基于复杂形状刚体传感器阵列的宽带DOA估计

Dumidu S. Talagala, Wen Zhang, T. Abhayapala
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引用次数: 10

摘要

在许多实际的宽带到达方向估计应用中,传感器阵列安装在复杂形状的刚体上是一种常见的特征。这些刚体引起的散射和反射导致了信道传递函数频域的复杂性和多样性,这给现有的宽带DOA估计器带来了一些挑战。提出了一种基于信号子空间分解的高分辨率宽带DOA估计方法。我们描述了如何将宽带信号分解成窄子带分量,并将其组合以保留频域分集。比较了在假设刚体上使用均匀圆形阵列和传感器阵列的现有方法的DOA估计性能。与均匀圆形阵列相比,假设刚体上的传感器阵列的近间隔源分辨率提高了6db。结果表明,由复杂形状刚体引入的频域分集可以为近距离宽带声源提供更高的分辨率和更清晰的分离。
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Broadband DOA Estimation Using Sensor Arrays on Complex-Shaped Rigid Bodies
Sensor arrays mounted on complex-shaped rigid bodies are a common feature in many practical broadband direction of arrival (DOA) estimation applications. The scattering and reflections caused by these rigid bodies introduce complexity and diversity in the frequency domain of the channel transfer function, which presents several challenges to existing broadband DOA estimators. This paper presents a novel high resolution broadband DOA estimation technique based on signal subspace decomposition. We describe how broadband signals can be decomposed into narrow subband components, and combined such that the frequency domain diversity is retained. The DOA estimation performance is compared with existing techniques using a uniform circular array and a sensor array on a hypothetical rigid body. An improvement in closely spaced source resolution of up to 6 dB is observed for the sensor array on the hypothetical rigid body, in comparison to the uniform circular array. The results suggest that frequency domain diversity, introduced by complex-shaped rigid bodies, can provide higher resolution and clearer separation of closely spaced broadband sound sources.
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来源期刊
IEEE Transactions on Audio Speech and Language Processing
IEEE Transactions on Audio Speech and Language Processing 工程技术-工程:电子与电气
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审稿时长
24.0 months
期刊介绍: The IEEE Transactions on Audio, Speech and Language Processing covers the sciences, technologies and applications relating to the analysis, coding, enhancement, recognition and synthesis of audio, music, speech and language. In particular, audio processing also covers auditory modeling, acoustic modeling and source separation. Speech processing also covers speech production and perception, adaptation, lexical modeling and speaker recognition. Language processing also covers spoken language understanding, translation, summarization, mining, general language modeling, as well as spoken dialog systems.
期刊最新文献
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