Generalized LOAM: LiDAR Odometry Estimation with Trainable Local Geometric Features

10/29/2022
by   Kohei Honda, et al.
0

This paper presents a LiDAR odometry estimation framework called Generalized LOAM. Our proposed method is generalized in that it can seamlessly fuse various local geometric shapes around points to improve the position estimation accuracy compared to the conventional LiDAR odometry and mapping (LOAM) method. To utilize continuous geometric features for LiDAR odometry estimation, we incorporate tiny neural networks into a generalized iterative closest point (GICP) algorithm. These neural networks improve the data association metric and the matching cost function using local geometric features. Experiments with the KITTI benchmark demonstrate that our proposed method reduces relative trajectory errors compared to the other LiDAR odometry estimation methods.

READ FULL TEXT

page 5

page 7

page 9

research
09/25/2022

A Tightly Coupled LiDAR-IMU Odometry through Iterated Point-Level Undistortion

Scan undistortion is a key module for LiDAR odometry in high dynamic env...
research
12/18/2017

CNN for IMU Assisted Odometry Estimation using Velodyne LiDAR

We introduce a novel method for odometry estimation using convolutional ...
research
09/20/2022

WGICP: Differentiable Weighted GICP-Based Lidar Odometry

We present a novel differentiable weighted generalized iterative closest...
research
07/01/2021

Adaptive Hyperparameter Tuning for Black-box LiDAR Odometry

This study proposes an adaptive data-driven hyperparameter tuning framew...
research
09/13/2022

InTEn-LOAM: Intensity and Temporal Enhanced LiDAR Odometry and Mapping

Traditional LiDAR odometry (LO) systems mainly leverage geometric inform...
research
02/22/2021

Unsupervised Learning of Lidar Features for Use in a Probabilistic Trajectory Estimator

We present unsupervised parameter learning in a Gaussian variational inf...
research
01/06/2020

CAE-LO: LiDAR Odometry Leveraging Fully Unsupervised Convolutional Auto-Encoder for Interest Point Detection and Feature Description

As an important technology in 3D mapping, autonomous driving, and robot ...

Please sign up or login with your details

Forgot password? Click here to reset