AGRICULTURE
A Differential Global Positioning System for Flight Inspection of Radio Navigation Aids | Airborne Applications | |
A Kinematic Carrier Phase Tracking System for High Precision Trajectory Determination | Airborne Applications | |
A New Positioning Filter: Phase Smoothing in the Position Domain | End User Applications | |
A Novel GPS Survey Antenna | Antennas | |
A Practical Approach to the Reduction of Pseudorange Multipath Errors in a Ll GPS Receiver | Core Applications | |
A Precision Flight Test Application Of A Differential Global Positioning System | Airborne Applications | |
A Three Dimensional Choke Ring Ground Plane Antenna | Antennas | |
Accurate Positioning In A Flight Inspection System Using Differential Global Navigation Satellite Systems | Airborne Applications | |
Advanced Pinwheel Compact Controlled Reception Pattern Antenna (AP-CRPA) designed for Interference and Multipath Mitigation | Antennas | |
Ambiguity Resolution on the fly - A Comparison of P Code and High Performance C/A Code GPS Receiver Technologies | End User Applications | |
An Approach to GPS Satellite Failure Detection | MEDLL®/WAAS Applications | |
Analysis of a High-Performance C/A-Code GPS Receiver in Kinematic Mode | End User Applications | |
Analysis Of A Tightly-Coupled MEMS IMU Based GNSS/INS With An External Odometer | SPAN® Technology Applications | |
Analysis of the Multipath Meter Performance in Environments With Multiple Interferers | MEDLL®/WAAS Applications | |
Architecture and System Performance of SPAN® -NovAtel's GPS/INS Solution | SPAN® Technology Applications | |
Assessment Of A Non-Dedicated GPS Receiver System For Precise Airborne Attitude Determination | Airborne Applications | |
Attitude Determination in a Survey Launch Using Multi-Antenna GPS Technologies | End User Applications | |
Beeline RT20 - a Compact, Medium Precision Positioning system with an Attitude | Core Applications | |
Characterization of L5 Receiver Performance Using Digital Pulse Blanking | Other Applications | |
Compliance of NovAtel's GPS-702L Antenna to the European Union's new WEEE (Waste Electrical and Electronic Equipment) and RoHS (Restriction of the use of Certain Hazardous Substances) Di | Other Applications | |
Core Technology Developments and End-user Products at NovAtel | Core Applications | |
Developmental Test And Evaluation of Helicopters Using a Precision Differential Global Positioning System | Airborne Applications | |
DGNSS Positioning Techniques For Flight Inspection | Airborne Applications | |
Dynamic GPS Attitude Performance Using INS/GPS Reference | End User Applications | |
Effect of Antenna Performance on the GPS Signal Accuracy | Antennas | |
Evolution Leads To Revolution - Helicopter Flight Testing Using RTK DGPS Technology | Airborne Applications | |
Evolution to Modernized GNSS Ionospheric Scintillation and TEC Monitoring | Ionosphere Applications | |
Extending Narrow-Correlator Technology To P(Y) - Code Receivers: Benefits and Issues | End User Applications | |
Flight Evaluation of a Basic C/A Code Differential GPS for Category I Precision Approach | Airborne Applications | |
Galileo Ground Segment Reference Receiver Performance Characteristics | Galileo Applications | |
Galileo Opportunities | Galileo Applications | |
Galileo Sensor Station Ground Reference Receiver Performance Characteristics | Galileo Applications | |
GPS Positioning in the Fast Track: Track Model Constraint Enhancement for OEM4 | End User Applications | |
GPS Signal Availability in an Urban Area - Receiver Performance Analysis | Land Based Applications | |
GPS System Integration and Field Approaches in Precision Farming | Land Based Applications | |
GPS Versus LORAN-C For Vehicular Navigation In Urban And Mountainous Areas | Land Based Applications | |
GPS-704X Antenna Design and Performance | Antennas | |
GPS/GIS and Space Time Data | End User Applications | |
GPS/INS Integration in Real-Time and Post-Processing with NovAtel's SPAN® System | SPAN® Technology Applications | |
GPS/INS Integration with the iMAR-FSAS IMU | SPAN® Technology Applications | |
GPS/MEMS Inertial Integration Methodology and Results | SPAN® Technology Applications | |
HAPPI - a High Accuracy Pseudolite/GPS Positioning Integration | Pseudolite Applications | |
Helicopter Ship Board Landing System | SPAN® Technology Applications | |
Hi! We're the NovAtel GNSSA Team | Other Applications | |
High Performance GPS Pinwheel Antenna | Antennas | |
High Precision C/A Code Technology For Rapid Static DGPS Surveys | End User Applications | |
High-Precision Trajectory Determination Using Satellite Navigation Systems | Airborne Applications | |
Improved GPS Positioning for Motor Vehicles Through Map Matching | Land Based Applications | |
Injected Alignment for an INS System from Trackmodel data in a Race Car Environment | Core Applications | |
Integration of Inertial Measurements with GNSS -NovAtel SPAN® Architecture | SPAN® Technology Applications | |
Ionospheric Scintillation Monitoring Using Commercial Single Frequency C/A Code Receivers | Land Based Applications | |
Kinematic Ambiguity Resolution With a High Precision C/A Code Receiver | End User Applications | |
Kinematic Performance of NovAtel CORRECT with TerraStar-D Precise Point Positioning (PPP) Service | Kinematic Performance | |
L-band Antenna Performance Improvements | Antennas | |
Ll Carrier Phase Multipath Error Reduction Using MEDLL Technology | MEDLL®/WAAS Applications | |
Magnetic Beeline® - Satellite Derived Attitude for Marine Navigation | Marine Applications | |
MEMS Inertial on an RTK GPS Receiver: Integration Options and Test Results | SPAN® Technology Applications | |
NovAtel Communications Ltd. - What's New? | MEDLL®/WAAS Applications | |
NovAtel Inc. New Positioning Filter: Phase Smoothing in the Position Domain | Core Applications | |
NovAtel's GPS Receiver The High Performance OEM Sensor of The Future | Core Applications | |
NovAtel's RT-20 -- A Real Time Floating Ambiguity Positioning System | Core Applications | |
OEM4 Inertial: A Tightly Integrated Decentralised Inertial/GPS Navigation System | Core Applications | |
OEM4 Inertial: An Inertial/GPS Navigation System on the OEM4 Receiver | SPAN® Technology Applications | |
Performance Analusis of A Shipborne Gyrocompass With A Multi-Antenna GPS System | Marine Applications | |
Performance Analysis of a Narrow Cowelator® Spacing Receiver for Precise Static GPS Positioning | Land Based Applications | |
Performance Evaluation of the Multipath Estimating Delay Lock Loop | MEDLL®/WAAS Applications | |
Performance of a Deeply Coupled Commercial Grade GPS/INS System from KVH and NovAtel Inc. | SPAN® Technology Applications | |
Performance of Category IVIES Automatic Landings Using C/A Code Tracking Differential GPS | Airborne Applications | |
Precise Aircraft-to-Aircraft Positioning Using a Multiple Receiver Configuration | Airborne Applications | |
Precise GPS Time Transfer to a Moving Vehicle | End User Applications | |
Precise Marine DGPS Positioning Using P Code and High Performance C/A Code Technologies | Marine Applications | |
Precise Real-Time Kinematic Differential GPS Using A Cellular Radio Modem | DGPS/RTK Applications | |
Proposed Airport Pseudolite Signal Specification for GPS Precision Approach Local Area Augmentation Systems | Pseudolite Applications | |
Prototype Galileo Receiver Development | Galileo Applications | |
Quadruple Single Frequency Receiver System for Ambiguity Resolution On The Fly | End User Applications | |
Real-Time Carrier Phase Positioning Using the RTCM Standard Message Types 20/21 and 18/19 | DGPS/RTK Applications | |
Reliable Single Frequency Dual Antenna Processing System for Marine Dredging Applications | Marine Applications | |
Results and Analysis of Using the MEDLL Receiver as a Multipath Meter | MEDLL®/WAAS Applications | |
Running Interference: Multipath Detection for GPS Monitoring Sites | Other Applications | |
Seasonal Effecf of Tree Foliage on GPS Signal Availability and Accuracy for Vehicular Navigation | Land Based Applications | |
Statistics of Time Rate of Change of Ionospheric Range Delay | End User Applications | |
Test Results from a New 2 cm Real Time Kinematic GPS Positioning System | DGPS/RTK Applications | |
The Development of a Modular DGPS System | DGPS/RTK Applications | |
The Effects of SAW Group Delay Ripple on GPS and GLONASS Signals | Core Applications | |
The Multipath Estimating Delay Lock Loop (MEDLL®): Approaching Theoretical Accuracy Limits | Land Based Applications | |
The Use of Differential Satellite Navigation Systems in an Automatic Flight Inspection System | Airborne Applications | |
The Use Of GPS Tracking And Guidance Systems For The Chicken Little Joint Project's "Acoustic Week" Flight Test Program | Airborne Applications | |
Theory and Performance of Narrow Correlator Spacing in a GPS Receiver | Core Applications | |
Theory and Performance of the Pulse Aperture Correlator | Other Applications | |
Tightly Coupled Processing of Precise Point Position (PPP) and INS Data | Other Applications | |
Track Model Constraint Enhancement for NovAtel's OEM4 | Other Applications | |
Ultra-Precise Positioning For Sport Applications | Other Applications | |
Using a Sky Projection to Evaluate Pseudorange Multipath and to Improve the Differential Pseudorange Position | Other Applications | |
Validation of the FAA LAAS Specification Using the LAAS Test Prototype (LTP) | MEDLL®/WAAS Applications | |
What's New from NovAtel | Core Applications |