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Center Geolocations
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from math import cos, sin, asin, atan2, sqrt, radians, degrees | |
def _hsin(theta): | |
return pow(sin(theta/2), 2) | |
def distance(lat1, lon1, lat2, lon2): | |
""" | |
Calulates distance between two points set as 4 coordinates. | |
""" | |
# convert to radians | |
la1 = radians(lat1) | |
lo1 = radians(lon1) | |
la2 = radians(lat2) | |
lo2 = radians(lon2) | |
# must cast radius as float to multiply later | |
r = 6378100.0 # Earth radius in meters. | |
h = _hsin(la2-la1) + cos(la1)*cos(la2)*_hsin(lo2-lo1) | |
return 2 * r * asin(sqrt(h)) | |
def center_geolocation(geolocations): | |
""" | |
Provide a relatively accurate center lat, lon returned as a list pair, given | |
a list of list pairs. | |
ex: in: geolocations = ((lat1,lon1), (lat2,lon2),) | |
out: (center_lat, center_lon) | |
""" | |
x = 0 | |
y = 0 | |
z = 0 | |
for lat, lon in geolocations: | |
lat = float(radians(lat)) | |
lon = float(radians(lon)) | |
x += cos(lat) * cos(lon) | |
y += cos(lat) * sin(lon) | |
z += sin(lat) | |
x = float(x / len(geolocations)) | |
y = float(y / len(geolocations)) | |
z = float(z / len(geolocations)) | |
return (degrees(atan2(z, sqrt(x * x + y * y))), degrees(atan2(y, x))) |
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