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【重要问题解决】PID挪到硬件定时器中,解决控制不及时导致的抖动问题

paint_robot_new-v1.5
Lizongdi 2 weeks ago
parent
commit
db614823eb
  1. 117
      RBcore/BHBF.c
  2. 3
      RBcore/drv_interface.c
  3. 10
      RBcore/include/BHBF.h
  4. 182
      RBcore/msp_Timer.c
  5. 28
      project/paint_robot_new/paint_robot_new.c

117
RBcore/BHBF.c

@ -27,8 +27,7 @@
/*----------------------------------------------* /*----------------------------------------------*
* 外部函数原型说明 * * 外部函数原型说明 *
*----------------------------------------------*/ *----------------------------------------------*/
double Angle_Tune_PID(double CurrentAngle, double TargetAngle, double Position_KP,
double Position_KI, double Position_KD, double MaxValue);
/*----------------------------------------------* /*----------------------------------------------*
* 内部函数原型说明 * * 内部函数原型说明 *
*----------------------------------------------*/ *----------------------------------------------*/
@ -58,11 +57,6 @@ static void RBcore_ModuleHandler(const Msg_t *pstMsg)
static int iSpeed = -1; // 表示由RD1转换来的速度值 static int iSpeed = -1; // 表示由RD1转换来的速度值
static int aiMotorSpeed[2] = {0}; //0索引表示左,1索引表示右,多轮时到对应motor的MOTOR_CMD_SET_SPEED命令自行处理 static int aiMotorSpeed[2] = {0}; //0索引表示左,1索引表示右,多轮时到对应motor的MOTOR_CMD_SET_SPEED命令自行处理
static int g_dletAngle = 0; //PID最终计算补偿值
static int32_t g_iPIDAngle = 0; //当前角度
static uint32_t uiLastSendTick = 0; //上一次时间戳,用于控制直线行驶距离
static int bTimerStarted = 0; //直线行驶距离单次触发标志
switch (pstMsg->m_uiMsgID) switch (pstMsg->m_uiMsgID)
{ {
case RBCORE_CMD_STOP_ALL: case RBCORE_CMD_STOP_ALL:
@ -71,14 +65,6 @@ static void RBcore_ModuleHandler(const Msg_t *pstMsg)
MsgCenter_SendTo(MODULE_NAME_CUSTOM, COMMON_CMD_STOP_ALL, NULL, 0); MsgCenter_SendTo(MODULE_NAME_CUSTOM, COMMON_CMD_STOP_ALL, NULL, 0);
break; break;
} }
case RBCORE_GET_TL720D_ROLL:
{
if (pstMsg->m_uiDataLen >= sizeof(int32_t))
{
RD_MEMCPY(&g_iPIDAngle, pstMsg->m_aucData, sizeof(int32_t));
}
break;
}
case RBCORE_CMD_MANUAL_FORWARD: case RBCORE_CMD_MANUAL_FORWARD:
{ {
if (iSpeed >= 0) if (iSpeed >= 0)
@ -119,107 +105,6 @@ static void RBcore_ModuleHandler(const Msg_t *pstMsg)
} }
break; break;
} }
case RBCORE_CMD_RESET_STRAIGHT:
{
uiLastSendTick = 0;
bTimerStarted = 0;
break;
}
case RBCORE_CMD_STRAIGHT_DRIVE:
{
BHBF_straight_drive_Cmd stCmd = {0};
if (pstMsg->m_uiDataLen >= sizeof(stCmd))
{
RD_MEMCPY(&stCmd, pstMsg->m_aucData, sizeof(stCmd));
if (stCmd.m_iTime > 0 && 0 == bTimerStarted)
{
uiLastSendTick = Rd_GetTime();
bTimerStarted = 1; // 开始计时
}
if (0 == stCmd.m_iMode)
{
break;
}
if (abs(g_iPIDAngle - stCmd.m_iAngle) <= g_stCV.PID_mid.PID_Angle)
{
if (abs(g_iPIDAngle - stCmd.m_iAngle) < g_stCV.PID_low.PID_Angle)
{
g_dletAngle = Angle_Tune_PID((double)g_iPIDAngle, stCmd.m_iAngle,
g_stCV.PID_low.Kp, g_stCV.PID_low.Ki, g_stCV.PID_low.Kd, 10);
}
else
{
g_dletAngle = Angle_Tune_PID((double)g_iPIDAngle, stCmd.m_iAngle,
g_stCV.PID_mid.Kp, g_stCV.PID_mid.Ki, g_stCV.PID_mid.Kd, 10);
}
if (stCmd.m_iMode > 0)
{
aiMotorSpeed[0] = (g_stCV.Lane_Change_Speed_m_per_min * 10) - g_dletAngle ;
aiMotorSpeed[1] = (g_stCV.Lane_Change_Speed_m_per_min * 10) + g_dletAngle ;
}
else
{
aiMotorSpeed[0] = -(g_stCV.Lane_Change_Speed_m_per_min * 10) - g_dletAngle ;
aiMotorSpeed[1] = -(g_stCV.Lane_Change_Speed_m_per_min * 10) + g_dletAngle ;
}
}
else
{
g_dletAngle = Angle_Tune_PID((double)g_iPIDAngle, stCmd.m_iAngle,
g_stCV.PID_high.Kp, g_stCV.PID_high.Ki, g_stCV.PID_high.Kd,50);
aiMotorSpeed[0] = -g_dletAngle ;
aiMotorSpeed[1] = g_dletAngle ;
}
if (stCmd.m_iTime > 0 && (int32_t)(Rd_GetTime() - uiLastSendTick) >= stCmd.m_iTime)// 到时间停止
{
aiMotorSpeed[0] = 0;
aiMotorSpeed[1] = 0;
}
MsgCenter_SendTo(MODULE_NAME_MOTOR, MOTOR_SET_SPEED, aiMotorSpeed, sizeof(aiMotorSpeed));
if (aiMotorSpeed[0] == 0 && aiMotorSpeed[1] == 0)
{
MsgCenter_SendTo(MODULE_NAME_CUSTOM, CUSTOM_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
}
}
break;
}
case RBCORE_CMD_TURN_ANGLE:
{
int iTargetAngle = 0;
if (pstMsg->m_uiDataLen >= sizeof(int))
{
RD_MEMCPY(&iTargetAngle, pstMsg->m_aucData, sizeof(int));
if (abs(g_iPIDAngle - iTargetAngle) <= 50)
{
aiMotorSpeed[0] = 0;
aiMotorSpeed[1] = 0;
}
else if (abs(g_iPIDAngle - iTargetAngle) <= 1000)
{
g_dletAngle = Angle_Tune_PID((double)g_iPIDAngle, iTargetAngle, 1, 0,0.5, 10);
aiMotorSpeed[0] = -g_dletAngle ;
aiMotorSpeed[1] = g_dletAngle;
}
else
{
g_dletAngle = Angle_Tune_PID((double)g_iPIDAngle, iTargetAngle, 2, 0, 0.5, 85);
aiMotorSpeed[0] = -g_dletAngle ;
aiMotorSpeed[1] = g_dletAngle ;
}
MsgCenter_SendTo(MODULE_NAME_MOTOR, MOTOR_SET_SPEED, aiMotorSpeed, sizeof(aiMotorSpeed));
if (aiMotorSpeed[0] == 0 && aiMotorSpeed[1] == 0)
{
MsgCenter_SendTo(MODULE_NAME_CUSTOM, CUSTOM_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
}
}
break;
}
case RBCORE_GET_VEHICLE_SPEED: case RBCORE_GET_VEHICLE_SPEED:
{ {
if (pstMsg->m_uiDataLen >= sizeof(int)) if (pstMsg->m_uiDataLen >= sizeof(int))

3
RBcore/drv_interface.c

@ -256,6 +256,7 @@ void TL720D_Init(void);
void RBcore_Init(void); void RBcore_Init(void);
void controller_init(void); void controller_init(void);
void daemon_Init(void); void daemon_Init(void);
void Timer_Init(void);
void Drv_InterfaceInit(void) void Drv_InterfaceInit(void)
{ {
@ -306,4 +307,6 @@ void Drv_InterfaceInit(void)
TL720D_Init(); TL720D_Init();
daemon_Init(); daemon_Init();
Timer_Init();
} }

10
RBcore/include/BHBF.h

@ -72,6 +72,7 @@ extern "C"{
#define MODULE_NAME_CUSTOM "custom" #define MODULE_NAME_CUSTOM "custom"
#define MODULE_NAME_SENDIV "sendiv" #define MODULE_NAME_SENDIV "sendiv"
#define MODULE_NAME_DAEMON "daemon" #define MODULE_NAME_DAEMON "daemon"
#define MODULE_NAME_TIMER "timer"
typedef enum { typedef enum {
COMMON_CMD_SHOW_INFO, // 终端信息展示 COMMON_CMD_SHOW_INFO, // 终端信息展示
@ -87,10 +88,6 @@ typedef enum {
RBCORE_CMD_MANUAL_BACKWARD, // 机器人手动后退 RBCORE_CMD_MANUAL_BACKWARD, // 机器人手动后退
RBCORE_CMD_MANUAL_TURNLEFT, // 机器人手动左转 RBCORE_CMD_MANUAL_TURNLEFT, // 机器人手动左转
RBCORE_CMD_MANUAL_TURNRIGHT, // 机器人手动右转 RBCORE_CMD_MANUAL_TURNRIGHT, // 机器人手动右转
RBCORE_CMD_STRAIGHT_DRIVE, // 机器人直线行驶命令格式为BHBF_straight_drive_Cmd
RBCORE_CMD_RESET_STRAIGHT, // 上一条命令支持计时前进,这里重置计时
RBCORE_CMD_TURN_ANGLE, // 机器人转向目标角度(带PID)
RBCORE_GET_TL720D_ROLL, // 获取陀螺仪横滚角(PID计算)
RBCORE_GET_VEHICLE_SPEED, // 获取机器人速度(内部速度归一化) RBCORE_GET_VEHICLE_SPEED, // 获取机器人速度(内部速度归一化)
CUSTOM_START = 0x0300, // *机器人特性命令开始* CUSTOM_START = 0x0300, // *机器人特性命令开始*
@ -115,6 +112,11 @@ typedef enum {
DAEMON_SET_BUTTON_RESET, // 置位ComError_Remote_Button_Reset_State DAEMON_SET_BUTTON_RESET, // 置位ComError_Remote_Button_Reset_State
DAEMON_SET_MK32_SERIAL, // 置位ComError_MK32_Serial DAEMON_SET_MK32_SERIAL, // 置位ComError_MK32_Serial
DAEMON_SET_MK32_UDP, // 置位ComError_MK32_UDP DAEMON_SET_MK32_UDP, // 置位ComError_MK32_UDP
TIMER_START = 0x0600, // *2ms定时器命令
TIMER_CMD_STRAIGHT_DRIVE, // 机器人直线行驶命令格式为BHBF_straight_drive_Cmd
TIMER_CMD_RESET_STRAIGHT, // 上一条命令支持计时前进,这里重置计时
TIMER_CMD_TURN_ANGLE, // 机器人转向目标角度(带PID)
} BHBF_Cmd_e; } BHBF_Cmd_e;
#define THREAD_DEFAULT_STACK 4096 #define THREAD_DEFAULT_STACK 4096

182
RBcore/msp_Timer.c

@ -0,0 +1,182 @@
/******************************************************************************
版权所有 (C), 2018-2099, Radkil
******************************************************************************
文 件 名 : msp_Timer.c
版 本 号 : 初稿
作 者 : radkil
生成日期 : 2026年9月17日
最近修改 :
功能描述 : 硬件定时器任务
修改历史 :
1.日 期 : 2026年9月17日
作 者 : radkil
修改内容 : 创建文件
******************************************************************************/
#include "BHBF.h"
#include "msg_center.h"
#include "rd_time.h"
#include "tim.h"
/*----------------------------------------------*
* 外部变量说明 *
*----------------------------------------------*/
extern volatile int32_t g_RF_Angle_Roll;
/*----------------------------------------------*
* 外部函数原型说明 *
*----------------------------------------------*/
double Angle_Tune_PID(double CurrentAngle, double TargetAngle, double Position_KP,
double Position_KI, double Position_KD, double MaxValue);
/*----------------------------------------------*
* 内部函数原型说明 *
*----------------------------------------------*/
/*----------------------------------------------*
* 全局变量 *
*----------------------------------------------*/
/*----------------------------------------------*
* 模块级变量 *
*----------------------------------------------*/
static uint32_t g_uiTimModuleID = 0;
/*----------------------------------------------*
* 常量定义 *
*----------------------------------------------*/
/*----------------------------------------------*
* 宏定义 *
*----------------------------------------------*/
static void Timer_ModuleHandler(const Msg_t *pstMsg)
{
if (NULL == pstMsg)
{
return;
}
static int aiMotorSpeed[2] = {0};
static int g_dletAngle = 0; //PID最终计算补偿值
static uint32_t uiLastSendTick = 0; //上一次时间戳,用于控制直线行驶距离
static int bTimerStarted = 0; //直线行驶距离单次触发标志
switch (pstMsg->m_uiMsgID)
{
case TIMER_CMD_RESET_STRAIGHT:
{
uiLastSendTick = 0;
bTimerStarted = 0;
break;
}
case TIMER_CMD_STRAIGHT_DRIVE:
{
BHBF_straight_drive_Cmd stCmd = {0};
if (pstMsg->m_uiDataLen >= sizeof(stCmd))
{
RD_MEMCPY(&stCmd, pstMsg->m_aucData, sizeof(stCmd));
if (stCmd.m_iTime > 0 && 0 == bTimerStarted)
{
uiLastSendTick = Rd_GetTime();
bTimerStarted = 1; // 开始计时
}
if (0 == stCmd.m_iMode)
{
break;
}
if (abs(g_RF_Angle_Roll - stCmd.m_iAngle) <= g_stCV.PID_mid.PID_Angle)
{
if (abs(g_RF_Angle_Roll - stCmd.m_iAngle) < g_stCV.PID_low.PID_Angle)
{
g_dletAngle = Angle_Tune_PID((double)g_RF_Angle_Roll, stCmd.m_iAngle,
g_stCV.PID_low.Kp, g_stCV.PID_low.Ki, g_stCV.PID_low.Kd, 10);
}
else
{
g_dletAngle = Angle_Tune_PID((double)g_RF_Angle_Roll, stCmd.m_iAngle,
g_stCV.PID_mid.Kp, g_stCV.PID_mid.Ki, g_stCV.PID_mid.Kd, 10);
}
if (stCmd.m_iMode > 0)
{
aiMotorSpeed[0] = (g_stCV.Lane_Change_Speed_m_per_min * 10) - g_dletAngle ;
aiMotorSpeed[1] = (g_stCV.Lane_Change_Speed_m_per_min * 10) + g_dletAngle ;
}
else
{
aiMotorSpeed[0] = -(g_stCV.Lane_Change_Speed_m_per_min * 10) - g_dletAngle ;
aiMotorSpeed[1] = -(g_stCV.Lane_Change_Speed_m_per_min * 10) + g_dletAngle ;
}
}
else
{
g_dletAngle = Angle_Tune_PID((double)g_RF_Angle_Roll, stCmd.m_iAngle,
g_stCV.PID_high.Kp, g_stCV.PID_high.Ki, g_stCV.PID_high.Kd,50);
aiMotorSpeed[0] = -g_dletAngle ;
aiMotorSpeed[1] = g_dletAngle ;
}
if (stCmd.m_iTime > 0 && (int32_t)(Rd_GetTime() - uiLastSendTick) >= stCmd.m_iTime)// 到时间停止
{
aiMotorSpeed[0] = 0;
aiMotorSpeed[1] = 0;
}
MsgCenter_SendTo(MODULE_NAME_MOTOR, MOTOR_SET_SPEED, aiMotorSpeed, sizeof(aiMotorSpeed));
if (aiMotorSpeed[0] == 0 && aiMotorSpeed[1] == 0)
{
MsgCenter_SendTo(MODULE_NAME_CUSTOM, CUSTOM_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
}
}
break;
}
case TIMER_CMD_TURN_ANGLE:
{
int iTargetAngle = 0;
if (pstMsg->m_uiDataLen >= sizeof(int))
{
RD_MEMCPY(&iTargetAngle, pstMsg->m_aucData, sizeof(int));
if (abs(g_RF_Angle_Roll - iTargetAngle) <= 50)
{
aiMotorSpeed[0] = 0;
aiMotorSpeed[1] = 0;
}
else if (abs(g_RF_Angle_Roll - iTargetAngle) <= 1000)
{
g_dletAngle = Angle_Tune_PID((double)g_RF_Angle_Roll, iTargetAngle, 1, 0,0.5, 10);
aiMotorSpeed[0] = -g_dletAngle ;
aiMotorSpeed[1] = g_dletAngle;
}
else
{
g_dletAngle = Angle_Tune_PID((double)g_RF_Angle_Roll, iTargetAngle, 2, 0, 0.5, 85);
aiMotorSpeed[0] = -g_dletAngle ;
aiMotorSpeed[1] = g_dletAngle ;
}
MsgCenter_SendTo(MODULE_NAME_MOTOR, MOTOR_SET_SPEED, aiMotorSpeed, sizeof(aiMotorSpeed));
if (aiMotorSpeed[0] == 0 && aiMotorSpeed[1] == 0)
{
MsgCenter_SendTo(MODULE_NAME_CUSTOM, CUSTOM_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
}
}
break;
}
default:
break;
}
}
void Timer_Task(void)
{
MsgCenter_Process(g_uiTimModuleID);
}
void Timer_Init(void)
{
HAL_TIM_Base_Start_IT(&htim8);
g_uiTimModuleID = MsgCenter_Register(MODULE_NAME_TIMER, Timer_ModuleHandler);
}

28
project/paint_robot_new/paint_robot_new.c

@ -177,7 +177,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
{ {
RD_MEMCPY(&stCmd, pstMsg->m_aucData, sizeof(stCmd)); RD_MEMCPY(&stCmd, pstMsg->m_aucData, sizeof(stCmd));
int iTargetAngle = g_stCV.RobotUpAngleValue; int iTargetAngle = g_stCV.RobotUpAngleValue;
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
} }
break; break;
} }
@ -200,7 +200,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotLeftAngleValue + iLeft_Compensation, .m_iAngle = g_stCV.RobotLeftAngleValue + iLeft_Compensation,
.m_iTime = RunTime_DistanceCm_SpeedE_2MPMin() .m_iTime = RunTime_DistanceCm_SpeedE_2MPMin()
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
else if (g_stPV.RunMode == 3)//竖直从左往右作业 上端 向右换道 最终头朝上 else if (g_stPV.RunMode == 3)//竖直从左往右作业 上端 向右换道 最终头朝上
{ {
@ -209,7 +209,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotLeftAngleValue - iRight_Compensation, .m_iAngle = g_stCV.RobotLeftAngleValue - iRight_Compensation,
.m_iTime = RunTime_DistanceCm_SpeedE_2MPMin() .m_iTime = RunTime_DistanceCm_SpeedE_2MPMin()
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
} }
else if (iTargetAngle == g_stCV.RobotRightAngleValue) else if (iTargetAngle == g_stCV.RobotRightAngleValue)
@ -221,7 +221,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotRightAngleValue + iLeft_Compensation, .m_iAngle = g_stCV.RobotRightAngleValue + iLeft_Compensation,
.m_iTime = RunTime_DistanceCm_SpeedE_2MPMin() .m_iTime = RunTime_DistanceCm_SpeedE_2MPMin()
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
else if (g_stPV.RunMode == 3)//竖直从左往右作业 下端 向右换道 最终头朝上 else if (g_stPV.RunMode == 3)//竖直从左往右作业 下端 向右换道 最终头朝上
{ {
@ -230,7 +230,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotRightAngleValue - iRight_Compensation, .m_iAngle = g_stCV.RobotRightAngleValue - iRight_Compensation,
.m_iTime = RunTime_DistanceCm_SpeedE_2MPMin() .m_iTime = RunTime_DistanceCm_SpeedE_2MPMin()
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
} }
else if (iTargetAngle == g_stCV.RobotDownAngleValue) else if (iTargetAngle == g_stCV.RobotDownAngleValue)
@ -324,12 +324,12 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
if (g_stPV.RunMode == 2)//竖直从右往左作业 下端 向左换道 最终头朝上 if (g_stPV.RunMode == 2)//竖直从右往左作业 下端 向左换道 最终头朝上
{ {
iTargetAngle = g_stCV.RobotLeftAngleValue; iTargetAngle = g_stCV.RobotLeftAngleValue;
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
} }
else if (g_stPV.RunMode == 3)//竖直从左往右作业 下端 向右换道 最终头朝上 else if (g_stPV.RunMode == 3)//竖直从左往右作业 下端 向右换道 最终头朝上
{ {
iTargetAngle = g_stCV.RobotRightAngleValue; iTargetAngle = g_stCV.RobotRightAngleValue;
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
} }
g_RB_State = 0; g_RB_State = 0;
break; break;
@ -339,12 +339,12 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
if (g_stPV.RunMode == 2)//竖直从右往左作业 上端 向左换道 最终头朝上 if (g_stPV.RunMode == 2)//竖直从右往左作业 上端 向左换道 最终头朝上
{ {
iTargetAngle = g_stCV.RobotRightAngleValue; iTargetAngle = g_stCV.RobotRightAngleValue;
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
} }
else if (g_stPV.RunMode == 3)//竖直从左往右作业 上端 向右换道 最终头朝上 else if (g_stPV.RunMode == 3)//竖直从左往右作业 上端 向右换道 最终头朝上
{ {
iTargetAngle = g_stCV.RobotLeftAngleValue; iTargetAngle = g_stCV.RobotLeftAngleValue;
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_TURN_ANGLE, &iTargetAngle, sizeof(iTargetAngle));
} }
g_RB_State = 0; g_RB_State = 0;
break; break;
@ -353,7 +353,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
{ {
if (g_stPV.RunMode == 2 || g_stPV.RunMode == 3) if (g_stPV.RunMode == 2 || g_stPV.RunMode == 3)
{ {
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_RESET_STRAIGHT, NULL, 0); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_RESET_STRAIGHT, NULL, 0);
g_RB_State = 0; g_RB_State = 0;
} }
} }
@ -407,7 +407,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration, .m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration,
.m_iTime = -1 .m_iTime = -1
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
g_RB_State = 1; g_RB_State = 1;
} }
@ -428,7 +428,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration, .m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration,
.m_iTime = -1 .m_iTime = -1
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
g_RB_State = 1; g_RB_State = 1;
} }
@ -462,7 +462,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration, .m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration,
.m_iTime = -1 .m_iTime = -1
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
g_RB_State = 1; g_RB_State = 1;
} }
@ -482,7 +482,7 @@ static void Custom_ModuleHandler(const Msg_t *pstMsg)
.m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration, .m_iAngle = g_stCV.RobotUpAngleValue + g_stPV.Vertical_Calibration,
.m_iTime = -1 .m_iTime = -1
}; };
MsgCenter_SendTo(MODULE_NAME_RBCORE, RBCORE_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd)); MsgCenter_SendTo(MODULE_NAME_TIMER, TIMER_CMD_STRAIGHT_DRIVE, &stCmd, sizeof(stCmd));
} }
g_RB_State = 1; g_RB_State = 1;
} }

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