Upgrading these building envelopes by deploying building-integrated photovoltaics (BIPV) and allocating UAV recharging stations on their roofs would represent a dual green solution. The environmental benefits of reducing energy consumption in upgraded buildings are coupled with generating clean electricity required for the UAV charging functions.
Dang et al. (2021) propose a multi-criteria decision-making framework for island photovoltaic charging station site selection. While literature is abundant on ground vehicles and ships, UAVs have had less share of this focus. Compared to ground vehicles, the average UAV range is 3 km, which is significantly lower.
UAVs are assumed fully charged when they leave the charging station (SoC=100%). The UAV''s flight range is estimated according to the UAV 3D minimal energy trajectory model. As the energy consumption rate varies for loaded and unloaded UAVs, two different flight scenarios are implemented.
Under this strategy, UAV charging power levels per charge stop vary greatly, 0.03–0.15 kW per vehicle, depending on the trajectory and SoC, but are still in line with that of current off-shelf UAV technology. Fig. 7.
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To address these problems, an innovative Building Integrated Photovoltaic (BIPV) structure with wireless drone charging capabilities is designed to optimize the usage of rooftop …
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LZY Mobile Solar Container System with 20-200kWp foldable PV panels and 100-500kWh battery storage, deployable in under 3 hours.
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The model addresses the intertwined UAV en-route charging, GHG emissions elimination, flight policies, solar energy harnessing, and kinematic-based 3D optimal trajectory …
Request PDF | Building integrated photovoltaic powered wireless drone charging system | The future of urban drone-based transportation and delivery depends upon the …
In the dynamic landscape of unmanned aerial vehicles (UAVs), or drones, one of the critical challenges has been extending their …
ELECTRIC CARS AS ROLLING CHARGING STATIONS: In the "ROLLEN" research project, Fraunhofer IFAM and its partners have shown how electric vehicles with bi-directional …
The study concludes that the successful implementation of advanced bidirectional wireless charging systems can significantly contribute to a more resilient and sustainable …
Bidirectional Wireless System for drone to drone opportunity charging in a multi agent system July 2023 DOI: …
The future is moving toward fully autonomous drone transportation-delivery systems. However, handling the charging of a large number of drones is still a pivotal problem …
Abstract—This letter introduces a photovoltaic (PV)-battery wireless charger tailored for unmanned aerial vehicles (UAVs), enabling seamless automatic charging. Sharing the …
A Multi-Objective Optimization of Autonomous Drones’ Solar Energy Charging Stations Utilizing BIPV Urban Upgrade 1 Mohamed ElSayed Moataz Mohamed McMaster …
In this paper, two multi-port bi-directional converters are proposed to be utilized as off-board Electric Vehicles (EVs) charging station. Both converters are designed to integrate …
Streamline drone operations with industrial-grade autonomous and cross-platform battery charging, docking, and remote maintenance without …
With bidirectional charging, your electric vehicle can function as a home battery. But which cars offer this capability?
This study endeavors to tackle this critical issue through the development of an autonomous drone battery charging system. We propose the creation of an automated …
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