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首页> 外文期刊>The Journal of the Acoustical Society of America >On the efficacy of spatial sampling using manual scanning paths to determine the spatial average sound pressure level in rooms
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On the efficacy of spatial sampling using manual scanning paths to determine the spatial average sound pressure level in rooms

机译:关于使用手动扫描路径确定房间中空间平均声压级的空间采样的功效

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摘要

In architectural acoustics, noise control and environmental noise, there are often steady-state signals for which it is necessary to measure the spatial average, sound pressure level inside rooms. This requires using fixed microphone positions, mechanical scanning devices, or manual scanning. In comparison with mechanical scanning devices, the human body allows manual scanning to trace out complex geometrical paths in three-dimensional space. To determine the efficacy of manual scanning paths in terms of an equivalent number of uncorrelated samples, an analytical approach is solved numerically. The benchmark used to assess these paths is a minimum of five uncorrelated fixed microphone positions at frequencies above 200 Hz. For paths involving an operator walking across the room, potential problems exist with walking noise and non-uniform scanning speeds. Hence, paths are considered based on a fixed standing position or rotation of the body about a fixed point. In empty rooms, it is shown that a circle, helix, or cylindrical-type path satisfy the benchmark requirement with the latter two paths being highly efficient at generating large number of uncorrelated samples. In furnished rooms where there is limited space for the operator to move, an efficient path comprises three semicircles with 45 degrees-60 degrees separations.. [DOI:10.1121/1.3573986]
机译:在建筑声学,噪声控制和环境噪声中,通常存在稳态信号,因此有必要测量室内的空间平均声压级。这需要使用固定的麦克风位置,机械扫描设备或手动扫描。与机械扫描设备相比,人体允许手动扫描以在三维空间中找出复杂的几何路径。为了确定等效数量的不相关样本方面的手动扫描路径的效率,需要对一种解析方法进行数值求解。用于评估这些路径的基准是在200 Hz以上的频率下至少五个不相关的固定麦克风位置。对于涉及操作员在房间中行走的路径,存在行走噪声和扫描速度不均匀的潜在问题。因此,基于固定的站立位置或身体围绕固定点的旋转来考虑路径。在空房间中,显示出圆形,螺旋形或圆柱形路径满足基准要求,后两个路径在生成大量不相关样本时非常高效。在配有家具的房间中,操作员的活动空间有限,一条有效的路径包括三个半圆,它们之间的间隔为45度至60度。[DOI:10.1121 / 1.3573986]

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