Analysis of Quadcopter Body Frame Vibration During Hovering Flight with Variable Rotor Speeds

N. Oscar Lostaunau, O. Luis Flores, T. Edward Lopez, C. Mauricio Rivera, Elvis J. Alegria, O. Moises Nunez

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Quadcopters and other propeller-driven vehicles and machinery experience periodic vibrations that can impact their performance and longevity. However effective implementation of vibration reduction techniques requires accurate identification and characterization of these vibrations. This paper presents an analysis of the measured vibration of a quadcopter in hovering flight under varying propeller speeds and fit of parts. To collect data, four accelerometers were placed on the drone's arm, with an additional accelerometer positioned inside the center of the frame. Sampling was conducted at a frequency of 1 kHz using a myRio-1900. The collected data from four flights was subsequently analyzed using time-domain graphs and spectrograms from the Gabor transform. Results indicated a prominent presence of blade pass frequency and its harmonics, alongside asynchronous vibrations observed during flights with loosely fitted components.

Original languageEnglish
Title of host publicationINSCIT 2024 - 8th International Symposium on Instrumentation Systems, Circuits and Transducers, Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9798350350869
DOIs
StatePublished - 2024
Event8th International Symposium on Instrumentation Systems, Circuits and Transducers, INSCIT 2024 - Joao Pessoa, Brazil
Duration: 2 Sep 20246 Sep 2024

Publication series

NameINSCIT 2024 - 8th International Symposium on Instrumentation Systems, Circuits and Transducers, Proceedings

Conference

Conference8th International Symposium on Instrumentation Systems, Circuits and Transducers, INSCIT 2024
Country/TerritoryBrazil
CityJoao Pessoa
Period2/09/246/09/24

Keywords

  • Blade Pass Frequency
  • Quadcopter
  • Vibration Analysis

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