2.1. Continuously Operating Reference Stations
(CORS)Many CORS networks have been developed by a number
of governmental, private, and academic organizations to
provide support for precise positioning and navigation
for applications ranging from ordinary engineering work,
to robust target location identification, and scientific research.
For illustration purposes, this section presents the
National Geodetic Survey (NGS) CORS network, which
covers the United States. CORS is an active wide-area
GNSS network managed by the National Geodetic Survey
(NGS) in cooperation with the United States Coast
Guard, Federal Aviation Administration, and US Army
Corps of Engineers, and it offers DGPS service to the
public free of charge. The development of CORS was
motivated by the accuracy requirements for many activeties
in surveying, mapping, engineering and related fields.
In CORS network, there are always two sets of stations:
1) network stations, which are precisely known locations
within the network, which continuously collect GPS data,
and 2) user stations; fixed or mobile, which are unknown
or approximate locations. The data collected at the
network stations are used to compute GPS corrections for
the network including the user stations within the network
area. The user commonly receives these corrections
after sending the GPS data file to NGS.
A typical CORS network master control facility collects,
stores, and processes GPS data acquired for the
stations within the network. The GPS coordinates of unknown
(new) points are then estimated based on data
collected at a CORS station and processed by the master
CORS facility based on the relative positioning concept
[9]. Besides being utilized for relative positioning, some
reference stations within CORS network depending on its
location and other specific characteristics may be used by
NGS and other governmental agencies in the US for
clock correction, precise ephemerides, crustal motion
monitoring and atmospheric and earth rotation studies [10].
NGS provides the coordinates of CORS stations in both
of North American Datum of 1983 (NAD83-2002_epoch)
and The International Reference Frame of 2000 (ITRF00),
which has the same ellipsoid’s scale and shape parameters
of the well-known World Geodetic System of 1984
(WGS84).
GPS data collected for a time period of up to a fullobservation-day
is transferred from a CORS site to the
master station. Once the GPS data from the CORS station
is received by the master station, it gets processed to
generate files of same format that are sent back to the
user and sometimes archived for further processing. NGS
also makes precise ephemeris data available to the GPS
user community as it computes precise orbits based on
orbital data acquired at the six GPS master stations. Each
orbit covers a one-day period at a 0.25-hour epoch including
satellite clock offsets. Currently CORS data is
not available in real-time streaming mode, but NGS is
planning to broadcast data from some CORS stations in
the near future. NGS is now supporting international and
federal agencies through near real-time GPS data steam
2.1. Continuously Operating Reference Stations(CORS)Many CORS networks have been developed by a numberof governmental, private, and academic organizations toprovide support for precise positioning and navigationfor applications ranging from ordinary engineering work,to robust target location identification, and scientific research.For illustration purposes, this section presents theNational Geodetic Survey (NGS) CORS network, whichcovers the United States. CORS is an active wide-areaGNSS network managed by the National Geodetic Survey(NGS) in cooperation with the United States CoastGuard, Federal Aviation Administration, and US ArmyCorps of Engineers, and it offers DGPS service to thepublic free of charge. The development of CORS wasmotivated by the accuracy requirements for many activetiesin surveying, mapping, engineering and related fields.In CORS network, there are always two sets of stations:1) network stations, which are precisely known locationswithin the network, which continuously collect GPS data,and 2) user stations; fixed or mobile, which are unknownor approximate locations. The data collected at thenetwork stations are used to compute GPS corrections forthe network including the user stations within the networkarea. The user commonly receives these correctionsafter sending the GPS data file to NGS.A typical CORS network master control facility collects,stores, and processes GPS data acquired for thestations within the network. The GPS coordinates of unknown(new) points are then estimated based on datacollected at a CORS station and processed by the masterCORS facility based on the relative positioning concept[9]. Besides being utilized for relative positioning, somereference stations within CORS network depending on itslocation and other specific characteristics may be used byNGS and other governmental agencies in the US forclock correction, precise ephemerides, crustal motionmonitoring and atmospheric and earth rotation studies [10].NGS provides the coordinates of CORS stations in bothof North American Datum of 1983 (NAD83-2002_epoch)and The International Reference Frame of 2000 (ITRF00),which has the same ellipsoid’s scale and shape parametersof the well-known World Geodetic System of 1984(WGS84).GPS data collected for a time period of up to a fullobservation-dayis transferred from a CORS site to themaster station. Once the GPS data from the CORS stationis received by the master station, it gets processed togenerate files of same format that are sent back to theuser and sometimes archived for further processing. NGSalso makes precise ephemeris data available to the GPSuser community as it computes precise orbits based onorbital data acquired at the six GPS master stations. Eachorbit covers a one-day period at a 0.25-hour epoch includingsatellite clock offsets. Currently CORS data isnot available in real-time streaming mode, but NGS isplanning to broadcast data from some CORS stations inthe near future. NGS is now supporting international andfederal agencies through near real-time GPS data steam
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