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相关概念视频

Galvanometer01:25

Galvanometer

2.1K
Common devices, including car instrument panels, battery chargers, and inexpensive electrical instruments, measure potential difference (voltage), current, or resistance using a d'Arsonval galvanometer. This electromechanical instrument is also known as a moving coil galvanometer.
The galvanometer consists of  two concave-shaped permanent magnets, providing a uniform radial magnetic field in the annular region. In the center, a pivoted coil of fine copper wire is placed in the uniform...
2.1K
Gyroscope: Precession01:24

Gyroscope: Precession

4.0K
Precession can be demonstrated effectively through a spinning top. If a spinning top is placed on a flat surface near the surface of the Earth at a vertical angle and is not spinning, it will fall over due to the force of gravity producing a torque acting on its center of mass. However, if the top is spinning on its axis, it precesses about the vertical direction, rather than topple over due to this torque. Precessional motion is a combination of a steady circular motion of the axis and the...
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Adjusting a Traverse01:12

Adjusting a Traverse

51
In the site survey of a four-sided traverse, internal angles are essential to ensure geometric accuracy. The survey revealed that the sum of the measured internal angles was 359 degrees and 48 minutes, which is 12 minutes less than the expected 360 degrees. This discrepancy signals an error likely arising from measurement inaccuracies during the fieldwork.To rectify this error, the adjustment process involved distributing the 12-minute shortfall equally across the four internal angles. By...
51
Electronic Distance Measuring Instruments01:30

Electronic Distance Measuring Instruments

29
Electronic Distance Measuring Instruments (EDMs) are essential tools in modern surveying, offering precise distance measurements by emitting electromagnetic signals and calculating the time required for these signals to travel to a target and return. Two primary types of signals are used in EDMs — light waves and microwaves — each suited to specific environmental and distance requirements. Light-wave-based EDMs utilize either infrared or laser light, providing high accuracy over short...
29

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相关实验视频

Updated: Jun 13, 2025

Gain-compensation Methodology for a Sinusoidal Scan of a Galvanometer Mirror in Proportional-Integral-Differential Control Using Pre-emphasis Techniques
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Gain-compensation Methodology for a Sinusoidal Scan of a Galvanometer Mirror in Proportional-Integral-Differential Control Using Pre-emphasis Techniques

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基于仪的Dove镜扫描系统的高精度角度误差补偿方法.

Huaming Li, Yu Wang, Junwen Lu

    Optics letters
    |September 13, 2024
    PubMed
    概括

    这项研究引入了一种新的方法,用于使用仪纠正Dove镜中的角度误差. 这种技术提高了扫描精度,扩大了高精度光学系统的应用.

    科学领域:

    • 光学是什么?光学是什么?光学是什么?
    • 光学工程是指光学工程.
    • 精确度测量 精确度测量 精确度测量

    背景情况:

    • 子镜是扫描应用中至关重要的光学元件.
    • 制造和安装错误导致Dove镜的角度和转移错误.
    • 这些错误大大扭曲了扫描轨迹,限制了精度.

    研究的目的:

    • 提出和验证一种方法来补偿Dove镜的角度误差.
    • 为了提高Dove镜产生的扫描轨迹的精度.
    • 提供无校准的解决方案来纠正Dove镜错误.

    主要方法:

    • 通过分析扭曲的扫描轨迹来识别角度错误.
    • 仪与Dove镜旋转同步,以动态纠正错误.
    • 该方法避免了复杂的机械调整,简化了校准.

    主要成果:

    • 拟议的方法有效地弥补了Dove镜的角度误差.
    • 实验结果显示,角度误差减少到17μrad以下.
    • 该技术可以实现高精度扫描功能.

    结论:

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    • 基于仪的补偿方法显著提高了Dove镜的精度.
    • 这种方法扩大了Dove镜在高精度扫描领域的适用性.
    • 该方法为光学系统校准提供了方便和有效的解决方案.