PX4 User Guide
  • Introduction
  • Getting Started
    • Basic Concepts
    • Vehicles/Frames
    • Flight Controllers
    • Sensors
    • Radio Systems
    • Flight Modes
    • Vehicle Status Notifications
      • LED Meanings
      • Tune/Sound Meanings
      • Preflight Checks
    • Payloads & Cameras
    • Flight Reporting
  • Basic Assembly
    • Mounting the Flight Controller
    • Mounting the GPS/Compass
    • Vibration Isolation
    • Cable Wiring
    • CUAV Pixhawk V6X Wiring QuickStart
    • CUAV V5+ Wiring Quickstart
    • CUAV V5 nano Wiring Quickstart
    • Holybro Pixhawk 6C Wiring Quickstart
    • Holybro Pixhawk 6X Wiring Quickstart
    • Holybro Pixhawk 5X Wiring Quickstart
    • Holybro Pixhawk 4 Wiring Quickstart - Discontinued
    • Holybro Pixhawk 4 Mini Wiring Quickstart - Discontinued
    • Holybro Durandal Wiring Quickstart
    • Holybro Pix32 v5 Wiring Quickstart
    • Cube Wiring Quickstart
    • Pixracer Wiring Quickstart
    • mRo (3DR) Pixhawk Wiring Quickstart
  • Standard Configuration
    • Firmware
    • Airframe
    • Sensor Orientation
    • Compass
    • Gyroscope
    • Accelerometer
    • Airspeed
    • Level Horizon Calibration
    • Radio Setup
    • Joystick Setup
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    • Battery
    • Safety
      • Failsafe Simulation
    • ESC Calibration
    • Actuators
    • Autotune
  • Vehicle Types & Setup
    • Multicopters
      • Multicopter Config/Tuning
        • MC Filter/Control Latency Tuning
        • MC PID Tuning (Manual/Basic)
        • MC PID Tuning Guide (Manual/Advanced)
        • MC Setpoint Tuning (Trajectory Generator)
          • MC Jerk-limited Type Trajectory
        • Multicopter Racer Setup
      • X500 v2 (Pixhawk 6C)
      • X500 v2 (Pixhawk 5X)
      • X500 (Pixhawk 4)
      • S500 V2 (Pixhawk 4)
      • DJI F450 (CUAV v5+)
      • DJI F450 (CUAV v5 nano)
      • QAV250 (Pixhawk4 Mini) - Discontinued
      • DJI F450 + RTK (Pixhawk 3 Pro)
      • QAV250 (Pixhawk Mini)
      • QAV-R 5" Racer (Pixracer)
      • Omnicopter
    • Planes
      • Fixed Wing Config/Tuning
        • Fixedwing PID Tuning Guide
        • Fixedwing Advanced Tuning Guide
        • Fixedwing Trimming Guide
      • Reptile Dragon 2 (ARK6X)
      • Turbo Timber Evolution (Pixhawk 4 Mini)
      • Wing Wing Z84 (Pixracer)
    • VTOL
      • VTOL Config/Tuning
        • QuadPlane Configuration
        • Back-transition Tuning
        • VTOL w/o Airspeed Sensor
        • VTOL Weather Vane
      • Standard VTOL
        • FunCub QuadPlane (Pixhawk)
        • Ranger QuadPlane (Pixhawk)
        • Falcon Vertigo QuadPlane (Dropix)
      • Tailsitter VTOL
        • Build: TBS Caipiroshka Tailsitter Build (Pixracer)
      • Tiltrotor VTOL
        • Build: Convergence Tiltrotor (Pixfalcon)
    • Airships (experimental)
    • Autogyros (experimental)
      • ThunderFly Auto-G2 (Holybro pix32)
    • Balloons (experimental)
    • Helicopter (experimental)
      • Helicopter Config/Tuning
    • Rovers (experimental)
      • Traxxas Stampede
    • Submarines (experimental)
      • BlueROV2
    • Airframes Reference
  • Flying
    • First Flight Guidelines
    • Flying 101
    • Missions
      • Package Delivery Mission
    • GeoFence
    • Safety Point Planning
    • Flight Modes
      • Position Mode (MC)
      • Altitude Mode (MC)
      • Manual/Stabilized Mode (MC)
      • Acro Mode (MC)
      • Orbit Mode (MC)
      • Position Mode (FW)
      • Altitude Mode (FW)
      • Stabilized Mode (FW)
      • Acro Mode (FW)
      • Manual Mode (FW)
      • Takeoff Mode
      • Land Mode
      • Return Mode
      • Hold Mode
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      • Offboard Mode
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  • Advanced Configuration
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    • Complete Vehicles
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    • Flight Controllers (Autopilots)
      • Pixhawk Series
        • Silicon Errata
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        • CUAV Pixhawk V6X (FMUv6X)
        • Holybro Pixhawk 6X (FMUv6X)
        • Holybro Pixhawk 6C (FMUv6C)
        • Holybro Pixhawk 6C Mini(FMUv6C)
        • Holybro Pix32 v6 (FMUv6C)
        • Holybro Pixhawk 5X (FMUv5X)
        • Holybro Pixhawk 4 (FMUv5) - Discontinued
        • Holybro Pixhawk 4 Mini (FMUv5) - Discontinued
        • Drotek Pixhawk 3 Pro (FMUv4pro)
        • mRo Pixracer (FMUv4)
        • Hex Cube Black (FMUv3)
        • mRo Pixhawk (FMUv3)
        • Holybro Pixhawk Mini (FMUv3) - Discontinued
      • Manufacturer-Supported Autopilots
        • AirMind MindPX
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        • ARK Electronics ARKV6X
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        • CubePilot Cube Yellow (CubePilot)
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      • Discontinued Autopilots/Vehicles
        • Drotek Dropix (FMUv2)
        • Omnibus F4 SD
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        • Bitcraze Crazyflie 2.0
        • Aerotenna OcPoC-Zynq Mini
        • CUAV v5
        • Holybro Kakute F7 (Discontinued)
        • Holybro Pixfalcon
        • Holybro pix32 (FMUv2)
        • mRo AUAV-X2
        • 3DR Pixhawk 1
        • Snapdragon Flight
        • Intel® Aero RTF Drone (Discontinued)
      • Pixhawk Autopilot Bus (PAB) & Carriers
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      • ESCs & Motors
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On this page
  • Firmware & Basic Settings
  • Flight / Transition Mode Switch
  • Multirotor / Fixed Wing Tuning
  • Transition Tuning
  • Transitioning Tips
  • Support
  1. Vehicle Types & Setup
  2. VTOL
  3. VTOL Config/Tuning

QuadPlane Configuration

PreviousVTOL Config/TuningNextBack-transition Tuning

Last updated 1 year ago

This is the configuration documentation for a , also known as a "QuadPlane VTOL". This is essentially a fixed wing vehicle with the addition of quadcopter motors.

For airframe specific documentation and build instructions see .

Firmware & Basic Settings

  1. Run QGroundControl

  2. Flash the firmware for your current release or master (PX4 main branch build).

  3. In the section select the appropriate VTOL airframe.

    If your airframe is not listed select the frame.

Flight / Transition Mode Switch

You should assign a switch on your RC controller for switching between the multicopter- and fixed wing modes.

:::note While PX4 allows flight without an RC controller, you must have one when tuning/configuring up a new airframe. :::

This is done in configuration, where you to switches on your RC controller. The switch can also be assigned using the parameter .

The switch in the off-position means that you are flying in multicopter mode.

Multirotor / Fixed Wing Tuning

Before you attempt your first transition to fixed wing flight you need to make absolutely sure that your VTOL is well tuned in multirotor mode. One reason is this is the mode you will return to if something goes wrong with a transition and it could be it will be moving fairly quickly already. If it isn’t well tuned bad things might happen.

If you have a runway available and the total weight isn’t too high you will also want to tune fixed wing flight as well. If not then you will be attempting this when it switches to fixed wing mode. If something goes wrong you need to be ready (and able) to switch back to multirotor mode.

Follow the respective tuning guides on how to tune multirotors and fixed wings.

Transition Tuning

While it might seem that you are dealing with a vehicle that can fly in two modes (multirotor for vertical takeoffs and landings and fixed wing for forwards flight) there is an additional state you also need to tune: transition.

Getting your transition tuning right is important for obtaining a safe entry into fixed wing mode, for example, if your airspeed is too slow when it transitions it might stall.

Transition Throttle

Front transition throttle defines the target throttle for the pusher/puller motor during the front transition.

This must be set high enough to ensure that the transition airspeed is reached. If your vehicle is equipped with an airspeed sensor then you can increase this parameter to make the front transition complete faster. For your first transition you are better off setting the value higher than lower.

Forward Transition Pusher/Puller Slew Rate

A forward transition refers to the transition from multirotor to fixed-wing mode. The forward transition pusher/puller slew rate is the amount of time in seconds that should be spent ramping up the throttle to the target value (defined by VT_F_TRANS_THR).

A value of 0 will result in commanding the transition throttle value being set immediately. By default the slew rate is set to 0.33, meaning that it will take 3s to ramp up to 100% throttle. If you wish to make throttling-up smoother you can reduce this value.

Note that once the ramp up period ends throttle will be at its target setting and will remain there until (hopefully) the transition speed is reached.

Blending Airspeed

By default, as the airspeed gets close to the transition speed, multirotor attitude control will be reduced and fixed wing control will start increasing continuously until the transition occurs.

Disable blending by setting this parameter to 0 which will keep full multirotor control and zero fixed wing control until the transition occurs.

Transition Airspeed

This is the airspeed which, when reached, will trigger the transition out of multirotor mode into fixed wing mode. It is critical that you have properly calibrated your airspeed sensor. It is also important that you pick an airspeed that is comfortably above your airframes stall speed (check FW_AIRSPD_MIN) as this is currently not checked.

Transitioning Tips

As already mentioned make sure you have a well tuned multirotor mode. If during a transition something goes wrong you will switch back to this mode and it should be quite smooth.

Before you fly have a plan for what you will do in each of the three phases (multirotor, transition, fixed wing) when you are in any of them and something goes wrong.

Battery levels: leave enough margin for a multirotor transition for landing at the end of your flight. Don’t run your batteries too low as you will need more power in multirotor mode to land. Be conservative.

Transition: Getting Ready

Make sure you are at least 20 meters above ground and have enough room to complete a transition. It could be that your VTOL will lose height when it switches to fixed wing mode, especially if the airspeed isn’t high enough.

Transition into the wind, whenever possible otherwise it will travel further from you before it transitions.

Make sure the VTOL is in a stable hover before you start the transition.

Transition: Multirotor to Fixed Wing (Front-transition)

As soon as you notice the transition happen be ready to handle height loss which may include throttling up quickly.

:::warning The following feature has been discussed but not implemented yet:

  • Once the transition happens the multirotor motors will stop and the pusher/puller throttle will remain at the VT_F_TRANS_THR level until you move the throttle stick, assuming you are in manual mode. :::

Transition: Fixed Wing to Multirotor (Back-transition)

When you transition back to multirotor mode bring your aircraft in on a straight level approach and reduce its speed, flip the transition switch and it will start the multirotor motors and stop the pusher/puller prop immediately and should result in a fairly smooth gliding transition.

Consider that the throttle value you have when you transition will command the amount of thrust your multirotor has at the moment of the switch. Because the wing will still be flying you’ll find you have plenty of time to adjust your throttle to achieve/hold a hover.

Aborting a Transition

It’s important to know what to expect when you revert a transition command during a transition.

When transitioning from multirotor to fixed wing (transition switch is on/fixed wing) then reverting the switch back (off/multirotor position) before the transition happens it will immediately return to multirotor mode.

When transitioning from fixed wing to multirotor for this type of VTOL the switch is immediate so there isn’t really a backing out option here, unlike for tilt rotor VTOLs. If you want it to go back into fixed wing you will need to go through the full transition. If it’s still travelling fast this should happen quickly.

Support

Parameter:

Parameter:

Parameter:

Parameter:

Start your transition. It should transition within 50 – 100 meters. If it doesn’t or it isn’t flying in a stable fashion abort the transition (see below) and land or hover back to the start position and land. Try increasing the (VT_F_TRANS_THR) value. Also consider reducing the transition duration (VT_F_TRANS_DUR) if you are not using an airspeed sensor. If you are using an airspeed sensor consider lowering the transition airspeed but stay well above the stall speed.

For advanced tuning of the back-transition please refer to the

If you have any questions regarding your VTOL conversion or configuration please see .

Back-transition Tuning Guide
discuss.px4.io/c/px4/vtol
transition throttle
VTOL Framebuilds
Frame setup
Flight Mode
assign flight modes and other functions
Generic Standard VTOL
Generic Standard VTOL
RC_MAP_TRANS_SW
VT_F_TRANS_THR
VT_PSHER_SLEW
VT_ARSP_BLEND
VT_ARSP_TRANS