基于观测器推力控制的电动飞机蓄热式空气制动基础研究

Kentaro Yokota, H. Fujimoto, Y. Hori
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引用次数: 2

摘要

电动飞机的研究和开发一直非常活跃。EAs采用电动机作为动力源;因此,ea有望实现更安全、更高效、更环保的航空。传统飞机采用扰流板等机械式空气制动器来调节下降角度;然而,即使是熟练的飞行员也很难控制它们。先前的研究表明,当风车螺旋桨产生负扭矩和推力时,电动马达可以使ea在下降时再生其势能。这种负推力作为空气制动器的替代品,称为再生空气制动器。提出了一种自动下降式再生式空气制动器的推力控制方法。此外,由于加入力传感器会降低推进器的刚度,提出了基于观测器的推力估计方法。仿真和风洞实验验证了该方法的有效性。
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Basic Study on Regenerative Air Brake Using Observer-based Thrust Control for Electric Airplane
Research and development have been very active in electric airplanes (EAs). EAs use electric motors as the power source; therefore, EAs are expected to achieve more secure, more efficient, and more eco-friendly aviation. The conventional airplanes use mechanic air brakes such as spoilers to adjust the descent angle; however, they are difficult to control even for a skilled pilot. Previous research showed that electric motors enable EAs to regenerate their potential energy while descending as the windmilling propeller produces negative torque and thrust. This negative thrust works as a substitute air brake, called regenerative air brake. This paper proposes the thrust control method of regenerative air brake for automatic descent. Furthermore, the observer-based thrust estimation method is also proposed since adding force sensors decreases the stiffness of the thrusters. The effectiveness of the proposed method is verified by simulations and experiments in the wind tunnel.
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