NYUSIM: A Roadmap to AI-Enabled Statistical Channel Modeling and Simulation
Isha Jariwala, Xinquan Wang, Bridget Meier, Guanyue Qian, Dipankar Shakya, Mingjun Ying, Homa Nikbakht, Daniel Abraham, and Theodore S. Rappaport

TL;DR
NYUSIM, a realistic wireless channel data generator based on extensive measurements, has been migrated from MATLAB to Python to support AI integration, scalability, and 6G research, with validated statistical consistency.
Contribution
The paper presents the complete migration of NYUSIM from MATLAB to Python, incorporating new statistical models and a standardized antenna data format for enhanced AI-enabled channel modeling.
Findings
Validated statistical consistency with MATLAB version
Supports new 6G spectrum measurements
Enables large-scale AI data generation
Abstract
Integrating artificial intelligence (AI) into wireless channel modeling requires large, accurate, and physically consistent datasets derived from real measurements. Such datasets are essential for training and validating models that learn spatio-temporal channel behavior across frequencies and environments. NYUSIM, introduced by NYU WIRELESS in 2016, generates realistic spatio-temporal channel data using extensive outdoor and indoor measurements between 28 and 142 GHz. To improve scalability and support 6G research, we migrated the complete NYUSIM framework from MATLAB to Python, and are incorporating new statistical model generation capabilities from extensive field measurements in the new 6G upper mid-band spectrum at 6.75 GHz (FR1(C)) and 16.95 GHz (FR3) [1]. The NYUSIM Python also incorporates a 3D antenna data format, referred to as Ant3D, which is a standardized, full-sphere…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Advanced MIMO Systems Optimization · Indoor and Outdoor Localization Technologies
