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Research on Energy Management of Hybrid Unmanned Aerial Vehicles to Improve Energy-Saving and Emission Reduction Performance

机译:混合动力无人机能量管理改善节能减排性能的研究

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摘要

The rapid development of industry results in large energy consumption and a negative impact on the environment. Pollution of the environment caused by conventional energy sources such as petrol leads to increased demand for propulsion systems with higher efficiency and capable of energy-saving and emission reduction. The usage of hybrid technology is expected to improve energy conversion efficiency, reduce energy consumption and environmental pollution. In this paper, the simulation platform for the hybrid unmanned aerial vehicle (UAV) has been built by establishing the subsystem models of the UAV power system. Under the two chosen working conditions, the conventional cruise flight mission and the terrain tracking mission, the power tracking control and Q-Learning method have been used to design the energy management controller for the hybrid UAV. The fuel consumption and pollutant emissions under each working condition were calculated. The results show that the hybrid system can improve the efficiency of the UAV system, reduce the fuel consumption of the UAV, and so reduce the emissions of CO , NO , and other pollutants. This contributes to improving of environmental quality, energy-saving, and emission reduction, thereby contributing to the sustainable development of aviation.
机译:工业的快速发展导致大量能源消耗并对环境造成负面影响。由诸如汽油的常规能源引起的环境污染导致对具有更高效率并且能够节能和减少排放的推进系统的需求增加。混合动力技术的使用有望提高能量转换效率,减少能量消耗和环境污染。通过建立无人机动力系统的子系统模型,建立了混合动力无人机的仿真平台。在常规巡航飞行任务和地形跟踪任务这两个选定的工作条件下,已经使用功率跟踪控制和Q学习方法来设计混合无人机的能量管理控制器。计算了每种工况下的燃油消耗和污染物排放。结果表明,该混合动力系统可以提高无人机系统的效率,减少无人机的燃油消耗,从而减少CO,NO和其他污染物的排放。这有助于改善环境质量,节能和减少排放,从而有助于航空业的可持续发展。

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