首页> 外文会议>IEEE International Symposium on Circuits and Systems >HIGH-ACCURACY AND LOW-COMPLEXITY FIXED-POINT INVERSE DISCRETE COSINE TRANSFORM BASED ON AAN'S FAST ALGORITHM
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HIGH-ACCURACY AND LOW-COMPLEXITY FIXED-POINT INVERSE DISCRETE COSINE TRANSFORM BASED ON AAN'S FAST ALGORITHM

机译:基于AAN快速算法的高精度和低复杂性定点逆离散余弦变换

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In this paper, a high accuracy and low-complexity fixed-point inverse discrete cosine transform (IDCT) based on AAN's fast algorithm is proposed for the approximation of the real IDCT. The proposed transform can be implemented with 16-bit multiplication and 24-bit addition operations. A common factor extraction algorithm is used to obtain a new set of real factors of IDCT whose integer approximations can be implemented with few arithmetic operations. A two-stage scale approach is proposed for constraining the dynamic range to a narrow range in scale part. The experimental results show that the proposed transform has significantly higher accuracy than the thresholds of IEEE1180-1190. The results of the proposed IDCT implemented into the decoder of MPEG-2 also show that the fixed-point IDCT achieves higher performance.
机译:本文提出了一种基于AAN快速算法的高精度和低复杂性定点逆离散余弦变换(IDCT),用于近似真实IDCT。可以使用16位乘法和24位添加操作来实现所提出的变换。使用常见的因子提取算法用于获得IDCT的新的实际因素集,其整数近似可以用几个算术运算实现。建议将动态范围限制在比例部分中的窄范围内的两阶段规模的方法。实验结果表明,该转化的准确性明显高于IEEE1180-1190的阈值。所提出的IDCT的结果实现到MPEG-2的解码器中也表明定点IDCT实现了更高的性能。

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