SELF-ORGANIZED CONTROL OF BIPEDAL LOCOMOTION BY NEURAL OSCILLATORS IN UNPREDICTABLE ENVIRONMENT

被引:715
作者
TAGA, G
YAMAGUCHI, Y
SHIMIZU, H
机构
[1] Faculty of Pharmaceutical Sciences, University of Tokyo Hongo, Tokyo, 113, Bunkyo-ku
关键词
D O I
10.1007/BF00198086
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
A new principle of sensorimotor control of legged locomotion in an unpredictable environment is proposed on the basis of neurophysiological knowledge and a theory of nonlinear dynamics. Stable and flexible locomotion is realized as a global limit cycle generated by a global entrainment between the rhythmic activities of a nervous system composed of coupled neural oscillators and the rhythmic movements of a musculo-skeletal system including interaction with its environment. Coordinated movements are generated not by slaving to an explicit representation of the precise trajectories of the movement of each part but by dynamic interactions among the nervous system, the musculo-skeletal system and the environment. The performance of a bipedal model based on the above principle was investigated by computer simulation. Walking movements stable to mechanical perturbations and to environmental changes were obtained. Moreover, the model generated not only the walking movement but also the running movement by changing a single parameter nonspecific to the movement. The transitions between the gait patterns occurred with hysteresis.
引用
收藏
页码:147 / 159
页数:13
相关论文
共 39 条
[1]   PERIPHERAL CONTROL OF THE CATS STEP CYCLE .2. ENTRAINMENT OF THE CENTRAL PATTERN GENERATORS FOR LOCOMOTION BY SINUSOIDAL HIP MOVEMENTS DURING FICTIVE LOCOMOTION [J].
ANDERSSON, O ;
GRILLNER, S .
ACTA PHYSIOLOGICA SCANDINAVICA, 1983, 118 (03) :229-239
[2]  
[Anonymous], 1983, SYNERGETICS INTRO
[3]  
ARSHAVSKY YI, 1984, CEREBELLUM RHYTHMICA
[4]   ON THE DEFINITION OF CENTRAL PATTERN GENERATOR AND ITS SENSORY CONTROL [J].
BASSLER, U .
BIOLOGICAL CYBERNETICS, 1986, 54 (01) :65-69
[5]   PHASE PLANE MODELING OF LEG MOTION [J].
BEUTER, A ;
FLASHNER, H ;
ARABYAN, A .
BIOLOGICAL CYBERNETICS, 1986, 53 (05) :273-284
[6]  
Brown TG, 1914, J PHYSIOL-LONDON, V48, P18
[7]   ADAPTIVE NEURAL OSCILLATOR USING CONTINUOUS-TIME BACK-PROPAGATION LEARNING [J].
DOYA, K ;
YOSHIZAWA, S .
NEURAL NETWORKS, 1989, 2 (05) :375-385
[8]   GENERATION OF A LOCOMOTORY RHYTHM BY A NEURAL NETWORK WITH RECURRENT CYCLIC INHIBITION [J].
FRIESEN, WO ;
STENT, GS .
BIOLOGICAL CYBERNETICS, 1977, 28 (01) :27-40
[9]   WATER UPTAKE, DIAMETER CHANGE, AND NONLINEAR DIFFUSION IN TREE STEMS [J].
PARLANGE, JY ;
TURNER, NC ;
WAGGONER, PE .
PLANT PHYSIOLOGY, 1975, 55 (02) :247-250
[10]   NEUROBIOLOGICAL BASES OF RHYTHMIC MOTOR ACTS IN VERTEBRATES [J].
GRILLNER, S .
SCIENCE, 1985, 228 (4696) :143-148