Assessment of a Light Unmanned Aircraft Ground Impact Energy

The subject of investigation are unmanned aircraft lighter than 150kg under control by national aviation authorities and therefore prudently requiring harmonized individual state regulations. Originated from a general premise that the unmanned aircraft regulations should evolve from the existing sta...

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Main Authors: Zmago Skobir, Tone Magister
Format: Article
Language:English
Published: University of Zagreb, Faculty of Transport and Traffic Sciences 2011-03-01
Series:Promet (Zagreb)
Online Access:http://www.fpz.unizg.hr/traffic/index.php/PROMTT/article/view/136
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spelling doaj-eabfba8f8d2f439688ba6965f349031c2020-11-25T01:38:36ZengUniversity of Zagreb, Faculty of Transport and Traffic SciencesPromet (Zagreb)0353-53201848-40692011-03-012329710410.7307/ptt.v23i2.13643Assessment of a Light Unmanned Aircraft Ground Impact EnergyZmago SkobirTone MagisterThe subject of investigation are unmanned aircraft lighter than 150kg under control by national aviation authorities and therefore prudently requiring harmonized individual state regulations. Originated from a general premise that the unmanned aircraft regulations should evolve from the existing standards for manned aircraft of equivalent class or category, the light fixed wing unmanned aircraft equivalence to the manned aircraft is defined in the form of sets of equivalency and non-equivalency based on the established administrative type of methodology of impact kinetic energy comparison. The basic flight characteristics of the existing operational light fixed wing unmanned aircraft are analyzed assuring proper input for determination of the more realistic unmanned aircraft impact kinetic energy in controlled and uncontrolled flight into terrain crash scenarios used for the evaluation of established methodology adequacy for equivalence determination. It is shown in the paper that determination of the unmanned aircraft equivalency to the manned aircraft should not be based on the unmanned aircraft maximum take-off mass nor their airspeed range alone. KEYWORDS: light unmanned aircraft, impact kinetic energy, hazard potential, classificationhttp://www.fpz.unizg.hr/traffic/index.php/PROMTT/article/view/136
collection DOAJ
language English
format Article
sources DOAJ
author Zmago Skobir
Tone Magister
spellingShingle Zmago Skobir
Tone Magister
Assessment of a Light Unmanned Aircraft Ground Impact Energy
Promet (Zagreb)
author_facet Zmago Skobir
Tone Magister
author_sort Zmago Skobir
title Assessment of a Light Unmanned Aircraft Ground Impact Energy
title_short Assessment of a Light Unmanned Aircraft Ground Impact Energy
title_full Assessment of a Light Unmanned Aircraft Ground Impact Energy
title_fullStr Assessment of a Light Unmanned Aircraft Ground Impact Energy
title_full_unstemmed Assessment of a Light Unmanned Aircraft Ground Impact Energy
title_sort assessment of a light unmanned aircraft ground impact energy
publisher University of Zagreb, Faculty of Transport and Traffic Sciences
series Promet (Zagreb)
issn 0353-5320
1848-4069
publishDate 2011-03-01
description The subject of investigation are unmanned aircraft lighter than 150kg under control by national aviation authorities and therefore prudently requiring harmonized individual state regulations. Originated from a general premise that the unmanned aircraft regulations should evolve from the existing standards for manned aircraft of equivalent class or category, the light fixed wing unmanned aircraft equivalence to the manned aircraft is defined in the form of sets of equivalency and non-equivalency based on the established administrative type of methodology of impact kinetic energy comparison. The basic flight characteristics of the existing operational light fixed wing unmanned aircraft are analyzed assuring proper input for determination of the more realistic unmanned aircraft impact kinetic energy in controlled and uncontrolled flight into terrain crash scenarios used for the evaluation of established methodology adequacy for equivalence determination. It is shown in the paper that determination of the unmanned aircraft equivalency to the manned aircraft should not be based on the unmanned aircraft maximum take-off mass nor their airspeed range alone. KEYWORDS: light unmanned aircraft, impact kinetic energy, hazard potential, classification
url http://www.fpz.unizg.hr/traffic/index.php/PROMTT/article/view/136
work_keys_str_mv AT zmagoskobir assessmentofalightunmannedaircraftgroundimpactenergy
AT tonemagister assessmentofalightunmannedaircraftgroundimpactenergy
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