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A New Road-Side Array-Based Method for Characterization of Truck Noise During Passby

机译:基于道路侧阵列的基于新的路边阵列,用于在逾越期间表征卡车噪声

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This paper describes the development of a new method for measuring pass-by sound from trucks and other vehicles using 2-dimensional arrays. The approach provides 2-dimensional quantitative maps "images" of the cross-range and elevation distribution in the vehicle side view. The method is an application and extension of an array technology that was originally used for the characterization of static aeroacoustic sources in wind tunnels. The focus of this work is on identifying and rank-ordering the important contributing sources of passby noise. This development includes two phases: developmental testing at a test track site, and road-side testing at two California State highway sites. The acquisition post-processing allows the "observer" to track the vehicle cross-range in order to create a time sequence of source maps that may be interpreted as both level relationships and directivity patterns. The processing applies both range and approximate Doppler adjustments to spectra as a function of time during pass-by or, equivalently, to vehicle position relative to the array's center. An image demodulation scheme is shown to clarify the images.The initial phase of this work occurred at a test track using known "cooperative" truck sources. This experience permitted the verification of the method and the definition of a final measurement approach that was viable at a highway site. Subjects were all trucks that varied in model, vehicle speed, tread, and the presence of a trailer. The array beamformer's ability to localize and the measurement system's ability to track were validated using both stationary and moving sources. Following validation at the test track site, the instrumentation was transferred to two California highway sites. There, acoustic calibration was used to align the array with the road track and to provide a spatial reference for mapping the "images". Both light and heavy vehicles at these sites were "uncooperative" with arrivals and speeds randomly determined by traffic flow. This work was funded by the California Department of Transportation.
机译:本文介绍了一种使用二维阵列从卡车和其他车辆测量通道的新方法。该方法提供了车辆侧视图中的跨范围的二维定量图“图像”。该方法是阵列技术的应用和扩展,该阵列技术最初用于风隧道中的静态空气声源。这项工作的重点是识别和等级排序通行噪声的重要贡献来源。该开发包括两个阶段:在测试轨道地点的发展测试,以及两个加州州公路网站的道路侧测试。采集后处理允许“观察者”跟踪车辆交叉范围,以便创建可以被解释为级别关系和方向性模式的源地图的时间序列。该处理将其均匀和近似多普勒调整作为光谱作为相对于阵列中心相对于车辆位置的时间或等效地调整。示出了图像解调方案来阐明图像。该工作的初始阶段在测试轨道上使用已知的“合作”卡车源发生。该经验允许验证在高速公路现场可行的最终测量方法的方法和定义。受试者是模型,车速,胎面和拖车的存在而变化的卡车。阵列波束形成器的定位能力和测量系统跟踪能力的能力通过静止和移动来源进行验证。在测试轨道站点验证之后,仪器被转移到两个加利福尼亚高速公路站点。在那里,声学校准用于将阵列与道路轨道对齐,并提供用于映射“图像”的空间参考。这些位点的光和重型车辆都是“不合作的”,随着交通流量随机确定的抵达和速度。这项工作由加州交通部提供资金。

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