Files
bf_original_balance_chassis/application/chassis/balance.c
2024-03-23 21:02:42 +08:00

168 lines
5.5 KiB
C

// app
#include "balance.h"
#include "linkNleg.h"
#include "robot_def.h"
#include "general_def.h"
#include "ins_task.h"
#include "HT04.h"
#include "LK9025.h"
#include "controller.h"
#include "can_comm.h"
#include "super_cap.h"
#include "user_lib.h"
#include "remote_control.h"
#include "referee_task.h"
#include "stdint.h"
#include "arm_math.h" // 需要用到较多三角函数
#include "bsp_dwt.h"
#include "bsp_log.h"
// 计时变量
static uint32_t balance_dwt_cnt;
static float del_t;
// 底盘拥有的实例模块
static INS_t *Chassis_IMU_data;
static RC_ctrl_t *rc_data; // 底盘单独调试用
static Chassis_Ctrl_Cmd_s chassis_cmd_recv;
// 四个关节电机和两个驱动轮电机
static HTMotorInstance *lf, *lb, *rf, *rb, *joint[4]; // 指针数组方便传参和调试
static LKMotorInstance *l_driven, *r_driven, *driven[2];
// 两个腿的参数,0为左腿,1为右腿
static LinkNPodParam l_side, r_side;
static ChassisParam chassis;
// 底盘状态
static Robot_Status_e chassis_status;
void BalanceInit()
{
rc_data = RemoteControlInit(&huart3);
Chassis_IMU_data = INS_Init();
// 关节电机
Motor_Init_Config_s joint_conf = {
// 写一个,剩下的修改方向和id即可
.can_init_config = {
.can_handle = &hcan1},
.controller_setting_init_config = {
.close_loop_type = OPEN_LOOP,
.outer_loop_type = OPEN_LOOP,
.motor_reverse_flag = FEEDBACK_DIRECTION_NORMAL,
.angle_feedback_source = MOTOR_FEED,
.speed_feedback_source = MOTOR_FEED,
},
.motor_type = HT04};
joint_conf.can_init_config.tx_id = 1;
joint_conf.can_init_config.rx_id = 11;
joint[LF] = lf = HTMotorInit(&joint_conf);
joint_conf.can_init_config.tx_id = 2;
joint_conf.can_init_config.rx_id = 12;
joint[LB] = lb = HTMotorInit(&joint_conf);
joint_conf.can_init_config.tx_id = 3;
joint_conf.can_init_config.rx_id = 13;
joint[RF] = rf = HTMotorInit(&joint_conf);
joint_conf.can_init_config.tx_id = 4;
joint_conf.can_init_config.rx_id = 14;
joint[RB] = rb = HTMotorInit(&joint_conf);
// 驱动轮电机
Motor_Init_Config_s driven_conf = {
// 写一个,剩下的修改方向和id即可
.can_init_config.can_handle = &hcan2,
.controller_setting_init_config = {
.angle_feedback_source = MOTOR_FEED,
.speed_feedback_source = MOTOR_FEED,
.outer_loop_type = OPEN_LOOP,
.close_loop_type = OPEN_LOOP,
.motor_reverse_flag = MOTOR_DIRECTION_NORMAL,
},
.motor_type = LK9025,
};
driven_conf.can_init_config.tx_id = 1;
driven[RD] = r_driven = LKMotorInit(&driven_conf);
driven_conf.can_init_config.tx_id = 2;
driven[LD] = l_driven = LKMotorInit(&driven_conf);
// 状态初始化
chassis_status = ROBOT_READY;
DWT_GetDeltaT(&balance_dwt_cnt);
}
static void EnableAllMotor() /* 打开所有电机 */
{
for (uint8_t i = 0; i < JOINT_CNT; i++) // 打开关节电机
HTMotorEnable(joint[i]);
for (uint8_t i = 0; i < DRIVEN_CNT; i++) // 打开驱动电机
LKMotorEnable(driven[i]);
}
/* 切换底盘遥控器控制和云台双板控制 */
static void ControlSwitch()
{
// 右侧拨杆向下,进入遥控器底盘控制,此时不响应云台控制指令
if (switch_is_down(rc_data->rc.switch_right) && RemoteControlIsOnline())
{
if (rc_data->rc.rocker_l1 < -600)
{
chassis_cmd_recv.chassis_mode = CHASSIS_RESET;
chassis_cmd_recv.vx = 0.5 * (float)rc_data[TEMP].rc.rocker_r1; // speed x, unit m/s
}
else
{
chassis_cmd_recv.chassis_mode = CHASSIS_FREE_DEBUG; // 自由转动&前后
chassis_cmd_recv.vx = 0.002 * (float)rc_data[TEMP].rc.rocker_r1; // speed x, unit m/s
}
}
else
chassis_cmd_recv.chassis_mode = CHASSIS_ZERO_FORCE; // 皆离线,急停
}
/**
* @brief 将电机和imu的数据组装为LinkNPodParam结构体和chassisParam结构体
*
* @note HT04电机上电的编码器位置为零(校准过),请看Link2Pod()的note,以及HT04.c中的电机解码部分
* @note 海泰04电机顺时针旋转为正; LK9025电机逆时针旋转为正,此处皆需要转换为模型中给定的正方向
*
*/
static void ParamAssemble()
{
// 机体参数,视为平面刚体
chassis.pitch = Chassis_IMU_data->Pitch * DEGREE_2_RAD;
chassis.pitch_w = Chassis_IMU_data->Gyro[0];
chassis.yaw = Chassis_IMU_data->YawTotalAngle * DEGREE_2_RAD;
chassis.wz = Chassis_IMU_data->Gyro[2];
chassis.roll = Chassis_IMU_data->Roll * DEGREE_2_RAD;
chassis.roll_w = Chassis_IMU_data->Gyro[1];
// HT04电机的角度是顺时针为正,LK9025电机的角度是逆时针为正
l_side.phi1 = PI + LIMIT_LINK_RAD - lb->measure.total_angle;
l_side.phi1_w = -lb->measure.speed_rads;
l_side.phi4 = -lf->measure.total_angle - LIMIT_LINK_RAD;
l_side.phi4_w = -lf->measure.speed_rads;
l_side.w_ecd = l_driven->measure.speed_rads;
r_side.phi1 = PI + LIMIT_LINK_RAD + rb->measure.total_angle;
r_side.phi1_w = rb->measure.speed_rads;
r_side.phi4 = rf->measure.total_angle - LIMIT_LINK_RAD;
r_side.phi4_w = rf->measure.speed_rads;
r_side.w_ecd = -r_driven->measure.speed_rads;
}
void BalanceTask()
{
del_t = DWT_GetDeltaT(&balance_dwt_cnt);
// 切换遥控器控制or云台板控制
ControlSwitch();
// 参数组装
ParamAssemble();
// 将五连杆映射成单杆
Link2Leg(&l_side, &chassis);
Link2Leg(&r_side, &chassis);
}