Wednesday, June 4, 2025
LBNN
  • Business
  • Markets
  • Politics
  • Crypto
  • Finance
  • Energy
  • Technology
  • Taxes
  • Creator Economy
  • Wealth Management
  • Documentaries
No Result
View All Result
LBNN

A friction-driven strategy for agile steering wheel manipulation by humanoid robots

Simon Osuji by Simon Osuji
March 1, 2024
in Artificial Intelligence
0
A friction-driven strategy for agile steering wheel manipulation by humanoid robots
0
SHARES
1
VIEWS
Share on FacebookShare on Twitter


by Beijing Institute of Technology Press Co.

Related posts

‘Big Balls’ Is Officially a Full-Time Government Employee

‘Big Balls’ Is Officially a Full-Time Government Employee

June 4, 2025
Adjustable Mattress vs. Adjustable Frame: Similar but Not the Same

Adjustable Mattress vs. Adjustable Frame: Similar but Not the Same

June 4, 2025
A friction-driven strategy for agile steering wheel manipulation by humanoid robots
Researchers from School of Mechatronical Engineering, Beijing Institute of Technology. Credit: Zhaoyang Cai, School of Mechatronical Engineering, Beijing Institute of Technology

Humanoid robots have been one of the hottest research directions recently. Driving a vehicle can greatly improve the mobility of humanoid robots, allowing them to reach disaster sites faster.

A research team has proposed a friction-driven driving strategy inspired by human driving techniques and analyzed various steering strategies commonly employed by human drivers. Based on this strategy, they carried out an obstacle avoidance scenario, achieving a maximum steering wheel rotation speed of 3.14 rad/s.

The team published their findings in Cyborg and Bionic Systems on November 20, 2023.

Humanoid robots can potentially be used to perform tasks in hazardous situations, as they possess the ability to operate machinery designed for human use without the need for modification due to their human-like structure. Due to the limitations of the power system and small polygonal support area (foot area), humanoid robots have difficulty moving quickly.

In recent years, researchers have worked to combine humanoid robots and vehicles. This research allows humanoid robots to arrive faster and carry more tools. However, the narrow cab and fast operation requirements make it more difficult for humanoid robots to drive.

To explore better driving strategies for robots, the research team analyzed data from human driving processes and quantitatively compared three common driving strategies: “hand over hand,” “hand on hand,” and “single hand.”

By quantitatively comparing these strategies in terms of joint motion range, shoulder motion area, and control speed, the researchers identified the most efficient and effective technique for humanoid robots. “Quantitative bionic analysis can give researchers more specific guidance,” the corresponding author told us. They developed a friction-driven control strategy that mimics the actions of human drivers, enabling robots to navigate through confined spaces and handle obstacle avoidance scenarios with ease.

The researchers built a comprehensive steering wheel operating force model to ensure precise control and prevent excessive force on the steering wheel. This model accurately captures the relationship between rotational resistance and the steering wheel’s state, enabling the robots to exert the necessary force without damaging the mechanism. The team also devised a quadratic programming-based control framework that utilizes this model to achieve accurate tracking of the robot’s position and target torque output.

“This universal controller can well constrain the contact force within the system performance, ensuring that the robot can drive the vehicle while ensuring its own safety,” the team leader said.

This study opens up new possibilities in the field of humanoid robot driving, providing novel strategies for achieving higher speeds and maneuverability. In the future, researchers will continue refining the control strategy and exploring other application areas to advance humanoid robot development further.

More information:
Zhaoyang Cai et al, A Friction-Driven Strategy for Agile Steering Wheel Manipulation by Humanoid Robots, Cyborg and Bionic Systems (2023). DOI: 10.34133/cbsystems.0064

Provided by
Beijing Institute of Technology Press Co.

Citation:
A friction-driven strategy for agile steering wheel manipulation by humanoid robots (2024, March 1)
retrieved 1 March 2024
from https://techxplore.com/news/2024-03-friction-driven-strategy-agile-wheel.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no
part may be reproduced without the written permission. The content is provided for information purposes only.





Source link

Previous Post

Jeff Bezos, Microsoft Invest in a Humanoid Robot Startup

Next Post

Binance to List Telegram (TON) Token as Price Jumps 10%

Next Post
Binance to List Telegram (TON) Token as Price Jumps 10%

Binance to List Telegram (TON) Token as Price Jumps 10%

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

RECOMMENDED NEWS

IMF Assessing Developments in Kenya for Redress: Cabinet Purge

IMF Assessing Developments in Kenya for Redress: Cabinet Purge

11 months ago
IMF backs $630 million credit deal with Central African nation

IMF backs $630 million credit deal with Central African nation

1 week ago
Bonang Matheba to host Miss SA 2023

Bonang Matheba to host Miss SA 2023

2 years ago
Age tech at CES was much more than gadgets

Age tech at CES was much more than gadgets

1 year ago

POPULAR NEWS

  • Ghana to build three oil refineries, five petrochemical plants in energy sector overhaul

    Ghana to build three oil refineries, five petrochemical plants in energy sector overhaul

    0 shares
    Share 0 Tweet 0
  • When Will SHIB Reach $1? Here’s What ChatGPT Says

    0 shares
    Share 0 Tweet 0
  • Matthew Slater, son of Jackson State great, happy to see HBCUs back at the forefront

    0 shares
    Share 0 Tweet 0
  • Dolly Varden Focuses on Adding Ounces the Remainder of 2023

    0 shares
    Share 0 Tweet 0
  • US Dollar Might Fall To 96-97 Range in March 2024

    0 shares
    Share 0 Tweet 0
  • Privacy Policy
  • Contact

© 2023 LBNN - All rights reserved.

No Result
View All Result
  • Home
  • Business
  • Politics
  • Markets
  • Crypto
  • Economics
    • Manufacturing
    • Real Estate
    • Infrastructure
  • Finance
  • Energy
  • Creator Economy
  • Wealth Management
  • Taxes
  • Telecoms
  • Military & Defense
  • Careers
  • Technology
  • Artificial Intelligence
  • Investigative journalism
  • Art & Culture
  • Documentaries
  • Quizzes
    • Enneagram quiz
  • Newsletters
    • LBNN Newsletter
    • Divergent Capitalist

© 2023 LBNN - All rights reserved.