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首页> 外文期刊>Transactions of the Canadian Society for Mechanical Engineering >Evaluation of energy efficient propulsion technologies for unmanned aerial vehicles
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Evaluation of energy efficient propulsion technologies for unmanned aerial vehicles

机译:无人机空中车辆节能推进技术评价

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The transition to cleaner, more efficient and longer-endurance aircraft is at the forefront of research and development in air vehicles. The focus of this research is to experimentally evaluate hybrid propulsion and energy harvesting systems in unmanned aerial vehicles (UAVs). Hybrid systems offer benefits over conventional gasoline and electric systems including lower environmental impacts, reduced fuel consumption, redundancy, and distributed propulsion. Additional energy efficiency can be achieved by harvesting some of the thermal energy of the exhaust gases. The development and experimental evaluation of a hybrid propulsion UAV was carried out at the University of Victoria Center for Aerospace Research (UVIC-CfAR) in the framework of the Green Aviation Research & Development Network (GARDN) grant. The work involved the development of a framework to evaluate UAV hybrid propulsion efficiency, and to predict the amount of power harvestable from thermoelectric generators (TEGs). The objective was to combine all of the components into a modular test bench that will allow the performance of the parallel hybrid system to be characterized and compared with theoretical results. Several experiments were performed to collect performance data of various components including a triple-TEG system connected to an engine, and system variables were modified to simulate flight profiles.
机译:过渡到清洁剂,更高效和更长的飞机是航空公司研发的最前沿。本研究的重点是通过实验评估无人机(无人机)中的混合动力推进和能量收集系统。混合系统提供了常规汽油和电动系统的益处,包括较低的环境影响,降低燃料消耗,冗余和分布式推进。通过收获废气的一些热能可以实现额外的能量效率。混合动力推进UAV的开发和实验评估在绿色航空研究与开发网络(Gardn)Grant的框架内维多利亚航空航天研究中心(UVIC-CFAR)。工作涉及开发框架来评估UAV混合推进效率,并预测热电发电机(TEG)收获的功率量。目标是将所有组件组合成模块化测试台,允许并行混合系统的性能表征并与理论结果进行比较。进行几个实验以收集包括连接到发动机的三维TEG系统的各种组件的性能数据,并且修改了系统变量以模拟飞行轮廓。

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