探索不对称和对称行人合并动力学:单队列实验的宏观参数和微观行为适应

IF 3.1 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Hanchen Yu , Nan Jiang , Dongli Gao , Jixin Shi , Hongyun Yang , Eric Wai Ming Lee , Lizhong Yang
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引用次数: 0

摘要

行人合流是城市交通的一个重要方面,影响着复杂环境下的交通效率和安全。群体行为是由个体间复杂的局部相互作用引起的。为了更好地理解行人合并动力学,有必要进一步探讨合并过程中的微观个体适应及其对影响合并性能的宏观运动模式的潜在影响。本研究通过对照实验研究了t形单纵队场景下的行人合并行为,比较了不同流量和速度水平下的非对称和对称(不同流向)布局。分析了宏观参数(如平均速度、归并路径距离)和微观参数(如横向偏差、车头距、步进特性),并讨论了两者之间的联系。研究发现,上游速度自适应不一致会影响合并速度,速度衰减越快,自适应时间越短,合并速度越低。上游横向偏差的可变性导致了合并路径的差异,横向偏差越大,合并路径的减少就越明显。由此推断,速度适应与涉及步长、步频等的减速策略有关,而横向偏差则源于行人对短距离和右侧偏向的偏好。此外,在对称和非对称布局中,横向偏移稳定性与速度衰减呈负相关。这些结果解决了合并过程中宏观参数与微观行为适应之间的特定相关性,可能造成运动状态的差异,并导致潜在的高密度和延迟。这项工作从新的角度对行人合并行为提供了见解,并应用于加强行人流设计和安全管理策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring asymmetric and symmetric pedestrian merging dynamics: Macro parameters and micro behavioral adaptations from single-file experiment
Pedestrian merging flow is a critical aspect of urban mobility, shaping movement efficiency and safety in complex environments. Collective crowd behaviors are induced by complex local interactions among individuals. For a better understanding of pedestrian merging dynamics, it is necessary to further explore microscopic individual adaptations during the merging process as well as their potential impacts on macroscopic movement patterns that affect merging performance. This study conducts controlled experiments to investigate pedestrian merging behaviors in T-shaped single-file scenarios, comparing both asymmetric and symmetric layouts (differing in flow directions) under varying flow and speed levels. Macroscopic parameters (e.g., average velocity, merging path distance) and microscopic parameters (e.g., lateral deviation, headway distance, stepping characteristics) are analyzed, and the interconnections are discussed. Key findings reveal that the inconsistent upstream velocity adaptation could affect merging velocity, where a faster velocity decay and shorter adaptation time result in lower merging velocity. Variability in upstream lateral deviations contributes to discrepancies in merging paths, with greater lateral deviation leading to more pronounced merging path reductions. It is inferred that velocity adaptation is linked to deceleration strategies involving stepping dynamics (e.g., step length, step frequency), while lateral deviation originates from pedestrians’ preferences for the shortest-distance and right-side bias. Furthermore, a negative correlation is identified between the stability of lateral deviation and velocity decay in both symmetric and asymmetric layouts. Those results address specific correlations between macro parameters and micro behavioral adaptations during the merging process, which might create disparities of movement states and induce latent higher density and delays. This work provides insights into pedestrian merging behaviors from a new perspective, with applications in enhancing pedestrian flow designs and safety management strategies.
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来源期刊
CiteScore
7.20
自引率
9.10%
发文量
852
审稿时长
6.6 months
期刊介绍: Physica A: Statistical Mechanics and its Applications Recognized by the European Physical Society Physica A publishes research in the field of statistical mechanics and its applications. Statistical mechanics sets out to explain the behaviour of macroscopic systems by studying the statistical properties of their microscopic constituents. Applications of the techniques of statistical mechanics are widespread, and include: applications to physical systems such as solids, liquids and gases; applications to chemical and biological systems (colloids, interfaces, complex fluids, polymers and biopolymers, cell physics); and other interdisciplinary applications to for instance biological, economical and sociological systems.
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