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ChengHe Guan

Publications and source records attributed to ChengHe Guan.

2 recordsLinked to original sources

PopNavShift: Stress-Testing Social Navigation under Behavioral Population Shift

Social-navigation algorithms are often evaluated under a fixed pedestrian-behavior distribution, despite substantial variation in pedestrian responses to robots across individuals and social contexts. We introduce PopNavShift, a matched simulation framework for stress-testing social-navigation strategies under pedestrian population shifts. PopNavShift constructs population-conditioned pedestrian motion profiles by prompting Gemini 3.7 Flash with 600 synthetic persona records from MatrAIx Persona 1M and deterministically mapping the responses into bounded motion parameters. It then compares three representative navigation strategies, reactive avoidance, early yielding, and reciprocal collision avoidance, across eight population conditions and 7,488 matched robot runs. In a matched intervention on the same 202 personas, changing only time pressure reverses 8.6% of controller rankings based on robot travel time, but 22.4% based on mean pedestrian delay and 23.9% based on worst-decile delay. Across population conditions, this sensitivity is greater for pedestrian burden than for robot travel time and increases in spatially constrained settings; the same qualitative pattern persists under a second pedestrian dynamics model. These findings support evaluating navigation strategies across behavioral populations using both robot performance and pedestrian burden.

cs.RO↗

Planning for Rhythmized Urban Parks: Temporal Park Classification and Modes of Action

Problem, research strategy, and findings: Urban parks offer residents significant physiological and mental health benefits, improving their quality of life. However, traditional park planning often treats parks as static spatial resources, neglecting their temporal dimension of visitation rhythms. This study proposes a paradigm shift in classifying, programming, and designing parks. Utilizing 1.5 million mobile phone records, we classified 254 urban parks in Tokyo based on their visitation patterns across different times of the day, week, and year. Our results showed that parks are rhythmized by seasonal events and daily activities, exhibiting complex visiting patterns shaped by the combined effects of preference variation and accessibility barriers. We concluded by discussing modes of action for temporal park planning practice. Takeaway for practice: Park planners, designers, and policymakers should seek to incorporate temporality in activity-based park design and programming. This can be fulfilled in four ways by (1) tracing year-round, citywide park activities through data-driven methods, (2) implementing temporary and tactical designs for dynamic park demands, (3) establishing an inclusive park system that helps improve spatiotemporal equity, and (4) encouraging public engagement that cultivates the sense of time and identity.

physics.soc-ph↗