Design of an Adaptive Lightweight LiDAR to Decouple Robot-Camera Geometry

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Chen, Yuyang, Wang, Dingkang, Thomas, Lenworth, Dantu, Karthik, Koppal, Sanjeev J.
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909123672539136
author Chen, Yuyang
Wang, Dingkang
Thomas, Lenworth
Dantu, Karthik
Koppal, Sanjeev J.
author_facet Chen, Yuyang
Wang, Dingkang
Thomas, Lenworth
Dantu, Karthik
Koppal, Sanjeev J.
contents A fundamental challenge in robot perception is the coupling of the sensor pose and robot pose. This has led to research in active vision where robot pose is changed to reorient the sensor to areas of interest for perception. Further, egomotion such as jitter, and external effects such as wind and others affect perception requiring additional effort in software such as image stabilization. This effect is particularly pronounced in micro-air vehicles and micro-robots who typically are lighter and subject to larger jitter but do not have the computational capability to perform stabilization in real-time. We present a novel microelectromechanical (MEMS) mirror LiDAR system to change the field of view of the LiDAR independent of the robot motion. Our design has the potential for use on small, low-power systems where the expensive components of the LiDAR can be placed external to the small robot. We show the utility of our approach in simulation and on prototype hardware mounted on a UAV. We believe that this LiDAR and its compact movable scanning design provide mechanisms to decouple robot and sensor geometry allowing us to simplify robot perception. We also demonstrate examples of motion compensation using IMU and external odometry feedback in hardware.
format Preprint
id arxiv_https___arxiv_org_abs_2302_14334
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Design of an Adaptive Lightweight LiDAR to Decouple Robot-Camera Geometry
Chen, Yuyang
Wang, Dingkang
Thomas, Lenworth
Dantu, Karthik
Koppal, Sanjeev J.
Robotics
A fundamental challenge in robot perception is the coupling of the sensor pose and robot pose. This has led to research in active vision where robot pose is changed to reorient the sensor to areas of interest for perception. Further, egomotion such as jitter, and external effects such as wind and others affect perception requiring additional effort in software such as image stabilization. This effect is particularly pronounced in micro-air vehicles and micro-robots who typically are lighter and subject to larger jitter but do not have the computational capability to perform stabilization in real-time. We present a novel microelectromechanical (MEMS) mirror LiDAR system to change the field of view of the LiDAR independent of the robot motion. Our design has the potential for use on small, low-power systems where the expensive components of the LiDAR can be placed external to the small robot. We show the utility of our approach in simulation and on prototype hardware mounted on a UAV. We believe that this LiDAR and its compact movable scanning design provide mechanisms to decouple robot and sensor geometry allowing us to simplify robot perception. We also demonstrate examples of motion compensation using IMU and external odometry feedback in hardware.
title Design of an Adaptive Lightweight LiDAR to Decouple Robot-Camera Geometry
topic Robotics
url https://arxiv.org/abs/2302.14334