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相关概念视频

Rigid Body Equilibrium Problems - II01:21

Rigid Body Equilibrium Problems - II

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A rigid body is in static equilibrium when the net force and the net torque acting on the system are equal to zero.
Consider two children sitting on a seesaw, which has negligible mass. The first child has a mass (m1) of 26 kg and sits at point A, which is 1.6 meters (r1) from the pivot point B; the second child has a mass (m2) of 32 kg and sits at point C. How far from the pivot point B should the second child sit (r2) to balance the seesaw?
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Rigid Body Equilibrium Problems - I00:49

Rigid Body Equilibrium Problems - I

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A rigid body is said to be in static equilibrium when the net force and the net torque acting on the system is equal to zero. To solve for rigid body equilibrium problems, do the following steps.
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Rolling Resistance: Problem Solving01:17

Rolling Resistance: Problem Solving

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Rolling resistance, also known as rolling friction, is the force that resists the motion of a rolling object, such as a wheel, tire, or ball, when it moves over a surface. It is caused by the deformation of the object and the surface in contact with each other, as well as other factors like internal friction, hysteresis, and energy losses within the materials. Rolling resistance opposes the object's motion, requiring additional energy to overcome it and maintain movement. In practical...
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Pole and System Stability01:24

Pole and System Stability

871
The transfer function is a fundamental concept representing the ratio of two polynomials. The numerator and denominator encapsulate the system's dynamics. The zeros and poles of this transfer function are critical in determining the system's behavior and stability.
Simple poles are unique roots of the denominator polynomial. Each simple pole corresponds to a distinct solution to the system's characteristic equation, typically resulting in exponential decay terms in the system's...
871
Virtual Work for a System of Connected Rigid Bodies01:06

Virtual Work for a System of Connected Rigid Bodies

708
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.
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A Vibrotactile Feedback Device for Seated Balance Assessment and Training
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模拟公共交通不稳定性:一种新的VR和基于斯图尔特平台的平衡训练方法

Matjaz Zadravec, Andrej Olensek, Zlatko Matjacic

    Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
    |December 3, 2025
    PubMed
    概括

    这项研究开发了一个虚拟现实 (VR) 培训系统,以改善公共交通中的平衡. 基于扰动的VR集成平衡训练显示了在动态环境中降落预防的潜力.

    科学领域:

    • 生物力学 生物力学
    • 康复工程 康复工程 康复工程
    • 虚拟现实 虚拟现实 虚拟现实

    背景情况:

    • 在公共交通工具中摔倒会带来很大的风险,特别是对于老年人和平衡障碍者来说.
    • 现有的康复方法可能不能充分为动态,现实世界的破坏稳定的条件做好准备.

    研究的目的:

    • 开发和评估一个新的培训系统,将斯图尔特平台与沉浸式虚拟现实 (VR) 集成在一起.
    • 模拟在公共交通中遇到的现实世界的破坏稳定的条件,以进行平衡训练.
    • 评估该系统在改善姿势控制方面的有效性.

    主要方法:

    • 一个斯图尔特平台与沉浸式VR相结合,创造了一个动态的平衡训练环境.
    • 实施了基于扰乱的平衡训练 (PBT) 协议,包括感官和机械挑战.
    • 用斯图尔特平台的压力中心 (CoP) 度量 (摇摆速度,面积,总功率,平均频率) 来量化姿势稳定性.

    主要成果:

    • VR & MOVEMENT & NOISY FLOOR条件证明是最具挑战性的,增加了姿势的不稳定性.
    • 在基于扰乱的平衡训练后,健康参与者表现出姿势适应.
    • 一名患有前体障碍的参与者表现出持续的不稳定性,这表明需要更长时间的康复.

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    结论:

    • 与VR集成的PBT显示出增强对公共交通相关的动态环境中的姿势控制的承诺.
    • 该系统的有效性可能因个体感官缺陷而异,需要量身定制的康复方案.
    • 需要进一步的研究,以优化对有感官障碍的人的干预措施,并降低跌倒风险.