Related Experiment Video
Updated: Feb 3, 2026

Using a Virtual Reality Walking Simulator to Investigate Pedestrian Behavior
Published on: June 9, 2020
Walking crowds on a shaky surface: stable walkers discover Millennium Bridge oscillations with and without pedestrian
Varun Joshi1, Manoj Srinivasan2
1Mechanical and Aerospace Engineering, Ohio State University, Columbus, OH 43210, USA.
Abstract:
Why did the London Millennium Bridge shake when there was a big enough crowd walking on it? What features of human walking dynamics when coupled to a shaky surface produce such shaking? Here, we use a simple biped model capable of walking stably in three dimensions to examine these questions. We simulate multiple such stable bipeds walking simultaneously on a bridge, showing that they naturally synchronize under certain conditions, but that synchronization is not required to shake the bridge. Under such shaking conditions, the simulated walkers increase their step widths and expend more metabolic energy than when the bridge does not shake. We also find that such bipeds can walk stably on externally shaken treadmills, synchronizing with the treadmill motion for a range of oscillation amplitudes and frequencies. Our simulations illustrate how interactions between (idealized) bipeds through the walking surface can produce emergent collective behaviour that may not be exhibited by just a single biped.
Related Concept Videos
Design Example: Strain Gauge Bridge or Wheatstone Bridge
Wheatstone Bridge
Thus, for accurate resistance measurements, a...
Bridge rectifier
Operationally, the bridge rectifier allows current flow through two of its diodes during each...
Cross-bridge Cycle
Oscillations In An LC Circuit
Forced Oscillations

