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Unequal-Error-Protection Error Correction Codes for the Embedded Memories in Digital Signal Processors

机译:数字信号处理器中嵌入式存储器的不均等错误保护纠错码

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In many digital signal processing applications, some parts of a word stored in the embedded static random access memories (SRAMs) are more important than other parts of the word. Due to the differences in importance, memory failures that occur in more important bit locations generally give rise to relatively larger system performance degradation than those in less important locations. This brief presents a low-complexity unequal-error-protection error correcting code (UEEP-ECC) approach for the embedded memories in digital signal processor. In the proposed UEEP-ECC, repetition code is combined with the Bose-Chaudhuri-Hocquenghem code to selectively provide stronger error correction capabilities on more important data portions without a large hardware overhead. An efficient UEEP-ECC generation algorithm that can find the UEEP-ECC code with a minimum power of memory core and ECC logics is also presented. The experimental results show that the UEEP-ECC scheme achieves considerable power savings and data quality improvements in both of the H.264 and fast Fourier transform applications.
机译:在许多数字信号处理应用中,存储在嵌入式静态随机存取存储器(SRAM)中的单词的某些部分比单词的其他部分更重要。由于重要性上的差异,与不太重要的位置相比,发生在较重要的位位置的内存故障通常会导致相对较大的系统性能下降。本简介为数字信号处理器中的嵌入式存储器提出了一种低复杂度的不等错误保护纠错码(UEEP-ECC)方法。在提出的UEEP-ECC中,重复码与Bose-Chaudhuri-Hocquenghem码结合使用,可以在不占用大量硬件开销的情况下,对更重要的数据部分选择性地提供更强的纠错能力。还提出了一种高效的UEEP-ECC生成算法,该算法可以以最小的存储核心和ECC逻辑功率找到UEEP-ECC代码。实验结果表明,UEEP-ECC方案在H.264和快速傅里叶变换应用中均实现了可观的功耗节省和数据质量改进。

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