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[7562]1Configuration Examples
2
[8086]3BNC comes with a number of configuration examples which can be used on all
[7562]4operating systems. Copy the complete directory 'Example_Configs' which comes
5with the software including sub-directories 'Input' and 'Output' to your disc.
[8086]6There are several ways to start BNC using one of the example configurations:
[7562]7
[8086]8* On graphical systems (except for Mac systems) you may use the computer mouse
[7562]9 to 'drag' a configuration file icon and 'drop' it on top of BNC's program icon.
10
[8086]11* You could also start BNC using a command line for naming a specific
[7562]12 configuration file (suggested e.g. for Mac systems):
13 bnc --conf <configFileName>
14
15* On non-graphical systems or when running BNC in batch mode in the background
[8086]16 you may start the program using a command line with a configuration file
[7562]17 option in 'no window' mode (example for Windows systems):
18 bnc.exe --conf <configFileName> --nw
19
20Although it's not a must, we suggest that you always create BNC configuration
[8086]21files with the filename extension '.bnc'.
[7562]22
23We furthermore suggest for convenience reasons that you configure your system
[8086]24to automatically start BNC when you double-click a file with the filename
25extension '.bnc'. The following describes what to do on Windows systems to
26associate the BNC program to such configuration files:
[7562]27
28
[8086]291. Right-click a file that has the extension '.bnc' and then click 'Open'. If
[7562]30 the 'Open' command is not available, click 'Open With' or double-click the
31 file.
32
[8086]332. Windows displays a dialog box that says that the system cannot open this
[7562]34 file. The dialog box offers several options for selecting a program.
35
363. Click 'Select the program from a list', and then click 'OK'.
37
384. The 'Open With' dialog box is displayed. Click 'Browse', locate and then
39 click the BNC program, and then click 'Open'.
40
415. Click to select the 'Always use the selected program to open this kind
42 of file' check box.
43
446. Click 'OK'.
45
46Some of the presented example configuration files contain a user ID 'Example'
47with a password 'Configs' for accessing a few GNSS streams from public Ntrip
[8086]48Broadcasters. This generic account is arranged for convenience reasons only.
49Please be so kind as to replace the generic account details as well as the
50place holders 'User' and 'Pass' by the personal user ID and password you
[7562]51receive following an online registration through
[8086]52http://register.rtcm-ntrip.org.
[7562]53
[8086]54Note that the account for an Ntrip Broadcaster is usually limited to
[7562]55pulling a specified maximum number of streams at the same time. As running
[8086]56some of the example configurations requires pulling several streams, it
[7562]57is suggested to make sure that you don't exceed your account's limits.
58
[8086]59Make also sure that sub-directories 'Input' and 'Output' which are part of
60the example configurations exist on your system or adjust the affected
[7562]61example configuration options according to your needs.
62
[8086]63Some BNC options require antenna phase center variations as made available
[9776]64from IGS through so-called ANTEX files at
65https://files.igs.org/pub/station/general/igs14.atx
[8106]66An example ANTEX file 'igs14.atx' is part of the BNC package for convenience.
[7562]67
[8086]68The example configurations assume that no proxy protects your BNC host.
69Should a proxy be operated in front of BNC then you need to introduce its
[7562]70name or IP and port number in the 'Network' panel.
71
[7750]72(A) Working with Configuration Files
73
[8086]74You should be able to run all configuration file examples without changing
[9776]75contained options. However, configurations 'Upload.bnc' and 'UploadEPH.bnc' are
[8086]76exceptions because they require an input stream from a connected network engine.
[7562]77
[7723]781. Configuration File 'RinexObs.bnc'
[9826]79Purpose: Convert RTCM streams to RINEX Observation files.
80The configuration pulls RTCM Version 3 streams from Ntrip Broadcasters using
81Ntrip Version 2 to generate 15min 1Hz RINEX Version 4 Observation files. See
[9776]82https://igs.bkg.bund.de/ntrip/#rtcm-obs for observation stream resources.
[7562]83
[7723]842. Configuration File 'RinexEph.bnc'
[8086]85Purpose: Convert a RTCM stream with navigation messages to RINEX Navigation
86files. The configuration pulls a RTCM Version 3 stream with Broadcast Ephemeris
87coming from the real-time EUREF and IGS networks and saves hourly RINEX Version
[9776]884 Navigation files. See https://igs.bkg.bund.de/ntrip/#rtcm-eph for further
[7686]89real-time Broadcast Ephemeris resources.
[7562]90
[7723]913. Configuration File 'BrdcCorr.bnc'
[8086]92Purpose: Save Broadcast Corrections from RTCM SSR messages in hourly plain
[9776]93ASCII files. See https://igs.bkg.bund.de/ntrip/#rtcm-corr for various real-time IGS
[7686]94or EUREF orbit/clock correction products.
[7562]95
[7723]964. Configuration File 'RinexConcat.bnc'
[8086]97Purpose: Concatenate several RINEX Version 3 files to produce one compiled file
98and edit the marker name in the file header. The sampling interval is set to 30
99seconds. See section 'RINEX Editing & QC' in the documentation for examples on
100how to call BNC from command line in 'no window' mode for RINEX file editing,
[7686]101concatenation and quality check.
[7562]102
[7723]1035. Configuration File 'RinexQC.bnc'
[9776]104Purpose: Check the quality of a RINEX Version 4 file by means of a multipath
[8086]105analysis. Results are saved on disk in terms of a plot in PNG format. See
106section 'RINEX Editing & QC' in the documentation for examples on how to call
107BNC from command line in 'no window' mode for RINEX file editing, concatenation
[7686]108and quality check.
[7562]109
[7723]1106. Configuration File 'RTK.bnc'
[8086]111Purpose: Feed a serial connected receiver with observations from a nearby
112reference station for conventional RTK. The stream is scanned for RTCM
113messages. Message type numbers and latencies of incoming observations are
[7686]114reported in BNC's logfile.
[7562]115
[7723]1167. Configuration File 'FeedEngine.bnc'
[8086]117Purpose: Feed a real-time GNSS engine with observations from remote reference
118stations. The configuration pulls a single stream from an Ntrip Broadcaster.
119You could also pull several streams from different casters. Incoming
120observations are decoded, synchronized, output through a local IP port and also
121saved into a file. Failure and recovery thresholds are specified to inform
[7686]122about outages.
[7562]123
[7723]1248. Configuration File 'PPP.bnc'
[8086]125Purpose: Precise Point Positioning from observations of a rover receiver. The
126configuration reads RTCM Version 3 observations, a Broadcast Ephemeris stream
[7686]127and a stream with Broadcast Corrections. Positions are saved in the logfile.
[9826]128More detailed PPP results are saved in the PPP logfile.
[7562]129
[7723]1309. Configuration File 'PPPNet.bnc'
[8086]131Purpose: Precise Point Positioning for several rovers or receivers from an
132entire network of reference stations in one BNC job. The possible maximum
133number of PPP solutions per job depends on the processing power of the hosting
134computer. This example configuration reads two RTCM Version 3 observation
135streams, a Broadcast Ephemeris stream and a stream with Broadcast Corrections.
[9826]136Detailed PPP Results for the two stations are saved in PPP logfiles.
[7562]137
[7723]13810. Configuration File 'PPPQuickStart.bnc'
[8086]139Purpose: Precise Point Positioning in Quick-Start mode from observations of a
140static receiver with precisely known position. The configuration reads RTCM
141Version 3 observations, Broadcast Corrections and a Broadcast Ephemeris stream.
142Positions are saved in NMEA format on disc. They are also output through IP
143port for real-time visualization with tools like RTKPLOT. Positions are saved
[7686]144in the logfile.
[7562]145
[7723]14611. Configuration File 'PPPPostProc.bnc'
[8086]147Purpose: Precise Point Positioning in post processing mode. BNC reads RINEX
[9826]148Version 3 Observation and Navigation files and a Broadcast Correction file.
[8086]149PPP processing options are set to support the Quick-Start mode. The output is
150saved in a specific post processing logfile and contains coordinates derived
[7686]151over time following the implemented PPP filter algorithm.
[7562]152
[9424]15312. Configuration File 'PPPOsm.bnc'
[9826]154Purpose: Track BNC's point positioning solutions using OpenStreetMap as background.
155BNC reads a RINEX Observation file and a RINEX Navigation file to carry out
156a 'Standard Point Positioning' solution in post processing mode.
157Although this is not a real-time application it requires the BNC host to be
158connected to the Internet. Specify a computation speed, then hit button 'Open Map'
159to open the track map, then hit 'Start' to visualize receiver positions on top
160of OSM maps.
[7562]161
[7723]16213. Configuration File 'SPPQuickStartGal.bnc'
[8086]163Purpose: Single Point Positioning in Quick-Start mode from observations of a
164static receiver with quite precisely known position. The configuration uses
[9826]165Galileo observations only and a Broadcast Ephemeris stream.
[7562]166
[7723]16714. Configuration File 'SaveSp3.bnc'
[8086]168Purpose: Produces SP3 files from a Broadcast Ephemeris stream and a Broadcast
169Correction stream. The Broadcast Correction stream is formally introduced in
170BNC's 'Combine Corrections' table. Note that producing SP3 requires an ANTEX
[7686]171file because SP3 file content should be referred to CoM.
[7562]172
[7723]17315. Configuration File 'Sp3ETRF2000PPP.bnc'
[8086]174Purpose: Produce SP3 files from a Broadcast Ephemeris stream and a stream
175carrying ETRF2000 Broadcast Corrections. The Broadcast Correction stream is
176formally introduced in BNC's 'Combine Corrections' table. The configuration
177leads to a SP3 file containing orbits also referred to ETRF2000. Pulling in
178addition observations from a reference station at precisely known ETRF2000
179position allows comparing an 'INTERNAL' PPP solution with a known ETRF2000
[7686]180reference coordinate.
[7562]181
[7723]18216. Configuration File 'Upload.bnc'
[8086]183Purpose: Upload orbits and clocks from a real-time GNSS engine to an Ntrip
184Broadcaster. For that the configuration reads precise orbits and clocks in
185RTNET format. It also reads a stream carrying Broadcast Ephemeris. BNC converts
[9826]186the orbits and clocks into Broadcast Corrections and encodes them to
187IGS-SSR messages to finally upload them to an Ntrip Broadcaster. The
[8086]188Broadcast Correction stream is referred to satellite Antenna Phase Center (APC)
189and reference system IGS14. Orbits are saved on disk in SP3 format and clocks
[7686]190are saved in Clock RINEX format.
[7562]191
[7723]19217. Configuration File 'Combi.bnc'
[9826]193Purpose: Pull 2 streams carrying Broadcast Corrections, and Satellite Code Biases
194together with Broadcast Ephemeris from an Ntrip Broadcaster
195to produce a combined Broadcast Correction stream.
196BNC encodes the combination product in IGS-SSR messages and uploads them to
197an Ntrip Broadcaster. The Broadcast Correction stream is referred to
198satellite Antenna Phase Center (APC) and not to satellite Center of
[8086]199Mass (CoM). Its reference system is IGS14. Orbits are saved in SP3 format
[7686]200(referred to CoM) and clocks in Clock RINEX format.
[7562]201
[7723]20218. Configuration File 'CombiPPP.bnc'
[8086]203Purpose: This configuration equals the 'Combi.bnc' configuration. However, the
204combined Broadcast Corrections are in addition used for an 'INTERNAL' PPP
205solutions based on observations from a static reference station with known
206precise coordinates. This allows a continuous quality check of the combination
[7562]207product through observing coordinate displacements.
208
[7723]20919. Configuration File 'UploadEph.bnc'
[9826]210Purpose: Pull a number of streams from reference stations to get the
[8086]211contained Broadcast Ephemeris messages. They are encoded to RTCM Version 3
212format and uploaded for the purpose of providing a Broadcast Ephemeris stream
[7686]213with an update rate of 5 seconds.
[7562]214
[7723]21520. Configuration File 'CompareSp3.bnc'
[8086]216Purpose: Compare two SP3 files to calculate RMS values for orbit and clock
217differences. GPS satellite G05 and GLONASS satellite R18 are excluded from this
[7686]218comparison. Comparison results are saved in a logfile.
[7562]219
[7723]22021. Configuration File 'Empty.bnc'
[8086]221Purpose: Provide an empty example configuration file for BNC which only
[7686]222contains the default settings.
[7562]223
[7750]224(B) Working with Command Line configuration options
225
[8086]226The following configuration examples make use of BNC's 'Command Line Interface'
227(CLI). Configuration options are exclusively specified via command line. No
[7723]228configuration file is used. Examples are provided as shell scripts for a Linux
[8086]229system. They call BNC in 'no window' batch mode (command line option -nw).
[7739]230The scripts expect 'Example_Configs' to be the current working directory.
[7723]231
[7725]23222. Shell Script 'RinexQC.sh'
[7723]233Purpose: Equals configuration file example 'RinexQC.bnc', checks the quality of
[9826]234a RINEX Version 4 file by means of a multipath analysis. The platform offscreen
235is used while producing plot files in PNG format. BNC is offline.
[8086]236All results are saved on disk.
[7723]237
[7731]23823. Shell Script 'RinexConcat.sh'
239Purpose: Equals configuration file example 'RinexConcat.bnc', concatenates
240several RINEX Version 3 files to produce one compiled file and edit the marker
[7735]241name in the file header. The sampling interval is set to 30 seconds. BNC is
242offline.
[7731]243
[8086]24424. Shell Script 'RinexEph.sh'
245Purpose: Equals configuration file example 'RinexEph.bnc', converts a RTCM
246stream with navigation messages to RINEX Navigation files. The configuration
247pulls a RTCM Version 3 stream with Broadcast Ephemeris coming from the
[9826]248real-time EUREF and IGS networks and saves hourly RINEX Version 4 Navigation
[8086]249files. BNC runs online until it's terminated after 10 seconds. See
[9826]250https://igs.bkg.bund.de/ntrip/#rtcm-eph for further real-time Broadcast
[8086]251Ephemeris resources.
[7735]252
[7744]25325. Shell Script 'ScanLate.sh'
254Purpose: Scan an observation stream for contained RTCM message types, print
[8086]255observation latencies. The output is saved in a logfile. Latencies are
[7755]256reported every 10 seconds. BNC runs online until it's terminated after 20
[7744]257seconds.
258
[7747]25926. Shell Script 'RinexObs.sh'
260Purpose: Equals configuration file example 'RinexObs.bnc', converts RTCM
261streams to RINEX Observation files. The configuration pulls streams from two
[9826]262Ntrip Broadcasters using Ntrip Version 2 to generate 15min 1Hz RINEX Version 4
263Observation files. See https://igs.bkg.bund.de/ntrip/#rtcm-obs for
[7755]264observation stream resources. BNC runs online until it's terminated after 30
[7747]265seconds.
266
[7750]267(C) Command Line configuration options overwriting Configuration File options
268
[8086]269For specific applications you may like to use your own set of standard
270configuration options from a configuration file and update some of its content
[7750]271via command line. When using a configuration file and command line configuration
[8086]272options together in one BNC call, the command line configuration options will
[7750]273always overrule options contained in the configuration file.
274
27527. Shell Script 'CompareSp3.sh'
[8086]276Purpose: Equals configuration file example 'CompareSp3.bnc', compares two SP3
277files to calculate RMS values for orbit and clock differences. However, instead
278of excluding GPS satellite G05 and GLONASS satellite R18 from the comparison as
279specified in 'CompareSp3.bnc', GPS satellite G06 and all GLONASS satellites are
[7752]280excluded via command line option. BNC runs offline. Comparison results are saved
281in a logfile.
[7750]282
[9424]283Andrea Stuerze, BKG
[9776]284Frankfurt, June 2022
[7562]285igs-ip@bkg.bund.de
286
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