Time-varying broadband noise of multirotor aircraft

Rotor broadband noise is typically analyzed over time scales encompassing multiple rotor periods. However, modulation of broadband noise levels with the blade passage frequency has been shown to be significant for human perception of wind turbine and helicopter noise. Time-varying broadband noise has not been extensively studied for aircraft with many rotors, such as unmanned aerial vehicles (UAVs) or advanced air mobility aircraft. In this work, significant broadband noise modulation was measured in flight and anechoic chamber tests of hexacopter UAVs. Envelope analysis showed that the modulation depth depends on the azimuthal phasing between rotors, demonstrating the potential for synchrophasing control to reduce broadband noise modulation. If rotors are not synchronized, as in typical flight, the phasing between rotors varies with time. This phase variation followed a uniform random distribution, resulting in modulation depth also varying randomly with time. The probability distribution of modulation depth was computed using offset copies of the modulation of a single rotor. These results contribute understanding to how the noise modulation of rotors sum together, demonstrating that broadband noise modulation is likely to be significant in flight.

Files

Metadata

Work Title Time-varying broadband noise of multirotor aircraft
Subtitle 186th Meeting of the Acoustical Society of America and the Canadian Acoustical Association
Access
Open Access
Creators
  1. Ze Feng (Ted) Gan
  2. Vitor Tumelero Valente
  3. Kenneth S. Brentner
  4. Eric Greenwood
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. Proceedings of Meetings on Acoustics
Publication Date October 4, 2024
Publisher Identifier (DOI)
  1. https://doi.org/10.1121/2.0001946
Deposited April 17, 2025

Versions

Analytics

Collections

This resource is currently not in any collection.

Work History

Version 1
published

  • Created
  • Added POMA_2024_ASA_Ottawa_with_AbstractMay4-1.pdf
  • Added Creator Ze Feng (Ted) Gan
  • Added Creator Vitor Tumelero Valente
  • Added Creator Kenneth S Brentner
  • Added Creator E Greenwood
  • Published
  • Updated
  • Updated Work Title Show Changes
    Work Title
    • Multirotor broadband noise modulation
    • Time-varying broadband noise of multirotor aircraft
  • Updated Publisher, Publisher Identifier (DOI), Description, and 3 more Show Changes
    Publisher
    • The Journal of the Acoustical Society of America
    • Proceedings of Meetings on Acoustics
    Publisher Identifier (DOI)
    • https://doi.org/10.1121/10.0026987
    • https://doi.org/10.1121/2.0001946
    Description
    • Rotor broadband noise spectra are typically analyzed over time scales on the order of one or more rotor periods. However, modulation of the broadband noise spectrum with the blade passage frequency (BPF) has been shown to be significant for noise levels and perception of wind turbines and helicopters. In contrast, time-varying broadband noise has not been extensively studied for aircraft with many rotors, such as unmanned aerial vehicles (UAVs) or advanced air mobility aircraft. In this work, significant broadband noise modulation was measured in flight and anechoic chamber tests of hexacopter UAVs at various observer angles. This modulation is aperiodic with the BPF such that the modulation amplitude varies substantially between blade passages, even when the BPFs are controlled to be nearly constant between all rotors at all times. Furthermore, the azimuthal phasing between rotors greatly affects the measured modulation, such that the modulation of multiple rotors may be less than or greater than for a single rotor, depending on the phase offsets. The effects of phase variations on acoustic interactions between rotors is studied by comparing the sum of the modulation of individual rotors to the modulation of those rotors operating simultaneously. This is done not only using measurements, but also noise predictions made using PSU-WOPWOP. These results contribute understanding to how the noise modulation of rotors sum together, including the resulting directivity and aperiodicity.
    • Rotor broadband noise is typically analyzed over time scales encompassing multiple rotor periods. However, modulation of broadband noise levels with the blade passage frequency has been shown to be significant for human perception of wind turbine and helicopter noise. Time-varying broadband noise has not been extensively studied for aircraft with many rotors, such as unmanned aerial vehicles (UAVs) or advanced air mobility aircraft. In this work, significant broadband noise modulation was measured in flight and anechoic chamber tests of hexacopter UAVs. Envelope analysis showed that the modulation depth depends on the azimuthal phasing between rotors, demonstrating the potential for synchrophasing control to reduce broadband noise modulation. If rotors are not synchronized, as in typical flight, the phasing between rotors varies with time. This phase variation followed a uniform random distribution, resulting in modulation depth also varying randomly with time. The probability distribution of modulation depth was computed using offset copies of the modulation of a single rotor. These results contribute understanding to how the noise modulation of rotors sum together, demonstrating that broadband noise modulation is likely to be significant in flight.
    Publication Date
    • 2024-03-01
    • 2024-10-04
    Publisher's Statement
    • Copyright (2024)Acoustical Society of America. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the Acoustical Society of America.
    Subtitle
    • 186th Meeting of the Acoustical Society of America and the Canadian Acoustical Association
  • Updated Creator Ze Feng (Ted) Gan
  • Updated Creator Vitor Tumelero Valente
  • Renamed Creator Kenneth S. Brentner Show Changes
    • Kenneth S Brentner
    • Kenneth S. Brentner
  • Renamed Creator Eric Greenwood Show Changes
    • E Greenwood
    • Eric Greenwood

Version 2
published

  • Created
  • Deleted POMA_2024_ASA_Ottawa_with_AbstractMay4-1.pdf
  • Added AccessibleCopy_6-27_Time-varying_broadband_noise-tagged.pdf
  • Published