Automatic transmission

Related papers: 17

About

Automatic transmission refers to mechanical systems that automatically change gear ratios in a drivetrain without requiring manual intervention, enabling continuous or stepped adjustment of torque and speed between a power source and output shaft. In robotics and AI, automatic and continuously variable transmissions (CVTs) appear in several contexts: they are integrated into mobile robot drivetrains to optimize speed and torque across varying terrains, used in collaborative robots (cobots) to deliver programmable mechanical constraints with minimal power consumption, and employed in human-robot interfaces to provide smooth, responsive force feedback. Robotic systems also interact with vehicle transmissions directly, such as robotic drivers that automate gear changes during emissions testing or autonomous driving simulation. Additionally, robots are deployed to manufacture transmission components, automating processes like gear shaping. Automatic transmission technology matters in robotics because it expands operational range, improves energy efficiency, enables finer motion control, and supports the development of safer human-robot interaction—all while reducing the complexity placed on onboard controllers to manage power delivery.

Top Cited Papers

Study on Roller-Walker - Adaptation of characteristics of the propulsion by a leg trajectory -

Gen Endo, S. Hirose

Citations: 30 • 2008

Toward robotizing powertrain assembly

Dave Gravel, Frank Maslar, George Zhang, Srini Nidamarthi, Heping Chen, Tom Fuhlbrigge

Citations: 21 • 2008

Hybrid Transmission for Mobile Robot

Essam L. Esmail

Citations: 14 • 2012

Driveaway and braking control of vehicles with manual transmission using a robotic driver

Stefan Sailer, Michael Buchholz, Klaus Dietmayer

Citations: 14 • 2013

MOSTS: a mobile robot with a spherical continuously variable transmission

Jungyun Kim, Han Jun Yeom, F.C. Park

Citations: 11 • 2003

New Intelligent Transmission Concept for Hybrid Mobile Robot Speed Control

Nazim Mir‐Nasiri, Sulaiman Hussaini

Citations: 10 • 2005

Study on Roller-Walker-Adaptation of Characeristics of the Propulsion by a Leg Trajectory-

Gen Endo, Shigeo Hirose

Citations: 10 • 2008

Modeling and Control of the Vehicle Transmission System Using Electric Actuators; Integration of a Clutch

Chérif Larouci, E. Dehondt, A. Harakat, Gilles Feld

Citations: 7 • 2007

A Continuously Variable Transmission System Designed for Human–Robot Interfaces

Emir Mobedi, Mehmet İsmet Can Dede

Citations: 6 • 2020

Automated apparatus for live work on overhead transmission lines

E.I. Udod, V. Molchanov, V.L. Taloverya, Nikolay Ivanov, V.V. Dyakov, A. Rubanenko, G. Gela

Citations: 4 • 2002

High Performance Cobotics

Eric L. Faulring, J. Edward Colgate, Michael A. Peshkin

Citations: 4 • 2005

Vehicle drivetrain: Emulation and simulation using electric machines

Rabia Sehab, Gilles Feld

Citations: 4 • 2011

An electric simulator of a vehicle transmission chain coupled to a vehicle dynamic model

Ahmed Chaibet, Chérif Larouci, Emmanuel Grunn

Citations: 4 • 2008

Modeling of Automatic Control Mechanism for the Hydraulic Transmission of a Transportation Robot under Nonlinear Motion Characteristics

O. A. Egorova, Ya. A. Darsht, Svetlana Kuznetsova

Citations: 3 • 2018

A Vehicle Transmission Simulator Applied to the Automated Driving

Chérif Larouci, Ahmed Chaibet, Moussa Boukhnifer

Citations: 2 • 2009

Analysis and Design of a Novel Continuously Variable Transmission for Robotics

Shouqi Chen, Linsen Xu, Lei Liu, Jiajun Xu, Jia Shi, Hong Xu, Jinfu Liu, Gaoxin Cheng, Xingcan Liang

Citations: 2 • 2020

Robot Automation of the Gear Shaping Process for a Carrier Plate of Transmission

K. H. Choi, Ho-yeol Chun, Cha-Soo Jun

Citations: 1 • 2024