'FMTstar'

This commit is contained in:
yue qi
2020-08-07 21:51:44 -07:00
parent c251a2f0c2
commit a1f051c3bf
4 changed files with 29 additions and 10 deletions
+29 -10
View File
@@ -30,6 +30,7 @@ class FMT_star:
self.x0, self.xt = tuple(self.env.start), tuple(self.env.goal) # used for sample free
self.n = 1000 # number of samples
self.radius = 2.5 # radius of the ball
# self.radius = 40 * np.sqrt((np.log(self.n) / self.n))
# sets
self.Vopen, self.Vopen_queue, self.Vclosed, self.V, self.Vunvisited, self.c = self.initNodeSets()
# make space for save
@@ -37,6 +38,7 @@ class FMT_star:
# additional
self.done = True
self.Path = []
self.Parent = {}
def generateSampleSet(self, n):
V = set()
@@ -72,9 +74,16 @@ class FMT_star:
def Save(self, V_associated, node):
self.neighbors[node] = V_associated
def path(self, z, T):
V, E = T
def path(self, z, initT):
path = []
s = self.xgoal
i = 0
while s != self.xinit:
path.append((s, self.Parent[s]))
s = self.Parent[s]
if i > self.n:
break
i += 1
return path
def Cost(self, x, y):
@@ -93,34 +102,44 @@ class FMT_star:
ind = 0
while z != self.xgoal:
Vopen_new = set()
Nz = self.Near(self.Vunvisited, z, rn)
Xnear = Nz.intersection(self.Vunvisited)
#Nz = self.Near(self.Vunvisited, z, rn)
#self.Save(Nz, z)
#Xnear = Nz.intersection(self.Vunvisited)
Xnear = self.Near(self.Vunvisited, z ,rn)
self.Save(Xnear, z)
for x in Xnear:
Nx = self.Near(self.V.difference({x}), x, rn)
self.Save(Nx, x)
Ynear = list(Nx.intersection(self.Vopen))
#Nx = self.Near(self.V.difference({x}), x, rn)
#self.Save(Nx, x)
#Ynear = list(Nx.intersection(self.Vopen))
Ynear = list(self.Near(self.Vopen, x, rn))
# self.Save(set(Ynear), x)
ymin = Ynear[np.argmin([self.c[y] + self.Cost(y,x) for y in Ynear])] # DP programming equation
collide, _ = isCollide(self, ymin, x)
if not collide:
E.add((ymin, x)) # straight line joining ymin and x is collision free
Vopen_new.add(x)
self.Parent[x] = z
self.Vunvisited = self.Vunvisited.difference({x})
self.c[x] = self.c[ymin] + self.Cost(ymin, x) # estimated cost-to-arrive from xinit in tree T = (VopenUVclosed, E)
# update open set
print(len(self.Vopen))
self.Vopen = self.Vopen.union(Vopen_new).difference({z})
self.Vclosed.add(z)
if len(self.Vopen) == 0:
print('Failure')
return
ind += 1
self.visualization(ind, E)
print(str(ind) + ' node expanded')
# self.visualization(ind, E)
# update current node
Vopenlist = list(self.Vopen)
z = Vopenlist[np.argmin([self.c[y] for y in self.Vopen])]
# creating the tree
T = (self.Vopen.union(self.Vclosed), E)
return self.path(z, T)
self.done = True
self.Path = self.path(z, T)
self.visualization(ind, E)
plt.show()
# return self.path(z, T)
def visualization(self, ind, E):
if ind % 100 == 0 or self.done: