一种具有大而变化的比例因子的时间尺度修正

Kevin Struwe
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引用次数: 1

摘要

当涉及到时间和音高尺度修改算法时,基于相位声码器的方法被广泛使用。然而,标准方法的一个问题是缩放范围从50%到200%。对于人工耳蜗的自适应基音变换方法,需要更大的按帧变化的刻度范围值。本文提出了一种通过调整改性和合成阶段来解决该问题的方法。该算法具有恒定的分析跳数和可变的合成跳数。有效地引入插值的中间帧来补偿丢失的信号信息。这些帧以倒数比例因子等距间隔,并具有线性插值振幅。结果表明,通过高质量地实现新方法,可以获得期望的特性。音质可以在非正式的听力测试中进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A time scale modification with large and varying scaling factors
When it comes to time- and pitch-scale modification algorithms, Phase Vocoder based approaches are widely used. However, a problem with the standard approach is the limited scaling range from 50% to 200%. For an adaptive pitch transposition method for cochlear implants, larger scaling range values that are varying on a by-frame-basis are needed. This paper shows a solution for that problem with adjusted modification and synthesis stages. The developed algorithm has a constant analysis hop size and a varying synthesis hop size. Effectively, interpolated intermediate frames are introduced to compensate for missing signal information. These frames are spaced equidistant with the reciprocal scaling factor and have linear interpolated amplitudes. As a result, the desired characteristics could be achieved by a high quality implementation of the new method. The sound quality could be evaluated at an informal listening test.
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