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Electromechanical flight actuators for advanced flight vehicles

机译:先进飞行器的机电式飞行执行器

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摘要

The aircraft flight quantities and success of the mission depend to a great extent upon the actuator performance, and flight actuators must be designed to achieve the specified criteria. Electromechanical flight actuators driven by electric motors have begun to displace hydraulic technology in advanced flight vehicles. In aerospace application, permanent-magnet stepper motors are perfectly suited due to their efficiency and reliability, low volume-, weight-, and size-to-torque ratios, high power and torque densities, low cost and maintenance, simplicity and ruggedness, etc. Conventional open-loop stepper motor servos do not ensure the required accuracy and dynamic performance. An innovative method in motion control of advanced electromechanical flight actuators is developed, and nonlinear controllers are designed. The specified tracking accuracy, desired stability margins, microstepping capabilities, and disturbance attenuation are ensured by the robust nonlinear controllers synthesized. Analytical, numerical, and experimental results are documented to study the performance of flight actuators directly driven by stepper motors and to demonstrate the efficiency of control algorithms.
机译:飞机的飞行数量和任务的成功在很大程度上取决于执行器的性能,必须设计飞行执行器以达到规定的标准。由电动机驱动的机电式飞行执行器已经开始取代先进飞行器中的液压技术。在航空航天应用中,永磁步进电机具有效率和可靠性高,体积,重量和尺寸转矩比低,功率和转矩密度高,成本低且维护简单,坚固耐用等特点,因此非常适合传统的开环步进电机伺服器无法确保所需的精度和动态性能。开发了一种先进的机电飞行执行器运动控制的创新方法,并设计了非线性控制器。合成的鲁棒非线性控制器确保了指定的跟踪精度,所需的稳定性裕度,微步进能力和干扰衰减。记录了分析,数值和实验结果,以研究由步进电机直接驱动的飞行执行器的性能,并证明控制算法的效率。

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