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PNT Moni Monthly QC Report

GEONET Observation Quality — Free Tier

Author

PNT Moni

Published

September 27, 2026

Methodology Version: 1.2.0  ·  QC Tool: teqc 2019Feb25  ·  convbin: RTKLIB 2.4.2  ·  Stations: 1,302  ·  Days covered: 31  ·  [https://pntmoni.com/methodology/qc/v1.2.0](https://pntmoni.com/methodology/qc/v1.2.0)

1 Revision History

Version Date Notes
1.0 2026-09-27 Initial publication.

This edition was produced and first published about 8 month(s) after the end of the reporting period, as part of completing the monthly series. The methodology, inputs and processing are the same as for the editions published on schedule.

2 Introduction

This monthly report summarises the observation-quality state of the GEONET (GNSS Earth Observation Network) reference-station network operated by the Geospatial Information Authority of Japan (GSI), for January 2026. It is the free-tier deliverable of the PNT Moni monitoring service: a national, aggregate view that lets operators, researchers and users of GNSS-augmentation services see how the underlying observation infrastructure performed.

The report is intentionally limited in scope. It does not include:

  • Per-station drill-downs or named station lists (Pro-tier).
  • Positioning-domain accuracy or TTFF results — those appear in the full Monthly Report.
  • Integrity indicators, ionospheric/tropospheric correction diagnostics, or cross-engine comparisons (Phase 1+).

The data and methods used to produce this report are openly documented and reproducible from publicly available GEONET inputs. §Methodology below summarises them; the full methodology document is [https://pntmoni.com/methodology/qc/v1.2.0](https://pntmoni.com/methodology/qc/v1.2.0).

3 Methodology

This section summarises the methodology; the full document is [https://pntmoni.com/methodology/qc/v1.2.0](https://pntmoni.com/methodology/qc/v1.2.0).

Data sources (methodology §2): GEONET RINEX 3.02 observation and broadcast-navigation files (30-second sampling, 24-hour daily files), retrieved from GSI’s archive under the Public Data License 1.0. All 1,302 continuously-operating GEONET reference stations active for January 2026 are included.

QC pipeline (methodology §3):

RINEX 3 (GEONET)
  ↓ convbin (RTKLIB 2.4.2)            v3 → v2.11 conversion
  ↓ teqc 2019Feb25                    +qc -R +L2C_L2 +L5
  → .{yy}S summary per station/day
  ↓ pntmoni-pipeline qc summarize     parse + wide Parquet
  → data/processed/qc_summary/...     1 row × 639 cols per station-day

QZSS LNAV broadcasts use the post-2024 health-flag encoding of IS-QZSS-PNT-006 §4.1.2.3(4); the pipeline masks the L1C/B health bit before passing the QNAV to teqc so that L1C/A-broadcasting QZS satellites are correctly QC’d (methodology §2.1).

Metrics (methodology §4): the four core families established in Shiono & Kubo (2025) (ION GNSS+ 2025) and extended in Shiono & Kubo (2026) (NAVIGATION, doi:10.33012/navi.762) — Visibility, SNR, Multipath, and Cycle Slips — plus data availability. The Galileo E5b family (SN7, MP17, MP71) is reported as informative reference only, not part of the absolute-evaluation baseline. Symbol-by-symbol definitions are in the Appendix glossary.

Aggregation (methodology §5): all multipath, SNR and slip figures are computed from teqc’s 5° elevation bins with an elevation mask of 15° applied (15 of 19 bins kept); multipath/SNR values are obs-count weighted across the kept bins, slip totals are summed. This matches both Shiono & Kubo (2025) and the elmask used by the positioning engines (CLASLIB, RTKLIB).

3.1 Evaluation Network

Figure 1: GEONET reference stations covered in this report.

4 Executive Summary

Table 1
Metric January 2026
National data availability (epoch coverage, daily mean) 99.93 %
National visibility (>10° track completeness, daily mean) 96.11 %
L1 C/A multipath — station-month median 0.197 m
L1 C/A SNR — station-month median 43.9 dB-Hz
Stations reporting 1,302
Days covered 31
Tip

Bottom line. The GEONET network operated at high observation fidelity throughout January 2026, with the headline metrics tracking expectations for a healthy reference network. See §National Overview for the distributions and trends behind these summary numbers.

5 National Overview — Observation Quality

5.1 Data Availability & Visibility

5.1.1 Data Availability

Epoch-level coverage: did the station log data every 30 seconds?

Figure 2: Data availability — fraction of the 2,880 nominal daily epochs with logged observations.

Table 2
Statistic Station-monthly data availability
5th percentile 99.97 %
Median 100.00 %
95th percentile 100.00 %
Best station 100.00 %
Worst station 53.23 %

5.1.2 Visibility (可視率)

Sat-track completeness above 10° elevation: when the station was up, did it actually track the satellites it should have seen?

Figure 3: Visibility — Complete obs / Possible obs above 10° elevation, per teqc.

Table 3
Statistic Station-monthly visibility
5th percentile 87.30 %
Median 97.65 %
95th percentile 99.67 %
Best station 99.87 %
Worst station 62.48 %

5.2 Distribution of Metrics

5.2.1 Signal-to-noise ratio

Figure 4: SNR distributions — L1 C/A and L5 (Shiono & Kubo 2025 core baseline).

Figure 5: SNR distributions — L2 (core) and Galileo E5b (reference; not part of the absolute-qualification baseline).

5.2.2 Multipath

Figure 6: Multipath RMS distributions — L1/L2 pair (MP12 = L1 multipath using L2 partner; MP21 = L2 multipath using L1 partner). Shiono & Kubo 2025 core baseline.

Figure 7: Multipath RMS distributions — L1/L5 pair (MP15 = L1 multipath using L5 partner; MP51 = L5 multipath using L1 partner). Core baseline.

Figure 8: Reference multipath RMS distributions — L1/Galileo E5b pair (MP17/MP71). Larger numerical scale due to the L1/E5b frequency-pair coefficient. Not part of the absolute-qualification baseline (E5b exhibited too much site-to-site variance to function as a qualification metric in Shiono & Kubo 2025).

5.2.3 Cycle slips

Figure 9: Station-monthly cycle slips (ION + core MP-combination slips, summed across the elmask-15 elevation bins). Paper-aligned definition (Shiono & Kubo 2025 Table 1). Logarithmic binning.

5.3 Spatial Distribution

The maps below aggregate the 1,302 station-monthly values into a national hex grid: each hexagon is ~60 km flat-to-flat and is coloured by the median of the station-monthly values of the stations falling inside it. The grid is drawn on an Albers Equal-Area projection so every cell covers the same ground area, making colour directly comparable across the country and between months. Cells backed by fewer than 3 reporting stations are drawn with a dotted inner ring — a reliability marking: their median is statistically thin, so read those cells as indicative rather than representative (methodology §5.3, 2026-07-18 revision).

5.3.1 Signal-to-noise ratio

Figure 10: Station-monthly SNR — L1 C/A and L5 (core baseline). Signal-specific colour scales.

Figure 11: Station-monthly SNR — L2 (core) and Galileo E5b (reference; not part of the absolute-qualification baseline). Signal-specific colour scales.

5.3.2 Multipath

Figure 12: Station-monthly multipath RMS — L1/L2 standard pair (MP12 = L1 multipath using L2 partner; MP21 = L2 multipath using L1 partner).

Figure 13: Station-monthly multipath RMS — L1/L5 pair (MP15 = L1 multipath using L5 partner; MP51 = L5 multipath using L1 partner). MP51 typically lower than MP12 — modern L5 signals see less multipath at GEONET sites.

Figure 14: Reference multipath — L1/Galileo E5b pair (MP17/MP71). Larger numerical scale due to the L1/E5b frequency-pair coefficient. Shown for monitoring; not part of the absolute-qualification baseline.

5.3.3 Cycle slips

Figure 15: Core cycle slips per station-day (ION + MP12/21/15/51 slips, elmask-15, daily mean over month). Paper-aligned definition. Logarithmic colour scale.

Note

Per free-tier scope, only the hex-aggregated (per-cell median) values are shown — individual station identifiers and per-station values are reserved for the Pro-tier report. Color scales are fixed per signal (see the Appendix glossary) so successive months can be compared at a glance.

5.4 Receiver / Antenna Inventory

Figure 16

Figure 17: Top 10 receiver × antenna combinations across the network.

Top 10 receiver × antenna combinations cover 74.0 % of 1,302 reporting stations; 46 distinct combinations exist in total.

Note

Equipment changes vs. previous month are tracked via aggregated counts only (e.g. “N stations changed receiver, M stations changed antenna”); individual station identities are reserved for the Pro-tier report. Month-over-month deltas will appear once a baseline month is established.

5.5 Absolute Station Qualification

Note

Coming Soon. Absolute station qualification — i.e. classifying each GEONET station as passing or failing the four core QC criteria defined in Shiono & Kubo (2025) — will appear here once the moving-window infrastructure (a rolling 3-month window at daily granularity, n ≈ 91 daily values per station per qualification cycle) is in place. The qualification criterion is the 99.73rd percentile (3σ) of the daily metrics over the rolling 3-month window for each of:

  1. Visibility — Complete obs / Possible obs > 10°
  2. SNR — mean SNR for L1, L2, L5 (SN1, SN2, SN5)
  3. Multipath — RMS of MP12, MP21, MP15, MP51
  4. Cycle slips — cycle_slips_core (ION + MP12/21/15/51 slips)

The rolling-3-month × daily window is a deliberate operational deviation from the published Shiono & Kubo (2025) weekly-over- rolling-year methodology, adopted for operational timeliness (alignment with the recent-3-months reporting cadence), environmental adaptation, and improved statistical robustness (n ≈ 91 vs. 53).

Per the original study, the Galileo E5b family (SN7, MP17, MP71) is intentionally excluded from the qualification set: at the time of the four-year baseline (2021–2024), L1/E5b values exhibited considerably larger site-to-site variance than the L1/L2/L5 pairs, making them unreliable as a pass/fail threshold. They remain in the report as reference / supplementary monitoring.

The output of this section will be a national pass-rate (e.g. “1,055 of 1,298 stations passed all four core criteria”) with aggregate counts only — individual station names are reserved for the Pro-tier report.

6 Appendix

6.1 GNSS System Events: NAGU / NANU / NAQU

Notices issued against GNSS constellation operations during January 2026, recorded for cross-referencing against observation anomalies and signal availability. Sourced from the official NAGU (Galileo, EUSPA/GSC), NANU (GPS, USCG-NAVCEN) and NAQU (QZSS, QSS) notice feeds.

Table 4: GNSS system notices within the reporting period.
Date Satellite Notice Event type Severity
2026-01-02 03:59 UTC QZS PRN200 NAQU 2026001 scheduled_maintenance total
2026-01-02 15:15 UTC GPS PRN6 NANU 2026003 scheduled_maintenance total
2026-01-02 15:18 UTC GPS PRN6 NANU 2026002, NANU 2026004 other total
2026-01-07 08:40 UTC QZS PRN199 NAQU 2026022 unscheduled_outage partial
2026-01-07 08:42 UTC QZS PRN210 NAQU 2026006, NAQU 2026014 other partial
2026-01-07 08:43 UTC QZS PRN200 NAQU 2026007, NAQU 2026015 other partial
2026-01-07 08:44 UTC QZS PRN195 NAQU 2026009, NAQU 2026017 other partial
2026-01-07 08:44 UTC QZS PRN189 NAQU 2026003, NAQU 2026004 other partial
2026-01-07 08:44 UTC QZS PRN209 NAQU 2026005, NAQU 2026013 other partial
2026-01-07 08:44 UTC QZS PRN204 NAQU 2026011, NAQU 2026019 other partial
2026-01-07 08:44 UTC QZS PRN205 NAQU 2026012, NAQU 2026020 other partial
2026-01-07 08:44 UTC QZS PRN199 NAQU 2026010, NAQU 2026018 other partial
2026-01-07 08:45 UTC QZS PRN194 NAQU 2026008, NAQU 2026016 other partial
2026-01-08 16:00 UTC GPS PRN20 NANU 2026005, NANU 2026006 scheduled_maintenance total
2026-01-13 08:27 UTC GPS PRN1 NANU 2026007, NANU 2026008 other total
2026-01-13 08:30 UTC GAL NAGU 2026001, NAGU 2026003 scheduled_maintenance informational
2026-01-13 09:00 UTC GAL NAGU 2026002, NAGU 2026004 scheduled_maintenance informational
2026-01-16 01:59 UTC QZS PRN210 NAQU 2026031, NAQU 2026038 other partial
2026-01-16 01:59 UTC QZS PRN200 NAQU 2026032, NAQU 2026039 other partial
2026-01-16 02:00 UTC QZS PRN199 NAQU 2026029, NAQU 2026035 other partial
2026-01-16 02:00 UTC QZS PRN209 NAQU 2026030, NAQU 2026036 other partial
2026-01-16 02:00 UTC QZS PRN206 NAQU 2026027, NAQU 2026037 other partial
2026-01-16 02:00 UTC QZS PRN196 NAQU 2026028, NAQU 2026034 other partial
2026-01-16 02:01 UTC QZS PRN189 NAQU 2026023, NAQU 2026025 other partial
2026-01-16 02:02 UTC QZS PRN186 NAQU 2026024, NAQU 2026040 other partial
2026-01-16 02:03 UTC QZS PRN194 NAQU 2026026, NAQU 2026033 other partial
2026-01-16 10:59 UTC QZS PRN199 NAQU 2026002, NAQU 2026045 scheduled_maintenance total
2026-01-17 14:09 UTC QZS PRN204 NAQU 2026042, NAQU 2026044 other partial
2026-01-17 14:09 UTC QZS PRN194 NAQU 2026041, NAQU 2026043 other partial
2026-01-19 09:00 UTC GAL NAGU 2026005, NAGU 2026006 scheduled_maintenance informational
2026-01-20 02:19 UTC QZS PRN185 NAQU 2026048, NAQU 2026055 other partial
2026-01-20 02:19 UTC QZS PRN185 NAQU 2026046, NAQU 2026049 other partial
2026-01-20 02:19 UTC QZS PRN205 NAQU 2026052, NAQU 2026054 other partial
2026-01-20 02:19 UTC QZS PRN195 NAQU 2026051, NAQU 2026053 other partial
2026-01-20 02:20 UTC QZS PRN185 NAQU 2026047, NAQU 2026050 other partial
2026-01-20 04:42 UTC QZS PRN206 NAQU 2026057, NAQU 2026059 other partial
2026-01-20 04:42 UTC QZS PRN196 NAQU 2026056, NAQU 2026058 other partial
2026-01-23 06:15 UTC GPS PRN11 NANU 2026009, NANU 2026010 scheduled_maintenance total
2026-01-26 10:59 UTC QZS PRN200 NAQU 2026060, NAQU 2026080 scheduled_maintenance total
2026-01-27 02:40 UTC QZS PRN210 NAQU 2026068, NAQU 2026076 other partial
2026-01-27 02:40 UTC QZS PRN200 NAQU 2026069, NAQU 2026077 other partial
2026-01-27 02:41 UTC QZS PRN206 NAQU 2026063, NAQU 2026072 other partial
2026-01-27 02:41 UTC QZS PRN196 NAQU 2026062, NAQU 2026071 other partial
2026-01-27 02:41 UTC QZS PRN209 NAQU 2026066, NAQU 2026074 other partial
2026-01-27 02:41 UTC QZS PRN199 NAQU 2026065, NAQU 2026073 other partial
2026-01-27 02:43 UTC QZS PRN189 NAQU 2026064, NAQU 2026079 other partial
2026-01-27 02:44 UTC QZS PRN194 NAQU 2026067, NAQU 2026075 other partial
2026-01-27 02:45 UTC QZS PRN204 NAQU 2026070, NAQU 2026078 other partial
2026-01-28 10:59 UTC QZS PRN196 NAQU 2026061, NAQU 2026081 scheduled_maintenance total
2026-01-28 13:00 UTC GAL NAGU 2026007 other total
2026-01-28 13:07 UTC GPS PRN32 NANU 2026012, NANU 2026013 other total
2026-01-29 10:45 UTC GPS PRN12 NANU 2026011, NANU 2026014 scheduled_maintenance total

52 notice(s) detected for January 2026, collected from the official NAGU (Galileo), NANU (GPS) and NAQU (QZSS) feeds.

6.2 List of Earthquakes

Earthquakes during the reporting period for which the Japan Meteorological Agency issued a press release (in practice: maximum seismic intensity 5-lower or greater), listed for interpreting GEONET observation anomalies. Aftershocks folded into a mainshock’s series are shown under it. Source: JMA website (edited); origin times are JST.

Earthquakes with a JMA press release, January 2026 (2 rows). Source: JMA website.
Origin (JST) Epicentral region M Depth (km) Max. int. JMA name Press release
01-06 10:18 島根県東部 6.4 11 5強 JMA
01-06 10:28 島根県東部 5.1 12 5弱 └ aftershock in the series above JMA

6.3 List of Satellites

A snapshot of the constellation operators’ official status pages at fetch time (not a period summary — the operator pages are themselves live snapshots). Sources: GPS = USCG NAVCEN, QZSS = QSS, Galileo = GSC Europa. GLONASS is excluded from this report’s QC pipeline (per methodology); PNT Moni does, however, evaluate the Galileo signals received at GEONET stations.

Fetched at: 2026-06-02 02:42 UTC

This snapshot was taken 122 days after the end of the reporting period; no snapshot closer to the period exists. Satellite status may have differed during the period — see the NAGU / NANU / NAQU notices above.

6.3.1 GPS

Table 5: GPS satellite constellation status.
PRN SVN Block Slot Clock Status Notice
G01 80 III D2 RB Unusable UNUSABLE
G02 61 IIR D1 RB Operational FCSTSUMM
G03 69 IIF E1 RB Operational FCSTSUMM
G04 74 III F4 RB Operational FCSTDV
G05 50 IIR-M E3 RB Operational FCSTSUMM
G06 67 IIF D4 RB Operational FCSTDV
G07 48 IIR-M A4 RB Operational FCSTSUMM
G08 72 IIF C3 RB Operational FCSTSUMM
G09 68 IIF F3 RB Operational FCSTSUMM
G10 73 IIF E2 RB Operational FCSTSUMM
G11 78 III D5 RB Operational FCSTSUMM
G12 58 IIR-M B4 RB Operational FCSTSUMM
G13 43 IIR A5 RB Decommissioned DECOM
G14 77 III B6 RB Operational FCSTSUMM
G15 55 IIR-M F2 RB Operational FCSTSUMM
G16 56 IIR B1 RB Operational FCSTSUMM
G17 53 IIR-M C4 RB Operational FCSTMX
G18 75 III D6 RB Operational FCSTSUMM
G19 59 IIR C5 RB Operational FCSTSUMM
G20 82 III F5 RB Operational FCSTSUMM
G21 81 III E6 RB Operational FCSTSUMM
G22 44 IIR B3 RB Operational FCSTSUMM
G23 76 III E5 RB Operational FCSTSUMM
G24 65 IIF A1 RB Unusable UNUSABLE
G25 62 IIF B2 RB Operational FCSTSUMM
G26 71 IIF B5 RB Operational FCSTSUMM
G27 66 IIF C2 RB Operational FCSTSUMM
G28 79 III A6 RB Unusable UNUSABLE
G29 57 IIR-M C1 RB Operational FCSTSUMM
G30 64 IIF A3 RB Operational FCSTSUMM
G31 52 IIR-M A2 RB Operational FCSTSUMM
G32 70 IIF F1 RB Unusable UNUSABLE

6.3.2 QZSS (Michibiki)

Table 6: QZSS satellite constellation status.
PRN SVN Block Signals Status Notice
J194 002 Ⅱ-Q L1C/A, L1C, L2C, L5, L1S, L5S, L6D, L6E Operational
J195 004 Ⅱ-Q L1C/A, L1C, L2C, L5, L1S, L5S, L6D, L6E Operational
J196 005 ⅡA-Q L1C, L2C, L5, L1C/B, L1S, L5S, L6D, L6E Operational
J199 003 Ⅱ-G L1C/A, L1C, L2C, L5, L1S, L5S, L1Sb, L6D, L6E, Sr/Sf Operational
J200 007 Ⅲ-G L1C, L5, L1C/B, L5S, L1Sb, L6D, L6E Operational

6.3.3 Galileo

Table 7: Galileo satellite constellation status.
E# GSAT Clock Status Notice
E01 GSAT0210 RAFS Unusable GENERAL 2023048
E02 GSAT0211 PHM Operational
E03 GSAT0212 PHM Operational
E04 GSAT0213 PHM Operational
E05 GSAT0214 PHM Operational
E06 GSAT0227 PHM Operational
E07 GSAT0207 PHM Operational
E08 GSAT0208 PHM Operational
E09 GSAT0209 RAFS Operational
E10 GSAT0224 PHM Operational
E11 GSAT0101 RAFS Operational
E12 GSAT0102 RAFS Operational
E13 GSAT0220 PHM Operational
E14 GSAT0202 RAFS Unusable GENERAL 2021008
E15 GSAT0221 PHM Operational
E16 GSAT0232 PHM Operational
E18 GSAT0201 PHM Unusable GENERAL 2021008
E19 GSAT0103 RAFS Operational
E21 GSAT0215 PHM Operational
E22 GSAT0204 RAFS Unusable GENERAL 2017045
E23 GSAT0226 PHM Operational
E25 GSAT0216 PHM Operational
E26 GSAT0203 PHM Operational
E27 GSAT0217 PHM Operational
E28 GSAT0233 PHM Operational USABINIT 2026033
E29 GSAT0225 PHM Operational
E30 GSAT0206 PHM Operational
E31 GSAT0218 PHM Operational
E32 GSAT0234 Commissioning LAUNCH 2025061
E33 GSAT0222 PHM Operational
E34 GSAT0223 PHM Operational
E36 GSAT0219 PHM Operational

Reproducibility. This report is generated by the open-source pntmoni-pipeline toolchain from the publicly available GEONET archive. Methodology 1.2.0 · QC tool teqc 2019Feb25 · convbin RTKLIB 2.4.2 — versioned alongside the report.

6.4 Metric Glossary

Symbol-by-symbol definitions of the metrics used throughout this report, as established in Shiono & Kubo (2025, 2026). The full methodology document is [https://pntmoni.com/methodology/qc/v1.2.0](https://pntmoni.com/methodology/qc/v1.2.0).

6.4.1 Core metrics (absolute-evaluation baseline)

These are the four families used in the paper’s Table 1 station selection and are the basis for the planned absolute station qualification (see §5.6).

Metric Symbol Description
Data availability data_availability epochs_w_obs / expected_epochs — fraction of the day’s 2,880 nominal 30-second epochs where the station logged at least one observation. Measures whether the station was up and recording.
Visibility (可視率) visibility Complete obs >10° / Possible obs >10° — fraction of expected satellite-epoch tracks above teqc’s 10° elevation mask that were actually obtained. Measures track completeness when the station was operating: low values indicate antenna obstructions, RF interference, or receiver issues even on a station that logs data every epoch.
L1 C/A SNR SN1 Mean signal-to-noise ratio on L1 C/A, in dB-Hz.
L2 SNR SN2 Mean signal-to-noise ratio on L2 (P-code or L2C), in dB-Hz.
L5 SNR SN5 Mean signal-to-noise ratio on L5, in dB-Hz.
Multipath (L1, L2 partner) MP12 RMS of the L1 multipath combination using L2 as partner, in metres.
Multipath (L2, L1 partner) MP21 RMS of the L2 multipath combination using L1 as partner, in metres.
Multipath (L1, L5 partner) MP15 RMS of the L1 multipath combination using L5 as partner, in metres.
Multipath (L5, L1 partner) MP51 RMS of the L5 multipath combination using L1 as partner, in metres.
Cycle slips (core) cycle_slips_core Sum of teqc-reported ION slips and the four core MP-combination slips (MP12 + MP21 + MP15 + MP51). Paper-aligned definition.

6.4.2 Reference / supplementary monitoring (Galileo E5b)

These are reported as informational reference. They are not part of the absolute-qualification baseline because the L1/E5b frequency pair exhibits considerably larger site-to-site variance than the L1/L2/L5 pairs and was therefore not adopted as a qualification metric in Shiono & Kubo (2025).

Metric Symbol Description
Galileo E5b SNR SN7 Mean signal-to-noise ratio on E5b (1207.140 MHz), in dB-Hz.
Multipath (L1, E5b partner) MP17 RMS of the L1 multipath combination using E5b as partner, in metres. The 2/(α-1) coefficient in the multipath formula is large for the L1/E5b frequency pair, hence the larger numerical values.
Multipath (E5b, L1 partner) MP71 RMS of the E5b multipath combination using L1 as partner, in metres.
Cycle slips (extended) cycle_slips_extended cycle_slips_core plus MP17 and MP71 slips. Useful when assessing receivers that track Galileo E5b; not used in qualification.

Sources & terms of use: GEONET data is distributed by GSI under PDL 1.0 (source: GSI GEONET data service). Satellite operational notices are sourced from the official feeds (GPS = USCG NAVCEN, QZSS = QSS, Galileo = GSC Europa).