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Processing algorithms for three-dimensional data compression of ultrasonic radio frequency signals

机译:超声射频信号的三维数据压缩处理算法

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摘要

Ultrasonic systems are widely used in imaging applications for non-destructive evaluation, quality assurance and medical diagnosis. These applications require large volumes of data to be processed, stored and/or transmitted in real-time. Therefore it is essential to compress the acquired ultrasonic radio frequency (RF) signal without inadvertently degrading desirable signal features. In this paper, two algorithms for ultrasonic signal compression are analysed based on: sub-band elimination using discrete wavelet transform; and decimation/interpolation using time-shift property of Fourier transform. Both algorithms offer high signal reconstruction quality with a peak signal-to-noise ratio (PSNR) between 36 to 39 dB for minimum 80% compression. The computational loads and signal reconstruction quality are examined in order to determine the best compression method in terms of the choice of DWT kernel, sub-band decomposition architecture and computational efficiency. Furthermore, for compressing a large amount of volumetric information, three-dimensional (3D) compression algorithms are designed by utilising the temporal and spatial correlation properties of the ultrasonic RF signals. The performance analysis indicates that the 3D compression algorithm presented in this paper offers an overall 3D compression ratio of 95% with a minimum PSNR of 27 dB.
机译:超声波系统广泛用于成像应用中,以进行无损评估,质量保证和医学诊断。这些应用程序需要实时处理,存储和/或传输大量数据。因此,至关重要的是压缩采集的超声射频(RF)信号而不会无意间降低所需的信号特征。本文分析了两种基于超声信号压缩的算法:基于离散小波变换的子带消除;以及使用傅立叶变换的时移特性进行抽取/插值。两种算法均提供了高信号重建质量,其峰值信噪比(PSNR)在36至39 dB之间,以实现最小80%压缩。为了选择DWT内核,子带分解架构和计算效率,确定最佳压缩方法,对计算负荷和信号重建质量进行了检查。此外,为了压缩大量的体积信息,通过利用超声RF信号的时间和空间相关特性来设计三维(3D)压缩算法。性能分析表明,本文提出的3D压缩算法可提供95%的整体3D压缩率,最小PSNR为27 dB。

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