Analysis of a Hybrid Unmanned Aerial Vehicle with a BLDC Propulsion Motor Based on HIL Simulation

A. Mishra, Taehyung Kim
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Abstract

In this paper, a new multi-functional integrated DC-DC converter for unmanned aerial vehicle (UAV) applications is presented. Hybrid power sources, including a fuel cell (FC), battery, and solar, are used in the proposed UAV power system to prolong the flight endurance time. For those multiple sources, the proposed integrated DC-DC converter involves in different functional structures, which offer performance optimization of FC and solar panel, charging/discharging operation of the battery, DC bus voltage regulation, and is able to perform in the regenerative operating mode if it is needed. A permanent magnet BLDC motor is employed for the system working with the multi-functional integrated converter. Moreover, the proposed integrated converter can also be used to charge the battery through the grid from any outlet charging station. A real-time hardware-in-the-loop simulation setup has been used to verify the proposed converter and control strategy.
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基于HIL仿真的无刷直流推进电机混合动力无人机分析
介绍了一种用于无人机的新型多功能集成DC-DC变换器。混合动力源,包括燃料电池(FC)、电池和太阳能,在提议的无人机动力系统中使用以延长飞行续航时间。对于这些多源,所提出的集成DC-DC变换器涉及不同的功能结构,可以提供FC和太阳能电池板的性能优化,电池的充放电操作,直流母线电压调节,并且可以在需要时以再生工作模式运行。该系统采用永磁无刷直流电机与多功能集成变换器配合工作。此外,所提出的集成变换器还可以用于从任何插座充电站通过电网为电池充电。利用实时半实物仿真装置验证了所提出的变换器和控制策略。
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