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A perceptually based embedded subband speech coder

机译:基于感知的嵌入式子带语音编码器

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摘要

A new scheme for robust, high-quality, embedded speech coding based on subband decomposition and perceptually optimized bit allocation and prioritization is presented. An infinite impulse response (IIR) quadrature mirror filterbank (QMF) performs subband decomposition. A perceptual model, computed using subband spectral analysis, optimizes the coder's perceptual quality. Dynamic bit allocation and prioritization is combined with embedded quantization resulting in little performance degradation relative to a nonembedded implementation. The coder output is scalable from high quality at higher bit rates to lower quality at lower bit rates, supporting a wide range of service and resource utilization. The lower bit-rate representation is obtained simply through truncation of the higher bit-rate representation. Since source-rate adaptation is performed through truncation of the encoded stream, interaction with the coder is not required, making the embedded coder ideally suited for rate-adaptive communication systems. Performance for both speech and music was verified through subjective listening tests.
机译:提出了一种新的鲁棒,高质量,嵌入式语音编码的方案,该方案基于子带分解以及可感知的优化位分配和优先级排序。无限脉冲响应(IIR)正交镜像滤波器组(QMF)执行子带分解。使用子带频谱分析计算的感知模型可优化编码器的感知质量。动态比特分配和优先级与嵌入式量化相结合,相对于非嵌入式实现,几乎没有性能下降。编码器的输出可扩展,从高比特率的高质量到低比特率的低质量,支持广泛的服务和资源利用。较低的比特率表示仅通过截断较高的比特率表示即可获得。由于源速率适配是通过截断编码流来执行的,因此不需要与编码器进行交互,因此嵌入式编码器非常适合速率自适应通信系统。通过主观听力测试可以验证语音和音乐的性能。

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