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A symbolic sensor for an Antilock brake system of a commercial aircraft

机译:用于商用飞机防抱死制动系统的符号传感器

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摘要

The design of a symbolic sensor that identifies thecondition of the runway surface (dry, wet, icy, etc.) during the braking of a commercial aircraft is discussed. The purpose of such a sensor is to generate a qualitative, real-time information about the runway surface to be integrated into a future aircraft Antilock Braking System (ABS). It can be expected that this information can significantly improve the performance of ABS. For the design of the symbolic sensor different classification techniques based upon fuzzy set theory and neural networks are proposed. To develop and to verify theses classification algorithms data recorded from recent braking tests have been used. The results show that the symbolic sensor is able to correctly identify the surface condition. Overall, the application example considered in this paper demonstrates that symbolic information processing using fuzzy logic and neural networksudhas the potential to provide new functions in control system design. This paper is part of a common research project between E.N.S.I.C.A. and Aerospatiale in France to study the role of the fuzzy set theory for potential applications in future aircraft control systems.
机译:讨论了在商用飞机制动期间识别跑道表面状况(干,湿,冰冷等)的符号传感器的设计。这种传感器的目的是生成有关跑道表面的定性实时信息,以将其集成到未来的飞机防抱死制动系统(ABS)中。可以预期,该信息可以显着提高ABS的性能。为了设计符号传感器,提出了基于模糊集理论和神经网络的不同分类技术。为了开发和验证这些分类算法,已使用从最近的制动测试中记录的数据。结果表明,符号传感器能够正确识别表面状况。总体而言,本文中考虑的应用示例表明,使用模糊逻辑和神经网络进行符号信息处理具有在控制系统设计中提供新功能的潜力。本文是E.N.S.I.C.A.共同研究项目的一部分。和法国航空航天公司研究模糊集理论在未来飞机控制系统中的潜在应用中的作用。

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