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Article
Analysis on the Effect of Averaging Duration on Radio Frequency Dosimetry in Residential Environments
2023 IEEE Symposium on Electromagnetic Compatibility and Signal/Power Integrity, EMC+SIPI 2023
  • Reza Asadi
  • Hadi Aliakbarian
  • Amir Sahraei
  • Reza Yazdani
  • DongHyun Kim, Missouri University of Science and Technology
Abstract

The Potential Hazards of Electromagnetic Waves Have Raised Concerns in Related Authorities to Propose Standards and Limit Lines on the Electromagnetic Field Levels. Most of the Radio Frequency (RF) Dosimetry Measurement Procedures Referred to in Safety Compliance Standards, suggest 6-Minute Averaging, in Addition to Spatial Averaging, Which Can Be Time-Consuming for Primary Measurements. Measurement Analysis in Residential Environment in This Paper Demonstrates that Lowering the Time Interval of Measurements to About 30 Seconds, Which Suggests the Possibility of Reducing the Measurement Time with Minimal Reduction to Measurement Accuracy. for All Measurement Results Shown in This Paper, having a 30-Second Averaging Time, the Relative Error, compared to 6-Minute Averaging and Spatial Averaging, is Less Than 5% for Radio Frequency (RF) Level in the Environment. This Paper Provides a Potential Solution to Pre-Compliance RF Dosimetry Process with Less Required Time and Cost.

Department(s)
Electrical and Computer Engineering
Keywords and Phrases
  • electromagnetic waves,
  • ICNIRP,
  • residential environments,
  • RF dosimetry,
  • specific absorption rate,
  • the general public
Document Type
Article - Conference proceedings
Document Version
Citation
File Type
text
Language(s)
English
Rights
© 2023 Institute of Electrical and Electronics Engineers, All rights reserved.
Publication Date
1-1-2023
Publication Date
01 Jan 2023
Citation Information
Reza Asadi, Hadi Aliakbarian, Amir Sahraei, Reza Yazdani, et al.. "Analysis on the Effect of Averaging Duration on Radio Frequency Dosimetry in Residential Environments" 2023 IEEE Symposium on Electromagnetic Compatibility and Signal/Power Integrity, EMC+SIPI 2023 (2023) p. 608 - 613
Available at: http://works.bepress.com/donghyun-bill-kim/100/