Uploaded April 2025 | Updated September 2026, 2 weeks ago
In this webinar, you will learn how to model multi-domain scenarios that include satellites, aircraft, ground stations, and moving ground vehicles. Learn how to model and visualize asset trajectories and perform visual access calculations and link budget analyses. The webinar also shows how to perform end-to-end link simulations with standards-based signals like 5G NTN, DVB-S2/S2X/RCS2, and GPS. Explore the design physical layer algorithms together with RF components and ground station receivers.
Highlights:
- Visualize 2D and 3D satellite orbits, fields of view, and ground tracks.
- Analyze line-of-sight access and compute link closures in integrated scenarios that include satellites, ground stations and aircraft. Extend the technique to incorporate moving ground vehicles.
- Demodulate and decode 5G NTN signals that have been impaired by 3GPP-specified NTN channel models.
- Demodulate DVB-S2 signals that are subject to severe Doppler shifts, sample clock offset, and phase noise.
- Demodulate a composite waveform from multiple GPS satellites.
- Perform acquisition, tracking, and bit processing on a signal impaired with Doppler and thermal noise.
- Decode the bits to determine the location of a GPS receiver.
About the Presenter:
Mike McLernon is an advocate for communications and software-defined radio products at MathWorks. Since joining MathWorks in 2001, he has overseen the development of PHY layer modeling and SDR connectivity capabilities in Communications Toolbox. He has worked in the communications field for over 30 years in both the satellite and wireless industries. Mike received his BSEE from the University of Virginia and his MEEE from Rensselaer Polytechnic Institute.
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© 2025 The MathWorks, Inc. MATLAB and Simulink are registered trademarks of The MathWorks, Inc.
See mathworks.com/trademarks for a list of additional trademarks. Other product or brand names may be trademarks or registered trademarks of their respective holders.
In this webinar, you will learn how to model multi-domain scenarios that include satellites, aircraft, ground stations, and moving ground vehicles. Learn how to model and visualize asset trajectories and perform visual access calculations and link budget analyses. The webinar also shows how to perform end-to-end link simulations with standards-based signals like 5G NTN, DVB-S2/S2X/RCS2, and GPS. Explore the design physical layer algorithms together with RF components and ground station receivers.
Highlights:
- Visualize 2D and 3D satellite orbits, fields of view, and ground tracks.
- Analyze line-of-sight access and compute link closures in integrated scenarios that include satellites, ground stations and aircraft. Extend the technique to incorporate moving ground vehicles.
- Demodulate and decode 5G NTN signals that have been impaired by 3GPP-specified NTN channel models.
- Demodulate DVB-S2 signals that are subject to severe Doppler shifts, sample clock offset, and phase noise.
- Demodulate a composite waveform from multiple GPS satellites.
- Perform acquisition, tracking, and bit processing on a signal impaired with Doppler and thermal noise.
- Decode the bits to determine the location of a GPS receiver.
About the Presenter:
Mike McLernon is an advocate for communications and software-defined radio products at MathWorks. Since joining MathWorks in 2001, he has overseen the development of PHY layer modeling and SDR connectivity capabilities in Communications Toolbox. He has worked in the communications field for over 30 years in both the satellite and wireless industries. Mike received his BSEE from the University of Virginia and his MEEE from Rensselaer Polytechnic Institute.
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Get a free product trial: goo.gl/ZHFb5u
Learn more about MATLAB: goo.gl/8QV7ZZ
Learn more about Simulink: goo.gl/nqnbLe
See what's new in MATLAB and Simulink: goo.gl/pgGtod
© 2025 The MathWorks, Inc. MATLAB and Simulink are registered trademarks of The MathWorks, Inc.
See mathworks.com/trademarks for a list of additional trademarks. Other product or brand names may be trademarks or registered trademarks of their respective holders.










