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From Airframer Requirements to Detailed Technical Specification of Electromechanical Actuators Aided by Knowledge-Based Methods

机译:通过基于知识的方法来实现机电执行器的详细技术规范。基于知识的方法,从机电执行器的详细技术规范

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Recent trends towards lighter and more efficient commercial aircraft have motivated airframers to consider the use of electromechanical actuators EMA as the primary means of power for aircraft flight control systems. The transition from state-of-the-art hydraulic actuation to new electromechanical technologies poses a great challenge to both airframers and system suppliers for the correct and complete definition of new requirements. Transient effects such as electric motor overheating and inertial loads, previously not present or irrelevant for hydraulic actuators, now have to be taken into account. A knowledge-based environment containing design drivers for electromechanical components is combined with a validation method in order to aid the systems engineer to accomplish such task. This approach offers the potential to guarantee that all requirements are covered by a new technology, and that they are complete and consistent. In addition, analyzing representative mission profiles and extracting relevant flight data aid in the identification of active design drivers and speeds up requirement definition for the technology under consideration. These concepts are illustrated with a case study of a short-range aircraft's aileron EMA. Methods and tools described herein are being developed within the framework of the European research project Actuation 2015 which aims at the standardization of EMA components for aerospace applications.
机译:最近趋势更轻,更高效的商用飞机具有激励机电执行器EMA作为飞机飞行控制系统的主要动力手段的机电致动器。从最先进的液压驱动到新机电技术的过渡对机器和系统供应商构成了极大的挑战,以获得对新要求的正确和完整的定义。现在必须考虑到以前不存在的电动机过热和惯性载荷等电动机过热和惯性载荷,现在必须考虑到液压执行器。包含用于机电组件的设计驱动程序的基于知识的环境与验证方法组合,以帮助系统工程师完成此类任务。这种方法提供了保证所有要求所涵盖的新技术,并且它们是完整和一致的。此外,分析代表性的使命概况并提取相关飞行数据辅助方法,在识别主动设计驱动程序中,加快所考虑技术的要求定义。这些概念用案例研究了一个短程飞机的Aileron EMA。本文描述的方法和工具正在欧洲研究项目致动2015的框架内开发,其旨在用于航空航天应用的EMA组件的标准化。

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