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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A novel beamformer design method for medical ultrasound. Part II: Simulation results
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A novel beamformer design method for medical ultrasound. Part II: Simulation results

机译:一种用于医学超声的新型波束形成器设计方法。第二部分:仿真结果

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For pt.I see ibid., vol.50, no.1, p.15 (2003). In the first part of this work, we introduced the minimum sum squared error (MSSE) technique of ultrasound beamformer design. This technique enables the optimal design of apertures to achieve arbitrary system responses. In the MSSE technique, aperture weights are calculated and applied to minimize the sum squared error (SSE) between the desired and actual system responses. In this paper, we present the results of simulations performed to illustrate the implementation and validity of the MSSE technique. Continuous wave (CW) and broadband simulations are presented to demonstrate the application of the MSSE method to obtain arbitrary system responses (within fundamental physical limitations of the system). We also describe CW and broadband simulations that implement the MSSE method for improved conventional depth of field (DOF) and for improved correlation DOF in translated aperture geometries. Using the MSSE technique, we improved the conventional DOF by more than 200% in CW simulations and more than 100% in broadband simulations. The correlation DOF in translated aperture geometries was improved by more than 700% in both CW and broadband simulations.
机译:关于第一部分,见同上,第50卷,第1期,第15页(2003年)。在这项工作的第一部分中,我们介绍了超声波束形成器设计的最小和平方误差(MSSE)技术。此技术可实现孔的最佳设计,以实现任意的系统响应。在MSSE技术中,计算并应用孔径权重以使所需和实际系统响应之间的平方和误差(SSE)最小。在本文中,我们将提供进行仿真的结果,以说明MSSE技术的实施和有效性。提出了连续波(CW)和宽带仿真,以证明MSSE方法在获得任意系统响应(在系统的基本物理限制内)的应用。我们还描述了实现MSSE方法的CW和宽带仿真,以改善传统的景深(DOF)和平移孔径几何中的相关DOF。使用MSSE技术,我们在CW仿真中将常规DOF改进了200%以上,在宽带仿真中改进了100%以上。在连续波和宽带模拟中,平移孔径几何中的相关自由度都提高了700%以上。

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