def test_conv_hg_hcc(): coord = [34.0, 96.0] result = wcs.convert_hg_hcc(img.rsun_meters, img.heliographic_latitude, img.heliographic_longitude, coord[0], coord[1]) known_answer = [-40653538.0, 6.7903529e08] magnitude = np.floor(np.log10(np.abs(known_answer))) assert_array_almost_equal(result*10**(-magnitude), known_answer*10**(-magnitude), decimal=2)
def test_conv_hg_hcc(): coord = [34.0, 96.0] result = wcs.convert_hg_hcc(img.rsun_meters, img.heliographic_latitude, img.heliographic_longitude, coord[0], coord[1]) known_answer = [-40653538.0, 6.7903529e08] magnitude = np.floor(np.log10(np.abs(known_answer))) assert_array_almost_equal(result * 10**(-magnitude), known_answer * 10**(-magnitude), decimal=2)
def test_conv_hg_hcc(): coord = [34.0, 96.0] result = wcs.convert_hg_hcc(img.rsun_arcseconds, img.get_solar_b0(), img.heliographic_longitude, coord[0], coord[1]) assert_array_almost_equal(result, [-40653538.0, 6.7903529e08], decimal=2)
def test_conv_hg_hcc(): coord = [34.0, 96.0] result = wcs.convert_hg_hcc(header, coord[0], coord[1]) assert_array_almost_equal(result, [-40653538.0, 6.7903529e08], decimal=2)