Jack M. Wang, Samuel R. Hamner, S. Delp, V. Koltun
2012.7.1ACM TRANSACTIONS ON GRAPHICS
Résumé tlooto
It is shown that theUse of biologically-based actuators and objectives measurably increases the realism of gaits generated by locomotion controllers that operate without the use of motion capture data, and that metabolic energy expenditure provides a simple and unifying measurement of effort that can be used for both walking and running control optimization.
Résumé
We present a technique for automatically synthesizing walking and running controllers for physically-simulated 3D humanoid characters. The sagittal hip, knee, and ankle degrees-of-freedom are actuated using a set of eight Hill-type musculotendon models in each leg, with biologically-motivated control laws. The parameters of these control laws are set by an optimization procedure that satisfies a number of locomotion task terms while minimizing a biological model of metabolic energy expenditure. We show that the use of biologically-based actuators and objectives measurably increases the realism of gaits generated by locomotion controllers that operate without the use of motion capture data, and that metabolic energy expenditure provides a simple and unifying measurement of effort that can be used for both walking and running control optimization.
Format de citation
WANG, Jack M., et al. Optimizing locomotion controllers using biologically-based actuators and objectives. ACM TRANSACTIONS ON GRAPHICS, 2012, 31: 1–11.