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Application of MEMS Microphone Array Technology to Airframe Noise Measurements

机译:MEMS麦克风阵列技术在机身噪声测量中的应用

摘要

Current generation microphone directional array instrumentation is capable of extracting accurate noise source location and directivity data on a variety of aircraft components, resulting in significant gains in test productivity. However, with this gain in productivity has come the desire to install larger and more complex arrays in a variety of ground test facilities, creating new challenges for the designers of array systems. To overcome these challenges, a research study was initiated to identify and develop hardware and fabrication technologies which could be used to construct an array system exhibiting acceptable measurement performance but at much lower cost and with much simpler installation requirements. This paper describes an effort to fabricate a 128-sensor array using commercially available Micro-Electro-Mechanical System (MEMS) microphones. The MEMS array was used to acquire noise data for an isolated 26%-scale high-fidelity Boeing 777 landing gear in the Virginia Polytechnic Institute and State University Stability Tunnel across a range of Mach numbers. The overall performance of the array was excellent, and major noise sources were successfully identified from the measurements.
机译:当前一代的麦克风定向阵列仪器能够提取各种飞机部件上的准确噪声源位置和方向性数据,从而显着提高测试效率。但是,随着生产率的提高,人们渴望在各种地面测试设施中安装更大,更复杂的阵列,这给阵列系统的设计人员带来了新的挑战。为了克服这些挑战,开始了一项研究研究,以识别和开发硬件和制造技术,这些技术和技术可用于构建具有可接受的测量性能,成本低得多,安装要求简单得多的阵列系统。本文介绍了使用市售的微机电系统(MEMS)麦克风制造128个传感器阵列的努力。 MEMS阵列用于在一系列马赫数范围内为弗吉尼亚理工学院和州立大学稳定隧道中的孤立的26%比例高保真度的波音777起落架获取噪声数据。阵列的整体性能非常好,并且从测量中成功识别出主要的噪声源。

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