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Spatial extrapolation of early room impulse responses in local area using sparse equivalent sources and image source method

机译:利用稀疏等价来源和图像源法测定早期房间的空间外推局域脉冲响应

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The room impulse response (RIR) is important in most acoustic applications, such as the design of concert halls and sound field control, because it characterizes the sound propagation. The measurement of RIRs at multiple points is challenging, as it requires a huge microphone array or repeating the experiment by microphone replacement. Several RIR interpolation and extrapolation methods of RIRs have been developed for obtaining RIRs from multiple measurement points efficiently. Extrapolation methods offer more efficient RIR measurement compared to interpolation. However, previous studies focused on extrapolation at frequencies below 1 kHz, and the extrapolation at higher frequencies was difficult. In this study, we propose an extrapolation method for RIRs of direct sound and early reflections in a local area using a small number of measurement points. The proposed method represents the RIRs around the microphones using superpositions of sparse equivalent sources located around the loudspeaker and image sources. We conducted a measurement experiment in an anechoic chamber to estimate RIRs around microphones using sound-reflecting boards. From the experimental results with 2.5 dimensional conditions, the proposed method achieved about above 10 dB of signal to noise ratio (SNR) near the microphone array from 0.5-8.5 kHz. For the extrapolation accuracy over the entire evaluation area (0.6 x 0.54 m(2)), the proposed method improved the SNR by about 5-6 dB compared to results using the plane wave decomposition. (C) 2021 Elsevier Ltd. All rights reserved.
机译:房间脉冲响应(RIR)在大多数声学应用程序中都很重要,例如音乐厅和声场控制的设计,因为它表征了声音传播。多点的RIR测量是具有挑战性的,因为它需要一个庞大的麦克风阵列或通过麦克风更换重复实验。已经开发了几种RIR的RIR插值和推断方法,用于有效地从多个测量点获得RIR。与插值相比,外推方法提供更有效的RIR测量。然而,以前的研究重点是在低于1kHz的频率下外推,并且较高频率的外推是困难的。在这项研究中,我们用少量测量点提出了一种用于局域出直接声音和早期反射的RIR的推断方法。所提出的方法表示使用位于扬声器和图像源周围的稀疏等效源的叠加叠加麦克风周围的RIR。我们在一个AneChice室进行了测量实验,以使用声音反射板估计麦克风周围的RIR。从2.5尺寸条件的实验结果,所提出的方法在0.5-8.5 kHz的麦克风阵列附近实现了大约10dB的信噪比(SNR)。对于整个评估区域的外推精度(0.6×0.54米(2)),与使用平面波分解的结果相比,该方法将SNR改进约5-6dB。 (c)2021 elestvier有限公司保留所有权利。

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