mirror of https://github.com/ArduPilot/ardupilot
161 lines
7.6 KiB
Lua
161 lines
7.6 KiB
Lua
-- This script will preform a control surface doublet
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-- The desired axis to perform a doublet on is selected and started with a momentary switch
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-- The plane maintains trim conditions while the switch is activated using servo overrides
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-- If the momentary switch is released before "DOUBLET FINISHED" is seen on the GCS,
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-- the aircraft recovers to FBWA mode to assist the pilot.
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-- Magnitude and duration of the doublet can also be controlled.
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-- It is suggested to allow the aircraft to trim for straight, level, unaccelerated flight (SLUF) in FBWB mode before
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-- starting a doublet
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-- Charlie Johnson, Oklahoma State University 2020
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-- luacheck: only 0
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local DOUBLET_ACTION_CHANNEL = 6 -- RCIN channel to start a doublet when high (>1700)
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local DOUBLET_CHOICE_CHANNEL = 7 -- RCIN channel to choose elevator (low) or rudder (high)
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local DOUBLET_FUCNTION = 19 -- which control surface (SERVOx_FUNCTION) number will have a doublet happen
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-- A (Servo 1, Function 4), E (Servo 2, Function 19), and R (Servo 4, Function 21)
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local DOUBLET_MAGNITUDE = 6 -- defined out of 45 deg used for set_output_scaled
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local DOUBLET_TIME = 500 -- period of doublet signal in ms
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-- flight mode numbers for plane https://mavlink.io/en/messages/ardupilotmega.html
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local MODE_MANUAL = 0
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local MODE_FBWA = 5
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local MODE_FBWB = 6
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local MODE_RTL = 11
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local K_AILERON = 4
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local K_ELEVATOR = 19
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local K_THROTTLE = 70
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local K_RUDDER = 21
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-- store timing information during doublet
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local start_time = -1
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local end_time = -1
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local now = -1
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local desired_mode = -1
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-- store information about the doublet channel
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local doublet_srv_chan = SRV_Channels:find_channel(DOUBLET_FUCNTION)
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local doublet_srv_min = param:get("SERVO" .. doublet_srv_chan + 1 .. "_MIN")
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local doublet_srv_max = param:get("SERVO" .. doublet_srv_chan + 1 .. "_MAX")
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local doublet_srv_trim = param:get("SERVO" .. doublet_srv_chan + 1 .. "_TRIM")
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local pre_doublet_mode = vehicle:get_mode()
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function retry_set_mode(mode)
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if vehicle:set_mode(mode) then
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-- if the mode was set successfully, carry on as normal
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desired_mode = -1
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return doublet, 1
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else
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-- if the mode was not set successfully, try again ASAP
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desired_mode = mode
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return retry_set_mode, 1
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end
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end
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function doublet()
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local callback_time = 100
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if arming:is_armed() == true and rc:get_pwm(DOUBLET_ACTION_CHANNEL) > 1700 and end_time ==-1 then
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-- try for the best timing possible while performing a doublet
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callback_time = DOUBLET_TIME / 10
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-- start a quick doublet based on some math/logic
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now = millis()
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if start_time == -1 then
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-- this is the time that we started
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-- stop time will be start_time + DOUBLET_TIME
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start_time = now
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pre_doublet_mode = vehicle:get_mode()
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-- are we doing a doublet on elevator or rudder? set the other controls to trim
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local doublet_choice_pwm = rc:get_pwm(DOUBLET_CHOICE_CHANNEL)
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local trim_funcs = {}
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local pre_doublet_elevator = SRV_Channels:get_output_pwm(K_ELEVATOR)
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if doublet_choice_pwm < 1500 then
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-- doublet on elevator
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DOUBLET_FUCNTION = K_ELEVATOR
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trim_funcs = {K_AILERON, K_RUDDER}
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DOUBLET_MAGNITUDE = 12
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doublet_srv_trim = pre_doublet_elevator
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else
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-- doublet on rudder
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DOUBLET_FUCNTION = K_RUDDER
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trim_funcs = {K_AILERON}
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DOUBLET_MAGNITUDE = 15
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-- pin elevator to current position. This is most likely different than the _TRIM value
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SRV_Channels:set_output_pwm_chan_timeout(SRV_Channels:find_channel(K_ELEVATOR), pre_doublet_elevator, DOUBLET_TIME * 4)
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end
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-- notify the gcs that we are starting a doublet
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gcs:send_text(6, "STARTING DOUBLET " .. DOUBLET_FUCNTION)
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-- get info about the doublet channel
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doublet_srv_chan = SRV_Channels:find_channel(DOUBLET_FUCNTION)
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doublet_srv_min = param:get("SERVO" .. doublet_srv_chan + 1 .. "_MIN")
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doublet_srv_max = param:get("SERVO" .. doublet_srv_chan + 1 .. "_MAX")
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-- set the channels that need to be pinned to trim until the doublet is done
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for i = 1, #trim_funcs do
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local trim_chan = SRV_Channels:find_channel(trim_funcs[i])
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local trim_pwm = param:get("SERVO" .. trim_chan + 1 .. "_TRIM")
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SRV_Channels:set_output_pwm_chan_timeout(trim_chan, trim_pwm, DOUBLET_TIME * 2)
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end
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-- get the current throttle PWM and pin it there until the doublet is done
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local pre_doublet_throttle = SRV_Channels:get_output_pwm(K_THROTTLE)
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SRV_Channels:set_output_pwm_chan_timeout(
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SRV_Channels:find_channel(K_THROTTLE),
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pre_doublet_throttle,
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DOUBLET_TIME * 3
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)
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-- enter manual mode
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retry_set_mode(MODE_MANUAL)
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end
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-- split time evenly between high and low signal
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if now < start_time + (DOUBLET_TIME / 2) then
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down = doublet_srv_trim - math.floor((doublet_srv_trim - doublet_srv_min) * (DOUBLET_MAGNITUDE / 45))
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SRV_Channels:set_output_pwm_chan_timeout(doublet_srv_chan, down, DOUBLET_TIME / 2 + 100)
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elseif now < start_time + DOUBLET_TIME then
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up = doublet_srv_trim + math.floor((doublet_srv_max - doublet_srv_trim) * (DOUBLET_MAGNITUDE / 45))
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SRV_Channels:set_output_pwm_chan_timeout(doublet_srv_chan, up, DOUBLET_TIME / 2 + 100)
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elseif now < start_time + (DOUBLET_TIME * 2) then
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-- stick fixed response
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-- hold at pre doublet trim position for any damping effects
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SRV_Channels:set_output_pwm_chan_timeout(doublet_srv_chan, doublet_srv_trim, DOUBLET_TIME * 2)
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elseif now > start_time + (DOUBLET_TIME * 2) then
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-- notify GCS
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end_time = now
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gcs:send_text(6, "DOUBLET FINISHED")
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else
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gcs:send_text(6, "this should not be reached")
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end
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elseif end_time ~= -1 and rc:get_pwm(DOUBLET_ACTION_CHANNEL) > 1700 then
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-- wait for RC input channel to go low
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gcs:send_text(6, "RC" .. DOUBLET_ACTION_CHANNEL .. " still high")
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callback_time = 100 -- prevent spamming messages to the GCS
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elseif now ~= -1 and end_time ~= -1 then
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gcs:send_text(6, "RETURN TO PREVIOUS FLIGHT MODE")
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now = -1
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end_time = -1
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start_time = -1
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-- clear all of the timeouts
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control_functions = {K_AILERON, K_ELEVATOR, K_THROTTLE, K_RUDDER}
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for i = 1, 4 do
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local control_chan = SRV_Channels:find_channel(control_functions[i])
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SRV_Channels:set_output_pwm_chan_timeout(control_chan, param:get("SERVO" .. control_chan + 1 .. "_TRIM"), 0)
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end
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retry_set_mode(pre_doublet_mode)
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callback_time = 100 -- don't need to rerun for a little while
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elseif now ~= -1 then
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-- stopped before finishing. recover to level attitude
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gcs:send_text(6, "FBWA RECOVER")
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now = -1
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end_time = -1
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start_time = -1
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-- clear all of the timeouts
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control_functions = {K_AILERON, K_ELEVATOR, K_THROTTLE, K_RUDDER}
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for i = 1, 4 do
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local control_chan = SRV_Channels:find_channel(control_functions[i])
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SRV_Channels:set_output_pwm_chan_timeout(control_chan, param:get("SERVO" .. control_chan + 1 .. "_TRIM"), 0)
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end
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retry_set_mode(MODE_FBWA)
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callback_time = 100
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end
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return doublet, callback_time
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end
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gcs:send_text(6, "plane-doublets.lua is running")
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return doublet(), 500
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