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US Patent 11802972 Enhancing RTK position resolution using an RTK-enabled GNSS positioning receiver

Patent 11802972 was granted and assigned to Spirent on October, 2023 by the United States Patent and Trademark Office.

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Contents

Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent

Patent attributes

Patent Applicant
Spirent
Spirent
Current Assignee
Spirent
Spirent
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11802972
Patent Inventor Names
Esther Anyaegbu
Jeremy Charles Bennington
Paul Hansen
Date of Patent
October 31, 2023
Patent Application Number
17706421
Date Filed
March 28, 2022
Patent Citations
‌
US Patent 7508868 Systems and methods for testing the performance of and simulating a wireless communication device
‌
US Patent 7539489 Location-based testing for wireless data communication networks
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US Patent 7555420 Method and system for network emulation
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US Patent 7606165 What-if analysis for network diagnostics
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US Patent 7646338 Method of optimization of processing of location data in the presence of a plurality of satellite positioning constellations
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US Patent 7693082 Latency measurement apparatus and method
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US Patent 7809404 MIMO passive channel emulator
‌
US Patent 8150675 Network simulation for download progress and latency
...
Patent Primary Examiner
‌
Harry K Liu
CPC Code
‌
H04L 67/12
‌
G01S 19/08
Patent abstract

Disclosed is a method of enhancing RTK position resolution using an RTK-enabled GNSS positioning receiver, including receiving an RTK base station signal for differential position calculation, and receiving a forecast assured navigation signal that includes data identifying line-of-sight availability of satellites generating GNSS signals at a position of the GNSS positioning receiver. Also included is excluding from, or reducing the weighting of, GNSS position calculation satellites not identified as line-of-sight available in the forecast assured navigation signal, and computing the GNSS position calculation combining the knowledge of line of sight, or not line of sight, satellites with the RTK base station signal to perform the differential position calculation and to determine an improved calculated position of the GNSS positioning receiver. Further included is unpacking from the forecast navigation signal receiver the data identifying line-of-sight availability of satellites based on an initially calculated location of the GNSS positioning receiver.

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