An Architecture and Implementation of Real-Time Sound Propagation Hardware for Mobile Devices

Author:

Kim Eunjae1ORCID,Choi Sukwon1ORCID,Kim Jiyoung1ORCID,Nah Jae-Ho2ORCID,Jung Woonam3ORCID,Lee Tae-Hyeong4ORCID,Moon Yeon-Kug5ORCID,Park Woo-Chan1ORCID

Affiliation:

1. Sejong University, South Korea and Sejongpia, South Korea

2. Sangmyung Univesrity, South Korea

3. Sejongpia, South Korea

4. Sejong University, South Korea

5. Korea Electronics Technology Institute, South Korea

Funder

This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Korea government (MSIT) (No.2021R1G1A1093404).

This research was supported by Culture, Sports and Tourism R\&D Program through the Korea Creative Content Agency(KOCCA) grant funded by the Ministry of Culture, Sports and Tourism(MCST) in 20XX(Project Name: Development of a multi-purpose broadcast studio platform to support multi-user interaction and VIRTUAL BEING, Project Number: R2022020059).

This research was supported by the MSIT(Ministry of Science and ICT), Korea, under the ITRC(Information Technology Research Center) support program(IITP-2023-2022-00156354) supervised by the IITP(Institute for Information \& Communications Technology Planning \& Evaluation).

Publisher

ACM

Reference35 articles.

1. Image method for efficiently simulating small‐room acoustics

2. Andrei Frumusanu 2021. The Apple A15 SoC Performance Review: Faster & More Efficient. https://www.anandtech.com/show/16983/the-apple-a15-soc-performance-review-faster-more-efficient/3.

3. Interactive sound propagation with bidirectional path tracing;Cao Chunxiao;ACM Transactions on Graphics (TOG),2016

4. Directional sources and listeners in interactive sound propagation using reciprocal wave field coding;R Alla Chaitanya Chakravarty;ACM Transactions on Graphics (TOG),2020

5. Anish Chandak. 2011. Efficient geometric sound propagation using visibility culling. Ph. D. Dissertation. University of North Carolina at Chapel Hill.

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