首页> 外文期刊>Ultrasonic Imaging: An International Journal >Ultrasonic error compensation method to correct instrumental and systematic errors in volumetric flow measurements: a theoretical study.
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Ultrasonic error compensation method to correct instrumental and systematic errors in volumetric flow measurements: a theoretical study.

机译:超声波误差补偿方法,用于校正体积流量测量中的仪器和系统误差:一项理论研究。

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摘要

A computational model has been developed to observe the effects of several instrumental parameters and systematic error sources on ultrasonic volumetric flow measurements in vessels using an error compensation method proposed previously by the authors. The effects of two essential instrumental parameters, the gate length and pulse duration, on two intermediate flow results and an optimal correction factor as a function of the beam width-to-vessel diameter ratio (BWR) have been studied under steady flow conditions. The corrected flow results under typical combinations of those parameters show that by proper selection of a correction factor, the proposed method can compensate for those systematic errors. If the estimated BWR is within +/- 0.1 of the actual BWR value, the systematic error can be limited to within 6.5%. The study also shows that the compensation method can effectively reduce the errors caused by other systematic error sources such as the system sensitivity and high-pass filter function, as well as misalignment of the ultrasound beam from the center of the vessel.
机译:已经开发出一种计算模型,以使用作者先前提出的误差补偿方法来观察几种仪器参数和系统误差源对容器中超声体积流量测量的影响。在稳态流动条件下,研究了两个基本的仪器参数,即闸门长度和脉冲持续时间,对两个中间流动结果的影响以及作为束宽与容器直径之比(BWR)的函数的最佳校正因子。在这些参数的典型组合下的校正流量结果表明,通过适当选择校正因子,所提出的方法可以补偿那些系统误差。如果估计的BWR在实际BWR值的+/- 0.1以内,则系统误差可以限制在6.5%以内。研究还表明,该补偿方法可以有效减少由其他系统误差源(例如系统灵敏度和高通滤波器功能)以及来自血管中心的超声波束未对准引起的误差。

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