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相关概念视频

Distributed Loads: Problem Solving01:21

Distributed Loads: Problem Solving

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Beams are structural elements commonly employed in engineering applications requiring different load-carrying capacities. The first step in analyzing a beam under a distributed load is to simplify the problem by dividing the load into smaller regions, which allows one to consider each region separately and calculate the magnitude of the equivalent resultant load acting on each portion of the beam. The magnitude of the equivalent resultant load for each region can be determined by calculating...
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Virtual Work for a System of Connected Rigid Bodies01:06

Virtual Work for a System of Connected Rigid Bodies

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Virtual work is a powerful method used to solve problems involving several connected rigid bodies. When the system is in equilibrium, virtual work is zero. This allows the calculation of the resulting forces when a system undergoes a virtual displacement. When attempting to analyze such a system, first, use a free-body diagram, where an independent coordinate represents the configuration of the links, and mark its deflected position resulting from the positive virtual displacement.
Next,...
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Relative Motion Analysis using Rotating Axes-Problem Solving01:29

Relative Motion Analysis using Rotating Axes-Problem Solving

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Consider a crane whose telescopic boom rotates with an angular velocity of 0.04 rad/s and angular acceleration of 0.02 rad/s2. Along with the rotation, the boom also extends linearly with a uniform speed of 5 m/s. The extension of the boom is measured at point D, which is measured with respect to the fixed point C on the other end of the boom. For the given instant, the distance between points C and D is 60 meters.
Here, in order to determine the magnitude of velocity and acceleration for point...
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Transformers in Distribution System01:27

Transformers in Distribution System

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Transformers in distribution systems can be broadly categorized into distribution substation transformers and other distribution transformers. They are crucial for stepping down high transmission voltages to levels suitable for distribution and end-user applications.
Distribution substation transformers come in various ratings and typically use mineral oil for insulation and cooling. To prevent moisture and air from entering the oil, some transformers use an inert gas like nitrogen to fill the...
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Sequence Networks of Rotating Machines01:24

Sequence Networks of Rotating Machines

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A Y-connected synchronous generator, grounded through a neutral impedance, is designed to produce balanced internal phase voltages with only positive-sequence components. The generator's sequence networks include a source voltage that is exclusively in the positive-sequence network. The sequence components of line-to-ground voltages at the generator terminals illustrate this configuration.
Zero-sequence current induces a voltage drop across the generator's neutral impedance and other...
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Simplified Synchronous Machine Model01:30

Simplified Synchronous Machine Model

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The Synchronous Machine Model is a fundamental tool in analyzing and ensuring the transient stability of power systems. This model simplifies the representation of a synchronous machine under balanced three-phase positive-sequence conditions, assuming constant excitation and ignoring losses and saturation. The model is pivotal for understanding the behavior of synchronous generators connected to a power grid, particularly during transient events.
In this model, each generator is connected to a...
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相关实验视频

Updated: May 2, 2026

Axon Stretch Growth: The Mechanotransduction of Neuronal Growth
11:46

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在模拟和可视化生产线之间同步控制物流终端,使用ASTAK方法.

Zixiao Wang1, Yue Dong2, Shengguo Wang3

  • 1School of Information and Communication Engineering, Communication University of China, Beijing, 100024, China. wangzixiao@cuc.edu.cn.

Scientific reports
|April 25, 2025
PubMed
概括
此摘要是机器生成的。

本研究介绍了ASTAK方法,用于在自动化工厂中同步可视化和模拟生产线. ASTAK实现了高同步率,提高了生产监督效率.

关键词:
动画简化 动画简化可控制的物流终端可以控制.关键框架 关键框架同步的同步是同步的同步.时间调整调整时间调整.

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科学领域:

  • 工业工程 工业工程 工业工程
  • 自动化和控制系统自动化和控制系统
  • 制造过程可视化 制造过程可视化

背景情况:

  • 自动化工厂依靠可视化生产线进行监控和管理.
  • 视觉化和实际生产线之间的有效同步对于高效的监督至关重要.

研究的目的:

  • 提出一种新的方法 (ASTAK),用于同步可视化和模拟生产线.
  • 为了实现精确的同步,而无需直接访问模拟的线路过程数据.
  • 提高自动化制造业生产监督的效率.

主要方法:

  • 提出的ASTAK方法涉及三个步骤:动画简化,时间对齐和关键同步.
  • 这种方法侧重于控制物流终端进行同步.
  • 它是为那些无法直接访问模拟生产线数据的场景而设计的.

主要成果:

  • ASTAK 方法成功地将模拟和可视化生产线之间的时间差缩短到平均0.08 秒.
  • 实现了99.97%的同步率,证明了高精度.
  • 这种方法被证明是有效的,与现有的最先进的技术相比,更优越.

结论:

  • ASTAK 方法为同步生产线可视化提供了一个强大的解决方案.
  • 它显著提高了自动化环境中生产监督的效率和准确性.
  • 这些发现证实了该方法在现实应用中的有效性和优越性.