-Hocquenghem(BCH)码解码器。为了提高解码效率,我们为DEC-TED BCH码提出了一种自适应纠错技术,该技术可在校验子生成后立即检测码字中的错误数量,并根据错误条件应用不同的纠错算法。利用自适应纠错技术,由于提高了解码效率,平均解码延迟和功耗大大降低了。为了进一步降低功耗,提出了一种无效过渡抑制技术,以消除由错误查找块中的校正子矢量的毛刺引起的无效过渡。具有行业兼容的65纳米技术库的综合结果表明,针对(79、64、6)BCH代码的拟议解码器与传统解码器相比,仅需37%-48%的平均解码等待时间,并能将功耗降低70%以上10(-4)-10(-2)原始误码率下的全并行解码器。

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