• Skip to main content
  • Skip to secondary menu
  • Skip to primary sidebar
  • Skip to footer
Engineering Designer Magazine

Engineering Designer

  • Home
  • Technology
  • Education
  • Sustainability
  • Materials
  • Medical
  • Construction
  • Advertise
  • iED
You are here: Home / Technology / Robotic dog mimics mammals for superior mobility on land and in water

Robotic dog mimics mammals for superior mobility on land and in water

May 12, 2025 by Grace Gourlay

A team of researchers at has unveiled a cutting-edge amphibious robotic dog capable of roving across both land and water with remarkable efficiency. The study was inspired by mammals’ ability to move through water as well as on land.

Existing amphibious robots are largely inspired by reptiles or insects, and often face limitations in agility, dynamics and load capacity. Basing the amphibious robot on the swimming style of dogs allows for it to easily transition between land and water, and overcome many of the challenges faced by insect-inspired designs.

According to the researchers, the amphibious robot paves the way for future applications in environmental research, military vehicles, rescue missions and beyond.

To enhance its water mobility, the amphibious robotic dog features a unique paddling mechanism, modelled after the swimming motion of dogs. Careful engineering of its structure, including precise weight and buoyancy balance, ensures stable and effective aquatic performance.

Advertisement

The team developed and tested three distinct paddling gaits: two doggy-paddle-inspired approaches optimised for speed and propulsion, and a trot-like paddling style, designed for enhanced stability in water.

Through extensive experimentation, the doggy paddle method proved superior for speed, achieving a maximum water speed of 0.576 km/h, while the trot-like style prioritised stability. On land, the amphibious robotic dog reaches speeds of 1.26 km/h, offering versatile mobility in amphibious environments.

The research was primarily carried out at the Shien-Ming Wu School of Intelligent Engineering at South China University of Technology in Guangzhou, China, which led the design and testing of the amphibious robotic dog. The project received guidance on animal biomechanics and bioinspired principles from West Chester University, USA, and conceptual refinement and mechanical design support from the University of Hong Kong.

‘This innovation marks a big step forward in designing nature-inspired robots,’ said Yunquan Li, corresponding author of the study. ‘Our robot dog’s ability to efficiently move through water and on land is due to its bioinspired trajectory planning, which mimics the natural paddling gait of real dogs. The double-joint leg structure and three different paddling gaits address previous limitations such as slow swimming speeds and unrealistic gait planning, making the robotic dog much more effective in water.’

The research has been published in Bioinspiration and Biomimetics.

Filed Under: Technology

Primary Sidebar

SUBSCRIBE And get a FREE Magazine

Want a FREE magazine each and every month jam-packed with the latest engineering and design news, views and features?

ED Update Magazine

Simply let us know where to send it by entering your name and email below. Immediate access.

Trending

Cambridge engineering alumnus co-founds AI imaging start-up

Imperial design engineering alumni launch sustainable clothing collaboration

New Designer of the Year 2026 project targets post-immersion hypothermia

Advances in ultra-black coating technology bring new opportunities for engineering applications

AI-driven analysis reveals new proteins from the deep ocean

The engineering behind the UK’s next generation of defence technology

How nanobubble technology is changing water treatment

University research develops adaptive metamaterial inspired by rice

Engineering safer buildings: The latest advances in earthquake-resistant design

Cyberattack puts manufacturing data security in the spotlight

Footer

About Engineering Designer

Engineering Designer is the quarterly journal of the Insitution of Engineering Designers.

It is produced by the IED for our Members and for those who have an interest in engineering and product design, as well as CAD users.

Click here to learn more about the IED.

Other Pages

  • Contact us
  • About us
  • Privacy policy
  • Terms
  • Institution of Engineering Designers

Search

Tags

ied

Copyright © 2026 · Site by Syon Media