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Data-Driven Synchronization Analysis of a Bouncing Crowd

机译:蹦蹦跳办的数据驱动同步分析

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摘要

Vibration serviceability problems concerning lightweight, flexible long-span floors and cantilever structures such as grandstands generally arise from crowd-induced loading, in particular due to bouncing or jumping activities. Predicting the dynamic responses of these structures induced by bouncing and jumping crowds has therefore become a critical aspect of vibration serviceability design. Although accurate models describing the load induced by a single person are available, essential information on the level of synchronization within the crowd is missing. In answer to this lack of information, this paper experimentally investigates the inter- and intraperson variability as well as the global crowd behavior in bouncing crowds. A group size of 48 persons is considered in the experiment whereby the individual body motions are registered synchronously by means of a 3D motion capture system. Preliminary tests verified a new approach to characterize the bouncing motion via markers on the clavicle. Subsequently, the full-scale experimental study considered various crowd spacing parameters, auditory stimuli, and bouncing frequencies. Moreover, special test cases were performed whereby each participant was wearing an eyepatch to exclude visual effects. Through the analysis of 330 test cases, the interperson variability at the bouncing frequency is identified. In addition, the cross-correlation and coherence between participants are analyzed. The coherence coefficients between each pair of participants in the same row or column are calculated and can be described by a lognormal distribution function. The influence of the spatial configurations and visual and auditory stimuli is analyzed. For the considered spatial configurations, no relevant impact on the inter- and intraperson variability in the bouncing motion nor in the global crowd behavior is observed. Visual stimuli are found to enhance the coordination and synchronization. Without eyesight, the participants are feeling uncertain about their bouncing behavior. The results evaluating the auditory cues indicate that significantly higher levels of synchronization and a lower degree of the intraperson variability are attained when a metronome cue is used in comparison to songs where the tempo often varies.
机译:有关轻质,灵活的长跨度地板和悬臂结构的振动可用性问题通常来自人群诱导的装载,特别是由于蹦蹦或跳跃活动。因此,预测通过弹跳和跳跃人群引起的这些结构的动态响应因此成为振动可用性设计的关键方面。虽然可以使用描述由单个人引起的负载的准确模型可用,但缺少有关人群内同步水平的基本信息。在答案缺乏信息时,本文实验地调查了击球人群中的跨域变异性以及全球人群行为。在实验中考虑了48人的组大小,从而通过3D运动捕获系统同步地登记各个身体运动。初步测试验证了一种新方法,通过锁骨上的标记来表征弹跳运动。随后,全规模的实验研究被认为是各种人群间距参数,听觉刺激和弹跳频率。此外,执行特殊的测试用例,每个参与者都佩戴眼罩以排除视觉效果。通过分析330个测试用例,识别出在弹跳频率下的中间体变异性。此外,分析参与者之间的互相关和相干性。计算同一行或列中的每对参与者之间的相干系数,并且可以通过Lognormal分布函数来描述。分析了空间配置和视觉刺激的影响。对于所考虑的空间配置,概述了对弹跳运动中的和内部内部变异性没有相关影响,也不是全球人群行为。发现视觉刺激增强协调和同步。没有视力,参与者对他们的弹跳行为感到不确定。评估听觉提示的结果表明,当与节拍器与节奏经常变化的歌曲相比,当节拍器提示时,达到了显着更高的同步水平和较低程度的内部内部变异性。

著录项

  • 来源
    《Shock and vibration》 |2019年第6期|8528763.1-8528763.23|共23页
  • 作者单位

    Xinjiang Univ Coll Civil Engn & Architecture Urumqi 830047 Peoples R China|Tongji Univ Coll Civil Engn Siping Rd 1239 Shanghai 200092 Peoples R China;

    Tongji Univ Coll Civil Engn Siping Rd 1239 Shanghai 200092 Peoples R China;

    Katholieke Univ Leuven Dept Civil Engn Struct Mech B-3001 Leuven Belgium|Katholieke Univ Leuven Dept Civil Engn Technol Cluster Construct Struct Mech B-9000 Ghent Belgium;

    Katholieke Univ Leuven Dept Civil Engn Struct Mech B-3001 Leuven Belgium|Katholieke Univ Leuven Dept Civil Engn Technol Cluster Construct Struct Mech B-9000 Ghent Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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