Impact of differential torsional rotor cant on the flight characteristics of a passenger-grade quadrotor

Author:

Atci KaganORCID,Jusko Tim,Štrbac Alexander,Guner Feyyaz

Abstract

AbstractAt the Institute of Flight Systems at DLR, studies have been performed to understand the flight characteristics of novel eVTOL configurations. As part of these studies, previously conducted handling qualities assessments on a two-passenger generic quadrotor configuration had revealed major deficiencies about its yaw axis. Based on this result, the quadrotor model has been modified by differential torsional canting to improve its yaw characteristics. This paper analyzes the resulting impacts of such modification on the flight performance, dynamic stability and handling qualities. A piloted simulator test campaign was conducted to assess predicted and assigned handling qualities levels in compliance with the quantitative and qualitative performance standards of ADS-33E. The results show an improvement in midterm yaw response at the expense of increase in total required power. The pilot ratings and comments confirm the improvement on the yaw response upon the flown MTEs.

Funder

Deutsches Zentrum für Luft- und Raumfahrt e. V. (DLR)

Publisher

Springer Science and Business Media LLC

Reference18 articles.

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3. Anonymous: Aeronautical design standard performance specification handling qualities requirements for military rotorcraft. Technical Report ADS-33E-PRF, United States Army Aviation and Missile Command Aviation Engineering Directorate, Redstone Arsenal, Alabama (March 2000). United States Army Aviation and Missile Command Aviation Engineering Directorate

4. Cooper, G.E., Harper, R.: The use of pilot ratings in evaluation of aircraft handling qualities. NASA Technical Note TN D-5153, NASA, Ames Research Center Moffett Field, CA, USA (1969)

5. Niemiec, R.J., Gandhi, F.: Effect of rotor cant on trim and autonomous flight dynamics of a quadcopter. In: AHS International 74th Annual Forum and Technology Display, Phoenix, AZ (2018)

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