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发表于 2009-9-17 17:38:19
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这是美国斯坦福大学去年冬季 Perceptual Audio Coding 项目的一小段文档,里面简单介绍了标准WAV文件的结构组成和分析方法。
http://ccrma.stanford.edu/courses/422/projects/WaveFormat/
既然2个WAV文件开头不一样,楼主可以以它为参照,完整比较一下2个文件的差异。
如果分析结果是两个文件内容一致,那请看下面内容:
Perceptual Audio Coding 项目去年是由 Marina Bosi 教授带领的。引用该教授的课程 handbook 内容如下:
[quote]
The need for significant reduction in data rate for wide-band digital audio signal transmission and storage has led to the development of psychoacoustics-based data compression techniques. In this approach, the limitations of human hearing are exploited to remove inaudible components of audio signals. The degree of bit rate reduction achievable without sacrificing perceived quality using these methods greatly exceeds that possible using lossless techniques alone. Perceptual audio coders are currently used in many applications including Digital Radio and Television, Digital Sound on Film, Multimedia/Internet Audio, and Electronic Music Distribution (EMD).
In this course, the basic principles of perceptual audio coding will be reviewed. State-of-the-art audio coding schemes, e.g. AC-3; MPEG Layers I, II, and III (MP3); MPEG AAC; MPEG-4, will be presented. In-class demonstrations will allow students to hear the quality of state-of-the-art implementations at varying data rates and they will be required to program their own simple perceptual audio coder during the course.
课程推荐读物 M. Bosi and R. Goldberg, "Introduction to Digital Audio Coding and Standards", Klewer Academic Publishers 2003.
由此可见,Marina Bosi 教授肯定了人耳有听力上限,并且有实验环境验证这一切,算是能够给出权威答复的人选。
楼主这么执着这一问题,可以联系一下这位教授。以美国斯坦福大学的资源,验证这两个WAV文件是否有音质差异是不在话下的。
[/quote]
M. Bosi and R. Goldberg, "Introduction to Digital Audio Coding and Standards", Klewer Academic Publishers 2003.
该书第一章第一节就说 PCM 编码是最简单的编码。
我查阅了我这里所有的大学图书馆,但都没有这本书可以借。据斯坦福大学说,该书只有斯坦福大学的书店有售。
我没有主动联系斯坦福,主要是怕丢中国人的脸。
我认为大家现在争论的这个WAV问题,在学术上是早有定论的。只是大家都没有接触到这方面的资料。
之前也早有网友指出这其实是认识论的问题。争论下去势必讨论方法论。
我不是扫大家的兴,这个问题在这里是讨论不出结果的。 |
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