SPEAKERS
Senior director, GNSS technology
Stefan leads the software and algorithm R&D division for precise GNSS/INS positioning at Trimble. His team develops market-leading positioning engines and correction services like RTX and VRS. These cutting-edge solutions deliver robust, centimeter-level accuracy across a diverse range of global industries, including agriculture, geospatial, construction, and high-level autonomy.
Distinguished engineer
Markus has been developing high-precision GNSS correction software since 2006. Over the past two decades, his individual innovations and team leadership have directly shaped the evolution of the Trimble RTX service. His work focuses specifically on enhancing GNSS correction data, pioneering integrity monitoring and strengthening cyber threat resilience for global precision positioning.
Principal GNSS R&D engineer
Fabian is a principal GNSS R&D engineer at Trimble, specializing in centimeter-level navigation during complex signal interference and ionospheric disturbances. A recognized expert in high-integrity positioning, he holds a PhD in Aeronautics and Astronautics from Stanford University. His advanced research continues to push the boundaries of robust positioning in challenging environments.
Real-time corrections portfolio manager
Jason brings over two decades of surveying industry experience as both a professional land surveyor (PLS) and a technical subject matter expert. He has extensive hands-on expertise in optical, scanning, photogrammetric, GNSS, and corrections technologies. Currently, as a product manager, he is overseeing the strategic growth and market development of Trimble’s real-time GNSS corrections portfolio.
In this webinar, you'll learn:
The true cost of cheap hardware
How standard equipment and unverified correction sources lead to project delays, costly rework and hidden data errors.
Interference mitigation
How advanced algorithms and robust receiver architecture combat intentional and unintentional signal jamming to maintain continuous tracking.
The ultimate operational safety net
How combining terrestrial network corrections with satellite-delivered services maintains centimeter-level positioning under heavy canopy and in deep urban canyons.
Data integrity and security
The mechanics of how real-time data encryption and integrity monitoring transform unverified data into an engineering certainty.
Atmospheric resilience
How specialized signal processing mitigates ionospheric scintillation, preserving link stability during peak solar cycles.
Future-proofing your tech
A technical preview of emerging technologies, including next-generation LEO satellite constellations and advanced anti-jamming safeguards.
True field reliability is engineered, not accidental. Relying on a single correction source or standard-grade equipment leaves you highly vulnerable to hardware failures, signal jamming and atmospheric interference, which is why advanced correction services and robust receiver hardware are critical to mitigating these risks.
Built for geospatial and construction professionals who want to understand the mechanics of their equipment, this session offers a clear engineering perspective on how premium positioning technology actively safeguards your schedules, your bottom line and your reputation.
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