Microsaccade-inspired event camera for robotics @feigao9214
Microsaccade-inspired event camera for robotics  @feigao9214
Uploaded June 2024 | Updated September 2026, 2 hours ago
Movie 1-Demonstration of Microsaccade.
The video presents the paper " Microsaccade-inspired event camera for robotics, Science Robotics Sci. Robot.9, eadj8124(2024).
science.org/doi/10.1126/scirobotics.adj8124

Neuromorphic vision sensors or event cameras have made the visual perception of extremely low reaction time possible, opening new avenues for high-dynamic robotics applications. These event cameras’ output is dependent on both motion and texture. However, the event camera fails to capture object edges that are parallel to the camera motion. This is a problem intrinsic to the sensor and therefore challenging to solve algorithmically. Human vision deals with perceptual fading using the active mechanism of small involuntary eye movements, the most prominent ones called microsaccades. By moving the eyes constantly and slightly during fixation, microsaccades can substantially maintain texture stability and persistence. Inspired by microsaccades, we designed an event-based perception system capable of simultaneously maintaining low reaction time and stable texture. In this design, a rotating wedge prism was mounted in front of the aperture of an event camera to redirect light and trigger events. The geometrical optics of the rotating wedge prism allows for algorithmic compensation of the additional rotational motion, resulting in a stable texture appearance and high informational output independent of external motion. The hardware device and software solution are integrated into a system, which we call artificial microsaccade–enhanced event camera (AMI-EV). Benchmark comparisons validated the superior data quality of AMI-EV recordings in scenarios where both standard cameras and event cameras fail to deliver. Various real-world experiments demonstrated the potential of the system to facilitate robotics perception both for low-level and high-level vision tasks.
Microsaccade-inspired event camera for roboticsEGO-Swarm: A Fully Autonomous and Decentralized Quadrotor Swarm System in Cluttered EnvironmentsThe Visual-Inertial-Dynamical UAV DatasetSwarm of Micro Flying Robots in the Wild [All]Auto-filmer: Autonomous Aerial Videography under Human InteractionVisibility-aware Trajectory Optimization with Application to Aerial TrackingTowards Dense and Accurate Radar Perception Via Efficient Cross-Modal Diffusion ModelFAST-Dynamic-Vision: Detection and Tracking Dynamic Objects with Event and Depth Sensing【Extended】Geometrically Constrained Trajectory Optimization for MulticoptersLearning-based 3D Occupancy Prediction for Autonomous Navigation in Occluded EnvironmentsTIE: An Autonomous and Adaptive Terrestrial-Aerial QuadrotorContinuous Implicit SDF Based Any-shape Robot Trajectory Optimization
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Microsaccade-inspired event camera for robotics

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