Acoustic Modeling for Indoor Spaces Using Ray-Tracing Method

被引:1
|
作者
Lixandru, Andreea Bianca [1 ]
Gorobievschi, Sebastian [2 ]
Baicoianu, Alexandra [1 ]
机构
[1] Transilvania Univ Brasov, Fac Math & Informat, Brasov, Romania
[2] Siemens Ind Software, Brasov, Romania
来源
KNOWLEDGE SCIENCE, ENGINEERING AND MANAGEMENT, KSEM 2021, PT II | 2021年 / 12816卷
关键词
Acoustic model; Sound indoor spaces; Ray-Tracing; Sound convolution; Microphone; Fast Fourier Transform; Inverse Fast Fourier Transform;
D O I
10.1007/978-3-030-82147-0_48
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
This paper focuses on the matter of sound propagation in various indoor spaces by means of the Ray-Tracing method. Nowadays, this is an issue that is often encountered both in the academic environment and in real-life situations, being present in fields such as acoustic engineering. This research study provides an acoustic model meant to support engineers in the proper construction, by careful consideration of the acoustics in various indoor spaces such as amphitheaters, concert halls, churches, mosques, factories and many more. Moreover, this recommended model for efficiency comes as a long awaited development for people to be able to listen to sounds produced at a higher quality level. A number of different experiments have been carried out to determine suitable parameters such as the most suitable construction material for the walls of the room, the maximum sound frequency, the dimensions of the room and other factors equally important.
引用
收藏
页码:590 / 599
页数:10
相关论文
共 50 条
  • [1] Indoor microcell area prediction system using a ray-tracing method
    Imai, T
    Inukai, Y
    Fujii, T
    ELECTRONICS AND COMMUNICATIONS IN JAPAN PART II-ELECTRONICS, 2003, 86 (10): : 60 - 72
  • [2] Efficient ray-tracing method for indoor propagation prediction
    Alves, FA
    de Albuquerque, MRML
    da Silva, SG
    d'Assunçao, AG
    2005 SBMO/IEEE MTT-S INTERNATIONAL MICROWAVE AND OPTOELECTRONICS CONFERENCE (IMOC), 2005, : 433 - 436
  • [3] Improving the accuracy of ray-tracing techniques for indoor propagation modeling
    Remley, KA
    Anderson, HR
    Weisshar, A
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2000, 49 (06) : 2350 - 2358
  • [4] Radiation modeling of a photo-reactor using a backward ray-tracing method: an insight into indoor photocatalytic oxidation
    Pelzers, R. S.
    Yu, Q. L.
    Mangkuto, R. A.
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2014, 21 (19) : 11142 - 11154
  • [5] Radiation modeling of a photo-reactor using a backward ray-tracing method: an insight into indoor photocatalytic oxidation
    R. S. Pelzers
    Q. L. Yu
    R. A. Mangkuto
    Environmental Science and Pollution Research, 2014, 21 : 11142 - 11154
  • [6] Fast algorithm for indoor microcell area prediction system using ray-tracing method
    Imai, T
    Fujii, T
    ELECTRONICS AND COMMUNICATIONS IN JAPAN PART I-COMMUNICATIONS, 2002, 85 (06): : 41 - 52
  • [7] Modeling of orthogonality factor using ray-tracing predictions
    Passerini, C
    Falciasecca, G
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2004, 3 (06) : 2051 - 2059
  • [8] Multilayer Wall Correction Factors for Indoor Ray-Tracing Radio Propagation Modeling
    Teh, C. H.
    Chung, B. K.
    Lim, E. H.
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2020, 68 (01) : 604 - 608
  • [9] Analysis of Realistic Ultrawideband Indoor Communication Channels by Using an Efficient Ray-Tracing Based Method
    Tiberi, Gianluigi
    Bertini, Stefano
    Malik, Wasim Q.
    Monorchio, Agostino
    Edwards, David J.
    Manara, Giuliano
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2009, 57 (03) : 777 - 785
  • [10] DISCRETE RAY-TRACING OF HUGE VOXEL SPACES
    STOLTE, N
    CAUBET, R
    COMPUTER GRAPHICS FORUM, 1995, 14 (03) : C383 - +