mirror of https://github.com/ArduPilot/ardupilot
Blimp: Fix inverted throttle
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81650d34a3
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@ -107,7 +107,7 @@ bool AP_Arming_Blimp::parameter_checks(bool display_failure)
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// failsafe parameter checks
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if (blimp.g.failsafe_throttle) {
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// check throttle min is above throttle failsafe trigger and that the trigger is above ppm encoder's loss-of-signal value of 900
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if (blimp.channel_down->get_radio_min() <= blimp.g.failsafe_throttle_value+10 || blimp.g.failsafe_throttle_value < 910) {
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if (blimp.channel_up->get_radio_min() <= blimp.g.failsafe_throttle_value+10 || blimp.g.failsafe_throttle_value < 910) {
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check_failed(ARMING_CHECK_PARAMETERS, display_failure, "Check FS_THR_VALUE");
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return false;
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}
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@ -111,7 +111,7 @@ private:
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// primary input control channels
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RC_Channel *channel_right;
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RC_Channel *channel_front;
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RC_Channel *channel_down;
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RC_Channel *channel_up;
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RC_Channel *channel_yaw;
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AP_Logger logger;
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@ -106,7 +106,7 @@ bool RC_Channel_Blimp::do_aux_function(const aux_func_t ch_option, const AuxSwit
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case AUX_FUNC::SAVE_TRIM:
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if ((ch_flag == AuxSwitchPos::HIGH) &&
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(blimp.control_mode <= Mode::Number::MANUAL) &&
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(blimp.channel_down->get_control_in() == 0)) {
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(blimp.channel_up->get_control_in() == 0)) {
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blimp.save_trim();
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}
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break;
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@ -19,7 +19,7 @@ Mode::Mode(void) :
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loiter(blimp.loiter),
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channel_right(blimp.channel_right),
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channel_front(blimp.channel_front),
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channel_down(blimp.channel_down),
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channel_up(blimp.channel_up),
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channel_yaw(blimp.channel_yaw),
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G_Dt(blimp.G_Dt)
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{ };
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@ -108,7 +108,7 @@ protected:
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Loiter *&loiter;
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RC_Channel *&channel_right;
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RC_Channel *&channel_front;
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RC_Channel *&channel_down;
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RC_Channel *&channel_up;
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RC_Channel *&channel_yaw;
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float &G_Dt;
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@ -18,7 +18,7 @@ void Blimp::arm_motors_check()
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}
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// ensure throttle is down
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if (channel_down->get_control_in() > 0) { //MIR what dow we do with this?
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if (channel_up->get_control_in() > 0) { //MIR what dow we do with this?
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arming_counter = 0;
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return;
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}
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@ -8,7 +8,7 @@ void Blimp::default_dead_zones()
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{
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channel_right->set_default_dead_zone(20);
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channel_front->set_default_dead_zone(20);
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channel_down->set_default_dead_zone(30);
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channel_up->set_default_dead_zone(30);
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channel_yaw->set_default_dead_zone(20);
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rc().channel(CH_6)->set_default_dead_zone(0);
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}
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@ -17,14 +17,14 @@ void Blimp::init_rc_in()
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{
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channel_right = rc().channel(rcmap.roll()-1);
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channel_front = rc().channel(rcmap.pitch()-1);
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channel_down = rc().channel(rcmap.throttle()-1);
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channel_up = rc().channel(rcmap.throttle()-1);
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channel_yaw = rc().channel(rcmap.yaw()-1);
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// set rc channel ranges
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channel_right->set_angle(RC_SCALE);
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channel_front->set_angle(RC_SCALE);
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channel_yaw->set_angle(RC_SCALE);
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channel_down->set_angle(RC_SCALE);
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channel_up->set_angle(RC_SCALE);
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// set default dead zones
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default_dead_zones();
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@ -58,14 +58,14 @@ void Blimp::read_radio()
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if (rc().read_input()) {
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ap.new_radio_frame = true;
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set_throttle_and_failsafe(channel_down->get_radio_in());
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set_throttle_zero_flag(channel_down->get_control_in());
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set_throttle_and_failsafe(channel_up->get_radio_in());
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set_throttle_zero_flag(channel_up->get_control_in());
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// RC receiver must be attached if we've just got input
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ap.rc_receiver_present = true;
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const float dt = (tnow_ms - last_radio_update_ms)*1.0e-3f;
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rc_throttle_control_in_filter.apply(channel_down->get_control_in(), dt);
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rc_throttle_control_in_filter.apply(channel_up->get_control_in(), dt);
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last_radio_update_ms = tnow_ms;
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return;
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}
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