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Ultrasonic weighted imaging of synthetic aperture focusing technique based on the correlation of signals

机译:基于信号相关性的合成孔径聚焦技术超声波加权成像

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A weighted imaging method of an ultrasonic synthetic aperture focusing technique based on the correlation of signals is presented. The correlation between the ultrasonic echo signals within synthetic aperture range is analyzed, and the distribution of the correlativity coefficient is confirmed to parabolic equation in the region of defect echo waves. The signal amplitude correlativity coefficient is defined to describe the probability of a pixel as a non-noisy pixel. Both the two kinds of correlativity coefficient are used as the weight coefficients of weighted imaging methods. As to effective signals and noise signals, the distribution for correlativity coefficient of echo signals implies the identification of the signals and noises, and amplitude correlativity coefficient implies two different processing methods while dealing with them. Theoretical and experimental results show that weighted imaging method can improve the SNR and the lateral resolution of ultrasonic synthetic aperture imaging.
机译:提出了一种基于信号相关性的超声型孔径聚焦技术的加权成像方法。分析了合成孔径范围内的超声波回波信号之间的相关性,并且在缺陷回波波区域中确认了相关系数的分布到抛物线方程。信号幅度相关系数被定义为描述像素作为非噪声像素的概率。两种相关系数均用作加权成像方法的重量系数。关于有效信号和噪声信号,回波信号的相关系数的分布意味着信号和噪声的识别,并且幅度相关系数在处理它们的同时意味着两种不同的处理方法。理论和实验结果表明,加权成像方法可以改善超声合成孔径成像的SNR和横向分辨率。

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