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首页> 外文期刊>Noise Control Engineering Journal >Experimental round-robin evaluation of structure-borne sound source force-power test methods
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Experimental round-robin evaluation of structure-borne sound source force-power test methods

机译:结构声源力-功率试验方法的循环法实验评估

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The determination of the structure-borne noise from operational equipment in airplanes is a complex process that requires much source and receiver component information in the analysis. Different test setups and instrumentation usually are required to obtain these quantities separately; for example, free velocity, blocked force, source and receiver mobilities, isolator properties and transmitted power. A previously proposed approach, combining the inverse force method (IFM) and the reception plate method (RPM), and enabling dual force-power measurement from a single test platform, was demonstrated in laboratory tests. This paper reports on the measurement variations of blocked force and transmitted power from the integrated test setup. To gauge the practicality and readiness of the test methods, an experimental round-robin evaluation was arranged and coordinated with four industrial participants. The same source was used in the round robin evaluation with controlled mounting details, in order to investigate the source installation sensitivity. In general, good agreements were observed between powers obtained by the two methods from data acquired at each test site; larger variations were observed in measurement across test sites. Work continues to determine the test method uncertainty; however, both test methods are considered acceptable and ready for wider industry applications. (C) 2016 Institute of Noise Control Engineering.
机译:确定飞机操作设备的固体噪声是一个复杂的过程,在分析中需要大量源和接收器组件信息。通常需要不同的测试设置和仪器来分别获取这些数量。例如,自由速度,阻塞力,源和接收器的移动性,隔离器的特性和传输的功率。在实验室测试中演示了一种先前提出的方法,该方法结合了反作用力方法(IFM)和接收板方法(RPM),并能够从单个测试平台进行双力-功率测量。本文报告了来自集成测试装置的闭锁力和传输功率的测量变化。为了评估测试方法的实用性和就绪性,安排了一项实验循环评估,并与四个行业参与者进行了协调。为了研究放射源的安装灵敏度,在轮循评估中使用了相同的放射源,并控制了安装细节。通常,从每个测试点获得的数据中,两种方法获得的能力之间观察到良好的一致性;在整个测试站点的测量中观察到较大的差异。继续确定测试方法的不确定性;但是,这两种测试方法都被认为可以接受,并准备用于更广泛的行业应用。 (C)2016噪声控制工程研究所。

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