Digital Twin for 5G Advanced/6G System Design & Validation

Webinars

As 5G-Advanced and emerging 6G systems push the limits of bandwidth, intelligence, integration, and energy efficiency, system performance is increasingly governed by subtle interactions between RF hardware, antenna arrays, baseband algorithms, and dynamic propagation environments. Accurate cross-domain modeling combined with predictive validation prior to fabrication is therefore essential for successful design and deployment. In this webinar, we present an RF Digital Twin framework for 5G/6G wireless system design and validation using Keysight’s SystemVue, with emphasis on high-fidelity modeling of RF impairments, phased arrays, and real-world channel characteristics.

 

Participants will learn how to:

  • Build an RF Digital Twin that accurately captures physical-layer impairments such as phase noise, nonlinear distortion, memory effects, I/Q imbalance, beamforming quantization, and channel fading.
  • Develop dynamic, measurement-aligned digital replicas of RF components and wireless subsystems that closely reflect real hardware behavior.
  • Model and validate advanced 5G/6G architectures including massive MIMO, Integrated Sensing and Communication (ISAC), Reconfigurable Intelligent Surfaces (RIS), and integrated terrestrial–non-terrestrial networks (NTN).
  • Perform link-level optimization, interference-aware design, and KPI validation (EVM, SINR, spectral compliance) within a unified multi-domain simulation environment.

 

This webinar is designed for RF system engineers and wireless architects who need to create high-fidelity digital twins, realistically model RF and antenna impairments, and accelerate the design, validation, and deployment of robust 5G-Advanced and 6G wireless systems with reduced risk and improved predictability.