Title :
Room Acoustics Simulation Using 3-D Compact Explicit FDTD Schemes
Author :
Kowalczyk, Konrad ; Van Walstijn, Maarten
Author_Institution :
Sonic Arts Res. Centre (SARC), Queen´´s Univ., Belfast, UK
Abstract :
This paper presents methods for simulating room acoustics using the finite-difference time-domain (FDTD) technique, focusing on boundary and medium modeling. A family of nonstaggered 3-D compact explicit FDTD schemes is analyzed in terms of stability, accuracy, and computational efficiency, and the most accurate and isotropic schemes based on a rectilinear grid are identified. A frequency-dependent boundary model that is consistent with locally reacting surface theory is also presented, in which the wall impedance is represented with a digital filter. For boundaries, accuracy in numerical reflection is analyzed and a stability proof is provided. The results indicate that the proposed 3-D interpolated wideband and isotropic schemes outperform directly related techniques based on Yee´s staggered grid and standard digital waveguide mesh, and that the boundary formulations generally have properties that are similar to that of the basic scheme used.
Keywords :
acoustic signal processing; architectural acoustics; finite difference time-domain analysis; 3D compact explicit FDTD schemes; Yee staggered grid; computational efficiency; frequency-dependent boundary model; rectilinear grid; room acoustics; standard digital waveguide mesh; Acoustics; Computational efficiency; Computational modeling; Digital filters; Finite difference methods; Frequency; Reflection; Stability analysis; Surface impedance; Time domain analysis; Acoustic propagation; acoustic reflection; acoustic signal processing; architectural acoustics; finite-difference time-domain (FDTD) methods; numerical analysis;
Journal_Title :
Audio, Speech, and Language Processing, IEEE Transactions on
DOI :
10.1109/TASL.2010.2045179