脚本专栏 
首页 > 脚本专栏 > 浏览文章

python实现nao机器人手臂动作控制

(编辑:jimmy 日期: 2025/7/8 浏览:3 次 )

本文实例为大家分享了python实现nao机器人手臂动作的具体代码,供大家参考,具体内容如下

这些天依然在看nao公司文档的东西,把读过的代码顺手敲了出来。代码依然很简单,但是为什么我要写博客呢?这其中有很大的原因在于,代码是死的,可是读着读着就感觉代码活了,而且,每次读都会有不同的感受。咱就直接看正题吧。

#-*-encoding:UTF-8-*-
import sys
import motion
import almath
from naoqi import ALProxy
 
def StiffnessOn(proxy):
    #we use the body name to signify the collection of all jionts
    pName="Body"
    pStiffnessLists=1.0
    pTimeLists=1.0
    proxy.stiffnessInterpolation(pName,pStiffnessLists,pTimeLists)
 
def main(robotIP):
    ''' example showing a path of two position
    '''
    try:
      motionProxy=ALProxy("ALMotion",robotIP,9559)
    except Exception ,e:
        print"could not create a proxy to almotion"
        print str(e)
 
    try:
      postureProxy=ALProxy("ALRobotPosture",robotIP,9559)
    except Exception ,e:
        print"could not create a proxy to alRobotPosture"
        print str(e)
    #set the nao stiffness on
    StiffnessOn(motionProxy)
 
    #set the nao to standinit
    postureProxy.goToPosture("StandInit",0.5)
 
    effector="LArm"
    space=motion.FRAME_ROBOT
    # AXIS_MASK_VEL=7
    axisMask=almath.AXIS_MASK_VEL
    isAbsolute=False
    #since we are in relative, the current position is zero
    currentPos=[0.0,0.0,0.0,0.0,0.0,0.0]
    #define the changes in relative to the current position 
    dx=0.03      #translation axis x
    dy=0.03      #translation axis y
    dz=0.00      #translation axis z
    dwx=0.00     #rotation axis x
    dwy=0.00     #rotation axis x
    dwz=0.00     #rotation axis x
 
    targetPos=[dx,dy,dz,dwx,dwy,dwz]
 
    #go to the target and back again
    path=[targetPos,currentPos]
    times=[2.0,4.0]#seconds
    motionProxy.positionInterpolation(effector,space,path,axisMask,times,isAbsolute)
 
if __name__=="__main()__":
    robotIP="127.0.0.1"
    if len(sys.argv)<=1:
      print "use default :127.0.0.1"
    else:
      robotIP=sys.argv[1]       
main(robotIP)

接下来是另一个:

#-*-encoding:UTF-8-*-
''' Cartesian control :arm trajectory example'''
 
import sys
import motion
import almath
from naoqi import ALProxy
def StiffnessOn(proxy):
    pName="Body"
    pStiffnessLists=1.0
    pTimeLists=1.0
    proxy.stiffnessInterpolation(pName,pStiffnessLists,pTimeLists)
 
 
def main(robotIP):
    '''showing a hand ellipoid
    '''
    try:
      motionProxy=ALProxy("ALProxy",robotIP,9559)
    except Exception,e:
      print"could not create a proxy "
      print"error was ",e
 
    try:
      postureProxy=ALProxy("ALRobotProxy",robotIP,9559)
    except Exception ,e:
      print"could not create a proxy"
      print "error was",e
 
    #send nao in stiffness on
    setStiffnessOn(motionProxy)
    #send nao to pose init
    postureProxy.goToPosture("StandInit",0.5)
 
    effector="LArm"
    space=motion.FRAME_ROBOT
    path=[
        [0.0,-0.05,+0.00,0.0,0.0,0.0],    #pose1
        [0.0,+0.00,+0.04,0.0,0.0,0.0],    #pose2
        [0.0,+0.04,+0.00,0.0,0.0,0.0],    #pose3
        [0.0,+0.00,-0.02,0.0,0.0,0.0],    #pose4
        [0.0,-0.05,+0.00,0.0,0.0,0.0],    #pose5
        [0.0,+0.00,+0.00,0.0,0.0,0.0]
        ]                #pose6
    axisMask=7
    times=[0.5,1.0,2.0,3.0,4.0,4.5]       #seconds 
    
    isAbsolute=False
    motionProxy.positionInterpolation(effector,space,path,axisMask,times,isAbsolute)
    
if __name__=="__main__":
    robotIP="127.0.0.1"
    if len(sys.argv)<=1:
        print "usage local ip "
    else:
        robotIP=sys.argv[1]
    main(robotIP) 

以上就是本文的全部内容,希望对大家的学习有所帮助,也希望大家多多支持。       

上一篇:django的settings中设置中文支持的实现
下一篇:Django数据库类库MySQLdb使用详解
一句话新闻
一文看懂荣耀MagicBook Pro 16
荣耀猎人回归!七大亮点看懂不只是轻薄本,更是游戏本的MagicBook Pro 16.
人们对于笔记本电脑有一个固有印象:要么轻薄但性能一般,要么性能强劲但笨重臃肿。然而,今年荣耀新推出的MagicBook Pro 16刷新了人们的认知——发布会上,荣耀宣布猎人游戏本正式回归,称其继承了荣耀 HUNTER 基因,并自信地为其打出“轻薄本,更是游戏本”的口号。
众所周知,寻求轻薄本的用户普遍更看重便携性、外观造型、静谧性和打字办公等用机体验,而寻求游戏本的用户则普遍更看重硬件配置、性能释放等硬核指标。把两个看似难以相干的产品融合到一起,我们不禁对它产生了强烈的好奇:作为代表荣耀猎人游戏本的跨界新物种,它究竟做了哪些平衡以兼顾不同人群的各类需求呢?