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Measurement Dynamic Range Considerations for Sound Transmission Loss Testing

机译:声音传输损耗测试的测量动态范围注意事项

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Highly effective double-wall systems for automotive applications can often have over a 90 dB span in sound transmission loss values between low frequencies, where they are usually least effective and upper frequencies, where they are typically most effective. Particularly for 16-bit measurement systems, but even for 24-bit systems, this can represent a very difficult scenario for measurements in either the source and/or receiving chamber(s). A methodology to balance the observed dynamic ranges in both source and receiving chambers is presented and discussed in this paper. An improved sound transmission loss measurement system can therefore be implemented which reduces the potential of overload or noise floor contamination occurring in measurements within either chamber. Low frequency SPL requirements for the source chamber speaker system and flanking noise issues with adjacent test chambers can also be typically reduced. Although this paper focuses on the case of SAE J1400 [1] sound transmission loss testing, the methodology described could also benefit other test standards, such as ASTM E-90 [2] and ISO 10140-2 [3].
机译:高度有效的双壁系统用于汽车的应用程序可以通常具有超过在低频时,在那里它们通常至少是有效的和上部的频率,其中,它们通常是最有效的之间的声音传输损耗值的90分贝跨度。特别是对于16位测量系统,但即使对于24位系统,这也可以表示用于源和/或接收室中的测量的非常困难的场景。在本文中提出和讨论了平衡观察到的动态范围的方法。因此,可以实现改进的声音传输损耗测量系统,其降低了在任一室内的测量中发生的过载或噪声底板污染的电位。对于源室扬声器系统的低频SPL要求以及相邻测试室的侧翼噪声问题也可以减少。虽然本文侧重于SAE J1400 [1]声音传输损耗测试的情况下,所描述的方法也可能有益于其他测试标准,例如ASTM E-90 [2]和ISO 10140-2 [3]。

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