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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Nonuniform phase distribution in ultrasound speckle analysis. II. Parametric expression and a frequency sweeping technique to measure mean scatterer spacing
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Nonuniform phase distribution in ultrasound speckle analysis. II. Parametric expression and a frequency sweeping technique to measure mean scatterer spacing

机译:超声散斑分析中的相位分​​布不均匀。二。参数表达式和扫频技术来测量平均散射体间距

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For pt.I see ibid., vol.39, no.3, p.352-9 (1992). The existence of regularly spaced scatterers in the range cell of an ultrasonic imaging system results in speckle with a nonuniform phase distribution. Characteristic phase distributions occur at those particular demodulator frequencies at which the spacing is a multiple of one-quarter wavelength. A demodulator frequency sweeping technique for scatterer spacing estimation has been developed that uses parametric expressions of the phase statistics to detect and to identify scatterers with regular spacings. Changes in these parameters separately identify the mean scatterer spacing when it is an even and an odd multiple of the quarter wavelength of the demodulator frequency. This technique has good tolerance for variations in mean scatterer spacing, and has real-time implementation capability.
机译:关于第一部分,见同上,第39卷,第3期,第352-9页(1992年)。超声成像系统的测距单元中规则分布的散射体的存在会导致斑点的相位分布不均匀。特征相位分布出现在那些特定的解调器频率处,在这些频率下,间隔是四分之一波长的倍数。已经开发了用于散射体间距估计的解调器扫频技术,该技术使用相位统计的参数表达式来检测和识别具有规则间距的散射体。当这些参数的变化是解调器频率的四分之一波长的偶数和奇数倍时,这些参数的变化分别标识平均散射体间距。该技术对平均散射体间距的变化具有良好的容忍度,并且具有实时实现能力。

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