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A Geometric Model for Prediction of Spatial Aliasing in 2.5D Sound Field Synthesis

机译:2.5D声场合成中空间混叠预测的几何模型

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摘要

The avoidance of spatial aliasing is a major challenge in the practical implementation of sound field synthesis. Such methods aim at a physically accurate reconstruction of a desired sound field inside a target region using a finite ensemble of loudspeakers. In the past, different theoretical treatises of the inherent spatial sampling process led to anti-aliasing criteria for simple loudspeaker array arrangements, e.g., lines and circles, and fundamental sound fields, e.g., plane and spherical waves. Many criteria were independent of the listener's position inside the target region. Within this paper, a geometrical framework based on ray-approximation of the underlying synthesis problem is proposed. Unlike former approaches, this model predicts spatial aliasing artefacts for arbitrary convex loudspeaker arrays and as a function of the listening position and the desired sound field. Anti-aliasing criteria for distinct listening positions and extended listening areas are formulated based on the established predictions. For validation, the model is applied to different analytical sound field synthesis approaches: The predicted spatial structure of the spatial aliasing agrees with numerical simulation of the synthesised sound fields. Moreover, it is shown within this framework, that the active prioritization of a control region using so-called local sound field synthesis approaches does indeed reduce spatial aliasing artefacts. For the scenario under investigation, a method for local wave field synthesis achieves an artefact-free synthesis up to a frequency which is between 2.9 and 17.3 times as high as for conventional wave field synthesis.
机译:避免空间混叠是声场合成的实际实施中的主要挑战。这样的方法旨在使用扬声器的有限集合在目标区域内物理上准确地重建期望的声场。过去,固有空间采样过程的不同理论论文导致针对简单扬声器阵列布置(例如,线和圆)以及基本声场(例如,平面波和球面波)的抗混叠标准。许多标准与目标区域内听众的位置无关。在本文中,提出了基于射线近似的基本合成问题的几何框架。与以前的方法不同,此模型可预测任意凸扬声器阵列的空间混叠伪像,并根据收听位置和所需声场进行预测。基于已建立的预测,制定了针对不同聆听位置和扩展聆听区域的抗混叠标准。为了验证,将模型应用于不同的分析声场合成方法:空间混叠的预测空间结构与合成声场的数值模拟一致。此外,在该框架内示出,使用所谓的局部声场合成方法对控制区域的主动优先级确实确实减少了空间混叠伪像。对于正在研究的场景,一种用于局部波场合成的方法可实现无伪像的合成,其频率最高可达传统波场合成的2.9至17.3倍。

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