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A reverberation signal is created when a sound or signal is reflected, causing a large number of reflections to build up and then decay as the sound is absorbed by the surfaces of objects in the space, which could include walls, furniture, people, and air.
The same happens in cases where the simulation of street canyons requires a large number of reflections.
Therefore, the Monte Carlo ray-tracing algorithm requires a smaller amount of computational effort for a large number of reflections (k) and a large number of triangles or faces (N F ).
However, we make use of a Monte Carlo ray-tracing algorithm [12, 13], which presents a lower computational cost than previous methods, especially when a high temporal resolution and a large number of reflections are required.
In this work, a Monte Carlo ray-tracing algorithm was used, which exhibits a high computational efficiency with respect to the previous algorithms, especially when a high temporal resolution and a large number of reflections are considered.
In contrast to other methods [8, 9], the Monte Carlo ray-tracing algorithm allows for the evaluation of the impulse response for environments with complex geometries with no meaningful increase in computational cost, especially when a high temporal resolution, and a large number of reflections are considered.
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The neutron measurements were carried out using a special technique to detect a larger number of reflections in single-crystal samples than observed in standard diffraction geometry.
Structural health monitoring of complex structures with guided waves is complicated because of the large number of overlapping reflections obtained in time-traces.
In both multilayer systems, XRR spectra exhibited a large number of superlattice reflections, while the high-angle spectra did not reveal such features, indicating that although a fairly constant bilayer thickness over the multilayer stack was achieved, the structural coherency length was rather small.
However, the received signal is corrupted by multipath dispersion due to the large number of collected reflections at the receiver.
This approximation is reasonable in the presence of a large number of diffusive reflections, but tends to become a bit restrictive when considering first-order diffusion only (i.e., ignoring diffusion of diffused paths).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com