#include #include #include "main.h" #include "Encryption.h" #include "Debug.h" #include "Algorithm.h" #include "dc_motor.h" #include "CS1237_LEFTUP.h" #include "CS1237_LEFTLOW.h" #include "CS1237_RIGHTUP.h" #include "CS1237_RIGHTLOW.h" #include "BeepAndLed.h" #define MAIN_DBG_LOG(...) DBG_LOG(__VA_ARGS__) #define MAIN_DBG_ARRAY(ARRAY, SIZE) DBG_ARRAY(ARRAY,SIZE) #define SOFTWARE_VERSION 11 //软件版本 #define HARDWARE_VERSION 20 //硬件版本 AppDetect_t App; static void show(uint8_t ch,int32_t ad) { if(App.Para.Layout.DBGWaveOut == true) { uint8_t bao[7]; bao[0] = 0x5A; bao[1] = ch; bao[2] = ad & 0xFF; bao[3] = ad >> 8 & 0xFF; bao[4] = ad >> 16 & 0xFF; bao[5] = ad >> 24 & 0xFF; bao[6] = 0xA5; DebugUartSend(bao,7); } } void LEFTUP_CS1237AinADataProcessCallBack(int32_t AD) { // if(abs(AD - App.LeftUpCS1237_TrendArray[0]) > 2000000) // { // AD = App.LeftUpCS1237_TrendArray[0]; // } if(App.MotorPara.CaliFlag == true) { AD = AD + App.MotorPara.LU_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)]; for(int i = OSC_CNT-1; i > 0; i--) { App.LeftUpCS1237_TrendArray[i] = App.LeftUpCS1237_TrendArray[i - 1]; } App.LeftUpCS1237_TrendArray[0] = AD; } else{ for(int i = OSC_CNT-1; i > 0; i--) { App.LeftUpCS1237_TrendArray[i] = App.LeftUpCS1237_TrendArray[i - 1]; } App.LeftUpCS1237_TrendArray[0] = AD; } show(1,AD); App.LeftUpCS1237ReadEndFlag = true; } void LEFTLOW_CS1237AinADataProcessCallBack(int32_t AD) { // if(abs(AD - App.LeftLowCS1237_TrendArray[0]) > 2000000) // { // AD = App.LeftLowCS1237_TrendArray[0]; // } if(App.MotorPara.CaliFlag == true) { AD = AD + App.MotorPara.LL_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)]; for(int i = OSC_CNT-1; i > 0; i--) { App.LeftLowCS1237_TrendArray[i] = App.LeftLowCS1237_TrendArray[i - 1]; } App.LeftLowCS1237_TrendArray[0] = AD; } else { // for(int i = OSC_CNT-1; i > 0; i--) // { // App.LeftLowCS1237_TrendArray[i] = App.LeftLowCS1237_TrendArray[i - 1]; // } App.LeftLowCS1237_TrendArray[0] = AD; } show(2,AD); App.LeftLowCS1237ReadEndFlag = true; } void RIGHTUP_CS1237AinADataProcessCallBack(int32_t AD) { // if(abs(AD - App.RightUpCS1237_TrendArray[0]) > 2000000) // { // AD = App.RightUpCS1237_TrendArray[0]; // } if(App.MotorPara.CaliFlag == true) { AD = AD + App.MotorPara.RU_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)]; for(int i = OSC_CNT-1; i > 0; i--) { App.RightUpCS1237_TrendArray[i] = App.RightUpCS1237_TrendArray[i - 1]; } App.RightUpCS1237_TrendArray[0] = AD; } else { // for(int i = OSC_CNT-1; i > 0; i--) // { // App.RightUpCS1237_TrendArray[i] = App.RightUpCS1237_TrendArray[i - 1]; // } App.RightUpCS1237_TrendArray[0] = AD; } show(3,AD); App.RightUpCS1237ReadEndFlag = true; } void RIGHTLOW_CS1237AinADataProcessCallBack(int32_t AD) { // if(abs(AD - App.RightLowCS1237_TrendArray[0]) > 2000000) // { // AD = App.RightLowCS1237_TrendArray[0]; // } if(App.MotorPara.CaliFlag == true) { AD = AD + App.MotorPara.RL_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)]; for(int i = OSC_CNT-1; i > 0; i--) { App.RightLowCS1237_TrendArray[i] = App.RightLowCS1237_TrendArray[i - 1]; } App.RightLowCS1237_TrendArray[0] = AD; } else { // for(int i = OSC_CNT-1; i > 0; i--) // { // App.RightLowCS1237_TrendArray[i] = App.RightLowCS1237_TrendArray[i - 1]; // } App.RightLowCS1237_TrendArray[0] = AD; } show(4,AD); App.RightLowCS1237ReadEndFlag = true; } void GradeControl(ControlLevel_m level) { switch(level){ case LEVEL_1:{ App.ADTrack.Slope_VPT = SLOPE_VPT; App.ADTrack.LeftUpVPT = 5000; App.ADTrack.LeftLowVPT = 5000; App.ADTrack.RightUpVPT = 5000; App.ADTrack.RightLowVPT = 5000; App.ADTrack.Stop_VPT = 4000; break;} case LEVEL_2:{ App.ADTrack.Slope_VPT = SLOPE_VPT; App.ADTrack.LeftUpVPT = 10000; App.ADTrack.LeftLowVPT = 10000; App.ADTrack.RightUpVPT = 10000; App.ADTrack.RightLowVPT = 10000; App.ADTrack.Stop_VPT = 8000; break;} case LEVEL_3:{ App.ADTrack.Slope_VPT = SLOPE_VPT; App.ADTrack.LeftUpVPT = 18000; App.ADTrack.LeftLowVPT = 18000; App.ADTrack.RightUpVPT = 18000; App.ADTrack.RightLowVPT = 18000; App.ADTrack.Stop_VPT = 15000; break;} case LEVEL_4:{ App.ADTrack.Slope_VPT = SLOPE_VPT; App.ADTrack.LeftUpVPT = 25000; App.ADTrack.LeftLowVPT = 25000; App.ADTrack.RightUpVPT = 25000; App.ADTrack.RightLowVPT = 25000; App.ADTrack.Stop_VPT = 19000; break;} case LEVEL_5:{ App.ADTrack.Slope_VPT = SLOPE_VPT; App.ADTrack.LeftUpVPT = 30000; App.ADTrack.LeftLowVPT = 30000; App.ADTrack.RightUpVPT = 30000; App.ADTrack.RightLowVPT = 30000; App.ADTrack.Stop_VPT = 25000; break;} } } #if(USE_AGC == 1) void SupportControlHandle(int32_t *lu_ad, int32_t *ll_ad, int32_t *ru_ad, int32_t *rl_ad) { int32_t lu_diff[OSC_CNT], Olu_diff1, Olu_diff2, Olu_diff3, Olu_diff4, Olu_diff5, Olu_diff6; int32_t ll_diff[OSC_CNT], Oll_diff1, Oll_diff2, Oll_diff3, Oll_diff4, Oll_diff5, Oll_diff6; int32_t ru_diff[OSC_CNT], Oru_diff1, Oru_diff2, Oru_diff3, Oru_diff4, Oru_diff5, Oru_diff6; int32_t rl_diff[OSC_CNT], Orl_diff1, Orl_diff2, Orl_diff3, Orl_diff4 ,Orl_diff5, Orl_diff6; Olu_diff1 = lu_ad[0] - App.ADTrack.LeftUp_Org_AdZero; Olu_diff2 = lu_ad[1] - App.ADTrack.LeftUp_Org_AdZero; Olu_diff3 = lu_ad[2] - App.ADTrack.LeftUp_Org_AdZero; Olu_diff4 = lu_ad[3] - App.ADTrack.LeftUp_Org_AdZero; Olu_diff5 = lu_ad[4] - App.ADTrack.LeftUp_Org_AdZero; Olu_diff6 = lu_ad[5] - App.ADTrack.LeftUp_Org_AdZero; Oll_diff1 = ll_ad[0] - App.ADTrack.LeftLow_Org_AdZero; Oll_diff2 = ll_ad[1] - App.ADTrack.LeftLow_Org_AdZero; Oll_diff3 = ll_ad[2] - App.ADTrack.LeftLow_Org_AdZero; Oll_diff4 = ll_ad[3] - App.ADTrack.LeftLow_Org_AdZero; Oll_diff5 = ll_ad[4] - App.ADTrack.LeftLow_Org_AdZero; Oll_diff6 = ll_ad[5] - App.ADTrack.LeftLow_Org_AdZero; Oru_diff1 = ru_ad[0] - App.ADTrack.RightUp_Org_AdZero; Oru_diff2 = ru_ad[1] - App.ADTrack.RightUp_Org_AdZero; Oru_diff3 = ru_ad[2] - App.ADTrack.RightUp_Org_AdZero; Oru_diff4 = ru_ad[3] - App.ADTrack.RightUp_Org_AdZero; Oru_diff5 = ru_ad[4] - App.ADTrack.RightUp_Org_AdZero; Oru_diff6 = ru_ad[5] - App.ADTrack.RightUp_Org_AdZero; Orl_diff1 = rl_ad[0] - App.ADTrack.RightLow_Org_AdZero; Orl_diff2 = rl_ad[1] - App.ADTrack.RightLow_Org_AdZero; Orl_diff3 = rl_ad[2] - App.ADTrack.RightLow_Org_AdZero; Orl_diff4 = rl_ad[3] - App.ADTrack.RightLow_Org_AdZero; Orl_diff5 = rl_ad[4] - App.ADTrack.RightLow_Org_AdZero; Orl_diff6 = rl_ad[5] - App.ADTrack.RightLow_Org_AdZero; for(int i = 0; i < OSC_CNT; i++) { lu_diff[i] = lu_ad[i] - lu_ad[OSC_CNT - 1]; ll_diff[i] = ll_ad[i] - ll_ad[OSC_CNT - 1]; ru_diff[i] = ru_ad[i] - ru_ad[OSC_CNT - 1]; rl_diff[i] = rl_ad[i] - rl_ad[OSC_CNT - 1]; } TrendResult result_lu = analyze_trend(lu_diff, OSC_CNT); TrendResult result_ll = analyze_trend(ll_diff, OSC_CNT); TrendResult result_ru = analyze_trend(ru_diff, OSC_CNT); TrendResult result_rl = analyze_trend(rl_diff, OSC_CNT); int32_t lu_slope = result_lu.slope; int32_t ll_slope = result_ll.slope; int32_t ru_slope = result_ru.slope; int32_t rl_slope = result_rl.slope; // show(1, lu_slope); // show(2, ll_slope); // show(3, ru_slope); // show(4, rl_slope); for(int i = SLOPE_CNT-1; i > 0; i--) { App.LeftUpCS1237_SlopeArray[i] = App.LeftUpCS1237_SlopeArray[i - 1]; App.LeftLowCS1237_SlopeArray[i] = App.LeftLowCS1237_SlopeArray[i - 1]; App.RightUpCS1237_SlopeArray[i] = App.RightUpCS1237_SlopeArray[i - 1]; App.RightLowCS1237_SlopeArray[i] = App.RightLowCS1237_SlopeArray[i - 1]; } App.LeftUpCS1237_SlopeArray[0] = lu_slope; App.LeftLowCS1237_SlopeArray[0] = ll_slope; App.RightUpCS1237_SlopeArray[0] = ru_slope; App.RightLowCS1237_SlopeArray[0] = rl_slope; int32_t LeftSlopeSum = abs(App.LeftUpCS1237_SlopeArray[0]) + abs(App.LeftLowCS1237_SlopeArray[0]) + abs(App.LeftUpCS1237_SlopeArray[1]) + abs(App.LeftLowCS1237_SlopeArray[1]) + abs(App.LeftUpCS1237_SlopeArray[2]) + abs(App.LeftLowCS1237_SlopeArray[2]); int32_t RightSlopeSum = abs(App.RightUpCS1237_SlopeArray[0]) + abs(App.RightLowCS1237_SlopeArray[0]) + abs(App.RightUpCS1237_SlopeArray[1]) + abs(App.RightLowCS1237_SlopeArray[1]) + abs(App.RightUpCS1237_SlopeArray[2]) + abs(App.RightLowCS1237_SlopeArray[2]); int32_t LeftDiffSum = abs(lu_diff[0]) + abs(lu_diff[1]) + abs(lu_diff[2]) + abs(ll_diff[0]) + abs(ll_diff[1]) + abs(ll_diff[2]); int32_t RightDiffSum = abs(ru_diff[0]) + abs(ru_diff[1]) + abs(ru_diff[2]) + abs(rl_diff[0]) + abs(rl_diff[1]) + abs(rl_diff[2]); int32_t LeftDiff = abs(Oll_diff1) + abs(Olu_diff1) + abs(Oll_diff2) + abs(Olu_diff2) + abs(Oll_diff3) + abs(Olu_diff3); int32_t RightDiff = abs(Orl_diff1) + abs(Oru_diff1) + abs(Orl_diff2) + abs(Oru_diff2) + abs(Orl_diff3) + abs(Oru_diff3); if(App.EmeFlag == true) { if(App.DownFlag == true && App.EmergencyDelay1mSCnt > 0) { BDC_UP(); } else if(App.UpFlag == true && App.EmergencyDelay1mSCnt > 0) { BDC_DOWN(); } else if(App.EmergencyDelay1mSCnt <= 0) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.EmeFlag = false; App.StopCollDelay1mSCnt = STOP_TIME_MS; App.SlopeCollDelay1mSCnt = SLOPE_START_MS; } } else if(App.StopFlag == true && App.StopCollDelay1mSCnt <= 0) { App.LeftRunFalg = false; App.RightRunFalg = false; App.CentreRunFalg = false; if(((lu_ad[0] < App.ADTrack.LeftUp_Org_AdZero-CENTRE_VPT)//判断中间操作 && (ru_ad[0] < App.ADTrack.RightUp_Org_AdZero-CENTRE_VPT) && (lu_ad[1] < App.ADTrack.LeftUp_Org_AdZero-CENTRE_VPT) && (ru_ad[1] < App.ADTrack.RightUp_Org_AdZero-CENTRE_VPT) && (lu_ad[2] < App.ADTrack.LeftUp_Org_AdZero-CENTRE_VPT) && (ru_ad[2] < App.ADTrack.RightUp_Org_AdZero-CENTRE_VPT) && (ll_ad[0] > App.ADTrack.LeftLow_Org_AdZero+CENTRE_VPT)//判断中间操作 && (rl_ad[0] > App.ADTrack.RightLow_Org_AdZero+CENTRE_VPT) && (ll_ad[1] > App.ADTrack.LeftLow_Org_AdZero+CENTRE_VPT) && (rl_ad[1] > App.ADTrack.RightLow_Org_AdZero+CENTRE_VPT) && (ll_ad[2] > App.ADTrack.LeftLow_Org_AdZero+CENTRE_VPT) && (rl_ad[2] > App.ADTrack.RightLow_Org_AdZero+CENTRE_VPT)) || ((lu_ad[0] > App.ADTrack.LeftUp_Org_AdZero+CENTRE_VPT)//判断中间操作 && (ru_ad[0] > App.ADTrack.RightUp_Org_AdZero+CENTRE_VPT) && (lu_ad[1] > App.ADTrack.LeftUp_Org_AdZero+CENTRE_VPT) && (ru_ad[1] > App.ADTrack.RightUp_Org_AdZero+CENTRE_VPT) && (lu_ad[2] > App.ADTrack.LeftUp_Org_AdZero+CENTRE_VPT) && (ru_ad[2] > App.ADTrack.RightUp_Org_AdZero+CENTRE_VPT) && (ll_ad[0] < App.ADTrack.LeftLow_Org_AdZero-CENTRE_VPT)//判断中间操作 && (rl_ad[0] < App.ADTrack.RightLow_Org_AdZero-CENTRE_VPT) && (ll_ad[1] < App.ADTrack.LeftLow_Org_AdZero-CENTRE_VPT) && (rl_ad[1] < App.ADTrack.RightLow_Org_AdZero-CENTRE_VPT) && (ll_ad[2] < App.ADTrack.LeftLow_Org_AdZero-CENTRE_VPT) && (rl_ad[2] < App.ADTrack.RightLow_Org_AdZero-CENTRE_VPT)) ) { App.CentreRunFalg = true; App.CentCollDelay1mSCnt = CENT_TIME_MS; if(LeftDiff > RightDiff)//判断偏左 { App.LeftRunFalg = true; if(((Olu_diff1+Oru_diff1) > (App.ADTrack.Stop_VPT))//判断上拉 && ((Olu_diff2+Oru_diff2) > (App.ADTrack.Stop_VPT)) && ((Olu_diff3+Oru_diff3) > (App.ADTrack.Stop_VPT)) && ((Oll_diff1+Orl_diff1) < -(App.ADTrack.Stop_VPT)) && ((Oll_diff2+Orl_diff2) < -(App.ADTrack.Stop_VPT)) && ((Oll_diff3+Orl_diff3) < -(App.ADTrack.Stop_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if(App.MotorPara.Current_height < 1425) { BDC_UP(); App.CaliZeroFlag = false; App.UpFlag = true; App.StopFlag = false; App.DownFlag = false; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } else if(((Olu_diff1+Oru_diff1) < -(App.ADTrack.Stop_VPT))//判断下拉 && ((Olu_diff2+Oru_diff2) < -(App.ADTrack.Stop_VPT)) && ((Olu_diff3+Oru_diff3) < -(App.ADTrack.Stop_VPT)) && ((Oll_diff1+Orl_diff1) > (App.ADTrack.Stop_VPT)) && ((Oll_diff2+Orl_diff2) > (App.ADTrack.Stop_VPT)) && ((Oll_diff3+Orl_diff3) > (App.ADTrack.Stop_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if(App.MotorPara.Current_height > 1005) { BDC_DOWN(); App.CaliZeroFlag = false; App.UpFlag = false; App.StopFlag = false; App.DownFlag = true; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } } else if(RightDiff > LeftDiff)//判断偏右 { App.RightRunFalg = true; if(((Olu_diff1+Oru_diff1) > (App.ADTrack.Stop_VPT))//判断上拉 && ((Olu_diff2+Oru_diff2) > (App.ADTrack.Stop_VPT)) && ((Olu_diff3+Oru_diff3) > (App.ADTrack.Stop_VPT)) && ((Oll_diff1+Orl_diff1) < -(App.ADTrack.Stop_VPT)) && ((Oll_diff2+Orl_diff2) < -(App.ADTrack.Stop_VPT)) && ((Oll_diff3+Orl_diff3) < -(App.ADTrack.Stop_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if(App.MotorPara.Current_height < 1425) { BDC_UP(); App.CaliZeroFlag = false; App.UpFlag = true; App.StopFlag = false; App.DownFlag = false; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } else if(((Olu_diff1+Oru_diff1) < -(App.ADTrack.Stop_VPT))//判断下拉 && ((Olu_diff2+Oru_diff2) < -(App.ADTrack.Stop_VPT)) && ((Olu_diff3+Oru_diff3) < -(App.ADTrack.Stop_VPT)) && ((Oll_diff1+Orl_diff1) > (App.ADTrack.Stop_VPT)) && ((Oll_diff2+Orl_diff2) > (App.ADTrack.Stop_VPT)) && ((Oll_diff3+Orl_diff3) > (App.ADTrack.Stop_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if(App.MotorPara.Current_height > 1005) { BDC_DOWN(); App.CaliZeroFlag = false; App.UpFlag = false; App.StopFlag = false; App.DownFlag = true; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } } } else if((LeftSlopeSum > RightSlopeSum && LeftDiffSum > RightDiffSum && App.CentCollDelay1mSCnt <= 0))//判断左边操作 { App.LeftRunFalg = true; if((Olu_diff1 >= (App.ADTrack.LeftUpVPT*5/6)) //通过差值判断上下拉方向 && (Olu_diff2 >= (App.ADTrack.LeftUpVPT*5/6)) && (Olu_diff3 >= (App.ADTrack.LeftUpVPT*5/6)) && (Oll_diff1 <= -(App.ADTrack.LeftLowVPT*5/6)) && (Oll_diff2 <= -(App.ADTrack.LeftLowVPT*5/6)) && (Oll_diff3 <= -(App.ADTrack.LeftLowVPT*5/6))) { if(((App.LeftUpCS1237_SlopeArray[0] <= -PRESS_VPT)//判断是否不是正面压 && (App.LeftUpCS1237_SlopeArray[1] <= -PRESS_VPT) && (App.LeftUpCS1237_SlopeArray[2] <= -PRESS_VPT) && (App.LeftLowCS1237_SlopeArray[0] >= PRESS_VPT) && (App.LeftLowCS1237_SlopeArray[1] >= PRESS_VPT) && (App.LeftLowCS1237_SlopeArray[2] >= PRESS_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if((abs(Olu_diff1) > abs(Oru_diff1) * SHIELD_VPT)//判断是否不是侧面推拉 && (abs(Olu_diff2) > abs(Oru_diff2) * SHIELD_VPT) && (abs(Olu_diff3) > abs(Oru_diff3) * SHIELD_VPT) && (abs(Oll_diff1) > abs(Orl_diff1) * SHIELD_VPT) && (abs(Oll_diff3) > abs(Orl_diff2) * SHIELD_VPT) && (abs(Oll_diff3) > abs(Orl_diff3) * SHIELD_VPT) ) { if(App.MotorPara.Current_height < 1425) { BDC_UP(); App.CaliZeroFlag = false; App.UpFlag = true; App.DownFlag = false; App.StopFlag = false; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } } } else if(((Olu_diff1 <= -(App.ADTrack.LeftUpVPT*5/6))//通过差值判断上下拉方向 && (Olu_diff2 <= -(App.ADTrack.LeftUpVPT*5/6)) && (Olu_diff3 <= -(App.ADTrack.LeftUpVPT*5/6)) && (Oll_diff1 >= (App.ADTrack.LeftLowVPT*5/6)) && (Oll_diff2 >= (App.ADTrack.LeftLowVPT*5/6)) && (Oll_diff3 >= (App.ADTrack.LeftLowVPT*5/6))) ) { if(((App.LeftUpCS1237_SlopeArray[0] >= PRESS_VPT) //判断是否不是正面压 && (App.LeftUpCS1237_SlopeArray[1] >= PRESS_VPT) && (App.LeftUpCS1237_SlopeArray[2] >= PRESS_VPT) && (App.LeftLowCS1237_SlopeArray[0] <= -PRESS_VPT) && (App.LeftLowCS1237_SlopeArray[1] <= -PRESS_VPT) && (App.LeftLowCS1237_SlopeArray[2] <= -PRESS_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if((abs(Olu_diff1) > abs(Oru_diff1) * SHIELD_VPT)//判断是否不是侧面推拉 && (abs(Olu_diff2) > abs(Oru_diff2) * SHIELD_VPT) && (abs(Olu_diff3) > abs(Oru_diff3) * SHIELD_VPT) && (abs(Oll_diff1) > abs(Orl_diff1) * SHIELD_VPT) && (abs(Oll_diff3) > abs(Orl_diff2) * SHIELD_VPT) && (abs(Oll_diff3) > abs(Orl_diff3) * SHIELD_VPT) ) { if(App.MotorPara.Current_height > 1005) { BDC_DOWN(); App.CaliZeroFlag = false; App.UpFlag = false; App.DownFlag = true; App.StopFlag = false; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } } } } else if(LeftSlopeSum < RightSlopeSum && LeftDiffSum < RightDiffSum && App.CentCollDelay1mSCnt <= 0)//判断右边操作 { App.RightRunFalg = true; if((Oru_diff1 >= (App.ADTrack.RightUpVPT*5/6)) //通过差值判断上下拉方向 && (Oru_diff2 >= (App.ADTrack.RightUpVPT*5/6)) && (Oru_diff3 >= (App.ADTrack.RightUpVPT*5/6)) && (Orl_diff1 <= -(App.ADTrack.RightLowVPT*5/6)) && (Orl_diff2 <= -(App.ADTrack.RightLowVPT*5/6)) && (Orl_diff3 <= -(App.ADTrack.RightLowVPT*5/6))) { if(((App.RightUpCS1237_SlopeArray[0] <= -PRESS_VPT) //判断是否不是正面压 && (App.RightUpCS1237_SlopeArray[1] <= -PRESS_VPT) && (App.RightUpCS1237_SlopeArray[2] <= -PRESS_VPT) && (App.RightLowCS1237_SlopeArray[0] >= PRESS_VPT) && (App.RightLowCS1237_SlopeArray[1] >= PRESS_VPT) && (App.RightLowCS1237_SlopeArray[2] >= PRESS_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if((abs(Oru_diff1) > abs(Olu_diff1) * SHIELD_VPT)//判断是否不是侧面推拉 && (abs(Oru_diff2) > abs(Olu_diff2) * SHIELD_VPT) && (abs(Oru_diff3) > abs(Olu_diff3) * SHIELD_VPT) && (abs(Orl_diff1) > abs(Oll_diff1) * SHIELD_VPT) && (abs(Orl_diff3) > abs(Oll_diff2) * SHIELD_VPT) && (abs(Orl_diff3) > abs(Oll_diff3) * SHIELD_VPT) ) { if(App.MotorPara.Current_height < 1425) { BDC_UP(); App.CaliZeroFlag = false; App.UpFlag = true; App.StopFlag = false; App.DownFlag = false; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } } } else if((Oru_diff1 <= -(App.ADTrack.RightUpVPT*5/6)) //通过差值判断上下拉方向 && (Oru_diff2 <= -(App.ADTrack.RightUpVPT*5/6)) && (Oru_diff3 <= -(App.ADTrack.RightUpVPT*5/6)) && (Orl_diff1 >= (App.ADTrack.RightLowVPT*5/6)) && (Orl_diff2 >= (App.ADTrack.RightLowVPT*5/6)) && (Orl_diff3 >= (App.ADTrack.RightLowVPT*5/6))) { if(((App.RightUpCS1237_SlopeArray[0] >= PRESS_VPT) //判断是否不是正面压 && (App.RightUpCS1237_SlopeArray[1] >= PRESS_VPT) && (App.RightUpCS1237_SlopeArray[2] >= PRESS_VPT) && (App.RightLowCS1237_SlopeArray[0] <= -PRESS_VPT) && (App.RightLowCS1237_SlopeArray[1] <= -PRESS_VPT) && (App.RightLowCS1237_SlopeArray[2] <= -PRESS_VPT)) ) { // if(App.CaliZeroFlag == true)//判断是否校零 { if((abs(Oru_diff1) > abs(Olu_diff1) * SHIELD_VPT)//判断是否不是侧面推拉 && (abs(Oru_diff2) > abs(Olu_diff2) * SHIELD_VPT) && (abs(Oru_diff3) > abs(Olu_diff3) * SHIELD_VPT) && (abs(Orl_diff1) > abs(Oll_diff1) * SHIELD_VPT) && (abs(Orl_diff3) > abs(Oll_diff2) * SHIELD_VPT) && (abs(Orl_diff3) > abs(Oll_diff3) * SHIELD_VPT) ) { if(App.MotorPara.Current_height > 1005) { BDC_DOWN(); App.CaliZeroFlag = false; App.DownFlag = true; App.StopFlag = false; App.UpFlag = false; App.EmeFlag = false; App.RunCollDelay1mSCnt = RUN_TIME_MS; } } } } } } } else if(App.DownFlag == true && App.RunCollDelay1mSCnt <= 0) { if(App.LeftRunFalg == true) { if(((App.CentreRunFalg == false) && (Olu_diff1 > -App.ADTrack.Stop_VPT) && (Oll_diff1 < App.ADTrack.Stop_VPT) && (Olu_diff2 > -App.ADTrack.Stop_VPT) && (Oll_diff2 < App.ADTrack.Stop_VPT) && (Olu_diff3 > -App.ADTrack.Stop_VPT) && (Oll_diff3 < App.ADTrack.Stop_VPT) && (Olu_diff4 > -App.ADTrack.Stop_VPT) && (Oll_diff4 < App.ADTrack.Stop_VPT) && (Olu_diff5 > -App.ADTrack.Stop_VPT) && (Oll_diff5 < App.ADTrack.Stop_VPT) && (Olu_diff6 > -App.ADTrack.Stop_VPT) && (Oll_diff6 < App.ADTrack.Stop_VPT)) || ((App.CentreRunFalg == true) && ((Olu_diff1 + Oru_diff1) > -(App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff2 + Oru_diff2) > -(App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff3 + Oru_diff3) > -(App.ADTrack.Stop_VPT*2/3))) || App.MotorPara.Current_height >= 1425 || App.MotorPara.Current_height <= 1005 ) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.EmeFlag = false; App.StopCollDelay1mSCnt = STOP_TIME_MS; App.SlopeCollDelay1mSCnt = SLOPE_START_MS; App.EmergencyDelay1mSCnt = EME_START_MS; } // else if((abs(Oll_diff1) + EME_STOP_VPT) < abs(Orl_diff1) // && (abs(Oll_diff2) + EME_STOP_VPT) < abs(Orl_diff2) // && (abs(Oll_diff3) + EME_STOP_VPT) < abs(Orl_diff3) // && (abs(Olu_diff1) + EME_STOP_VPT) < abs(Oru_diff1) // && (abs(Olu_diff2) + EME_STOP_VPT) < abs(Oru_diff2) // && (abs(Olu_diff3) + EME_STOP_VPT) < abs(Oru_diff3) // && App.EmergencyDelay1mSCnt <= 0 && App.CentreRunFalg == false) // { // BDC_STOP(); // App.EmeFlag = true; // App.EmergencyDelay1mSCnt = EME_STOP_MS; // } } else if(App.RightRunFalg == true) { if(((App.CentreRunFalg == false ) && (Oru_diff1 > -App.ADTrack.Stop_VPT) && (Orl_diff1 < App.ADTrack.Stop_VPT) && (Oru_diff2 > -App.ADTrack.Stop_VPT) && (Orl_diff2 < App.ADTrack.Stop_VPT) && (Oru_diff3 > -App.ADTrack.Stop_VPT) && (Orl_diff3 < App.ADTrack.Stop_VPT) && (Oru_diff4 > -App.ADTrack.Stop_VPT) && (Orl_diff4 < App.ADTrack.Stop_VPT) && (Oru_diff5 > -App.ADTrack.Stop_VPT) && (Orl_diff5 < App.ADTrack.Stop_VPT) && (Oru_diff6 > -App.ADTrack.Stop_VPT) && (Orl_diff6 < App.ADTrack.Stop_VPT)) || ((App.CentreRunFalg == true) && ((Olu_diff1 + Oru_diff1) > -(App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff2 + Oru_diff2) > -(App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff3 + Oru_diff3) > -(App.ADTrack.Stop_VPT*2/3))) || App.MotorPara.Current_height >= 1425 || App.MotorPara.Current_height <= 1005 ) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.EmeFlag = false; App.StopCollDelay1mSCnt = STOP_TIME_MS; App.SlopeCollDelay1mSCnt = SLOPE_START_MS; App.EmergencyDelay1mSCnt = EME_START_MS; } // else if(abs(Oll_diff1) > (abs(Orl_diff1) + EME_STOP_VPT) // && abs(Oll_diff2) > (abs(Orl_diff2) + EME_STOP_VPT) // && abs(Oll_diff3) > (abs(Orl_diff3) + EME_STOP_VPT) // && abs(Olu_diff1) > (abs(Oru_diff1) + EME_STOP_VPT) // && abs(Olu_diff2) > (abs(Oru_diff2) + EME_STOP_VPT) // && abs(Olu_diff3) > (abs(Oru_diff3) + EME_STOP_VPT) // && App.EmergencyDelay1mSCnt <= 0 && App.CentreRunFalg == false) // { // BDC_STOP(); // App.EmeFlag = true; // App.EmergencyDelay1mSCnt = EME_STOP_MS; // } } } else if(App.UpFlag == true && App.RunCollDelay1mSCnt <= 0) { if(App.LeftRunFalg == true) { if(((App.CentreRunFalg == false) && (Olu_diff1 < App.ADTrack.Stop_VPT) && (Oll_diff1 > -App.ADTrack.Stop_VPT) && (Olu_diff2 < App.ADTrack.Stop_VPT) && (Oll_diff2 > -App.ADTrack.Stop_VPT) && (Olu_diff3 < App.ADTrack.Stop_VPT) && (Oll_diff3 > -App.ADTrack.Stop_VPT) && (Olu_diff4 < App.ADTrack.Stop_VPT) && (Oll_diff4 > -App.ADTrack.Stop_VPT) && (Olu_diff5 < App.ADTrack.Stop_VPT) && (Oll_diff5 > -App.ADTrack.Stop_VPT) && (Olu_diff6 < App.ADTrack.Stop_VPT) && (Oll_diff6 > -App.ADTrack.Stop_VPT)) || ((App.CentreRunFalg == true) && ((Olu_diff1 + Oru_diff1) < (App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff2 + Oru_diff2) < (App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff3 + Oru_diff3) < (App.ADTrack.Stop_VPT*2/3))) || App.MotorPara.Current_height >= 1425 || App.MotorPara.Current_height <= 1005 ) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.EmeFlag = false; App.StopCollDelay1mSCnt = STOP_TIME_MS; App.SlopeCollDelay1mSCnt = SLOPE_START_MS; App.EmergencyDelay1mSCnt = EME_START_MS; } // else if((abs(Oll_diff1) + EME_STOP_VPT) < abs(Orl_diff1) // && (abs(Oll_diff2) + EME_STOP_VPT) < abs(Orl_diff2) // && (abs(Oll_diff3) + EME_STOP_VPT) < abs(Orl_diff3) // && (abs(Olu_diff1) + EME_STOP_VPT) < abs(Oru_diff1) // && (abs(Olu_diff2) + EME_STOP_VPT) < abs(Oru_diff2) // && (abs(Olu_diff3) + EME_STOP_VPT) < abs(Oru_diff3) // && App.EmergencyDelay1mSCnt <= 0 && App.CentreRunFalg == false) // { // BDC_STOP(); // App.EmeFlag = true; // App.EmergencyDelay1mSCnt = EME_STOP_MS; // } } else if(App.RightRunFalg == true) { if(((App.CentreRunFalg == false ) && (Oru_diff1 < App.ADTrack.Stop_VPT) && (Orl_diff1 > -App.ADTrack.Stop_VPT) && (Oru_diff2 < App.ADTrack.Stop_VPT) && (Orl_diff2 > -App.ADTrack.Stop_VPT) && (Oru_diff3 < App.ADTrack.Stop_VPT) && (Orl_diff3 > -App.ADTrack.Stop_VPT) && (Oru_diff4 < App.ADTrack.Stop_VPT) && (Orl_diff4 > -App.ADTrack.Stop_VPT) && (Oru_diff5 < App.ADTrack.Stop_VPT) && (Orl_diff5 > -App.ADTrack.Stop_VPT) && (Oru_diff6 < App.ADTrack.Stop_VPT) && (Orl_diff6 > -App.ADTrack.Stop_VPT)) || ((App.CentreRunFalg == true) && ((Olu_diff1 + Oru_diff1) < (App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff2 + Oru_diff2) < (App.ADTrack.Stop_VPT*2/3)) && ((Olu_diff3 + Oru_diff3) < (App.ADTrack.Stop_VPT*2/3))) || App.MotorPara.Current_height >= 1425 || App.MotorPara.Current_height <= 1005 ) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.EmeFlag = false; App.StopCollDelay1mSCnt = STOP_TIME_MS; App.SlopeCollDelay1mSCnt = SLOPE_START_MS; App.EmergencyDelay1mSCnt = EME_START_MS; } // else if(abs(Oll_diff1) > (abs(Orl_diff1) + EME_STOP_VPT) // && abs(Oll_diff2) > (abs(Orl_diff2) + EME_STOP_VPT) // && abs(Oll_diff3) > (abs(Orl_diff3) + EME_STOP_VPT) // && abs(Olu_diff1) > (abs(Oru_diff1) + EME_STOP_VPT) // && abs(Olu_diff2) > (abs(Oru_diff2) + EME_STOP_VPT) // && abs(Olu_diff3) > (abs(Oru_diff3) + EME_STOP_VPT) // && App.EmergencyDelay1mSCnt <= 0 && App.CentreRunFalg == false) // { // BDC_STOP(); // App.EmeFlag = true; // App.EmergencyDelay1mSCnt = EME_STOP_MS; // } } } if( // lu_K.peaks_positive // && lu_K.valleys_negative App.LeftUpCS1237_SlopeArray[0] < FOLLOW_VPT && App.LeftUpCS1237_SlopeArray[0] > -FOLLOW_VPT && App.LeftUpCS1237_SlopeArray[1] < FOLLOW_VPT && App.LeftUpCS1237_SlopeArray[1] > -FOLLOW_VPT && App.LeftUpCS1237_SlopeArray[2] < FOLLOW_VPT && App.LeftUpCS1237_SlopeArray[2] > -FOLLOW_VPT // && ll_K.peaks_positive // && ll_K.valleys_negative && App.LeftLowCS1237_SlopeArray[0] < FOLLOW_VPT && App.LeftLowCS1237_SlopeArray[0] > -FOLLOW_VPT && App.LeftLowCS1237_SlopeArray[1] < FOLLOW_VPT && App.LeftLowCS1237_SlopeArray[1] > -FOLLOW_VPT && App.LeftLowCS1237_SlopeArray[2] < FOLLOW_VPT && App.LeftLowCS1237_SlopeArray[2] > -FOLLOW_VPT // && ru_K.peaks_positive // && ru_K.valleys_negative && App.RightUpCS1237_SlopeArray[0] < FOLLOW_VPT && App.RightUpCS1237_SlopeArray[0] > -FOLLOW_VPT && App.RightUpCS1237_SlopeArray[1] < FOLLOW_VPT && App.RightUpCS1237_SlopeArray[1] > -FOLLOW_VPT && App.RightUpCS1237_SlopeArray[2] < FOLLOW_VPT && App.RightUpCS1237_SlopeArray[2] > -FOLLOW_VPT // && rl_K.peaks_positive // && rl_K.valleys_negative && App.RightLowCS1237_SlopeArray[0] < FOLLOW_VPT && App.RightLowCS1237_SlopeArray[0] > -FOLLOW_VPT && App.RightLowCS1237_SlopeArray[1] < FOLLOW_VPT && App.RightLowCS1237_SlopeArray[1] > -FOLLOW_VPT && App.RightLowCS1237_SlopeArray[2] < FOLLOW_VPT && App.RightLowCS1237_SlopeArray[2] > -FOLLOW_VPT) { if(App.StopFlag == true && App.StopCollDelay1mSCnt <= 0 && App.MotorPara.Current_height <= 1425 && App.MotorPara.Current_height >= 1005){ App.ADTrack.LeftUp_Org_AdZero = lu_ad[0]; App.ADTrack.LeftLow_Org_AdZero = ll_ad[0]; App.ADTrack.RightUp_Org_AdZero = ru_ad[0]; App.ADTrack.RightLow_Org_AdZero = rl_ad[0]; App.CaliZeroFlag = true; } } } #endif static void AppInit(void) { memset(&App, 0x00, sizeof(App)); READ_APP_PARA((uint32_t *)&App.Para); if(App.Para.FactoryFlag != 0x00){ App.Para.FactoryFlag = 0x00; /*参数初始化*/ App.Para.Layout.ControlLevel = LEVEL_3;//出厂默认等级3 App.Para.Layout.DBGWaveOut = false; SAVE_APP_PARA((uint32_t *)&App.Para); } if(App.Para.Layout.ControlLevel > 5 || App.Para.Layout.ControlLevel < 1){ App.Para.Layout.ControlLevel = LEVEL_3;//出厂默认等级3 SAVE_APP_PARA((uint32_t *)&App.Para); } DBG_LOG("\r\n\r\n"); DBG_LOG("****************************************************\r\n"); DBG_LOG("** **\r\n"); DBG_LOG("** Acc_Support_29V **\r\n"); DBG_LOG("** SoftWare V:%d.%d **\r\n", SOFTWARE_VERSION / 10, SOFTWARE_VERSION % 10); DBG_LOG("** HardWare V:%d.%d **\r\n", HARDWARE_VERSION / 10, HARDWARE_VERSION % 10); DBG_LOG("** Compile: %s %s **\r\n", __DATE__, __TIME__); DBG_LOG("** **\r\n"); DBG_LOG("****************************************************\r\n\r\n"); //FeedDog(); LEFTUP_CS1237_Init(); LEFTLOW_CS1237_Init(); RIGHTUP_CS1237_Init(); RIGHTLOW_CS1237_Init(); BDC_STOP(); LED_RED_OFF(); LED_GREEN_ON(); App.Status = APP_STATUS_START_BEEP; App.MotorPara.InitialFlag = false; App.RStatus = READ_STATUS_START; GradeControl(App.Para.Layout.ControlLevel);//等级控制 App.WaitFlag = false; } static void ReadLoopHandler(void) { switch(App.RStatus){ case READ_STATUS_IDLE:{ break;} case READ_STATUS_START:{ App.LeftUpCS1237ReadEndFlag = false; App.LeftLowCS1237ReadEndFlag = false; App.RightUpCS1237ReadEndFlag = false; App.RightLowCS1237ReadEndFlag = false; App.RStatus = READ_STATUS_LEFTUP; break;} case READ_STATUS_LEFTUP:{ LEFTUP_CS1237Start(); App.Read1mSDelayCnt = 50; App.RStatus = READ_STATUS_WAIT_LEFTUP; break;} case READ_STATUS_WAIT_LEFTUP:{ if(App.Read1mSDelayCnt <= 0) { App.RStatus = READ_STATUS_LEFTLOW; } else if(App.LeftUpCS1237ReadEndFlag == true) { App.RStatus = READ_STATUS_LEFTLOW; } break;} case READ_STATUS_LEFTLOW:{ LEFTLOW_CS1237Start(); App.Read1mSDelayCnt = 50; App.RStatus = READ_STATUS_WAIT_LEFTLOW; break;} case READ_STATUS_WAIT_LEFTLOW:{ if(App.Read1mSDelayCnt <= 0) { App.RStatus = READ_STATUS_RIGHTUP; } else if(App.LeftLowCS1237ReadEndFlag == true) { App.RStatus = READ_STATUS_RIGHTUP; } break;} case READ_STATUS_RIGHTUP:{ RIGHTUP_CS1237Start(); App.Read1mSDelayCnt = 50; App.RStatus = READ_STATUS_WAIT_RIGHTUP; break;} case READ_STATUS_WAIT_RIGHTUP:{ if(App.Read1mSDelayCnt <= 0) { App.RStatus = READ_STATUS_RIGHTLOW; } else if(App.RightUpCS1237ReadEndFlag == true) { App.RStatus = READ_STATUS_RIGHTLOW; } break;} case READ_STATUS_RIGHTLOW:{ RIGHTLOW_CS1237Start(); App.Read1mSDelayCnt = 50; App.RStatus = READ_STATUS_WAIT_RIGHTLOW; break;} case READ_STATUS_WAIT_RIGHTLOW:{ if(App.Read1mSDelayCnt <= 0) { App.RStatus = READ_STATUS_SUPPORT_CONT; } else if(App.RightLowCS1237ReadEndFlag == true) { App.RStatus = READ_STATUS_SUPPORT_CONT; } break;} case READ_STATUS_SUPPORT_CONT:{ if(App.LeftUpCS1237ReadEndFlag == true && App.LeftLowCS1237ReadEndFlag == true && App.RightUpCS1237ReadEndFlag == true && App.RightLowCS1237ReadEndFlag == true && App.WaitFlag == true) { #if(USE_AGC == 1) SupportControlHandle(App.LeftUpCS1237_TrendArray, App.LeftLowCS1237_TrendArray, App.RightUpCS1237_TrendArray, App.RightLowCS1237_TrendArray); #endif } App.RStatus = READ_STATUS_START; break;} } } static void AppLoopHandler(void) { switch(App.Status) { case APP_STATUS_IDLE:{ break;} case APP_STATUS_ON:{ App.Status = APP_STATUS_IDLE; break;} case APP_STATUS_OFF:{ App.Status = APP_STATUS_IDLE; break;} case APP_STATUS_START_BEEP:{ LED_RED_ON(); LED_GREEN_OFF(); Beeper_Start(200,200,2); App.TD1mSDelayCnt = 60000;//上电复位触发超时: 1分钟无复位帧返回则转异常状态 App.PwRstNoChg1mSCnt = 0;//清到底检测计数 App.PwRstLastHeight = App.MotorPara.Current_height;//记录初始高度用于到底检测 App.PwRstRiseRef = App.MotorPara.Current_height;//反弹判定参考高度初始化(只跟跌不跟涨) App.PwRstHtSeen = false;//高度基准未就绪, 收到首帧有效高度后再初始化参考值并启动到底检测 App.PwRstReboundCnt = 0;//清连续反弹计数 App.PwRstMinHeight = 1430;//历史最低高度初始化为量程上限, 收到首帧有效高度时精确初始化 App.PwRstBottomFlag = false; App.PwRstInchMode = false; App.PwRstInch1mSCnt = 0; App.PwRstInchNoMvCnt = 0; App.PwRstErrValid = false;//清报错码处理标志, 上电后首个报错码触发一次停顿 App.PwRstErrCode = 0; App.PwRstSamp1mSCnt = 0;//清高度采样计时 App.PwRstRiseCandCnt = 0;//清反弹候选计时 App.PwRstRiseCandMax = 0;//清反弹候选最高点 App.PwRstStartDlyCnt = 2000;//上电先延时2秒: 整体断电再上电时控制盒自身初始化未完成, 立即下降会因状态切换抖动误触发碰撞保护 App.PwRstMovedFlag = false;//未发生位移: 延时/控制盒软启动期间高度停滞不判堵转到底 App.Status = APP_STATUS_POWER_RESET;//上电先走复位流程, 保证换控制盒后高度基准一致, 再进入校准 break;} case APP_STATUS_POWER_RESET:{ /* 上电复位流程: 不判断高度一直下降(换控制盒后编码器可能错位, 高度信息不可信)。 到底检测(1ms例程): 反弹(高度较参考点反升>1cm, 控制盒碰撞保护主动反向)首次只 停1秒恢复下降观察(常规到底接触的小反弹会自行稳定), 再次反弹才判定碰撞转点动 下降(模拟手按, 每1000ms降200ms停800ms)一点点挪, 连续2个点动周期无位移才最终 确认到底且需接近历史最低点(停在高处=被障碍物/碰撞保护托住, 转点动试探; 全程 未反弹则高度2秒无变化确认)→停1秒→持续下降触发控制盒发复位 帧(01 04)→停2s→再下降→控制盒完成复位发高度帧(编码器基准重置, 高度一致)→直接 记录零点开始校准(去掉起步动作)。到底确认时清反弹计数, 确认后的下压反弹只停 1秒继续下压不转点动。 1分钟无复位帧返回则转异常状态(下降/点动有位移时自动刷新超时, 恢复流程不被打断) */ if(App.PwRstStartDlyCnt > 0) { //上电延时2秒: 等电机控制盒自身初始化完成再开始下降(延时期间控制盒发出的 //首帧高度帧同步把高度基准就绪), 避免控制盒未就绪时收到下降指令产生状态切换抖动 BDC_STOP(); break;} if(App.MotorPara.RestFlag == true) { //收到复位帧: 复位流程进行中 App.PowerResetFlag = true; if(App.RestStop1mSCnt > 0) { BDC_STOP();//复位停顿: 先停止电机, 让控制盒进入复位流程 } else { BDC_DOWN();//停顿结束: 下降完成复位, 收到高度帧后RestFlag清除 } App.TD1mSDelayCnt = 60000;//复位进行中, 刷新1分钟超时 } else if(App.PowerResetFlag == true) { //复位完成(收到高度帧, 复位标志清除): 车已在底部, 直接记录零点开始校准 App.PowerResetFlag = false; BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.MotorPara.CaliFlag = false; App.TD1mSDelayCnt = 1500; App.Status = APP_STATUS_ZERO_MARKING; } else if(App.TD1mSDelayCnt <= 0) { //1分钟无复位帧返回: 转异常状态(停机待机) BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.Status = APP_STATUS_IDLE; } else if(App.PwRstStop1mSCnt > 0) { //停顿: 反弹后或最终确认到底后先停止电机片刻(让控制盒碰撞保护状态稳定) BDC_STOP(); } else if(App.PwRstBottomFlag == true) { //最终确认到底: 和正常到底复位流程一样, 持续下降触发控制盒复位帧 //若再次触发碰撞保护(高度反升), 1ms例程会重新停1秒转点动 BDC_DOWN(); } else if(App.PwRstInchMode == true) { //点动下降(发生反弹后, 确认到底前): 模拟手按节奏(每1000ms降200ms停800ms), //一点点往下挪, 冲击小不触发碰撞保护 if(App.PwRstInch1mSCnt < 200) { BDC_DOWN(); } else { BDC_STOP(); if(App.PwRstInch1mSCnt >= 1000) { App.PwRstInch1mSCnt = 0; } } } else { //下降中(未触发过反弹): 到底检测在App1mSRoutine(真实1ms) BDC_DOWN();//一直下降, 直到确认到底 } break;} case APP_STATUS_ZERO_MARKING:{//上电复位完成后直接进入此状态记录零点(起步动作已去掉) if(App.TD1mSDelayCnt <= 0) { App.ADTrack.LeftUp_Org_AdZero = App.LeftUpCS1237_TrendArray[0]; App.ADTrack.LeftLow_Org_AdZero = App.LeftLowCS1237_TrendArray[0]; App.ADTrack.RightUp_Org_AdZero = App.RightUpCS1237_TrendArray[0]; App.ADTrack.RightLow_Org_AdZero = App.RightLowCS1237_TrendArray[0]; // DBG_LOG("Frist Pack Data LeftUp Zero AD: %08d\tLeftUp Zero AD: %08d\tRightUp Zero AD: %08d\tRightLow Zero AD: %08d\r\n", // App.ADTrack.LeftUp_Org_AdZero, // App.ADTrack.LeftLow_Org_AdZero, // App.ADTrack.RightUp_Org_AdZero, // App.ADTrack.RightLow_Org_AdZero); App.Status = APP_STATUS_WAIT_MOTOR_CALI_UP; App.MotorPara.InitialFlag = true; App.MotorPara.CaliNum = 0; App.TD1mSDelayCnt = TRAVEL_TIME_MS; App.StopFlag = false; App.UpFlag = true; BDC_UP(); App.CailUp1mSCnt = 0; App.MotorPara.LoopOne = false; } break;} case APP_STATUS_WAIT_MOTOR_CALI_UP:{ if(App.MotorPara.Current_height >= 1430 && App.CailUp1mSCnt >= 17000) { App.CailUp1mSCnt = 0; BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; Ddl_Delay1ms(1500); App.DownFlag = true; App.StopFlag = false; App.Status = APP_STATUS_WAIT_MOTOR_CALI_DOWN; BDC_DOWN(); } else if(App.MotorPara.CaliNum >= 410 && App.MotorPara.LoopOne == true) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.MotorPara.LoopOne = false; App.MotorPara.InitialFlag = false; App.MotorPara.CaliFlag = true; // DBG_LOG("===================LU Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.LU_HeightStress,431,7,341,430,4,0); // DBG_LOG("===================LL Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.LL_HeightStress,431,7,341,430,4,0); // DBG_LOG("===================RU Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.RU_HeightStress,431,7,341,430,4,0); // DBG_LOG("===================RL Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.RL_HeightStress,431,7,341,430,4,0); DBG_LOG("Motor Cali Ok\r\n"); App.TD1mSDelayCnt = 1000; App.Status = APP_STATUS_WAIT_STEADY; } break;} case APP_STATUS_WAIT_MOTOR_CALI_DOWN:{ if(App.MotorPara.Current_height <= 1005) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.MotorPara.LoopOne = true; Ddl_Delay1ms(1500); App.UpFlag = true; App.StopFlag = false; App.Status = APP_STATUS_WAIT_MOTOR_CALI_UP; BDC_UP(); App.CailUp1mSCnt = 0; } else if(App.MotorPara.CaliNum >= 410 && App.MotorPara.LoopOne == true) { BDC_STOP(); App.StopFlag = true; App.DownFlag = false; App.UpFlag = false; App.MotorPara.LoopOne = false; App.MotorPara.InitialFlag = false; App.MotorPara.CaliFlag = true; //DBG_LOG("===================LU Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.LU_HeightStress,431,7,341,430,4,0); // DBG_LOG("===================LL Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.LL_HeightStress,431,7,341,430,4,0); // DBG_LOG("===================RU Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.RU_HeightStress,431,7,341,430,4,0); // DBG_LOG("===================RL Data monitoring====================\r\n"); weightedMovingAverageWithEnhance(App.MotorPara.RL_HeightStress,431,7,341,430,4,0); DBG_LOG("Motor Cali Ok\r\n"); App.TD1mSDelayCnt = 1000; App.Status = APP_STATUS_WAIT_STEADY; } break;} case APP_STATUS_WAIT_STEADY:{ if(App.TD1mSDelayCnt <= 0) { App.SideFlag = false; App.CaliZeroFlag = false; App.UpFlag = false; App.DownFlag = false; App.EmeFlag = false; App.StopFlag = true; App.WaitFlag = true; App.Status = APP_STATUS_END_BEEP; } break;} case APP_STATUS_END_BEEP:{ Beeper_Start(300,0,1); LED_RED_OFF(); LED_GREEN_ON(); App.Status = APP_STATUS_HEIGHT_CONTROL; break;} case APP_STATUS_HEIGHT_CONTROL:{ if(App.MotorPara.OverheatFlag == true) { if(App.MotorPara.Current_height <= 1005) { BDC_DOWN();//过热+低位: 继续下降触发控制盒复位(SupportControlHandle在<=1005时不执行BDC_DOWN) } //过热+高位(>1005): 由SupportControlHandle根据传感器正常判断下降 } else if(App.MotorPara.RestFlag == true) { if(App.RestStop1mSCnt > 0) { BDC_STOP();//复位停顿: 先停止电机, 让控制盒进入复位流程 } else { BDC_DOWN();//停顿结束: 再次下降, 触发控制盒完成复位(收到高度帧后RestFlag清除) } } else if(App.MotorPara.Current_height <= 1005 && App.MotorPara.RestFlag == false && App.HeightContRolCnt >= 500 && GET_BIT0_DOUT() == 1 && GET_BIT1_DOUT() == 1) { App.HeightContRolCnt = 0; BDC_UP(); Ddl_Delay1ms(500); BDC_STOP(); } else if(App.MotorPara.Current_height >= 1425 && App.MotorPara.RestFlag == false && App.HeightContRolCnt >= 500 && GET_BIT0_DOUT() == 1 && GET_BIT1_DOUT() == 1) { App.HeightContRolCnt = 0; BDC_DOWN(); Ddl_Delay1ms(500); BDC_STOP(); } break;} } } static void App1mSRoutine(void) { if(App.TD1mSDelayCnt > 0) App.TD1mSDelayCnt--; if(App.Read1mSDelayCnt > 0) App.Read1mSDelayCnt--; if(App.Uart1Delay1mSCnt > 0) App.Uart1Delay1mSCnt--; if(App.Uart3RxTimeOut1mSCnt > 0) App.Uart3RxTimeOut1mSCnt--; if(App.RestStop1mSCnt > 0) App.RestStop1mSCnt--; if(App.PwRstStartDlyCnt > 0) App.PwRstStartDlyCnt--;//上电复位开始前延时(等控制盒初始化) if(App.PwRstStop1mSCnt > 0) { App.PwRstStop1mSCnt--; if(App.PwRstStop1mSCnt == 0) { //停顿结束: 反弹参考点重置为当前高度, 避免停顿中控制盒抬升高度导致恢复下降后立即误判反弹 App.PwRstRiseRef = App.MotorPara.Current_height; App.PwRstRiseCandCnt = 0;//清反弹候选(停顿期间残留计时, 防止恢复后快速误确认) App.PwRstRiseCandMax = App.MotorPara.Current_height; } } if(App.StopCollDelay1mSCnt > 0) App.StopCollDelay1mSCnt--; if(App.RunCollDelay1mSCnt > 0) App.RunCollDelay1mSCnt--; if(App.EmergencyDelay1mSCnt > 0) App.EmergencyDelay1mSCnt--; if(App.SlopeCollDelay1mSCnt > 0) App.SlopeCollDelay1mSCnt--; if(App.CentCollDelay1mSCnt > 0) App.CentCollDelay1mSCnt--; if(App.MotorPara.InitialFlag == true) App.CailUp1mSCnt++; if((App.MotorPara.Current_height < 1005 || App.MotorPara.Current_height > 1425)) { App.HeightContRolCnt++; } else { App.HeightContRolCnt = 0; } if(App.Status == APP_STATUS_POWER_RESET && App.PwRstHtSeen == true) { //上电复位高度采样: 每秒记录一次当前高度(覆盖停顿/点动/复位全程), 打印完整下降曲线, //直观展示控制盒上报高度的变化趋势, 用于排查反弹是物理现象还是逻辑误判 if(++App.PwRstSamp1mSCnt >= 1000) { App.PwRstSamp1mSCnt = 0; Uart3ErrLog_PushBottom(8, (uint16_t)App.MotorPara.Current_height); } } if(App.Status == APP_STATUS_POWER_RESET && App.MotorPara.RestFlag == false //复位进行中不检测 && App.PowerResetFlag == false //复位完成不检测 && App.PwRstStop1mSCnt == 0 //停顿中不检测 && App.PwRstStartDlyCnt == 0 //上电延时中不检测(车静止高度不变, 会误判堵转到底) && App.PwRstHtSeen == true) //未收到首帧有效高度不检测(高度基准未就绪) { //上电复位下降中: 到底检测(真实1ms计时, 主循环频率不定不能在此计数) //控制盒换新后缓存高度偏大(1000+), 到995本该减速仍全速下降, 硬触底产生震荡, //控制盒碰撞保护主动控制电机反向。策略: 首次反弹(高度较参考点反升>1cm)只停1秒 //恢复下降观察(常规到底接触的小反弹会自行稳定, 接着2秒堵转确认走正常流程), //再次反弹才判定硬触底震荡碰撞转点动下降(模拟手按, 约1秒一次短脉冲), 连续2个 //点动周期无位移判定到底, 之后和正常到底复位流程一样: 停1秒→下降触发复位帧 //→停2s→下降→收到高度帧复位完成。到底确认时清反弹计数, 确认后下压的反弹同样 //只停1秒继续下压, 不会转点动 //未反弹时堵转判定为高度2秒无变化(碰撞悬停时高度会冻结1~2秒, 尽量避开误判) //下降/点动有位移时刷新上电复位1分钟超时, 恢复流程不因总时长过长被停机 //历史最低高度参考: 确认到底必须接近最低点, 停在高处=被障碍物/碰撞保护托住, 转点动试探 if(App.MotorPara.Current_height < App.PwRstMinHeight) { //记录本次复位下降过程的历史最低高度(到底只可能是最低点) App.PwRstMinHeight = App.MotorPara.Current_height; } if(App.MotorPara.Current_height > App.PwRstRiseRef + 10) { //高度较参考点反升>1cm: 碰撞反弹候选(300ms持续确认, 滤除瞬时抖动毛刺) //启动/急停时机械抖动造成的高度毛刺只持续1~2帧, 直接判定会把正常高度误判为反弹 //参考点只跟跌不跟涨, 高度帧逐帧上升可跨帧累计检出, 不受帧率影响 App.PwRstNoChg1mSCnt = 0; if(App.PwRstRiseCandCnt == 0) { App.PwRstRiseCandMax = App.MotorPara.Current_height;//新候选起点: 重置最高点 } if(App.MotorPara.Current_height > App.PwRstRiseCandMax) { App.PwRstRiseCandMax = App.MotorPara.Current_height;//跟踪候选期间最高点 } if(App.PwRstRiseCandCnt < 300) { App.PwRstRiseCandCnt++;//候选持续计时(封顶300ms) } if(App.PwRstRiseCandCnt >= 300 && App.MotorPara.Current_height >= App.PwRstRiseCandMax - 2) { //反升持续300ms且高度未回落(仍接近候选期最高点): 确认真实反弹(控制盒碰撞保护反向) App.PwRstRiseCandCnt = 0; App.PwRstLastHeight = App.MotorPara.Current_height; App.PwRstRiseRef = App.MotorPara.Current_height;//参考点重置, 停顿结束恢复下降后重新判定 App.PwRstStop1mSCnt = 1000;//先停1秒, 等控制盒碰撞保护状态稳定 if(App.PwRstInchMode == true) { //点动中再反弹: 重置点动周期, 停1秒后继续点动 App.PwRstInchLastHeight = App.MotorPara.Current_height;//点动周期起点高度 App.PwRstInchNoMvCnt = 0; Uart3ErrLog_PushBottom(5, (uint16_t)App.MotorPara.Current_height);//打印反弹判定事件 } else if(App.PwRstReboundCnt == 0) { //首次反弹: 常规到底接触的小反弹, 停1秒恢复下降观察, 不转点动 App.PwRstReboundCnt = 1; Uart3ErrLog_PushBottom(7, (uint16_t)App.MotorPara.Current_height);//打印首次反弹观察事件 } else { //再次反弹: 确认硬触底震荡碰撞, 转点动模式(作废之前的到底确认重新确认) App.PwRstReboundCnt = 0; App.PwRstInchMode = true;//之后一律点动下降 App.PwRstBottomFlag = false;//之前确认的到底作废, 重新点动确认 App.PwRstInchLastHeight = App.MotorPara.Current_height;//点动周期起点高度 App.PwRstInchNoMvCnt = 0; Uart3ErrLog_PushBottom(5, (uint16_t)App.MotorPara.Current_height);//打印反弹判定事件 } } } else { if(App.PwRstRiseCandCnt > 0) { //反升未持续300ms(瞬时毛刺/急停抖动回归): 取消候选, 参考点重置为当前高度 //(低毛刺帧已把参考点拉低, 不重置的话回归后的正常高度会反复进入候选) App.PwRstRiseCandCnt = 0; App.PwRstRiseCandMax = App.MotorPara.Current_height; App.PwRstRiseRef = App.MotorPara.Current_height; } if(App.PwRstBottomFlag == true) { //到底已确认: 不再做到底检测, 持续下降直到收到复位帧(否则会反复触发堵转停顿) App.PwRstNoChg1mSCnt = 0; App.PwRstLastHeight = App.MotorPara.Current_height; } else if(App.PwRstInchMode == true) { //点动模式: 每个点动周期(1s)末尾比较该周期是否移动, 连续2周期无位移判定到底 if(App.PwRstInch1mSCnt == 999) { if(App.MotorPara.Current_height == App.PwRstInchLastHeight) { if(++App.PwRstInchNoMvCnt >= 2) { if(App.MotorPara.Current_height > App.PwRstMinHeight + 5) { //点动无位移但停在高于历史最低点: 被障碍物/碰撞保护托住, 不是到底, 继续点动试探 App.PwRstInchNoMvCnt = 0; } else { //连续2个点动周期无位移且接近历史最低点: 确认到底, 之后走正常到底复位流程 App.PwRstBottomFlag = true; App.PwRstReboundCnt = 0;//到底已确认, 清反弹计数(后续下压反弹只停1秒继续压) App.PwRstInchNoMvCnt = 0; App.PwRstStop1mSCnt = 1000;//停1秒后下降触发复位 Uart3ErrLog_PushBottom(4, (uint16_t)App.MotorPara.Current_height);//打印到底确认事件 } } } else { App.PwRstInchNoMvCnt = 0; App.PwRstInchLastHeight = App.MotorPara.Current_height; App.TD1mSDelayCnt = 60000;//点动脉冲有位移: 刷新上电复位超时 } } if(App.MotorPara.Current_height <= App.PwRstRiseRef) { App.PwRstRiseRef = App.MotorPara.Current_height;//点动脉冲下降时参考点跟随(只跟跌不跟涨) } } else { if(App.MotorPara.Current_height <= App.PwRstRiseRef) { App.PwRstRiseRef = App.MotorPara.Current_height;//下降/持平: 参考点跟随(只跟跌不跟涨) } if(App.MotorPara.Current_height != App.PwRstLastHeight) { //高度变化: 电机已响应下降指令, 标记已位移(此后高度稳定才可能是堵转到底) App.PwRstMovedFlag = true; App.PwRstNoChg1mSCnt = 0; App.PwRstLastHeight = App.MotorPara.Current_height; App.TD1mSDelayCnt = 60000;//高度在变(下降/反弹中): 刷新上电复位超时 } else if(App.PwRstMovedFlag == true) { //高度稳定且已发生过位移: 才允许堵转到底判定 if(++App.PwRstNoChg1mSCnt >= 2000) { if(App.MotorPara.Current_height > App.PwRstMinHeight + 5) { //高度2秒无变化但停在高于历史最低点: 碰撞后控制盒把车托在障碍物上, 不是到底, //转点动模式一点点试探下行 App.PwRstReboundCnt = 0; App.PwRstInchMode = true; App.PwRstInchLastHeight = App.MotorPara.Current_height;//点动周期起点高度 App.PwRstInchNoMvCnt = 0; App.PwRstNoChg1mSCnt = 0; App.PwRstStop1mSCnt = 1000;//先停1秒再开始点动 Uart3ErrLog_PushBottom(5, (uint16_t)App.MotorPara.Current_height);//打印碰撞托住转点动事件 } else { //2秒无高度变化且接近历史最低点: 确认到底(未触发过反弹时的堵转判定) App.PwRstBottomFlag = true; App.PwRstReboundCnt = 0;//到底已确认, 清反弹计数(后续下压反弹只停1秒继续压) App.PwRstNoChg1mSCnt = 0; App.PwRstStop1mSCnt = 1000;//停1秒后下降触发复位 Uart3ErrLog_PushBottom(4, (uint16_t)App.MotorPara.Current_height);//打印到底确认事件 } } } else { //高度稳定但电机从未响应(上电延时后控制盒软启动中): 不累积堵转计时 App.PwRstNoChg1mSCnt = 0; } } } } if(App.PwRstInch1mSCnt < 1000) App.PwRstInch1mSCnt++; App.FeedDogDlyCnt++; } void FeedDogHandler(void) { if(App.FeedDogDlyCnt >= 200) { FeedDog(); App.FeedDogDlyCnt = 0; } } int main(void) { BSP_Init(); AppInit(); while(1) { #if(USE_WDT == 1) FeedDogHandler(); #endif DebugLoopHandler(); Uart3ErrLogLoopHandler(); //打印控制盒报错→复位→恢复事件时间线 #if(USE_CS1237_LEFTUP == 1) LEFTUP_CS1237DataLoopCollect(); #endif #if(USE_CS1237_LEFTLOW == 1) LEFTLOW_CS1237DataLoopCollect(); #endif #if(USE_CS1237_RIGHTUP == 1) RIGHTUP_CS1237DataLoopCollect(); #endif #if(USE_CS1237_RIGHTLOW == 1) RIGHTLOW_CS1237DataLoopCollect(); #endif ReadLoopHandler(); DcmotorLoopHandler(); BeeperLoopHandler(); AdcLoopHander(); AppLoopHandler(); } } /***************************************************************************************** * 函数名称: SysTick_IrqHandler * 功能描述: 系统滴答中断 * 参 数: 无 * 返 回 值: 无 *****************************************************************************************/ void SysTick_IrqHandler(void) { SysTick_IncTick(); App1mSRoutine(); Dbg1msRoutine(); LEFTUP_CS12371mSRoutine(); LEFTLOW_CS12371mSRoutine(); RIGHTUP_CS12371mSRoutine(); RIGHTLOW_CS12371mSRoutine(); Beeper_ClearDelay(); Dcmotor1msRoutine(); Adc1mSRoutine(); } /***************************************************************************************** * 函数名称: DBG_RxPinIntCallBack * 功能描述: DBG接收中断回调函数 * 参 数: 无 * 返 回 值: 无 *****************************************************************************************/ void DBG_RxPinIntCallBack(void) { //PORT_Toggle(LED_Blue_PORT, LED_Blue_PIN); } #if(USE_USART3 == 1) // 定义函数Usart3RxIrqCallback,用于处理串口接收中断 void Usart3RxIrqCallback(void) { // 如果1分钟超时计数器为0,则清空RxLen if(App.Uart3RxTimeOut1mSCnt == 0) { App.RxUart3Data.HeaderFrame = false; App.RxUart3Data.RxLen = 0; } App.Uart3RxTimeOut1mSCnt = 5; // 读取串口接收到的数据 uint8_t Data = Uart3Rec(); if(App.RxUart3Data.HeaderFrame == false) { if(App.RxUart3Data.RxLen == 0 && Data == 0x01) { App.RxUart3Data.HeaderFrame = true; App.RxUart3Data.RxLen = 0; App.RxUart3Data.RxBuff[App.RxUart3Data.RxLen++] = Data; } else if(App.RxUart3Data.RxLen == 0) { App.RxUart3Data.HeaderFrame = true; App.RxUart3Data.RxLen = 0; App.RxUart3Data.RxBuff[App.RxUart3Data.RxLen++] = Data; } } else { // if(App.RxUart3Data.RxLen == 1 && Data != 0x01) // { // App.RxUart3Data.HeaderFrame = false; // return; // } // 如果RxLen小于128,则将数据添加到RxBuff中 if(App.RxUart3Data.RxLen < 128) { App.RxUart3Data.RxBuff[App.RxUart3Data.RxLen++] = Data; } if(App.RxUart3Data.RxLen >= 4) { if(App.RxUart3Data.RxBuff[0] == 0x01 && App.RxUart3Data.RxBuff[1] == 0x04) { uint8_t firstErr = (App.MotorPara.RestFlag == false) ? 0 : 1; //0:首次信息帧 1:复位中回应 App.MotorPara.RestFlag = true; App.MotorPara.OverheatFlag = false;//收到复位帧, 过热状态解除 if(firstErr == 0) { App.RestStop1mSCnt = 2000;//首次收到复位帧: 启动停顿计时, 先停止电机让控制盒进入复位流程, 计时结束再下降触发复位 } Uart3ErrLog_Push(firstErr, App.RxUart3Data.RxBuff, 0);//打印复位帧事件(0:首次触发 1:复位中回应) } else if(App.RxUart3Data.RxBuff[0] == 0x01 && App.RxUart3Data.RxBuff[1] == 0x01) { int16_t h = ((App.RxUart3Data.RxBuff[2]<<8) & 0xff00) + (App.RxUart3Data.RxBuff[3] & 0x00ff); if(App.MotorPara.RestFlag == true) { Uart3ErrLog_Push(2, App.RxUart3Data.RxBuff, (uint16_t)h);//打印复位完成事件(收到高度帧) } App.MotorPara.RestFlag = false; App.MotorPara.OverheatFlag = false;//收到高度帧, 确认复位完成 if(h >= 990 && h <= 1430) { App.MotorPara.Current_height = h; if(App.Status == APP_STATUS_POWER_RESET && App.PwRstHtSeen == false) { //上电复位中首次收到有效高度帧: 高度基准就绪, 以首帧高度初始化到底检测参考值 //(此前Current_height为0, 若用入口时的0做参考, 首帧会被误判为碰撞反弹) App.PwRstHtSeen = true; App.PwRstLastHeight = h; App.PwRstRiseRef = h; App.PwRstMinHeight = h; } } if(App.MotorPara.InitialFlag == true && h >= 1000 && h <= 1430) {//缓存每个高度点对于零点应力的差值,对不同高度点的应力进行补偿 if(App.MotorPara.LU_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] == 0 || App.MotorPara.LL_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] == 0 || App.MotorPara.RU_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] == 0 || App.MotorPara.RL_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] == 0) { App.MotorPara.CaliNum++; } App.MotorPara.LU_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] = App.ADTrack.LeftUp_Org_AdZero - App.LeftUpCS1237_TrendArray[0]; App.MotorPara.LL_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] = App.ADTrack.LeftLow_Org_AdZero - App.LeftLowCS1237_TrendArray[0]; App.MotorPara.RU_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] = App.ADTrack.RightUp_Org_AdZero - App.RightUpCS1237_TrendArray[0]; App.MotorPara.RL_HeightStress[HEIGHT_TO_IDX(App.MotorPara.Current_height)] = App.ADTrack.RightLow_Org_AdZero - App.RightLowCS1237_TrendArray[0]; } } else { //未知帧(帧头非01 04/01 01): 过热等其它报错可能是任意组合, 全部记录供分析 /* 报错帧(01 02 xx xx): 置OverheatFlag, HEIGHT_CONTROL跳过限位纠偏, 由SupportControlHandle判断下降触发控制盒复位 已知报错帧: 01 02 00 10(过热) 01 02 40 00(E07) 01 02 00 08(E12) 01 02 02 00(E02) */ if(App.RxUart3Data.RxBuff[0] == 0x01 && App.RxUart3Data.RxBuff[1] == 0x02) { uint16_t errCode = ((uint16_t)App.RxUart3Data.RxBuff[2] << 8) | App.RxUart3Data.RxBuff[3]; App.MotorPara.OverheatFlag = true; if(App.Status == APP_STATUS_POWER_RESET && App.MotorPara.RestFlag == false && (App.PwRstErrValid == false || App.PwRstErrCode != errCode)) { //上电复位中收到报错帧: 退出点动流程, 置到底标志关掉到底检测, 先停1秒再 //长按下降(持续下降)等复位帧。同一报错码连发只处理一次(沿触发): 控制盒报错 //状态会持续广播报错帧, 若每帧都重启1秒停顿则停顿被无限续期, 长按下降永远 //无法执行, 复位帧永远等不到; 不同报错码视为新报错重新停顿一次 App.PwRstErrValid = true; App.PwRstErrCode = errCode; App.PwRstInchMode = false; App.PwRstBottomFlag = true; App.PwRstInch1mSCnt = 0; App.PwRstInchNoMvCnt = 0; App.PwRstNoChg1mSCnt = 0; App.PwRstStop1mSCnt = 1000;//先停1秒再继续下降触发复位 App.PwRstLastHeight = App.MotorPara.Current_height; App.PwRstRiseRef = App.MotorPara.Current_height;//参考点重置, 长按下降中再反弹仍可检出 App.PwRstReboundCnt = 0;//清反弹计数, 长按下降中反弹只停1秒继续压不转点动 } } Uart3ErrLog_Push(3, App.RxUart3Data.RxBuff, 0);//打印未知帧事件(过热帧01 02 00 10, E07帧01 02 40 00等) } memset(App.RxUart3Data.RxBuff, 0, sizeof(App.RxUart3Data.RxBuff)); App.RxUart3Data.RxLen = 0; App.Uart3RxTimeOut1mSCnt = 0; App.RxUart3Data.HeaderFrame = false; } } } #endif void RtcPeriod_IrqCallback(void) { //PORT_Toggle(LED_Green_PORT, LED_Green_PIN); } void ADC_DMA_CallBack(void) { }