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Towards More-Efficient Aircraft Hydraulic Systems: Conceptual Design of a Variable-Speed Fixed-Displacement Electric Motor Pump

机译:朝向更高效的飞机液压系统:可变速度固定位移电动机泵的概念设计

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This paper describes the conceptual design of a variable-speed fixed-displacement electric motor pump for aircraft hydraulic systems. In contrast to today's approaches, the pump controls the constant system pressure by adapting the motor speed rather than the pump displacement or both. This concept might increase the pump's part load efficiency significantly. The paper starts with introducing and analyzing the dynamic requirements of aircraft hydraulic pumps and evaluating different pump concepts. The concept of an internal gear pump driven by a permanent magnet synchronous motor is selected. For this concept an experimental prototype is developed. The electric motor pump is modeled and a pressure controller is designed. The prototype is set up and tested on an experimental test bench regarding dynamics, efficiencies and noise emissions. The overall concept is evaluated regarding secondary power demand, system heat load, wear, reliability, noise, and mass. The evaluation shows that losses can be decreased by 66% and noise emissions by 30 dBA in comparison to an original aircraft electric motor pump in use today.
机译:本文介绍了用于飞机液压系统的可变速度固定位移电动机泵的概念设计。与当今的方法相比,泵通过调整电机速度而不是泵位移或两者来控制恒定的系统压力。这一概念可能显着提高泵的零件负载效率。本文从介绍和分析了飞机液压泵的动态要求,评估了不同的泵概念。选择由永磁同步电动机驱动的内齿轮泵的概念。对于这一概念,开发了实验原型。电动机泵采用建模,设计了压力控制器。在关于动态,效率和噪声排放的实验测试台上建立和测试原型。对次级电力需求,系统热负荷,耐磨,可靠性,噪声和质量进行评估整体概念。评价表明,与当今使用的原始飞机电动机泵相比,通过30 dBa的损耗可以减少66%和噪声排放。

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