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A Virtual Test Bench of a Parallel Hybrid Propulsion System for UAVs

机译:无人机并联混合动力系统的虚拟试验台

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The article proposes the design of a test bench simulator to test a parallel hybrid propulsion architecture for aeronautical applications. The virtual test bench simulates, in a scaled version, the real test bench, designed for a power of about 0.4 MW. After presenting the architecture of the real propulsion system, the virtual test bench is described. The real system is basically composed by a paralleled electric motor and thermal engine which provide mechanical power to the propeller. Saving cost and volume the test bench is composed by electric motors simulates the behaviors of the real propulsion system despite their differences. The dynamic relationships expressing the transmission of torque between the components, and the method of down-sizing the power delivered are highlighted. Particular attention is given to the real inertia actions that must be simulated on the virtual test bench. An application of the proposed methodology is then presented through the simulation of the take-off phase, and the torque time histories, angular velocities and powers generated on the virtual test bench are used to verify the corresponding time histories expected in the real system.
机译:本文提出了一种测试台模拟器的设计,以测试用于航空应用的并行混合推进架构。虚拟测试台以缩放版本模拟了实际测试台,其设计功率约为0.4 MW。在介绍了真实推进系统的体系结构之后,描述了虚拟测试台。实际系统基本上由并联的电动机和热力发动机组成,它们为螺旋桨提供机械动力。节省成本和体积由电动机组成的试验台可以模拟实际推进系统的行为,尽管它们之间存在差异。强调了表示组件之间扭矩传递的动态关系,以及减小传递的功率的方法。特别注意必须在虚拟测试台上模拟的实际惯性动作。然后,通过起飞阶段的仿真来介绍所提出的方法的应用,并使用在虚拟试验台上产生的扭矩时间历史,角速度和功率来验证实际系统中预期的相应时间历史。

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