svoe

Dependencies:   mbed mbed-STM32F103C8T6 MPU6050_1

Committer:
dima285
Date:
Sun Nov 11 09:20:35 2018 +0000
Revision:
13:789b451cc27d
Parent:
12:721a9ea55e91
Child:
14:e12d0fdc3a48
1

Who changed what in which revision?

UserRevisionLine numberNew contents of line
dima285 9:8f98b1c277a4 1 float motor_speed[2] = {0,0}; //left, right (real exact current speed of each motor for the next raltime slot) SI
dima285 12:721a9ea55e91 2 //float gy_old;
dima285 12:721a9ea55e91 3 //float vert;//ugol
dima285 9:8f98b1c277a4 4 float max_speed = 2;
dima285 12:721a9ea55e91 5 float max_accel = 5;
dima285 10:5bdd3dfd5f59 6
Stas285 0:e9488589a8ee 7 DigitalOut dir_left(PC_15);
Stas285 0:e9488589a8ee 8 DigitalOut dir_right(PA_2);
Stas285 0:e9488589a8ee 9 DigitalOut motor_enable(PA_0);//sleep inverted
dima285 8:891e4f54e9e2 10 PwmOut step_left(PB_4);
Stas285 0:e9488589a8ee 11 PwmOut step_right(PA_1);
Stas285 0:e9488589a8ee 12
dima285 12:721a9ea55e91 13 void geometric_navigation(){
dima285 10:5bdd3dfd5f59 14
dima285 13:789b451cc27d 15 current.speed = (motor_speed[1] + motor_speed[0])/2.0;
dima285 13:789b451cc27d 16 current.omega = (motor_speed[0] - motor_speed[1])/(2 * half_axis); //rad/s //MOVE TO SKOROST!!!!!
dima285 13:789b451cc27d 17 current.azimuth += current.omega * t_step ;//rad
dima285 13:789b451cc27d 18 current.x += current.speed * t_step * cos(current.azimuth);
dima285 13:789b451cc27d 19 current.y += current.speed * t_step * sin(current.azimuth);
dima285 12:721a9ea55e91 20 current.path += current.speed * t_step;
dima285 12:721a9ea55e91 21 //pc.printf("%3.1f - %3.1f ; %3.1f - %3.1f ; %d\n",target_path,current_path,target_angle,current_angle,motor_busy); //be careful in interrupt
dima285 12:721a9ea55e91 22 }
dima285 10:5bdd3dfd5f59 23
dima285 12:721a9ea55e91 24 void set_motor_speed(float speed_left,float speed_right){
dima285 12:721a9ea55e91 25 motor_speed[0] = speed_left;
dima285 12:721a9ea55e91 26 motor_speed[1] = speed_right;
dima285 10:5bdd3dfd5f59 27
dima285 13:789b451cc27d 28 /* if (motor_speed[0] > max_speed) motor_speed[0] = max_speed;
dima285 9:8f98b1c277a4 29 if (motor_speed[0] < -max_speed) motor_speed[0] = -max_speed;
dima285 9:8f98b1c277a4 30 if (motor_speed[1] > max_speed) motor_speed[1] = max_speed;
dima285 13:789b451cc27d 31 if (motor_speed[1] < -max_speed) motor_speed[1] = -max_speed;*/
dima285 10:5bdd3dfd5f59 32
dima285 12:721a9ea55e91 33 if (motor_speed[1] > 0) dir_right = 1;
dima285 12:721a9ea55e91 34 else dir_right = 0;
dima285 12:721a9ea55e91 35 if (motor_speed[0] > 0) dir_left = 0;
dima285 12:721a9ea55e91 36 else dir_left = 1;
dima285 9:8f98b1c277a4 37 float nu_l = abs(motor_speed[0]/(2*pi*r_wheel))*ppr; //frequency in herz
dima285 9:8f98b1c277a4 38 float nu_r = abs(motor_speed[1]/(2*pi*r_wheel))*ppr; //frequency in herz
dima285 9:8f98b1c277a4 39 if (nu_l < 1) nu_l = 1;
dima285 9:8f98b1c277a4 40 if (nu_r < 1) nu_r = 1;
dima285 10:5bdd3dfd5f59 41 step_right.period_us (1e6/nu_r);
dima285 10:5bdd3dfd5f59 42 step_right = 0.5;
dima285 10:5bdd3dfd5f59 43 step_left.period_us (1e6/nu_l);
dima285 12:721a9ea55e91 44 step_left = 0.5;
dima285 12:721a9ea55e91 45 geometric_navigation();
dima285 10:5bdd3dfd5f59 46 }
dima285 10:5bdd3dfd5f59 47
dima285 10:5bdd3dfd5f59 48 void motor_init()
dima285 10:5bdd3dfd5f59 49 {
dima285 10:5bdd3dfd5f59 50 step_left = 0.5;
dima285 10:5bdd3dfd5f59 51 step_right = 0.5;
Stas285 0:e9488589a8ee 52 motor_enable = 1;
dima285 12:721a9ea55e91 53 }
dima285 12:721a9ea55e91 54
dima285 12:721a9ea55e91 55