Repository for M.A.I.L system's analysis server.
您最多选择25个主题 主题必须以字母或数字开头,可以包含连字符 (-),并且长度不得超过35个字符

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115
  1. import os
  2. import sys
  3. import time
  4. import pandas as pd
  5. import json
  6. import numpy as np
  7. import math
  8. import matplotlib.pyplot as plt
  9. #import sklearn.datasets as data
  10. #import hdbscan ##NOTE: hdbscan needs Cython. please install Cython before use.
  11. import seaborn as sns
  12. import pandas as pd
  13. def draw_plot_cam_1(dataframe, path):
  14. df = dataframe
  15. imgpath = path
  16. sns.set_context('poster')
  17. sns.set_style('white')
  18. sns.set_color_codes()
  19. plot_kwds = {'alpha': 0.5, 'linewidths':0 }
  20. plt.rcParams['figure.figsize'] = 9, 7
  21. fig = plt.figure()
  22. ax = fig.add_subplot(projection = '3d')
  23. ax.scatter(df['x'],df['y'],df['z'], color='g', s=0.3, **plot_kwds)
  24. plt.savefig(path, dpi=660)
  25. plt.clf()
  26. def draw_plot_cam_2(dataframe, path):
  27. df = dataframe
  28. sns.set_context('poster')
  29. sns.set_style('white')
  30. sns.set_color_codes()
  31. plot_kwds = {'alpha': 0.5, 'linewidths':0 }
  32. plt.rcParams['figure.figsize'] = 9, 7
  33. fig = plt.figure()
  34. ax = fig.add_subplot(projection = '3d')
  35. ax.scatter(df['x'],df['y'],df['z'], color='r', s=0.3, **plot_kwds)
  36. plt.savefig(path, dpi=660)
  37. plt.clf()
  38. def draw_xy(dataframe,path):
  39. df = dataframe
  40. path_list=path.split('/')
  41. plt.rcParams['figure.figsize'] = 9, 7
  42. fig=plt.figure()
  43. plt.scatter(df['x'], df['y'], s=0.2)
  44. plt.title(path_list[-1])
  45. plt.savefig(path, dpi=600)
  46. plt.clf()
  47. def draw_yz(dataframe, path):
  48. df = dataframe
  49. path_list=path.split('/')
  50. plt.rcParams['figure.figsize'] = 9, 7
  51. fig=plt.figure()
  52. plt.scatter(df['y'], df['z'], s=0.2)
  53. plt.title(path_list[-1])
  54. plt.savefig(path, dpi=600)
  55. plt.clf()
  56. def draw_xz(dataframe, path):
  57. df = dataframe
  58. path_list=path.split('/')
  59. plt.rcParams['figure.figsize'] = 9, 7
  60. fig=plt.figure()
  61. plt.scatter(df['z'], df['x'], s=0.2)
  62. plt.title(path_list[-1])
  63. plt.savefig(path, dpi=600)
  64. plt.clf()
  65. def draw_plot_total(dataframe, path):
  66. df = dataframe
  67. sns.set_context('poster')
  68. sns.set_style('white')
  69. sns.set_color_codes()
  70. plot_kwds = {'alpha': 0.5, 'linewidths':0 }
  71. plt.rcParams['figure.figsize'] = 9, 7
  72. fig = plt.figure()
  73. ax = fig.add_subplot(projection = '3d')
  74. ax.axes.set_xlim3d(left=-1.8, right=1.8)
  75. ax.axes.set_ylim3d(bottom=-1.8, top=1.8)
  76. ax.axes.set_zlim3d(bottom=0, top=1.8)
  77. ax.set_xlabel('x (left_right)')
  78. ax.set_ylabel('y (head_tail)')
  79. ax.set_zlabel('z (floor_ceiling)')
  80. cam_1 = df[df['cam'] == 1]
  81. cam_2 = df[df['cam'] == 2]
  82. ax.scatter(cam_1['x'],cam_1['y'],cam_1['z'], color='g', s=0.3, **plot_kwds)
  83. ax.scatter(cam_2['x'],cam_2['y'],cam_2['z'], color='r', s=0.3, **plot_kwds)
  84. plt.savefig(path, dpi=660)
  85. plt.clf()
  86. def draw_diff_diff(dataframe, path):
  87. data = dataframe
  88. plt.rcParams['figure.figsize'] =30, 7
  89. #plt.axes().set_aspect('equal')
  90. plt.xlim(data['frame'].min()-10, data['frame'].max()+10)
  91. #l = range(0, len(data['diff_diff']))
  92. #plt.xticks(l*10, data['diff_diff'])
  93. plt.ylim(data['diff_diff'].min(), data['diff_diff'].max())
  94. fig = plt.figure()
  95. plt.plot(data['frame'], data['diff_diff'], color='g')
  96. #plt.gca().set_aspect('auto')
  97. plt.savefig('./diff.png', dpi=600)
  98. plt.clf()