mirror of
https://github.com/zhm-real/PathPlanning.git
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94 lines
3.0 KiB
Python
94 lines
3.0 KiB
Python
"""
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This is rrt star code for 3D
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@author: yue qi
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"""
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import numpy as np
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from numpy.matlib import repmat
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from collections import defaultdict
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import time
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import matplotlib.pyplot as plt
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import os
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import sys
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sys.path.append(os.path.dirname(os.path.abspath(__file__)) + "/../../Sampling-based Planning/")
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from rrt_3D.env3D import env
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from rrt_3D.utils3D import getDist, sampleFree, nearest, steer, isCollide, near, visualization, cost, path, edgeset, hash3D, dehash
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class rrtstar():
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def __init__(self):
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self.env = env()
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self.Parent = {}
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self.E = edgeset()
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self.V = []
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self.i = 0
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self.maxiter = 10000 # at least 4000 in this env
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self.stepsize = 0.5
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self.gamma = 500
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self.eta = 2*self.stepsize
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self.Path = []
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self.done = False
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def wireup(self,x,y):
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self.E.add_edge([x,y]) # add edge
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self.Parent[hash3D(x)] = y
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def removewire(self,xnear):
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xparent = self.Parent[hash3D(xnear)]
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a = [xnear,xparent]
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self.E.remove_edge(a) # remove and replace old the connection
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def reached(self):
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self.done = True
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xn = near(self,self.env.goal)
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c = [cost(self,x) for x in xn]
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xncmin = xn[np.argmin(c)]
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self.wireup(self.env.goal,xncmin)
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self.V.append(self.env.goal)
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self.Path,self.D = path(self)
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def run(self):
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self.V.append(self.env.start)
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self.ind = 0
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xnew = self.env.start
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print('start rrt*... ')
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self.fig = plt.figure(figsize = (10,8))
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while self.ind < self.maxiter:
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xrand = sampleFree(self)
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xnearest = nearest(self,xrand)
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xnew = steer(self,xnearest,xrand)
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if not isCollide(self,xnearest,xnew):
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Xnear = near(self,xnew)
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self.V.append(xnew) # add point
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visualization(self)
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# minimal path and minimal cost
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xmin, cmin = xnearest, cost(self, xnearest) + getDist(xnearest, xnew)
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# connecting along minimal cost path
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for xnear in Xnear:
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c1 = cost(self, xnear) + getDist(xnew, xnear)
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if not isCollide(self, xnew, xnear) and c1 < cmin:
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xmin, cmin = xnear, c1
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self.wireup(xnew, xmin)
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# rewire
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for xnear in Xnear:
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c2 = cost(self, xnew) + getDist(xnew, xnear)
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if not isCollide(self, xnew, xnear) and c2 < cost(self, xnear):
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self.removewire(xnear)
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self.wireup(xnear, xnew)
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self.i += 1
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self.ind += 1
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# max sample reached
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self.reached()
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print('time used = ' + str(time.time()-starttime))
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print('Total distance = '+str(self.D))
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visualization(self)
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plt.show()
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if __name__ == '__main__':
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p = rrtstar()
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starttime = time.time()
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p.run()
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