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Updated: Oct 29, 2025

Continuous-Wave Propagation Channel-Sounding Measurement System - Testing, Verification, and Measurements
Published on: June 25, 2021
Continuous-Wave Propagation Channel-Sounding Measurement System - Testing, Verification, and Measurements
Chriss A Hammerschmidt1, Robert T Johnk2, Savio Tran2
1National Telecommunications and Information Administration, Institute for Telecommunication Sciences; chammerschmidt@ntia.gov.
This study details a continuous-wave (CW) channel sounder for accurate radio propagation loss measurements. The system ensures reliable data through rigorous setup, validation, and verification processes.
Area of Science:
- Electrical Engineering
- Radio Systems Engineering
- Electromagnetics
Background:
- Channel sounders are crucial for characterizing radio systems.
- Various sounder types exist, each with pros and cons.
- Continuous-wave (CW) sounders offer advantages like larger dynamic range and extended data collection.
Purpose of the Study:
- To present a CW channel sounder system for radio propagation loss measurements.
- To detail the setup, validation, and verification procedures for reliable measurements.
- To showcase results from measurement campaigns, including repeatability, clutter loss, and reciprocity.
Main Methods:
- Utilizing a continuous-wave (CW) channel sounder system.
- Conducting extensive propagation loss measurements in diverse urban environments across the USA.
- Implementing rigorous validation and verification protocols to ensure measurement integrity.
Main Results:
- Demonstrated the accuracy and reproducibility of CW channel sounder measurements.
- Quantified clutter loss, defined as excess loss beyond free-space transmission.
- Presented reciprocity measurements, indicating signal path symmetry.
Conclusions:
- The CW channel sounder system provides accurate and reproducible radio propagation measurements.
- The established methodology ensures reliable data collection free from artifacts.
- The results contribute to a better understanding of radio wave propagation in urban environments.
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