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相关概念视频

Calibration Curves: Linear Least Squares01:20

Calibration Curves: Linear Least Squares

1.2K
A calibration curve is a plot of the instrument's response against a series of known concentrations of a substance. This curve is used to set the instrument response levels, using the substance and its concentrations as standards. Alternatively, or additionally, an equation is fitted to the calibration curve plot and subsequently used to calculate the unknown concentrations of other samples reliably.
For data that follow a straight line, the standard method for fitting is the linear...
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Instrument Calibration01:12

Instrument Calibration

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Instrument calibration is essential for ensuring that instruments produce accurate and consistent results. It is vital in manufacturing, healthcare, testing laboratories, and scientific research. Calibration processes are specific to each instrument and help enhance data accuracy. Each instrument has a unique calibration process tailored to its design and function to improve data accuracy.
Analytical Balance Calibration
An analytical balance measures mass and requires regular calibration to...
152
Plotting and Calibrating the Root Locus01:19

Plotting and Calibrating the Root Locus

91
Root loci often diverge as system poles shift from the real axis to the complex plane. Key points in this transition are the breakaway and break-in points, indicating where the root locus leaves and reenters the real axis. The branches of the root locus form an angle of 180/n degrees with the real axis, where n is the number of branches at a breakaway or break-in point.
The maximum gain occurs at the breakaway points between open-loop poles on the real axis, while the minimum gain is...
91

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相关实验视频

Updated: Jun 5, 2025

Evaluating Targeting Accuracy in the Focal Plane for an Ultrasound-guided High-intensity Focused Ultrasound Phased-array System
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Evaluating Targeting Accuracy in the Focal Plane for an Ultrasound-guided High-intensity Focused Ultrasound Phased-array System

Published on: March 6, 2019

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使用贝叶斯优化校准多个超声波相位阵列单元的位置和方向.

Jianyu Chen1, Shun Suzuki1, Yasutoshi Makino1,2

  • 1Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Japan.

The Journal of the Acoustical Society of America
|December 9, 2024
PubMed
概括

空载超声波分相阵列 (AUPA) 现在可以更灵活地校准. 这种新方法使用图像处理和贝叶斯优化来准确定位,增强触觉反和声学悬浮应用.

科学领域:

  • 声学 声学 在声学方面
  • 机器人技术 机器人技术 机器人技术
  • 图像处理 图像处理

背景情况:

  • 空载超声波分相阵列 (AUPAs) 可实现非接触式触觉和声学悬浮.
  • 目前AUPA的校准方法是手动的,缺乏灵活性,限制了它们的应用.
  • 精确的姿势校准是至关重要的,因为小的偏差可以显著影响焦点压力.

研究的目的:

  • 开发一种灵活高效的空中超声波分相阵列 (AUPA) 校准方法.
  • 为了使AUPA单元能够准确地确定相对位置,即使在难以访问的配置中.

主要方法:

  • 利用增强现实标记器进行AUPA单位的初始姿势估计.
  • 采用热成像来绘制基于估计位置的压力分布图.
  • 应用贝叶斯优化来完善姿势参数并最大限度地减少焦点误差.

主要成果:

  • 成功演示了一种基于图像处理的AUPA校准技术.
  • 实现了相对AUPA单位位置的高效准确校准.
  • 这种方法即使在具有挑战性测量位置的AUPA单元中也有效.

结论:

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An Experimental Protocol for Assessing the Performance of New Ultrasound Probes Based on CMUT Technology in Application to Brain Imaging
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An Experimental Protocol for Assessing the Performance of New Ultrasound Probes Based on CMUT Technology in Application to Brain Imaging

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Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station
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Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station

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相关实验视频

Last Updated: Jun 5, 2025

Evaluating Targeting Accuracy in the Focal Plane for an Ultrasound-guided High-intensity Focused Ultrasound Phased-array System
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An Experimental Protocol for Assessing the Performance of New Ultrasound Probes Based on CMUT Technology in Application to Brain Imaging
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An Experimental Protocol for Assessing the Performance of New Ultrasound Probes Based on CMUT Technology in Application to Brain Imaging

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Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station
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Characterization of SiN Integrated Optical Phased Arrays on a Wafer-Scale Test Station

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  • 开发的方法比AUPA系统的手动校准提供了显著的改进.
  • 这种进步促进了AUPA单元的更复杂和更动态的配置.
  • 增强的校准准确性支持在触觉反和声学悬浮方面提高性能.