The problem:
Getting the user s current location within a threshold ASAP and at the same time conserve battery.
Why the problem is a problem:
First off, android has two providers; network and GPS. Sometimes network is better and sometimes the GPS is better.
By "better" I mean speed vs. accuracy ratio.
I m willing to sacrifice a few meters in accuracy if I can get the location almost instant and without turning on the GPS.
Secondly, if you request updates for location changes nothing is sent if the current location is stable.
http://developer.android.com/guide/topics/location/obtaining-user-location.html#BestEstimate http://developer.android.com/guide/topics/location/obtaining-user-location.html#BestEstimate But I think it s no where near as good as it should/could be.
I m kind of confused why google hasn t a normalized API for location, the developer shouldn t have to care where the location is from, you should just specify what you want and the phone should choose for you.
What I need help with:
I need to find a good way to determine the "best" location, maybe though some heuristic or maybe through some 3rd party library.
This does not mean determine the best provider!
I m probably gonna use all providers and picking the best of them.
Background of the app:
The app will collect the user s location at a fixed interval (let say every 10 minutes or so) and send it to a server.
The app should conserve as much battery as possible and the location should have X (50-100?) meters accuracy.
The goal is to later be able to plot the user s path during the day on a map so I need sufficient accuracy for that.
Misc:
What do you think are reasonable values on desired and accepted accuracies?
I ve been using 100m as accepted and 30m as desired, is this to much to ask?
I d like to be able to plot the user s path on a map later.
Is 100m for desired and 500m for accepted better?
Also, right now I have the GPS on for a maximum of 60 seconds per location update, is this too short to get a location if you re indoors with an accuracy of maybe 200m?
This is my current code, any feedback is appreciated (apart from the lack of error checking which is TODO):
protected void runTask() { final LocationManager locationManager = (LocationManager) context .getSystemService(Context.LOCATION_SERVICE); updateBestLocation(locationManager .getLastKnownLocation(LocationManager.GPS_PROVIDER)); updateBestLocation(locationManager .getLastKnownLocation(LocationManager.NETWORK_PROVIDER)); if (getLocationQuality(bestLocation) != LocationQuality.GOOD) { Looper.prepare(); setLooper(Looper.myLooper()); // Define a listener that responds to location updates LocationListener locationListener = new LocationListener() { public void onLocationChanged(Location location) { updateBestLocation(location); if (getLocationQuality(bestLocation) != LocationQuality.GOOD) return; // We re done Looper l = getLooper(); if (l != null) l.quit(); } public void onProviderEnabled(String provider) {} public void onProviderDisabled(String provider) {} public void onStatusChanged(String provider, int status, Bundle extras) { // TODO Auto-generated method stub Log.i("LocationCollector", "Fail"); Looper l = getLooper(); if (l != null) l.quit(); } }; // Register the listener with the Location Manager to receive // location updates locationManager.requestLocationUpdates( LocationManager.GPS_PROVIDER, 1000, 1, locationListener, Looper.myLooper()); locationManager.requestLocationUpdates( LocationManager.NETWORK_PROVIDER, 1000, 1, locationListener, Looper.myLooper()); Timer t = new Timer(); t.schedule(new TimerTask() { @Override public void run() { Looper l = getLooper(); if (l != null) l.quit(); // Log.i("LocationCollector", // "Stopping collector due to timeout"); } }, MAX_POLLING_TIME); Looper.loop(); t.cancel(); locationManager.removeUpdates(locationListener); setLooper(null); } if (getLocationQuality(bestLocation) != LocationQuality.BAD) sendUpdate(locationToString(bestLocation)); else Log.w("LocationCollector", "Failed to get a location"); } private enum LocationQuality { BAD, ACCEPTED, GOOD; public String toString() { if (this == GOOD) return "Good"; else if (this == ACCEPTED) return "Accepted"; else return "Bad"; } } private LocationQuality getLocationQuality(Location location) { if (location == null) return LocationQuality.BAD; if (!location.hasAccuracy()) return LocationQuality.BAD; long currentTime = System.currentTimeMillis(); if (currentTime - location.getTime() < MAX_AGE && location.getAccuracy() <= GOOD_ACCURACY) return LocationQuality.GOOD; if (location.getAccuracy() <= ACCEPTED_ACCURACY) return LocationQuality.ACCEPTED; return LocationQuality.BAD; } private synchronized void updateBestLocation(Location location) { bestLocation = getBestLocation(location, bestLocation); } // Pretty much an unmodified version of googles example protected Location getBestLocation(Location location, Location currentBestLocation) { if (currentBestLocation == null) { // A new location is always better than no location return location; } if (location == null) return currentBestLocation; // Check whether the new location fix is newer or older long timeDelta = location.getTime() - currentBestLocation.getTime(); boolean isSignificantlyNewer = timeDelta > TWO_MINUTES; boolean isSignificantlyOlder = timeDelta < -TWO_MINUTES; boolean isNewer = timeDelta > 0; // If it s been more than two minutes since the current location, use // the new location // because the user has likely moved if (isSignificantlyNewer) { return location; // If the new location is more than two minutes older, it must be // worse } else if (isSignificantlyOlder) { return currentBestLocation; } // Check whether the new location fix is more or less accurate int accuracyDelta = (int) (location.getAccuracy() - currentBestLocation .getAccuracy()); boolean isLessAccurate = accuracyDelta > 0; boolean isMoreAccurate = accuracyDelta < 0; boolean isSignificantlyLessAccurate = accuracyDelta > 200; // Check if the old and new location are from the same provider boolean isFromSameProvider = isSameProvider(location.getProvider(), currentBestLocation.getProvider()); // Determine location quality using a combination of timeliness and // accuracy if (isMoreAccurate) { return location; } else if (isNewer && !isLessAccurate) { return location; } else if (isNewer && !isSignificantlyLessAccurate && isFromSameProvider) { return location; } return bestLocation; } /** Checks whether two providers are the same */ private boolean isSameProvider(String provider1, String provider2) { if (provider1 == null) { return provider2 == null; } return provider1.equals(provider2); }