IP Library Granted Patent US 11,187,813
Granted Patent B2
US 11,187,813 · App. 16/545,524 · Granted Nov 30, 2021

Correction information integrity monitoring in navigation satellite system positioning methods, systems, and devices

Inventors: Markus Brandl (Höhenkirchen-Siegertsbrunn, DE); Ulrich Weinbach (Höhenkirchen-Siegertsbrunn, DE); Carlos Javier Rodriguez Solano (Höhenkirchen-Siegertsbrunn, DE)
Assignee: Trimble Inc.
G01S19/44G01S19/08G01S19/20G01S19/22G01S19/40G05D1/0022G05D1/0088G05D2201/0213
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Quick Facts
Patent No.
US 11,187,813
App. No.
16/545,524
Filed
Aug 20, 2019
Granted
Nov 30, 2021
Kind
B2
Examiner
LIU, HARRY K
Art Unit
3648
USPC
342/357.22
Abstract

Some embodiments of the invention relate to generating correction information based on global or regional navigation satellite system (NSS) multiple-frequency signals observed at a network of reference stations, broadcasting the correction information, receiving the correction information at one or more monitoring stations, estimating ambiguities in the carrier phase of the NSS signals observed at the monitoring station(s) using the correction information received thereat, generating residuals, generating post-broadcast integrity information based thereon, and broadcasting the post-broadcast integrity information. Other embodiments relate to receiving and processing correction information and post-broadcast integrity information at NSS receivers or at devices which may have no NSS receiver, as well as to systems, NSS receivers, devices which may have no NSS receiver, processing centers, and computer programs. Some embodiments may for example be used for safety-critical applications such as highly-automated driving and autonomous driving.

Claims (62)

1. System configured for generating information, hereinafter referred to as “correction information”, suitable for correcting observations useful for estimating at least one of: carrier phase ambiguities and a position of at least one global or regional navigation satellite system receiver, hereinafter abbreviated as NSS receiver, and for generating further information, hereinafter referred to as “integrity information”, suitable for indicating a trust which can be placed in a correctness of the correction information, the system comprising:

a computer or set of computers, hereinafter collectively referred to as “processing center”, the processing center being configured for:

generating the correction information based on NSS multiple-frequency signals observed at a network of reference stations, each of the reference stations having a NSS receiver, and based on estimating ambiguities in the carrier phase of the NSS multiple-frequency signals observed at the network of reference stations, wherein the generated correction information comprises at least one of:

satellite orbit correction information,

satellite clock correction information,

ionospheric correction information, and

tropospheric correction information; and

broadcasting, at a first point in time, the correction information;

at least one monitoring station, each of the at least one monitoring station having a NSS receiver and being configured for:

observing the NSS multiple-frequency signals from a plurality of NSS satellites over multiple epochs; and

receiving the correction information from the processing center;

the system being configured for:

estimating the ambiguities in the carrier phase of the NSS multiple-frequency signals observed at the at least one monitoring station using the correction information received at each of the at least one monitoring station; and

generating residuals based on at least: the NSS multiple-frequency signals observed at each of the at least one monitoring station, the estimated ambiguities, a known position, hereinafter referred to as “reference position”, of each of the at least one monitoring station, and the correction information received at each of the at least one monitoring station; and

the processing center being further configured for:

generating the integrity information, hereinafter referred to as “post-broadcast integrity information”, wherein generating the post-broadcast integrity information comprises comparing the residuals with quality indicators of the correction information received at each of the at least one monitoring station; and

broadcasting, at a second point in time after the first point in time, the post-broadcast integrity information.

2. Computer or set of computers, hereinafter collectively referred to as “processing center”, for generating information, hereinafter referred to as “correction information”, suitable for correcting observations useful for estimating at least one of: carrier phase ambiguities and a position of at least one global or regional navigation satellite system receiver, hereinafter abbreviated as NSS receiver, and for generating further information, hereinafter referred to as “integrity information”, suitable for indicating a trust which can be placed in a correctness of the correction information, the processing center further configured for:

generating the correction information based on NSS multiple-frequency signals observed at a network of reference stations, each of the reference stations having a NSS receiver, and based on estimating ambiguities in the carrier phase of the NSS multiple-frequency signals observed at the network of reference stations, wherein the generated correction information comprises at least one of:

satellite orbit correction information,

satellite clock correction information,

ionospheric correction information, and

tropospheric correction information;

broadcasting, at a first point in time, the correction information;

generating the integrity information, hereinafter referred to as “post-broadcast integrity information”, wherein generating the post-broadcast integrity information comprises comparing residuals generated based on at least:

the NSS multiple-frequency signals observed at each of at least one monitoring station,

the ambiguities in the carrier phase of the NSS multiple-frequency signals observed at the at least one monitoring station, estimated using the broadcasted correction information received at each of the at least one monitoring station,

a known position, hereinafter referred to as “reference position”, of each of the at least one monitoring station, and

the broadcasted correction information received at each of the at least one monitoring station;

with quality indicators of the correction information received at each of the at least one monitoring station; and

broadcasting, at a second point in time after the first point in time, the post-broadcast integrity information.

3. Computer program product or storage mediums comprising a computer program or set of computer programs according to claim 2 .

4. The processing center of claim 2 wherein the NSS multiple-frequency signals include at least one of L1, L2, or L5 frequencies.

5. A regional correction service computing center comprising the processing center of claim 2 .

6. A global correction service computing center comprising the processing center of claim 2 .

7. The processing center of claim 2 further configured to broadcast the correction information using at least one of the Internet, a cellular network, or a satellite network.

8. The processing center of claim 2 further configured to broadcast the correction information in real-time.

9. The system of claim 2 wherein the post-broadcast integrity information is broadcast through a same communication medium as the correction information.

10. The system of claim 1 wherein the post-broadcast integrity information comprises integrity information per satellite, per satellite system, and/or per geographical region.

11. The system of claim 1 wherein the processing center is configured to broadcast the correction information using at least one of the Internet, a cellular network, or a satellite network.

12. The system of claim 1 wherein the processing center is configured to broadcast the correction information in real-time.

13. The system of claim 1 wherein the at least one monitoring station is a geodetic-grade monitoring station.

14. The system of claim 1 wherein the at least one monitoring station consists of a single monitoring station.

15. The system of claim 1 wherein the residuals are generated based on the NSS multiple-frequency signals observed at each of the at least one monitoring station, the estimated ambiguities, the reference position of each of the at least one monitoring station, and the correction information received at each of the at least one monitoring station.

16. The system of claim 1 wherein the reference position is used to generate the residuals, and the reference position includes a priori station coordinates.

17. The system of claim 1 further comprising transmitting the residuals from the at least one monitoring station to the processing center.

18. The system of claim 1 wherein the post-broadcast integrity information is broadcast through a same communication medium as the correction information.

19. The system of claim 1 wherein the post-broadcast integrity information comprises integrity information per satellite, per satellite system, and/or per geographical region.

20. Computer or set of computers, hereinafter collectively referred to as “processing center”, for generating information, hereinafter referred to as “correction information”, suitable for correcting observations useful for estimating at least one of: carrier phase ambiguities and a position of at least one global or regional navigation satellite system receiver, hereinafter abbreviated as NSS receiver, and for generating further information, hereinafter referred to as “integrity information”, suitable for indicating a trust which can be placed in a correctness of the correction information, the processing center further configured for:

generating the correction information based on NSS multiple-frequency signals observed at a network of reference stations, each of the reference stations having a NSS receiver, and based on estimating ambiguities in the carrier phase of the NSS multiple-frequency signals observed at the network of reference stations, wherein the generated correction information comprises at least one of:

satellite orbit correction information,

satellite clock correction information,

ionospheric correction information, and

tropospheric correction information;

broadcasting, at a first point in time, the correction information;

generating the integrity information, hereinafter referred to as “post-broadcast integrity information”, wherein generating the post-broadcast integrity information comprises comparing residuals generated based on at least:

the NSS multiple-frequency signals observed at each of at least one monitoring station,

the ambiguities in the carrier phase of the NSS multiple-frequency signals observed at the at least one monitoring station, estimated using the broadcasted correction information received at each of the at least one monitoring station,

a known position, hereinafter referred to as “reference position”, of each of the at least one monitoring station, and

the broadcasted correction information received at each of the at least one monitoring station;

with quality indicators of the correction information; and

broadcasting, at a second point in time after the first point in time, the post-broadcast integrity information.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2019
From: BRANDL, MARKUS; WEINBACH, ULRICH; SOLANO, CARLOS JAVIER RODRIGUEZ
To: TRIMBLE INC.
Reel/Frame 050371/0681 →
Priority Claims (1)
EP 18196017 · Sep 21, 2018 · regional
Continuity (1)
Related Publication 20200096649A1 · Mar 26, 2020
Cited By (10)
US 12,216,211 US 12,366,666 US 12,442,929 US 12,498,493 US 12,578,482 US 12,656,506 US 12,699,188 US 12,704,637 US 12,710,553 US 12,736,683