航天用冗余机电作动器研究进展

IF 0.1 4区 工程技术 Q4 ENGINEERING, AEROSPACE
F. Annaz, Malaka Miyuranga Kaluarachchi
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引用次数: 0

摘要

移动飞机控制面的动力已经从手动产生(由飞行员通过杆和连杆传输)发展到电力传输(通过电线)来操作控制面执行器。各种液压、电磁和机电架构已经被开发出来,以提供必要的动力并保持预期的冗余。在过去的几十年里,已经提出了许多飞机执行器系统的设计,但尚未进行全面的审查。这篇综述论文旨在通过对各种飞机的驱动系统设计进行批判性的综述来填补这一空白。综述了飞机作动器系统的设计,即:电液作动器系统、机电作动器系统以及冗余作动器系统中的力对抗效果。本文对各作动系统的意义和工作原理进行了详细的分析和讨论。本文还评估了提出的解决方案,以解决力或扭矩求和架构中的力对抗均衡(或力对抗消除)。讨论了飞机作动系统中减小力对抗效应的冗余作动系统的发展趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Progress in Redundant Electromechanical Actuators for Aerospace Applications
The power to move aircraft control surfaces has advanced from being manually generated (by the pilot and transmitted via rods and links) to electrically transmitted (via wires) to operate control surface actuators. Various hydraulic, electromagnetic, and electromechanical architectures have been developed to provide the necessary power and to maintain the expected redundancy. Numerous aircraft actuator system designs have been proposed in the past decades, but a comprehensive review has yet to be undertaken. This review paper aims to fill this gap by providing a critical review of the actuation system designs developed for a variety of aircraft. The review focuses on aircraft actuator system designs, namely: electrohydraulic actuator systems, electromechanical actuator systems, and the force-fighting effect in redundant actuation systems. The significance and operational principle of each actuator system are critically analysed and discussed in the review. The paper also evaluates the solution proposed to address force-fight equalization (or force-fight cancelation) in force or torqued-summed architectures. Future trends in redundant actuation system development with reduced force-fighting effect in aircraft actuator systems are also addressed.
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来源期刊
Aerospace America
Aerospace America 工程技术-工程:宇航
自引率
0.00%
发文量
9
审稿时长
4-8 weeks
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