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Innovative Helicopter In-Flight Noise Monitoring Systems Enabled by Rotor-State Measurements

机译:通过转子状态测量实现的创新型直升机飞行中噪声监测系统

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摘要

The present contribution aims at providing a comprehensive illustration of a new approach to rotorcraft noise abatement, especially during terminal procedures, when the vehicle approaches the ground and the acoustic impact is higher. This approach pursues the development of technologies and tools for real-time, in-flight monitoring of the emitted noise. The effect of the acoustic radiation is presented to the pilot in a condensed, practical form on a new cockpit instrumentation, the Pilot Acoustic Indicator (PAI), to be used for performing quieter maneuvers. The PAI is based on the synergetic composition of pre-calculated acoustic data, which are used in a noise estimation algorithm together with the data gathered by an innovative contactless measurement system, capable of acquiring the main rotor blade motion. The paper reports on the current studies in unsteady and quasi-steady aeroacoustic prediction and tip-path-plane angle of attack and thrust coefficient observation. Results on novel methodologies are discussed, together with the main features of the PAI design and development process.
机译:本贡献旨在提供一种用于减轻旋翼飞机噪声的新方法的综合说明,尤其是在终端程序中,当车辆接近地面且声音冲击较高时,这种方法尤为重要。这种方法致力于开发技术和工具,以实时,动态地监视发射的噪声。声辐射的影响以浓缩的,实用的形式呈现给飞行员,该声音是在新型驾驶舱仪表飞行员声音指示器(PAI)上使用的,用于执行更安静的操作。 PAI基于预先计算的声学数据的协同组成,这些噪声数据与创新的非接触式测量系统收集的数据一起用于噪声估计算法,该系统能够获取主转子叶片的运动。该论文报道了当前关于非稳态和准稳态航空声学预测,尖端路径面攻角和推力系数观测的研究。讨论了关于新方法的结果,以及PAI设计和开发过程的主要特征。

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