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July 28, 2016 04:46
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Java Implementation of Haversine Formula for distance calculation between two points
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/** | |
* This is the implementation Haversine Distance Algorithm between two places | |
* @author ananth | |
* R = earth’s radius (mean radius = 6,371km) | |
Δlat = lat2− lat1 | |
Δlong = long2− long1 | |
a = sin²(Δlat/2) + cos(lat1).cos(lat2).sin²(Δlong/2) | |
c = 2.atan2(√a, √(1−a)) | |
d = R.c | |
* | |
*/ | |
public class HaversineDistance { | |
/** | |
* @param args | |
* arg 1- latitude 1 | |
* arg 2 — latitude 2 | |
* arg 3 — longitude 1 | |
* arg 4 — longitude 2 | |
*/ | |
public static void main(String[] args) { | |
// TODO Auto-generated method stub | |
final int R = 6371; // Radious of the earth | |
Double lat1 = Double.parseDouble(args[0]); | |
Double lon1 = Double.parseDouble(args[1]); | |
Double lat2 = Double.parseDouble(args[2]); | |
Double lon2 = Double.parseDouble(args[3]); | |
Double latDistance = toRad(lat2-lat1); | |
Double lonDistance = toRad(lon2-lon1); | |
Double a = Math.sin(latDistance / 2) * Math.sin(latDistance / 2) + | |
Math.cos(toRad(lat1)) * Math.cos(toRad(lat2)) * | |
Math.sin(lonDistance / 2) * Math.sin(lonDistance / 2); | |
Double c = 2 * Math.atan2(Math.sqrt(a), Math.sqrt(1-a)); | |
Double distance = R * c; | |
System.out.println(“The distance between two lat and long is::” + distance); | |
} | |
private static Double toRad(Double value) { | |
return value * Math.PI / 180; | |
} | |
} |
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FYI there is a
Math.toRadians()
method