Trajectory optimization with GA and control for quadruped robots
Jong Hyeon Park
The Journal of Mechanical Science and Technology, vol. 23, no. 1, pp.114-123, 2009
Abstract : This paper proposes an optimal galloping trajectory, which costs low energy and guarantees the stability of the quadruped
robot. In the realization of fast galloping, the trajectory design is important. For a galloping trajectory, we propose
an elliptic leg trajectory, which provides simplified locomotion to complex galloping motions of animals. However,
the elliptic trajectory, as an imitation of animal galloping motion, does not guarantee stability and minimal energy
consumption. We propose optimization based on energy and stability using a genetic algorithm, which provides a robust
and globally optimized solution to this multi-body, highly nonlinear dynamic system. To evaluate and verify the
effectiveness of the proposed trajectory, a series of computer simulations were carried out.
Keyword : Gallop; Genetic algorithm; Elliptic trajectory; Cubic polynomials |