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Northern half satellite positioning accuracy

Northern half satellite positioning accuracy, Total:37 items.

The international standard classification for "Northern half satellite positioning accuracy" includes: Aircraft and space vehicles in general , Electric component assemblies , Telecontrol. Telemetering , Information technology (IT) in general .

The Chinese standard classification for "Northern half satellite positioning accuracy" includes: Basic standards and general methods , Radar, navigation, remote control, remote measuring and antenna synthesis , Social and public safety in general .


General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 42577-2023 Definitions and descriptions of BeiDou/global navigation satellite system(GNSS) satellite parameters for high precision applications
  • GB/T 45446-2025 Interface specification for signal in space of Beidou navigation satellite system precise point positioning service
  • GB/T 45526-2025 Specification for corrections product of BDS/global navigation satellite system(GNSS) precise point positioning real-time kinematic state space representation
  • GB/T 42576-2023 Technical requirements and testing methods of BDS/GNSS high precision system on chip (SoC)

Group Standards of the People's Republic of China

  • T/COS 002-2019 Requirements for interface of high precision portable satellite navigation and
  • T/CEC 804-2023 Electric Beidou Satellite Positioning Vehicle Terminal
  • T/COS 003-2019 Test method for positioning precision of GNSS receiverPart 1: single point positioning testing
  • T/CICC 16016-2021 Requirements for on-site batch testing of Beidou global satellite positioning and navigation equipment for intelligent command and dispatch

Military Standard of the People's Republic of China-General Armament Department

Professional Standard - Traffic

  • JT/T 1159.1-2017 GNSS system for operating vehicles-BDS compatible positioning module. Part 1:Technical specification
  • JT/T 1254-2019 Technical requirements of position system with high precision based on satellite navigation system applied in port
  • JT/T 1159.2-2017 GNSS system for operating vehicles-BDS compatible positioning module. Part 2:Communication protocols

Shaanxi Provincial Standard of the People's Republic of China

  • DB61/T 1688-2023 Beidou satellite positioning vehicle terminal detection technical specifications

Guangdong Provincial Standard of the People's Republic of China

  • DB44/T 1907-2016 Beidou Satellite Positioning and Navigation Embedded Device Interface Technical Specifications
  • DB44/T 1345-2014 Reliability test method for vehicle-mounted GPS/Beidou dual-mode satellite positioning and navigation terminal equipment
  • DB44/T 1908-2016 General technical specification for Beidou satellite positioning marine equipment interface

Professional Standard - Aerospace

  • QJ 1967-1990 Satellite Orbiting Accuracy Calculation
  • QJ 1780-1989 Accuracy Calibration and Test of Satellite Sun Sensor

National Metrological Verification Regulations of the People's Republic of China

Professional Standard - Public Safety Standards

  • GA/T 1481.5-2018 BeiDou/global navigation satellite system for police application- Part 5:Mobile positioning terminal

International Telecommunication Union (ITU)

  • ITU-R S.670-1 SPANISH-1992 Flexibility in the positioning of satellites as a design objective
  • ITU-R S.670-1 FRENCH-1992 FLEXIBILITY IN THE POSlTIONING OF SATELLITES AS A DESIGN OBJECTIVE
  • ITU-R S.484-2-1982 Station-Keeping in Longitude of Geostationary Satellites Using Frequency Bands Allocated to the Fixed-Satellite Service - Section 4D3 - Spacecraft Station-Keeping - Satellite Antenna Radiation Pattern - Pointing Accuracy
  • ITU-R S.672-1990 Satellite Antenna Radiation Pattern for Use as a Design Objective in the Fixed- Satellite Service - Section 4D3 - Spacecraft Station-Keeping - Satellite Antenna Radiation Pattern - Pointing Accuracy
  • ITU-R S.484-3 SPANISH-1992 Station-keeping in longitude of geostationary satellites in the fixed-satellite service
  • ITU-R S.484-3 FRENCH-1992 Station-keeping in longitude of geostationary satellites in the fixed-satellite service
  • ITU-R S.672-1-1992 Satellite Antenna Radiation Pattern for Use as a Design Objective in the Fixed-Satellite Service Employing Geostationary Satellites - Section 4D3 - Spacecraft Station-Keeping - Satellite Antenna Radiation Pattern - Pointing Accuracy
  • ITU-R S.670-1990 Flexibility in the Positioning of Satellites as a Design Objective - Section 4D3 - Spacecraft Station- Keeping - Satellite Antenna Radiation Pattern - Pointing Accuracy
  • ITU-R S.1064-1-1995 Pointing Accuracy as a Design Objective for Earthward Antennas on Board Geostationary Satellites in the Fixed-Satellite Service
  • ITU-R S.1064-1995 Pointing accuracy as a design objective for earthward antennas on board geostationary satellites in the fixed-satellite service
  • ITU-R TF.767-1-1998 Use of the Global Positioning System (GPS) and the Global Navigation Satellite System (GLONASS) for High-Accuracy Time Transfer
  • ITU-R TF.767-1992 Use of the Global Positioning System (GPS) and the Global Navigation Satellite System (GLONASS) for High-Accuracy Time Transfer

Swedish Institute for Standards

U.S. Army Corps of Engineers Headquarters

  • COE EC 1110-1-90-1998 USE, ACQUISITION, AND SECURITY OF PRECISE POSITIONING SERVICE GPS RECEIVERS FOR CIVIL APPLICATIONS

Gosstandart of Russia

  • GOST R 57371-2016 Global navigation satellite system. Methods and technologies of geodetic works. Estimation of the accuracy of the positioning. Main provisions