File: C:/Users/fred/anaconda3/Lib/site-packages/astropy/coordinates/tests/accuracy/test_icrs_fk5.py
# Licensed under a 3-clause BSD style license - see LICENSE.rst
import numpy as np
from astropy import units as u
from astropy.coordinates import angular_separation
from astropy.coordinates.builtin_frames import FK5, ICRS
from astropy.table import Table
from astropy.time import Time
from astropy.utils.data import get_pkg_data_contents
# the number of tests to run
from . import N_ACCURACY_TESTS
TOLERANCE = 0.03 # arcseconds
def test_icrs_fk5():
lines = get_pkg_data_contents("data/icrs_fk5.csv").split("\n")
t = Table.read(lines, format="ascii", delimiter=",", guess=False)
if N_ACCURACY_TESTS >= len(t):
idxs = range(len(t))
else:
idxs = np.random.randint(len(t), size=N_ACCURACY_TESTS)
diffarcsec1 = []
diffarcsec2 = []
for i in idxs:
# Extract row
r = t[int(i)] # int here is to get around a py 3.x astropy.table bug
# ICRS to FK5
c1 = ICRS(ra=r["ra_in"] * u.deg, dec=r["dec_in"] * u.deg)
c2 = c1.transform_to(FK5(equinox=Time(r["equinox_fk5"])))
# Find difference
diff = angular_separation(
c2.ra.radian,
c2.dec.radian,
np.radians(r["ra_fk5"]),
np.radians(r["dec_fk5"]),
)
diffarcsec1.append(np.degrees(diff) * 3600.0)
# FK5 to ICRS
c1 = FK5(
ra=r["ra_in"] * u.deg,
dec=r["dec_in"] * u.deg,
equinox=Time(r["equinox_fk5"]),
)
c2 = c1.transform_to(ICRS())
# Find difference
diff = angular_separation(
c2.ra.radian,
c2.dec.radian,
np.radians(r["ra_icrs"]),
np.radians(r["dec_icrs"]),
)
diffarcsec2.append(np.degrees(diff) * 3600.0)
np.testing.assert_array_less(diffarcsec1, TOLERANCE)
np.testing.assert_array_less(diffarcsec2, TOLERANCE)