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High-Density Image Storage Using Approximate Memory Cells

机译:使用近似存储单元的高密度图像存储

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摘要

This paper proposes tailoring image encoding for an approximate storage substrate. We demonstrate that indiscriminately storing encoded images in approximate memory generates unacceptable and uncontrollable quality degradation. The key finding is that errors in the encoded bit streams have non-uniform impact on the decoded image quality. We develop a methodology to determine the relative importance of encoded bits and store them in an approximate storage substrate. The storage cells are optimized to reduce error rate via biasing and are tuned to meet the desired reliability requirement via selective error correction. In a case study with the progressive transform codec (PTC), a precursor to JPEG XR, the proposed approximate image storage system exhibits a 2.7 × increase in density of pixels per silicon volume under bounded error rates, and this achievement is additive to the storage savings of PTC compression.
机译:本文提出了针对近似存储基板的裁剪图像编码。我们证明了在近似的内存中随意存储编码的图像会产生无法接受和无法控制的质量下降。关键发现是编码比特流中的错误对解码图像质量有不均匀的影响。我们开发了一种方法来确定编码位的相对重要性,并将其存储在近似的存储基板中。对存储单元进行了优化,以通过偏置降低错误率,并通过选择性纠错来调整以满足所需的可靠性要求。在以JPEG XR的前体渐进变换编解码器(PTC)进行的案例研究中,拟议的近似图像存储系统在有限的误码率下,每硅体积的像素密度增加了2.7倍,并且这一成就为存储增加了节省PTC压缩。

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