,
GLONASS,
Galileo, and
BeiDou) and a GNSS augmentation system (
Quasi-Zenith Satellite System) used on a smartphone in
South Tangerang,
Indonesia (2025)
Positioning-based • Military
precision-guided munitions – Many types of munitions, including
JDAM bombs,
Excalibur 155 mm artillery shell, use GNSS to guide them to their target. • Mobile satellite communications –
Satellite communications systems use a directional antenna (usually a "dish") pointed at a satellite. The antenna on a moving ship or train, for example, must be pointed based on its current location. Modern antenna controllers usually incorporate a GNSS receiver to provide this information. •
Emergency and
location-based services – GNSS functionality can be used by
emergency services to locate cell phones. The ability to locate a mobile phone is required in the United States by
E911 emergency services legislation. However, such a system is not in place everywhere. GNSS is less dependent on the telecommunications network
topology than
radiolocation for compatible phones.
Assisted GPS reduces the power requirements of the mobile phone and increases the accuracy of the location. A phone's geographic location may also be used to provide location-based services, including advertising or other location-specific information. •
Location-based games – The availability of hand-held GNSS receivers has led to games such as
geocaching, which involves using a hand-held GNSS unit to travel to a specific
longitude and
latitude to search for objects hidden by other geocachers. This popular activity often includes walking or hiking to natural locations.
Geodashing is an outdoor sport using
waypoints. •
Skydiving – Most commercial drop zones use a GNSS to aid the pilot to "spot" the plane to the correct position to allow all skydivers on the load to be able to fly their canopies back to the landing area. •
Wreck diving – A popular variant of scuba diving is known as wreck diving. In order to locate the desired
shipwreck on the bottom of the ocean floor, GPS is used to navigate to the approximate location, and then the shipwreck is found using an
echosounder. •
Social networking – A growing number of companies are marketing cellular phones equipped with GPS technology, offering the ability to pinpoint friends on custom created maps, along with alerts that inform the user when the party is within a programmed range. Not only do many of these phones offer social-networking functions, they offer standard GPS navigation features such as audible voice commands for in-vehicle GPS navigation.
Data collection and tagging •
Marketing – Some market research companies have combined GIS systems and survey-based research to help companies to decide where to open new branches and to target their advertising according to the usage patterns of roads and the socio-demographic attributes of residential zones. •
Photographic geocoding – Combining GNSS position data with
photographs taken with a (typically digital)
camera allows to view the photographs on a map or to look up the locations where they were taken in a
gazetteer. It is possible to automatically annotate the photographs with the location they depict by integrating a GNSS device into the camera so that co-ordinates are embedded into photographs as
Exif metadata. Alternatively, the timestamps of pictures can be correlated with a GNSS track log. •
Wireless networking – A technique of mapping and uploading the exact or accurate location of a wireless network is called
wardriving. It uses signal-strength data from the wireless adapter and GPS to identify the location.
Kismet for
Linux is a widely used wardriving program.
Tracking •
GPS tracking systems use GNSS to determine the location of a vehicle, person, pet or freight, and to record the position at regular intervals in order to create a log of movements. The data can be stored inside the unit or sent to a remote computer by radio or cellular modem. Some systems allow the location to be viewed in real time on the Internet with a web browser. • Monitoring the whereabouts of convicted
sex offenders, using a GPS anklet as a condition of parole. Law-enforcement officials can review the daily movements of offenders for a cost of only $5 or $10 per day. Real-time, or instant, tracking is considered too costly for GPS tracking of criminals. •
Geo-fences can enable or disable devices based on their location. •
GNSS road pricing systems charge of road users using data from GNSS sensors inside vehicles. Advocates argue that road pricing using GNSS permits a number of policies such as tolling by distance on urban roads and can be used for many other applications in parking, insurance and vehicle emissions. Critics argue that GNSS could lead to an invasion of people’s privacy.
Non-positioning-based • Precise time reference – Many systems that must be accurately
synchronized use GNSS as a source of accurate time. GNSS can be used as a
reference clock for
time code generators or
Network Time Protocol (NTP)
time servers.
Sensors (for
seismology or other monitoring application) can use GNSS as a precise time source.
Time-division multiple access (TDMA) communications networks often rely on this precise timing to synchronize RF generating equipment, network equipment, and
multiplexers. • Heading information – The GNSS can be used to determine heading information, even though it was not designed for this purpose. A "GNSS compass" uses a pair of antennas separated by about 50 cm to detect the phase difference in the carrier signal from a particular GNSS satellite. Given the positions of the satellite, the position of the antenna, and the phase difference, the orientation of the two antennas can be computed. More expensive GNSS compass systems use three antennas in a triangle to get three separate readings with respect to each satellite. A GNSS compass is not subject to
magnetic declination as a magnetic compass is and does not need to be reset periodically like a
gyrocompass. It is, however, subject to multipath effects. • Weather prediction (
GNSS radio occultation) – Measurement of atmospheric bending of GNSS satellite signals by specialized GNSS receivers in orbital satellites can be used to determine atmospheric conditions such as air density, temperature, moisture and electron density. Such information from a set of six micro-satellites, launched in April 2006, called the Constellation of Observing System for Meteorology, Ionosphere and Climate
COSMIC has been proven to improve the accuracy of weather prediction models. == References ==