In-flight Lift and Drag Estimation of an Unmanned Propeller-Driven Aircraft

Author:

Bergmann Dominique,Denzel Jan,Pfeifle Ole,Notter StefanORCID,Fichter Walter,Strohmayer Andreas

Abstract

The high-power density and good scaling properties of electric motors enable new propulsion arrangements and aircraft configurations. This results in distributed propulsion systems allowing to make use of aerodynamic interaction effects between individual propellers and the wing of the aircraft, improving flight performance and thus reducing in-flight emissions. In order to systematically analyze these effects, an unmanned research platform was designed and built at the University of Stuttgart. As the aircraft is being used as a testbed for various flight performance studies in the field of distributed electric propulsion, a methodology for precise identification of its performance characteristics is required. One of the main challenges is the determination of the total drag of the aircraft to be able to identify an exact drag and lift polar in flight. For this purpose, an on-board measurement system was developed which allows for precise determination of the thrust of the aircraft which equals the total aerodynamic drag in steady, horizontal flight. The system has been tested and validated in flight using the unmanned free-flight test platform. The article provides an overview of the measuring system installed, discusses its functionality and shows results of the flight tests carried out.

Funder

Federal Ministry for Economic Affairs and Energy on the basis of a decision by the German Bundestag

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference15 articles.

1. Flight Test Evaluation and System Identification of the Area-I Prototype-Technology-Evaluation Research Aircraft (PTERA)

2. Flight Validation of Cruise Efficient, Low Noise, Extreme Short Takeoff and Landing (CESTOL) and Circulation Control (CC) for Drag Reduction Enabling Technologies;Cogan,2014

3. Spanwise Adaptive Wing—PTERA Flight Test;Ortiz,2018

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