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More Datasets
Dataset-7: 3D Antenna Radiation Pattern Measurement
Lead Experimenter
Sungjoon Maeng, North Carolina State University
Link to Dataset
Publications Using This Dataset
- S. J. Maeng, H. Kwon, O. Ozdemir, I. Guvenc, “Impact of 3D Antenna Radiation Pattern in UAV Air-to-Ground Path Loss Modeling and RSRP-based Localization in Rural Area,” IEEE Open J. Antennas and Propag, October 2023.
- S. J. Maeng, O. Ozdemir, I. Guvenc, M. L. Sichitiu, “Kriging-Based 3-D Spectrum Awareness for Radio Dynamic Zones Using Aerial Spectrum Sensors,” IEEE Sensors, February 2023.
- W. Bjorndahl, M. O’Hair, B. Zoghi, J. Camp, “SPARK: Sparse Parametric Antenna Representation using Kernels,” IEEE INFOCOM, May 2026.
- S. Masrur, I. Guvenc, “Bridging Simulation and Reality: A 3D Clustering-Based Deep Learning Model for UAV-Based RF Source Localization,” Proc. IEEE ICC Workshops, June 2025.
Equipment and Software Used
RF anechoic chamber Type of antenna: RM-WB1-DN-BLK (right-side up, upside down), SA-1400-5900 Frequency: 902 MHz, 915 MHz, 928 MHz, 960 MHz, 1700 MHz, 2100 MHz, 3300 MHz, 3400 MHz, 3500 MHz, 3800 MHz, 5040 MHz, 5060MHz, 5080 MHz, 5500 MHz
Description
3D antenna pattern measurement by using RF anechoic chamber. Both an AERPAW fixed node antenna and an AERPAW portable node antenna are measured.
Representative Results
- Antenna Installation

- 3D Radiation Pattern Example Plots
Run MATLAB code ‘radiation_plot_AERPAW.m’ to generate 3D radiation pattern plots


Potential use cases for this dataset include:
- Antenna Design and Optimization
- 3D Propagation Modeling Using Antenna Radiation Patterns