Design and simulation of a cockroach-like hexapod robot
Проектирование и моделирование шестиногого робота по образцу таракана
2002-11-22
SCID: 54.1/ttm3jjpc
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biomimetic leg designcockroach-like hexapod robotdegrees of freedom (DOF) distributiondynamic simulation for joint torquespneumatic cylinder actuation
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Abstract (AI)
This paper describes the design and simulation of a cockroach-like hexapod robot which is under construction for the purpose of testing control principles which are being extracted from the cockroach. The cockroach was chosen because of its remarkable running and climbing capabilities and because much is known about its biomechanics and control. The robot is designed with five, four, and three degrees of freedom in the front, middle and rear legs, respectively, to permit it to mimic the different functions of cockroach legs. Pneumatic cylinders actuate each joint and provide opposing muscle-like forces to actuate the joints. Pulse-width modulation controls the actuators with the necessary smoothness and precision. A dynamic simulation has been developed to predict loads on the structure and the required joint torques.
Key Findings
1
A cockroach-like hexapod robot design is presented for testing control principles derived from cockroach biomechanics.
2
A dynamic simulation was developed to predict structural loads and required joint torques for the robot.
3
Leg architecture mimics cockroach functional differentiation: front legs with five DOF, middle with four DOF, and rear with three DOF.
4
Pneumatic cylinders actuate each joint and provide opposing muscle-like forces to produce joint actuation.
5
Pulse-width modulation is used to control actuators, providing the required smoothness and precision.
Research Object
Cockroach-like hexapod robot (mechanical design and simulated prototype)
Research Subject
Design, actuation, control implementation (degrees of freedom distribution, pneumatic cylinder muscle-like actuation with PWM control) and dynamic simulation predicting structural loads and required joint torques to replicate cockroach locomotion functions
Publication Details
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2002-11-22
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