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May 28, 2020Applied Sciences5 citationsOpen Access

Auralization of High-Order Directional Sources from First-Order RIR Measurements

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MZMarkus ZaunschirmBEST - Bioenergy and Sustainable Technologies (Austria)FZFranck ZagalaCentre National de la Recherche ScientifiqueFZFranz ZotterUniversity of Music and Performing Arts Graz

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Abstract

Can auralization of a highly directional source in a room succeed if it employs a room impulse response (RIR) measurement or simulation relying on a first-order directional source, only? This contribution presents model and evaluation of a source-and-receiver-directional Ambisonics RIR capture and processing approach (SRD ARIR) based on a small set of responses from a first-order source to a first-order receiver. To enhance the directional resolution, we extend the Ambisonic spatial decomposition method (ASDM) to upscale the first-order resolution of both source and receiver to higher orders. To evaluate the method, a listening experiment was conducted based on first-order SRD-ARIR measurements, into which the higher-order directivity of icosahedral loudspeaker’s (IKO) was inserted as directional source of well-studied perceptual effects. The results show how the proposed method performs and compares to alternative rendering methods based on measurements taken in the same acoustic environment, e.g., multiple-orientation binaural room impulse responses (MOBRIRs) from the physical IKO to the KU-100 dummy head, or higher-order SRD ARIRs from IKO to em32 Eigenmike. For optimal externalization, our experiments exploit the benefits of virtual reality, using a highly realistic visualization on head-mounted-display, and a user interface to report localization by placing interactive visual objects in the virtual space.

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Cite This Study

Zaunschirm et al. (2020) studied this question.

synapsesocial.com/papers/69d84c975c3030ff03d19b97https://doi.org/10.3390/app10113747
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