Verification in Relevant Environment of a Physics-Based Synthetic Sensor for Flow Angle Estimation

Author:

Lerro AngeloORCID,Gili PieroORCID,Pisani MarcoORCID

Abstract

In the area of synthetic sensors for flow angle estimation, the present work aims to describe the verification in a relevant environment of a physics-based approach using a dedicated technological demonstrator. The flow angle synthetic solution is based on a model-free, or physics-based, scheme and, therefore, it is applicable to any flying body. The demonstrator also encompasses physical sensors that provide all the necessary inputs to the synthetic sensors to estimate the angle-of-attack and the angle-of-sideslip. The uncertainty budgets of the physical sensors are evaluated to corrupt the flight simulator data with the aim of reproducing a realistic scenario to verify the synthetic sensors. The proposed approach for the flow angle estimation is suitable for modern and future aircraft, such as drones and urban mobility air vehicles. The results presented in this work show that the proposed approach can be effective in relevant scenarios even though some limitations can arise.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference39 articles.

1. Enhanced angle-of-attack system set for 737-10 flight testhttps://aviationweek.com/shownews/dubai-airshow/enhanced-angle-attack-system-set-737-10-flight-tests

2. Minimum Performance Standards, for Angle of Attack (aoa) and Angle of Sideslip (AOS),2019

3. An Innovative Angle of Attack Virtual Sensor for Physical-Analytical Redundant Measurement System Applicable to Commercial Aircraft

4. Estimation of Airspeed, Angle of Attack, and Sideslip for Small Unmanned Aerial Vehicles (UAVs) Using a Micro-Pitot Tube

5. Pseudomeasurement-Aided Estimation of Angle of Attack in Mini Unmanned Aerial Vehicle

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