RF and Antenna Digital Twins to Design and Validate Complex Wireless Systems

This webinar highlights key SystemVue enhancements from the past three years, spanning the DataFlow, Spectrasys, and Phased Array engines. Attendees will explore improved RF fidelity through advanced component and mixer models, MDIF and Touchstone data import, enhanced phased array and NTN channel modeling, RaySim integration for accurate 3D propagation, expanded HPC support, and a modernized Linux version—showing how these advances accelerate validation and innovation for 5G, 6G, NTN, and radar systems.


A key focus of the webinar is SystemVue’s growing strength in interference modeling and coexistence analysis, which is critical for modern wireless, satellite, and radar systems. Participants will learn how SystemVue enables realistic modeling of co-channel and adjacent-channel interference, intermodulation products, spurious emissions, and nonlinear distortion across RF chains, antenna arrays, and propagation environments. These capabilities are essential for evaluating spectrum sharing, NTN–TN coexistence, dense network deployments, and regulatory compliance. The webinar concludes by connecting these technical advancements to real-world applications in 5G, emerging 6G, non-terrestrial networks, and radar systems, demonstrating how high-fidelity RF, array, channel, and interference modeling—combined with scalable simulation and RF–DSP co-design—allows engineers to validate performance earlier, reduce risk, and accelerate innovation in increasingly complex system designs.

Who should attend this webinar?

- RF and microwave system engineers

- Wireless, satellite, and radar system architects

- Phased array and antenna engineers

- 5G, 6G, and non-terrestrial network (NTN) designers

- Interference, spectrum sharing, and coexistence analysts

- RF–DSP co-design and system simulation specialists

- Engineering managers evaluating advanced RF system modeling tools

Presenters

  • Murthy Upmaka
    Murali S Murthy Upmaka, has been with Keysight for the past 30 years as a field applications engineer, R&D system architect and field solutions engineer. Currently he is the field lead for System modeling and simulation tools and is a field solutions engineering fellow. Murthy has a Ph.D in Physics and conducted post doctoral research on THz material properties. He has extensive experience in design and development of MW and mm wave circuits and systems such as Mixers, I/Q modulators, frequency correlators, instantaneous frequency measurement (IFM) systems and Directions finding (DF) systems. He is a senior member of IEEE. He has over 30 publications in reputed journals that include IEEE and 3 US patents.

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Webinar: RF and Antenna Digital Twins to Design and Validate Complex Wireless Systems by DES Marketing