Room boundary estimation from acoustic room impulse responses

Luca Remaggi, P. Jackson, Philip Coleman, Wenwu Wang
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引用次数: 12

Abstract

Boundary estimation from an acoustic room impulse response (RIR), exploiting known sound propagation behavior, yields useful information for various applications: e.g., source separation, simultaneous localization and mapping, and spatial audio. The baseline method, an algorithm proposed by Antonacci et al., uses reflection times of arrival (TOAs) to hypothesize reflector ellipses. Here, we modify the algorithm for 3-D environments and for enhanced noise robustness: DYPSA and MUSIC for epoch detection and direction of arrival (DOA) respectively are combined for source localization, and numerical search is adopted for reflector estimation. Both methods, and other variants, are tested on measured RIR data; the proposed method performs best, reducing the estimation error by 30%.
从声学房间脉冲响应估计房间边界
从声室脉冲响应(RIR)的边界估计,利用已知的声音传播行为,为各种应用提供有用的信息:例如,源分离,同时定位和映射,以及空间音频。基线法是Antonacci等人提出的一种算法,它使用到达反射时间(TOAs)来假设反射面椭圆。本文针对三维环境和增强噪声鲁棒性对算法进行了改进:分别结合DYPSA和MUSIC进行历元检测和到达方向(DOA)进行源定位,并采用数值搜索进行反射面估计。这两种方法和其他变体都在测量的RIR数据上进行了测试;该方法性能最好,估计误差降低了30%。
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