Numerical Simulation of Motion Test of Bionic Amphibious Quadruped Robot DOI Creative Commons
Jie Zhao

Deleted Journal, Journal Year: 2024, Volume and Issue: 20(6s), P. 794 - 799

Published: April 29, 2024

Bionic amphibious quadruped robots are a huge leap in robotics, with the ability to navigate various terrains agility and efficiency. In this study, researchers utilized numerical simulations of motion tests assess locomotion skills these extraordinary robotic systems. They learned lot about their functioning problems by rigorously analyzing performance parameters across conditions, such as terrain adaptability, traversal speed, energy efficiency, stability, manoeuvrability. The results they obtained highlighted importance adaptive control algorithms mechanical designs maximizing speed economy, especially while negotiating difficult terrains. addition, study demonstrated interdisciplinary character research bionic robots, drawing on insights from biomechanics, theory, computational modelling. By combining previous utilizing simulation approaches, opened road for creation versatile durable systems capable navigating surroundings precision Future efforts could focus improving design control, investigating novel propulsion mechanisms, tactics, biomimetic improve adaptability. Addressing challenges identified seizing opportunities innovation will drive development that push limits capabilities open up new possibilities applications exploration, search rescue, environmental monitoring, beyond.

Language: Английский

Numerical Simulation of Motion Test of Bionic Amphibious Quadruped Robot DOI Creative Commons
Jie Zhao

Deleted Journal, Journal Year: 2024, Volume and Issue: 20(6s), P. 794 - 799

Published: April 29, 2024

Bionic amphibious quadruped robots are a huge leap in robotics, with the ability to navigate various terrains agility and efficiency. In this study, researchers utilized numerical simulations of motion tests assess locomotion skills these extraordinary robotic systems. They learned lot about their functioning problems by rigorously analyzing performance parameters across conditions, such as terrain adaptability, traversal speed, energy efficiency, stability, manoeuvrability. The results they obtained highlighted importance adaptive control algorithms mechanical designs maximizing speed economy, especially while negotiating difficult terrains. addition, study demonstrated interdisciplinary character research bionic robots, drawing on insights from biomechanics, theory, computational modelling. By combining previous utilizing simulation approaches, opened road for creation versatile durable systems capable navigating surroundings precision Future efforts could focus improving design control, investigating novel propulsion mechanisms, tactics, biomimetic improve adaptability. Addressing challenges identified seizing opportunities innovation will drive development that push limits capabilities open up new possibilities applications exploration, search rescue, environmental monitoring, beyond.

Language: Английский

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