Review Papers
Acoustic Metamaterials | |
Bartłomiej SZTYLER, Paweł STRUMIŁŁO | 3–14 |
Research Papers
Optimization System to Minimize Exposure to Occupational Noise | |
Déborah Aparecida Souza dos REIS, João Gabriel Oliveira de MIRANDA, Jorge von Atzingen dos REIS, Marcus Antonio Viana DUARTE | 15–23 |
Perfect Absorption for Modulus-Near-Zero Acoustic Metamaterial in Air or Underwater at Low-Frequency | |
Fatma Nafaa GAAFER | 25–31 |
Estimation of Metal Foam Microstructure Parameters for Maximum Sound Absorption Coefficient in Specified Frequency Band Using Particle Swarm Optimisation | |
Rohollah FALLAH MADVARI, Mohsen NIKNAM SHARAK, Mahsa JAHANDIDEH TEHRANI, Milad ABBASI | 33–42 |
A Rattle Signal Denoising and Enhancing Method Based on Wavelet Packet Decomposition and Mathematical Morphology Filter for Vehicle | |
Linyuan LIANG, Shuming CHEN, Peiran LI | 43–55 |
Influence of Loudspeaker Configurations and Orientations on Sound Localization | |
Shu-Nung YAO | 57–70 |
Pursuing Listeners’ Perceptual Response in Audio-Visual Interactions – Headphones vs Loudspeakers: A Case Study | |
Bartłomiej MRÓZ, Bożena KOSTEK | 71–79 |
Calculation for Acoustic Radiation Force from Rectangular Weakly Focusing Transducer Using the Ray Acoustic Model | |
Lili YU, Shuchang QIAO, Wende SHOU, Junhua LI | 81–88 |
Electrode Mass Loading Effects on Different Piezoelectric Substrates for Saw Delay Lines: A Comparative FEM Analysis | |
Sheeja P. GEORGE, Johney ISSAC, Jacob PHILIP | 89–95 |
Acoustic Response of an Isotropic Beam Under Axially Variable Loads Using Ritz and Rayleigh Integral Methods | |
Somi Naidu BALIREDDY, Jeyaraj PITCHAIMANI, Lenin Babu MAILAN CHINNAPANDI, V.S.N. Reddi CHINTAPALLI | 97–112 |
Design Sensitivity Studies on a Hydroacoustic Projector Using an Experimentally Validated Easy-to-Build Model | |
Vattaparambil Sreedharan SREEJITH, Nachiketa TIWARI | 113–124 |
Technical Notes
Proposed Methodology for the Annoyance Penalty of Amplitude Modulated Wind Turbine Noise | |
Rufin MAKAREWICZ | 125–128 |