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首页> 外文期刊>Electronics Letters >Recursive architecture using pipeline stall for low complexity MPEG-4 ALS encoder
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Recursive architecture using pipeline stall for low complexity MPEG-4 ALS encoder

机译:使用流水线停滞的递归架构,用于低复杂度MPEG-4 ALS编码器

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摘要

An MPEG-4 audio lossless coding (ALS) encoder consists of a shortterm predictor, a joint coder, a long-term predictor, and an entropy coder for audio signal compression. Especially, the short-term predictor is the highest complexity in MPEG-4 ALS encoder implementation because linear prediction coefficients (LPCs) for the short-term predictor are obtained from the Levinson-Durbin recursion algorithm that uses correlations of the input signals. LPCs are used for the finite impulse response (FIR) filter of the short-term predictor and its maximum coefficient order is up to 1023. Proposed is an area-efficient short-term predictor through the recursive architecture using pipeline stall and the modified radix-2 FIR algorithm is proposed. The proposed shot-term predictor has a reduction of complexity by about 95% compared to the radix-2 1024 tap FIR filter.
机译:MPEG-4音频无损编码(ALS)编码器由短期预测器,联合编码器,长期预测器和用于音频信号压缩的熵编码器组成。特别是,短期预测器是MPEG-4 ALS编码器实现中最高的复杂度,因为用于短期预测器的线性预测系数(LPC)是从使用输入信号相关性的Levinson-Durbin递归算法获得的。 LPC用于短期预测变量的有限冲激响应(FIR)滤波器,其最大系数阶数高达1023。提出了一种通过使用流水线停滞和改进基数的递归体系结构的面积有效的短期预测变量。提出了2种FIR算法。与基数为2的1024次抽头FIR滤波器相比,提出的拍摄期预测器的复杂度降低了约95%。

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