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Design and performance of Huffman sequences in medical ultrasound coded excitation

机译:霍夫曼序列在医学超声编码激发中的设计和性能

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This paper deals with coded-excitation techniques for ultrasound medical echography. Specifically, linear Huffman coding is proposed as an alternative approach to other widely established techniques, such as complementary Golay coding and linear frequency modulation. The code design is guided by an optimization procedure that boosts the signal-to-noise ratio gain (GSNR) and, interestingly, also makes the code robust in pulsed-Doppler applications. The paper capitalizes on a thorough analytical model that can be used to design any linear coded-excitation system. This model highlights that the performance in frequency-dependent attenuating media mostly depends on the pulse-shaping waveform when the codes are characterized by almost ideal (i.e., Kronecker delta) autocorrelation. In this framework, different pulse shapers and different code lengths are considered to identify coded signals that optimize the contrast resolution at the output of the receiver pulse compression. Computer simulations confirm that the proposed Huffman codes are particularly effective, and that there are scenarios in which they may be preferable to the other established approaches, both in attenuating and non-attenuating media. Specifically, for a single scatterer at 150 mm in a 0.7-dB/(MHz·cm) attenuating medium, the proposed Huffman design achieves a main-to-side lobe ratio (MSR) equal to 65 dB, whereas tapered linear frequency modulation and classical complementary Golay codes achieve 35 and 45 dB, respectively.
机译:本文涉及超声医学超声检查中的编码激励技术。具体而言,提出了线性霍夫曼编码作为其他广泛建立的技术(例如互补Golay编码和线性频率调制)的替代方法。代码设计以优化程序为指导,该程序可以提高信噪比增益(GSNR),并且有趣的是,还可以使代码在脉冲多普勒应用中更强大。本文利用了可用于设计任何线性编码激励系统的全面分析模型。该模型强调,当代码具有几乎理想的自相关(即Kronecker增量)特征时,频率相关衰减介质的性能主要取决于脉冲整形波形。在此框架中,考虑使用不同的脉冲整形器和不同的代码长度来标识优化接收器脉冲压缩输出处的对比度分辨率的编码信号。计算机仿真证实,提出的霍夫曼码特别有效,并且在某些情况下,无论是在衰减媒体还是非衰减媒体上,它们可能都比其他已建立的方法更可取。具体来说,对于在0.7 dB /(MHz·cm)衰减介质中150 mm处的单个散射体,拟议的Huffman设计实现了等于65 dB的主旁瓣比(MSR),而锥形线性频率调制和传统的互补Golay码分别达到35和45 dB。

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