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Design of a novel synthesis filter for real-time MPEG-2 audio decoder implementation on a DSP chip

机译:用于DSP芯片上实时MPEG-2音频解码器实现的新型合成滤波器的设计

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This paper describes the design of a novel synthesis filter for real-time implementation of MPEG-2 audio decoder on a single, programmable DSP chip. In the first phase of our design we propose a fast subband synthesis filter bank employing a decomposed IDCT block with reduced multiplication stages, shared by both MPEG-1 and MPEG-2 decoders. In the second phase of the design, a parameter analyzer block is adopted to take advantage of the multichannel computing structure in MPEG-2 thereby further reducing the number of MAC operations. In the final phase, we propose a low-cost decoder employing unorthodox methods of boosting performance by gracefully degrading quality of service. The overall runtime of the decoder has been reduced by 60% when compared to the modified ISO decoder employing a synthesis filter bank with fast IDCT block. Real-time performance validation have been made by re-tuning time-critical code sections for both native VLIW and DSP architectures. The final implementation successfully passes all ISO/IEC MPEG-2 audio compliance tests and achieves near-transparent audio decoding and signal reconstruction on the fly.
机译:本文介绍了一种新型合成滤波器的设计,该滤波器可在单个可编程DSP芯片上实时实现MPEG-2音频解码器。在我们设计的第一阶段,我们提出了一个快速子带合成滤波器组,该滤波器组采用了经过分解的IDCT块,具有减少的乘法级,由MPEG-1和MPEG-2解码器共享。在设计的第二阶段,采用参数分析器模块来利用MPEG-2中的多通道计算结构,从而进一步减少MAC操作的数量。在最后阶段,我们提出了一种低成本解码器,该解码器采用了通过适度降低服务质量来提高性能的非传统方法。与采用带有快速IDCT块的合成滤波器组的改良ISO解码器相比,解码器的总体运行时间减少了60%。通过针对本机VLIW和DSP架构重新调整对时间要求严格的代码段,可以进行实时性能验证。最终的实现成功通过了所有ISO / IEC MPEG-2音频一致性测试,并实现了近乎透明的音频解码和动态信号重建。

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