GNSS observations: pseudorange, carrier phase and Doppler
Understand what GNSS receivers measure, why carrier phase needs ambiguity resolution, and which raw observations to keep for PPP, PPK and quality checks.
Practical guides to GNSS observations, standards, file formats, quality analysis, precise positioning and coordinate systems.
Understand what GNSS receivers measure, why carrier phase needs ambiguity resolution, and which raw observations to keep for PPP, PPK and quality checks.
Compare RINEX observation codes, navigation records and compression. Choose a version your processor supports without silently dropping GNSS signals.
Identify GNSS observation, navigation, orbit, clock and antenna files. Learn which files belong together before a quality check or precise positioning run.
A practical engineering guide to converting u-blox ZED-F9P and NEO-M8T raw binary .ubx files into clean RINEX 3.04 observations for RTK, PPK, and PPP.
Migrate CORS network quality control from unmaintained TEQC to modern multi-GNSS pipelines. Track cycle slips, multipath and completeness across BDS-3, Galileo and GPS.
A practical RINEX quality checklist for epoch gaps, carrier-phase cycle slips, multipath and signal strength, with a worked completeness example.
The thresholds and weights PosFlow grades observation files against — completeness, multipath, cycle slips, signal strength — and what each one is actually telling you.
TEQC development has ended and it does not support RINEX 3. Compare replacement workflows by supported signals, quality metrics and preservation of observations.
Master the complete UAV PPK workflow: converting raw receiver logs, quality-checking base and rover data, solving kinematic baselines, and applying antenna lever arms.
Troubleshoot a PPP solution that will not converge. Check phase continuity, precise products, antenna metadata and reference frames before extending the run.
A technical guide comparing Precise Point Positioning (PPP), Post-Processed Kinematic (PPK), and Real-Time Kinematic (RTK): baseline limits, convergence, accuracy, and use cases.
Avoid coordinate mistakes involving EPSG codes, latitude/longitude order, ECEF, height and coordinate epoch. A checklist for traceable GNSS transformations.
Technical explanation of the relationship between China Geodetic Coordinate System 2000 (CGCS2000) and WGS84: reference frames, plate motion, and 3D Helmert transformation.
One Jobs page now tracks every conversion, quality check, and processing task. Apex delivers automated static and kinematic PPP processing, and a Windows worker adds native Trimble, Topcon and Leica raw-log conversion.
sbf2rin, jps2rin and ubx2rinex now run in isolated containers, and NovAtel OEM logs convert natively alongside the existing vendor formats.
Failed conversions can be retried in place, finished jobs re-run with new settings, and old entries cleared in bulk from the Jobs page.
Free, Pro and Business tiers are now available, with pay-per-use credits for burst processing beyond your monthly job allowance.
Pick source and target CRS from presets or any EPSG code, swap them in one click, and transform whole coordinate files in batch.
Long-running QC and processing tasks can now be cancelled directly from the job list or the job detail view.
A new design system with dark and light themes, and a workspace reorganised around the surveying pipeline: data, quality, processing, delivery.