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Design Example: Strain Gauge Bridge or Wheatstone Bridge01:15

Design Example: Strain Gauge Bridge or Wheatstone Bridge

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The utilization of strain gauges as transducers for converting mechanical strain into electrical signals is a common practice in various engineering applications. These strain gauges are frequently integrated into Wheatstone bridge circuits to accurately measure parameters such as force or pressure. Within this context, each element within the circuit exhibits a resistance that undergoes subtle variations when subjected to mechanical strain. The primary objective is to convert minuscule...
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The key characteristic of the simple harmonic motion is that the acceleration of the system and, therefore, the net force are proportional to the displacement and act in the opposite direction to the displacement. Additionally, the period and frequency of a simple harmonic oscillator are independent of its amplitude. For example, diving boards move faster or slower based on their thickness. A stiff, thick diving board has a large force constant, which causes it to have a smaller period, while a...
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Ampère's law, in its usual form, does not work in places where the current changes with time and is not steady. Thus, Maxwell suggested including an additional contribution, called the displacement current, Id, to the real conduction current I.
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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...
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Consider a coffee mug hanging on a hook in a pantry. If the mug gets knocked, it oscillates back and forth like a pendulum until the oscillations die out.
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Updated: Jul 11, 2025

A Random-displacement Measurement by Combining a Magnetic Scale and Two Fiber Bragg Gratings
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基于光学一致性的移位型重量传感器的动态表征.

Zhengchuang Lai1,2, Zhongjie Ouyang1,3, Shuncong Zhong1,4

  • 1Institute of Mechanical Engineering and Automation, Fuzhou University, Fuzhou 350108, China.

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这项研究展示了一种具有卓越动态性能的光学连贯位移重量传感器. 使用极点零放置的改进显著减少了响应时间和超标,以实现更快,更准确的重量测量.

关键词:
移位类型 移位类型动态特征 动态特征光学连贯性 光学连贯性重量传感器重量传感器

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科学领域:

  • 机械工程 机械工程
  • 传感器技术 传感器技术
  • 光学计量学 在光学计量学

背景情况:

  • 动态特性对于高性能重量传感器至关重要.
  • 准确和快速的重量测量需要强大的传感器动态.
  • 光学连贯位移为重量传感提供了一种新的方法.

研究的目的:

  • 以数值模拟和分析光学连贯位移重量传感器的动态特征.
  • 将其动态性能与传统的应变传感方法进行比较.
  • 通过先进的控制技术来增强传感器的动态性能.

主要方法:

  • 用于数值模拟的有限元分析 (FEA).
  • 对于频率和时间域的探索,协调响应和瞬态动态分析.
  • 负步响应实验用于性能验证.
  • 极点零放置以提高动态性能.

主要成果:

  • 与应变传感器相比,光学相干位移传感器表现出优越的动态性能和更短的调节时间.
  • 为光学传感器建立了动态性能指标.
  • 极点零位置将超越降低到4.72%,响应时间降低到0.0132秒.

结论:

  • 非接触式光学连贯位移重量传感器提供了增强的动态能力.
  • 优化的动态性能扩大了运营带宽和响应能力.
  • 这项技术对于需要快速准确的重量测量应用具有前景.