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Target-Oriented Acoustic Radiation Generation Technique for Sound Field Control

机译:面向目标的声场控制声辐射产生技术

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摘要

A multiple-source system for rendering the sound pressure distribution in a target region can be modeled as a multi-input-multi-output (MIMO) system with the inputs being the source strengths and the outputs being the pressures on multiple measuring points/sensors. In this paper, we propose a target-oriented acoustic radiation generation technique (TARGET) for sound field control. For the MIMO system of a given geometry, a series of basic radiation modes, namely, target-oriented radiation modes (TORMs) can be derived using eigenvector analysis. Different TORMs have different contributions to the system control gain, which is defined as the ratio of the acoustic energy generated in the target zone to the transmitter output power. The TARGET can be effectively applied to the sound reproduction and suppression, which correspond the generations of bright and dark zone respectively. In acoustically bright zone generation and sound beamforming, the highest-gain TORM can be employed to determine the optimal source strengths. In active noise control, the strengths of the secondary sources can be derived using low-gain TORMs. Simulation results show that the proposed method has better or comparable performance than the traditional techniques.
机译:用于呈现目标区域声压分布的多源系统可以建模为多输入多输出 (MIMO) 系统,其中输入是声源强度,输出是多个测量点/传感器上的压力。本文提出了一种用于声场控制的目标声辐射生成技术(TARGET)。对于给定几何结构的MIMO系统,可以使用特征向量分析推导出一系列基本辐射模式,即目标导向辐射模式(TORM)。不同的TORM对系统控制增益的贡献不同,控制系统增益定义为目标区域产生的声能与发射机输出功率的比值。TARGET可以有效地应用于声音的再现和抑制,分别对应明区和暗区的世代。在声亮区生成和声音波束成形中,最高增益的 TORM 可用于确定最佳声源强度。在有源噪声控制中,次级源的强度可以通过低增益TORM来得出。仿真结果表明,所提方法的性能优于传统技术,甚至具有相当的性能。

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