Multimodal Perception System for Real Open Environment

Fuente: arXiv
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Main Author: Sha, Yuyang
Format: Preprint
Published: 2024
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author Sha, Yuyang
author_facet Sha, Yuyang
contents This paper presents a novel multimodal perception system for a real open environment. The proposed system includes an embedded computation platform, cameras, ultrasonic sensors, GPS, and IMU devices. Unlike the traditional frameworks, our system integrates multiple sensors with advanced computer vision algorithms to help users walk outside reliably. The system can efficiently complete various tasks, including navigating to specific locations, passing through obstacle regions, and crossing intersections. Specifically, we also use ultrasonic sensors and depth cameras to enhance obstacle avoidance performance. The path planning module is designed to find the locally optimal route based on various feedback and the user's current state. To evaluate the performance of the proposed system, we design several experiments under different scenarios. The results show that the system can help users walk efficiently and independently in complex situations.
format Preprint
id arxiv_https___arxiv_org_abs_2410_07926
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multimodal Perception System for Real Open Environment
Sha, Yuyang
Robotics
Computer Vision and Pattern Recognition
This paper presents a novel multimodal perception system for a real open environment. The proposed system includes an embedded computation platform, cameras, ultrasonic sensors, GPS, and IMU devices. Unlike the traditional frameworks, our system integrates multiple sensors with advanced computer vision algorithms to help users walk outside reliably. The system can efficiently complete various tasks, including navigating to specific locations, passing through obstacle regions, and crossing intersections. Specifically, we also use ultrasonic sensors and depth cameras to enhance obstacle avoidance performance. The path planning module is designed to find the locally optimal route based on various feedback and the user's current state. To evaluate the performance of the proposed system, we design several experiments under different scenarios. The results show that the system can help users walk efficiently and independently in complex situations.
title Multimodal Perception System for Real Open Environment
topic Robotics
Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2410.07926