blob: 05739fc500040c52d27b56d104937a67b43b16c0 [file] [log] [blame]
Maxwell Hendersonad312342023-01-10 12:07:47 -08001#!/usr/bin/python3
2
3from __future__ import print_function
4from frc971.control_loops.python import drivetrain
5from frc971.control_loops.python import control_loop
6import sys
7
8import gflags
9import glog
10
11FLAGS = gflags.FLAGS
12
13gflags.DEFINE_bool('plot', False, 'If true, plot the loop response.')
14
15kDrivetrain = drivetrain.DrivetrainParams(
Austin Schuhe70cdeb2023-02-23 21:45:00 -080016 J=6.5,
Maxwell Hendersonad312342023-01-10 12:07:47 -080017 mass=58.0,
18 # TODO(austin): Measure radius a bit better.
19 robot_radius=0.39,
20 wheel_radius=2.5 * 0.0254,
21 motor_type=control_loop.Falcon(),
22 num_motors=3,
23 G=(14.0 / 54.0) * (22.0 / 56.0),
24 q_pos=0.24,
25 q_vel=2.5,
Austin Schuhe70cdeb2023-02-23 21:45:00 -080026 efficiency=0.75,
Maxwell Hendersonad312342023-01-10 12:07:47 -080027 has_imu=True,
28 force=True,
29 kf_q_voltage=1.0,
30 controller_poles=[0.82, 0.82])
31
32
33def main(argv):
34 argv = FLAGS(argv)
35 glog.init()
36
37 if FLAGS.plot:
38 drivetrain.PlotDrivetrainMotions(kDrivetrain)
39 elif len(argv) != 5:
40 print("Expected .h file name and .cc file name")
41 else:
42 # Write the generated constants out to a file.
43 drivetrain.WriteDrivetrain(argv[1:3], argv[3:5], 'y2023', kDrivetrain)
44
45
46if __name__ == '__main__':
47 sys.exit(main(sys.argv))