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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Inner-Loop Control for Electromechanical (EMA) Flight Surface Actuation Systems
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Inner-Loop Control for Electromechanical (EMA) Flight Surface Actuation Systems

机译:机电(EMA)飞行表面致动系统的内部回路控制

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摘要

This manuscript pertains to the application of an inner-loop control strategy to electromechanical flight surface actuation systems. Modular electromechanical actuators (EMAs) are increasingly used in lieu of centralized hydraulics for the control of flight surfaces in the aerospace sector. The presence of what is termed as a dead zone in these actuators significantly affects the maneuverability, stability, and the flight profiles of aircrafts that use this actuation concept. The hypothesis of our research is that flight surface actuation systems may be desensitized to the effects of dead zone by using a control strategy with multiple inner loops. The proposed strategy involves (a) high-gain inner-loop velocity control of the driving motor and (b) inner-loop compensation for the differential velocity between the motor versus the aileron. The above hypothesis is confirmed by theoretical and simulated analyses using the model of an EMA flight surface actuator. Our results indicate that for small input signals, this strategy is very effective and that it can (a) considerably increase the bandwidth and the crossover frequency of the system and (b) considerably improve the time response of the system. Further to this analysis, this manuscript presents guidelines for the design of EMA systems.
机译:该手稿涉及将内环控制策略应用于机电飞行表面致动系统。模块化机电致动器(EMA)越来越多地用于代替集中式液压系统,用于控制航空航天领域的飞行表面。这些致动器中所谓的死区的存在会严重影响使用这种致动概念的飞机的机动性,稳定性和飞行轮廓。我们研究的假设是,通过使用带有多个内部回路的控制策略,可以使飞行表面致动系统对死区的影响不敏感。提出的策略涉及(a)对驱动电机进行高增益内环速度控制,以及(b)对电机与副翼之间的速度差进行内环补偿。使用EMA飞行表面执行器的模型通过理论和模拟分析证实了上述假设。我们的结果表明,对于较小的输入信号,此策略非常有效,并且它可以(a)显着增加系统的带宽和交叉频率,并且(b)显着改善系统的时间响应。除此分析外,本手稿还提供了EMA系统设计的准则。

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