DeltaCharger: Charging Robot with Inverted Delta Mechanism and CNN-driven High Fidelity Tactile Perception for Precise 3D Positioning

07/22/2021
by   Iaroslav Okunevich, et al.
7

DeltaCharger is a novel charging robot with an Inverted Delta structure for 3D positioning of electrodes to achieve robust and safe transferring energy between two mobile robots. The embedded high-fidelity tactile sensors allow to estimate the angular, vertical and horizontal misalignments between electrodes on the charger mechanism and electrodes on the target robot using pressure data on the contact surfaces. This is crucial for preventing a short circuit. In this paper, the mechanism of the developed prototype and evaluation study of different machine learning models for misalignment prediction are presented. The experimental results showed that the proposed system can measure the angle, vertical and horizontal values of misalignment from pressure data with an accuracy of 95.46 Neural Network (CNN). DeltaCharger can potentially bring a new level of charging systems and improve the prevalence of mobile autonomous robots.

READ FULL TEXT

page 1

page 2

page 3

page 5

page 6

research
07/22/2021

MobileCharger: an Autonomous Mobile Robot with Inverted Delta Actuator for Robust and Safe Robot Charging

MobileCharger is a novel mobile charging robot with an Inverted Delta ac...
research
03/06/2023

RobotSweater: Scalable, Generalizable, and Customizable Machine-Knitted Tactile Skins for Robots

Tactile sensing is essential for robots to perceive and react to the env...
research
06/09/2022

DogTouch: CNN-based Recognition of Surface Textures by Quadruped Robot with High Density Tactile Sensors

The ability to perform locomotion in various terrains is critical for le...
research
06/21/2019

Flower Interaction Subsystem for a Precision Pollination Robot

Robotic pollinators not only can aid farmers by providing more cost effe...
research
03/05/2023

Tac-VGNN: A Voronoi Graph Neural Network for Pose-Based Tactile Servoing

Tactile pose estimation and tactile servoing are fundamental capabilitie...
research
11/08/2022

HySenSe: A Hyper-Sensitive and High-Fidelity Vision-Based Tactile Sensor

In this paper, to address the sensitivity and durability trade-off of Vi...
research
04/29/2020

Improving Vertical Positioning Accuracy with the Weighted Multinomial Logistic Regression Classifier

In this paper, a method of improving vertical positioning accuracy with ...

Please sign up or login with your details

Forgot password? Click here to reset