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Experimental investigation on varied degrees of sound field diffuseness in full scale rooms

机译:全尺寸房间中不同程度声场扩散的实验研究

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Sound field diffusion in enclosures should be experimentally quantified based on measured room impulse responses, at least to know how many scattering surfaces produce a sufficiently diffuse sound field for each application. To achieve this, a parameter, the Sound Field Diffusion Coefficient (SFDC) which is still under development, was applied. SFDC expresses the reflection's amplitude control and temporal distribution gaussianity, using third octave-band energy-decay compensated impulse responses and taking reference with SFDC average results from a set of impulse responses synthesized with Gaussian white noise. In an attempt to demonstrate the quantification capability of the SFDC, a systematic investigation was conducted whereby varied room configurations using carefully designed scattered interior surfaces were examined with the hypothesis that varied degrees of surface scattering will ultimately lead to varied degrees of sound field diffusion inside two. full scale, rooms. To this end, each room's floor was covered with different configurations ranging from no diffusers to 16.74 m~2 of diffusely reflecting surfaces, in 3 steps. This paper discusses the experimental design and evaluates the results of data collected using systematic modifications of varied degrees of surface scattering, each with combinations of different source orientations and microphone positions.
机译:外壳中的声场扩散应根据测得的房间脉冲响应进行实验量化,至少要知道有多少散射表面会为每种应用产生足够的扩散声场。为了达到这个目的,使用了仍在开发中的参数,即声场扩散系数(SFDC)。 SFDC使用第三倍频程能量衰减补偿的脉冲响应并参考由高斯白噪声合成的一组脉冲响应的SFDC平均结果来表示反射的振幅控制和时间分布高斯。为了证明SFDC的量化能力,进行了系统的研究,其中使用精心设计的分散内表面检查了各种房间配置,并提出了以下假设:不同程度的表面散射最终会导致两个内部的声场扩散程度不同。 。全尺寸,房间。为此,每个房间的地板分三步覆盖从无漫射器到16.74 m〜2漫反射表面的不同配置。本文讨论了实验设计,并评估了通过对表面散射程度不同进行系统修改而收集的数据结果,每种方法都结合了不同的信号源方向和麦克风位置。

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