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Room Geometry Estimation from Acoustic Echoes using Graph-Based Echo Labeling

机译:使用基于图的回声标记从声学回声进行房间几何估计

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摘要

A computer being able to estimate the geometry of a room could benefit applications such as auralization, robot navigation, virtual reality and teleconferencing. When estimating the geometry of a room using multiple microphones, the main challenge is to identify which reflections, or echoes, originate from the same wall and can, therefore, be modeled by a virtual source outside the room using the mirror image source model. In this paper we present a new and efficient method to disambiguate the echoes using a graph theoretical approach where echo combinations are modeled as nodes in a graph and the problem is stated as a maximum independent set problem. Once the echoes are correctly labelled, we know the locations of the virtual sources from which we can infer the room geometry. Experiments for shoe-box shaped rooms show that we can reliably estimate the room geometry within seconds on contemporary hardware and achieve centimeter precision on finding the vertices of the room.
机译:能够估计房间几何形状的计算机可以使诸如听觉化,机器人导航,虚拟现实和电话会议等应用受益。当使用多个麦克风估算房间的几何形状时,主要挑战是确定哪些反射或回声源自同一壁,因此可以使用镜像源模型通过房间外的虚拟源建模。在本文中,我们提出了一种使用图论方法消除回声歧义的新方法,该方法将回声组合建模为图中的节点,并将该问题表示为最大独立集问题。一旦正确标记了回声,我们就可以知道虚拟源的位置,从中可以推断出房间的几何形状。鞋盒形房间的实验表明,在现代硬件上,我们可以在几秒钟内可靠地估算房间的几何形状,并且在找到房间的顶点时可以达到厘米的精度。

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