srg/heasarc/management/commands/00_heasarc_maxi7yr.py
2024-04-25 17:50:51 +03:00

112 lines
3.9 KiB
Python

from django.core.management.base import BaseCommand, CommandError
from datetime import date
from heasarc.models import INPUT_DATA_DIR
import datetime
from django.utils import timezone
import astropy, math
from astropy.io import ascii
import pandas as pd
import pymysql
from sqlalchemy import create_engine
import numpy.ma as ma
from heasarc.tdat import tDat
from heasarc.models import HeasarcTable, TableColumn, HeasarcMAXI7YR, HeasarcObjectClass
from heasarc.models import NSIDE_SOURCES, ORDER
from monthplan.models import NSIDE_PLATES
from astropy_healpix import HEALPix
from astropy.coordinates import SkyCoord # High-level coordinates
from astropy.coordinates import ICRS, Galactic, FK4, FK5 # Low-level frames
from astropy.coordinates import Angle, Latitude, Longitude # Angles
import astropy.units as u
def load_heasarc_table(filename):
tdatfile=INPUT_DATA_DIR+'/dump/'+filename
data = astropy.table.Table.read(tdatfile, format='ascii.tdat')
keywords = data.meta['keywords']
for key, value in keywords.items():
print(key, '->', value)
try:
table=HeasarcTable.objects.get(name__exact=keywords['table_name'])
table.delete()
except:
pass
table_name=keywords['table_name']
table = HeasarcTable(name=keywords['table_name'])
table.description=keywords['table_description'].replace('\"', '')
table.document_url=keywords['table_document_url']
table.save()
cols = data.meta['cols']
for key, value in cols.items():
column = TableColumn(table=table)
column.name=key
column.tdat_type=value['type']
column.description=value['description']
column.save()
print(key, '->', value)
tables = HeasarcMAXI7YR.objects.all()
tables.delete()
hp = HEALPix(nside=NSIDE_SOURCES, order=ORDER, frame=FK5())
hp_plate = HEALPix(nside=NSIDE_PLATES, order=ORDER, frame=FK5())
for item in data:
crd = SkyCoord(item['ra'], item['dec'], frame=FK5(), unit="deg")
healpix = hp.skycoord_to_healpix(crd)
healpix_plate = hp_plate.skycoord_to_healpix(crd)
"""
this is correct only for 1 dimention
erf(1.65/sqrt(2)) corresponds to 90%
Чтобы получить 90% из 1 сигма, надо использовать коэффициент 1.42 (sqrt(4.61/2.3))
"""
P=0.98
koeff=math.sqrt(-2*math.log(1-P))
sign = float(item['detsig_4_10'])
error_radius_1sigma=4800/sign
if not (ma.is_masked(item['error_radius'])):
error_radius_1sigma=float(item['error_radius'])
#if (ma.is_masked(item['error_radius'])):
print("{} {} {} --> {}".format(item['name'], item['error_radius'], item['catalog'], error_radius_1sigma*koeff))
"""
We save 90% confidence interval for error_radius
"""
obj = HeasarcMAXI7YR.objects.create(healpix=healpix,
healpix_plate=healpix_plate,
ra=item['ra'],
dec=item['dec'],
lii=item['lii'],
bii=item['bii'],
error_radius=error_radius_1sigma*koeff,
name=item['name'],
flux=item['flux_4_10'],sign=item['detsig_4_10'],)
obj.save()
print('--> Successfully loaded "%s"' % table_name)
pass
class Command(BaseCommand):
help = 'Initiates data dase'
# def add_arguments(self, parser):
# parser.add_argument('poll_id', nargs='+', type=int)
def handle(self, *args, **options):
load_heasarc_table('heasarc_maxigsc7yr.tdat.gz')
self.stdout.write(self.style.SUCCESS('Done'))