Coherence-Weighted Steered Response Power for Acoustic Source Localization

IF 1.7 4区 物理与天体物理 Acoustics Australia Pub Date : 2022-06-10 DOI:10.1007/s40857-022-00268-3
Pengfei Nie, Bin Liu, Ping Chen, Yan Han
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引用次数: 2

Abstract

The steered response power (SRP) method has been widely used in acoustic source localization because of its high accuracy and strong anti-noise ability. However, it has many local extrema, which affects the reliability of localization and results in high computational cost. In this paper, the spatial response of the SRP is defined to explain the SRP. Based on this, the formation mechanism of local extrema is analyzed, that is, the local extrema are related to the coherence of the generalized cross-correlation involved in the accumulation. The coherence can be evaluated by a coherence factor constructed from a statistical point of view. The SRP with coherence constraint is proposed, which is a simple and very effective method to suppress local extrema. Compared with the traditional SRP, the localization results of the simulation and actual data show that the proposed method can effectively suppress the local extrema without the loss of the localization accuracy of the traditional SRP method.

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声源定位的相干加权导向响应功率
转向响应功率法以其精度高、抗噪声能力强等优点在声源定位中得到了广泛的应用。然而,该方法存在大量的局部极值,影响了定位的可靠性,计算成本高。本文定义了SRP的空间响应来解释SRP。在此基础上,分析了局部极值的形成机制,即局部极值与积累过程中所涉及的广义互相关的相干性有关。相干性可以通过从统计学角度构建的相干系数来评价。提出了一种具有相干约束的SRP方法,它是一种简单而有效的抑制局部极值的方法。仿真和实际数据的定位结果表明,该方法能够有效地抑制局部极值,而不影响传统SRP方法的定位精度。
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来源期刊
Acoustics Australia
Acoustics Australia ACOUSTICS-
自引率
5.90%
发文量
24
期刊介绍: Acoustics Australia, the journal of the Australian Acoustical Society, has been publishing high quality research and technical papers in all areas of acoustics since commencement in 1972. The target audience for the journal includes both researchers and practitioners. It aims to publish papers and technical notes that are relevant to current acoustics and of interest to members of the Society. These include but are not limited to: Architectural and Building Acoustics, Environmental Noise, Underwater Acoustics, Engineering Noise and Vibration Control, Occupational Noise Management, Hearing, Musical Acoustics.
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