Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance
Unmanned aerial vehicles (UAVs) are fast gaining popularity in a wide variety of areas and are already being used for a range of tasks. Despite their many desirable features, a number of drawbacks hinder the potential of UAV applications. As typical UAVs are powered by on-board batteries, limited ba...
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doaj-077a59d7f6a24ffb8118cf24f70292f32021-03-29T21:40:35ZengIEEEIEEE Access2169-35362018-01-016583835839410.1109/ACCESS.2018.28750408486942Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery PerformanceHasini Viranga Abeywickrama0https://orcid.org/0000-0001-6878-1067Beeshanga Abewardana Jayawickrama1Ying He2Eryk Dutkiewicz3Global Big Data Technologies Centre, University of Technology Sydney, Ultimo, NSW, AustraliaGlobal Big Data Technologies Centre, University of Technology Sydney, Ultimo, NSW, AustraliaGlobal Big Data Technologies Centre, University of Technology Sydney, Ultimo, NSW, AustraliaGlobal Big Data Technologies Centre, University of Technology Sydney, Ultimo, NSW, AustraliaUnmanned aerial vehicles (UAVs) are fast gaining popularity in a wide variety of areas and are already being used for a range of tasks. Despite their many desirable features, a number of drawbacks hinder the potential of UAV applications. As typical UAVs are powered by on-board batteries, limited battery lifetime is identified as a key limitation in UAV applications. Thus, in order to preserve the available energy, planning UAV missions in an energy efficient manner is of utmost importance. For energy efficient UAV mission planning, it is necessary to predict the energy consumption of specific UAV manoeuvring actions. Accurate energy prediction requires a reliable and realistic energy consumption model. In this paper, we present a consistent and complete energy consumption model for UAVs based on empirical studies of battery usage for various UAV activities. We considered the impact of different flight scenarios and conditions on UAV energy consumption when developing the proposed model. The energy consumption model presented in this paper can be readily used for energy efficient UAV mission planning.https://ieeexplore.ieee.org/document/8486942/Energy consumptionenergy consumption modelpower consumptionUAV |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hasini Viranga Abeywickrama Beeshanga Abewardana Jayawickrama Ying He Eryk Dutkiewicz |
spellingShingle |
Hasini Viranga Abeywickrama Beeshanga Abewardana Jayawickrama Ying He Eryk Dutkiewicz Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance IEEE Access Energy consumption energy consumption model power consumption UAV |
author_facet |
Hasini Viranga Abeywickrama Beeshanga Abewardana Jayawickrama Ying He Eryk Dutkiewicz |
author_sort |
Hasini Viranga Abeywickrama |
title |
Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance |
title_short |
Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance |
title_full |
Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance |
title_fullStr |
Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance |
title_full_unstemmed |
Comprehensive Energy Consumption Model for Unmanned Aerial Vehicles, Based on Empirical Studies of Battery Performance |
title_sort |
comprehensive energy consumption model for unmanned aerial vehicles, based on empirical studies of battery performance |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2018-01-01 |
description |
Unmanned aerial vehicles (UAVs) are fast gaining popularity in a wide variety of areas and are already being used for a range of tasks. Despite their many desirable features, a number of drawbacks hinder the potential of UAV applications. As typical UAVs are powered by on-board batteries, limited battery lifetime is identified as a key limitation in UAV applications. Thus, in order to preserve the available energy, planning UAV missions in an energy efficient manner is of utmost importance. For energy efficient UAV mission planning, it is necessary to predict the energy consumption of specific UAV manoeuvring actions. Accurate energy prediction requires a reliable and realistic energy consumption model. In this paper, we present a consistent and complete energy consumption model for UAVs based on empirical studies of battery usage for various UAV activities. We considered the impact of different flight scenarios and conditions on UAV energy consumption when developing the proposed model. The energy consumption model presented in this paper can be readily used for energy efficient UAV mission planning. |
topic |
Energy consumption energy consumption model power consumption UAV |
url |
https://ieeexplore.ieee.org/document/8486942/ |
work_keys_str_mv |
AT hasinivirangaabeywickrama comprehensiveenergyconsumptionmodelforunmannedaerialvehiclesbasedonempiricalstudiesofbatteryperformance AT beeshangaabewardanajayawickrama comprehensiveenergyconsumptionmodelforunmannedaerialvehiclesbasedonempiricalstudiesofbatteryperformance AT yinghe comprehensiveenergyconsumptionmodelforunmannedaerialvehiclesbasedonempiricalstudiesofbatteryperformance AT erykdutkiewicz comprehensiveenergyconsumptionmodelforunmannedaerialvehiclesbasedonempiricalstudiesofbatteryperformance |
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