kopia lustrzana https://github.com/glidernet/ogn-python
143 wiersze
6.7 KiB
Python
143 wiersze
6.7 KiB
Python
from datetime import timedelta
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from celery.utils.log import get_task_logger
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from sqlalchemy import and_, or_, insert, between, exists
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from sqlalchemy.sql import func, null
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from sqlalchemy.sql.expression import case
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from ogn.collect.celery import app
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from ogn.model import AircraftBeacon, TakeoffLanding, Airport
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logger = get_task_logger(__name__)
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@app.task
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def update_takeoff_landing(session=None):
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logger.info("Compute takeoffs and landings.")
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if session is None:
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session = app.session
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# check if we have any airport
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airports_query = session.query(Airport)
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if not airports_query.all():
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logger.warn("Cannot calculate takeoff and landings without any airport! Please import airports first.")
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return
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# takeoff / landing detection is based on 3 consecutive points
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takeoff_speed = 55 # takeoff detection: 1st point below, 2nd and 3rd above this limit
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landing_speed = 40 # landing detection: 1st point above, 2nd and 3rd below this limit
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duration = 100 # the points must not exceed this duration
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radius = 5000 # the points must not exceed this radius around the 2nd point
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# takeoff / landing has to be near an airport
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airport_radius = 2500 # takeoff / landing must not exceed this radius around the airport
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airport_delta = 100 # takeoff / landing must not exceed this altitude offset above/below the airport
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# 'wo' is the window order for the sql window function
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wo = and_(AircraftBeacon.device_id,
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AircraftBeacon.timestamp,
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AircraftBeacon.receiver_id)
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# make a query with current, previous and next position
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beacon_selection = session.query(AircraftBeacon.id) \
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.filter(AircraftBeacon.status == null()) \
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.order_by(AircraftBeacon.timestamp) \
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.limit(1000000) \
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.subquery()
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sq = session.query(
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AircraftBeacon.id,
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func.lag(AircraftBeacon.id).over(order_by=wo).label('id_prev'),
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func.lead(AircraftBeacon.id).over(order_by=wo).label('id_next'),
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AircraftBeacon.device_id,
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func.lag(AircraftBeacon.device_id).over(order_by=wo).label('device_id_prev'),
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func.lead(AircraftBeacon.device_id).over(order_by=wo).label('device_id_next'),
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AircraftBeacon.timestamp,
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func.lag(AircraftBeacon.timestamp).over(order_by=wo).label('timestamp_prev'),
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func.lead(AircraftBeacon.timestamp).over(order_by=wo).label('timestamp_next'),
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AircraftBeacon.location_wkt,
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func.lag(AircraftBeacon.location_wkt).over(order_by=wo).label('location_wkt_prev'),
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func.lead(AircraftBeacon.location_wkt).over(order_by=wo).label('location_wkt_next'),
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AircraftBeacon.track,
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func.lag(AircraftBeacon.track).over(order_by=wo).label('track_prev'),
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func.lead(AircraftBeacon.track).over(order_by=wo).label('track_next'),
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AircraftBeacon.ground_speed,
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func.lag(AircraftBeacon.ground_speed).over(order_by=wo).label('ground_speed_prev'),
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func.lead(AircraftBeacon.ground_speed).over(order_by=wo).label('ground_speed_next'),
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AircraftBeacon.altitude,
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func.lag(AircraftBeacon.altitude).over(order_by=wo).label('altitude_prev'),
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func.lead(AircraftBeacon.altitude).over(order_by=wo).label('altitude_next')) \
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.filter(AircraftBeacon.id == beacon_selection.c.id) \
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.subquery()
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# consider only positions with the same device id
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sq2 = session.query(sq) \
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.filter(sq.c.device_id_prev == sq.c.device_id == sq.c.device_id_next) \
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.subquery()
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# find possible takeoffs and landings
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sq3 = session.query(
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sq2.c.id,
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sq2.c.timestamp,
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case([(sq2.c.ground_speed > takeoff_speed, sq2.c.location_wkt_prev), # on takeoff we take the location from the previous fix because it is nearer to the airport
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(sq2.c.ground_speed < landing_speed, sq2.c.location)]).label('location'),
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case([(sq2.c.ground_speed > takeoff_speed, sq2.c.track),
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(sq2.c.ground_speed < landing_speed, sq2.c.track_prev)]).label('track'), # on landing we take the track from the previous fix because gliders tend to leave the runway quickly
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sq2.c.ground_speed,
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sq2.c.altitude,
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case([(sq2.c.ground_speed > takeoff_speed, True),
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(sq2.c.ground_speed < landing_speed, False)]).label('is_takeoff'),
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sq2.c.device_id) \
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.filter(sq2.c.timestamp_next - sq2.c.timestamp_prev < timedelta(seconds=duration)) \
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.filter(and_(func.ST_Distance_Sphere(sq2.c.location, sq2.c.location_wkt_prev) < radius,
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func.ST_Distance_Sphere(sq2.c.location, sq2.c.location_wkt_next) < radius)) \
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.filter(or_(and_(sq2.c.ground_speed_prev < takeoff_speed, # takeoff
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sq2.c.ground_speed > takeoff_speed,
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sq2.c.ground_speed_next > takeoff_speed),
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and_(sq2.c.ground_speed_prev > landing_speed, # landing
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sq2.c.ground_speed < landing_speed,
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sq2.c.ground_speed_next < landing_speed))) \
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.subquery()
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# consider them if they are near a airport
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sq4 = session.query(
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sq3.c.timestamp,
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sq3.c.track,
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sq3.c.is_takeoff,
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sq3.c.device_id,
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Airport.id.label('airport_id')) \
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.filter(and_(func.ST_Distance_Sphere(sq3.c.location, Airport.location_wkt) < airport_radius,
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between(sq3.c.altitude, Airport.altitude - airport_delta, Airport.altitude + airport_delta))) \
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.filter(between(Airport.style, 2, 5)) \
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.subquery()
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# consider them only if they are not already existing in db
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takeoff_landing_query = session.query(sq4) \
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.filter(~exists().where(
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and_(TakeoffLanding.timestamp == sq4.c.timestamp,
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TakeoffLanding.device_id == sq4.c.device_id,
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TakeoffLanding.airport_id == sq4.c.airport_id)))
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# ... and save them
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ins = insert(TakeoffLanding).from_select((TakeoffLanding.timestamp,
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TakeoffLanding.track,
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TakeoffLanding.is_takeoff,
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TakeoffLanding.device_id,
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TakeoffLanding.airport_id),
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takeoff_landing_query)
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result = session.execute(ins)
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counter = result.rowcount
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# mark the computated AircraftBeacons as 'used'
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update_aircraft_beacons = session.query(AircraftBeacon) \
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.filter(AircraftBeacon.id == sq2.c.id) \
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.update({AircraftBeacon.status: 1},
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synchronize_session='fetch')
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session.commit()
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logger.debug("Inserted {} TakeoffLandings, updated {} AircraftBeacons".format(counter, update_aircraft_beacons))
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return counter
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