文件名称:DSP_Lab_070

  • 所属分类:
  • DSP编程
  • 资源属性:
  • [Matlab] [源码]
  • 上传时间:
  • 2012-11-26
  • 文件大小:
  • 1kb
  • 下载次数:
  • 0次
  • 提 供 者:
  • msh****
  • 相关连接:
  • 下载说明:
  • 别用迅雷下载,失败请重下,重下不扣分!

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For a file(.wave)

• Find the sampling frequency and the number of bits per sample.

• Re-quantize the samples using the following methods:

o Linear Quantization

o A-Law Companding with A=87.6

o μ-Law Companding with μ=255

• Use a mid-rise quantizer with 4, 5, 6, 7, and 8 bits per sample.

• Obtain the signal-to-quantization noise ratio (SQNR) for each of the

above 15 cases.

• It is required to plot the SQNR (dB) versus the number of bits per

sample for linear quantization, A-law companding, and μ-law

companding. All 3 plots may be on the same figure, if convenient.

-For a file(.wave)

• Find the sampling frequency and the number of bits per sample.

• Re-quantize the samples using the following methods:

o Linear Quantization

o A-Law Companding with A=87.6

o μ-Law Companding with μ=255

• Use a mid-rise quantizer with 4, 5, 6, 7, and 8 bits per sample.

• Obtain the signal-to-quantization noise ratio (SQNR) for each of the

above 15 cases.

• It is required to plot the SQNR (dB) versus the number of bits per

sample for linear quantization, A-law companding, and μ-law

companding. All 3 plots may be on the same figure, if convenient.


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DSP_Lab_070.m

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