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Engine controller for hybrid powered dual quad-rotor system

机译:用于混合动力双Quad转子系统的发动机控制器

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Multi-rotor systems have been developed into better performance for mature applications. Due to lift to weight balance on motor power and battery energy, they are limited in payload and flight endurance. Since gasoline power has 44 times better energy density than battery, integration of gas engine and DC brushless motor into a vertical take-off and landing (VTOL) system will gain much higher lift and longer flight duration in performance. A hybrid power multi-rotor system is designed by dual system of engine-driven quad-rotor and motor-driven quad-rotor, with contributions on lift power by gas engine and flight control, respectively. The proposed multi-rotor system is termed as Quad-in-Quad (QiQ) system. System design considerations on high thrust, reverse torque, vibration, heat dissipation, structure and weight balance are included by carefully weight reduction into fabrication. Microprocessor control system is designed and implemented to make gas engine in both directions in steady balanced operation. A preliminary flight test has completed on this dual quad-rotor VTOL.
机译:已经开发了多转子系统对成熟应用的更好性能。由于电动机电力和电池能量上的升力平衡,它们的有效载荷和飞行耐久性有限。由于汽油功率比电池更好的能量密度,燃气发动机和直流无刷电机进入垂直起飞和着陆(VTOL)系统的集成将获得更高的升力和较长的飞行持续时间。混合动力多转子系统由发动机驱动的四轮转子和电动式四轮转子的双重系统设计,分别通过燃气发动机和飞行控制提升电力供电。所提出的多转子系统被称为Quad-in-in-in-Quad(QIQ)系统。通过小心地减轻制造,包括高推力,反向扭矩,振动,散热,结构和重量平衡的系统设计考虑因素。微处理器控制系统设计和实施,以使燃气发动机在稳定平衡操作中的两个方向。在这种双Quad转子VTOL上完成了初步飞行试验。

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