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Published on: October 14, 2017
Bio-Inspired Event-Based Visual Servoing for Ground Robots
Maral Mordad1, Kian Behzad1, Debojyoti Biswas2
1Department of Electrical & Computer Engineering, Northeastern University, Boston, MA 02115 USA.
This study introduces an event-based visual servoing framework for robots using a Dynamic Vision Sensor (DVS). It enables direct sensing of robot states for efficient, low-latency control in structured environments.
Area of Science:
- Robotics
- Computer Vision
- Bio-inspired Engineering
Background:
- Biological systems efficiently process sensory information by focusing on changes.
- Robotic systems often rely on traditional state estimation, which can be computationally intensive.
- Event-based sensing offers potential for low-latency and efficient perception.
Purpose of the Study:
- To develop a principled 1D event-based visual servoing framework for ground robots.
- To leverage Dynamic Vision Sensor (DVS) event streams for direct kinematic state estimation.
- To introduce a bio-inspired controller for enhanced robotic sensing and control.
Main Methods:
- Utilizing a Dynamic Vision Sensor (DVS) to capture asynchronous event streams.
- Applying spatial kernels to event data to isolate kinematic states (velocity, position-velocity).
- Developing a direct nonlinear state feedback synthesis and an active sensing limit-cycle controller.
Main Results:
- Demonstrated analytical isolation of robot velocity and position-velocity product using specific spatial profiles.
- Achieved direct synthesis of nonlinear state feedback without traditional estimation.
- Validated the framework's efficacy, low-latency, and computational efficiency on a 1/10-scale robot.
Conclusions:
- The proposed event-based visual servoing framework offers a computationally efficient and low-latency alternative for robotic control.
- Bio-inspired active sensing strategies can overcome limitations of event-based sensing.
- Direct sensing approaches using DVS show significant promise for autonomous systems.
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