2000IEEE Transactions on Vehicular TechnologyRequires access

Multipath delay measurements and modeling for interfloor wireless communications

S.Y. Tan, M. Tan, Hai Siong Tan

Open publisher page 43 citations

Abstract

This paper presents a comprehensive three-dimensional (3-D) ray-tracing model for interfloor wireless communication systems, and measurements of power delay profiles in a typical two-floor environment. The model takes into account all possible reflections/transmissions between/through walls, floors and ceilings including possible scattering from nearby buildings, as well as diffractions from corners and edges of building structures, and also subsequent reflections/transmissions from such diffracted signals. Propagation paths involving successive diffractions at the edges of window frames at different floors of the building and their subsequent reflections/transmissions from such diffracted signals are also included. The model is based on a uniform theory of diffraction (UTD) formulation, multiple image and 3-D ray launching concepts to include all the major propagation paths. Comparisons between results from theoretical models and measurements have shown good agreement for power delay profiles, root-mean-square (rms) delay spreads and signal path loss.

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What this paper is about

This paper presents a comprehensive three-dimensional (3-D) ray-tracing model for interfloor wireless communication systems, and measurements of power delay profiles in a typical two-floor environment. The model takes into account all possible reflections/transmissions between/through walls, floors and ceilings including possible scattering from nearby buildings, as well as diffractions from corners and edges of building structures, and also subsequent reflections/transmissions from such diffracted signals. Propagation paths involving successive diffractions at the edges of window frames at different floors of the building and their subsequent reflections/transmissions from such diffracted signals are also included. The model is based on a uniform theory of diffraction (UTD) formulation, multiple image and 3-D ray launching concepts to include all the major propagation paths. Comparisons between results from theoretical models and measurements have shown good agreement for power delay profiles, root-mean-square (rms) delay spreads and signal path loss.

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Available abstract

This paper presents a comprehensive three-dimensional (3-D) ray-tracing model for interfloor wireless communication systems, and measurements of power delay profiles in a typical two-floor environment. The model takes into account all possible reflections/transmissions between/through walls, floors and ceilings including possible scattering from nearby buildings, as well as diffractions from corners and edges of building structures, and also subsequent reflections/transmissions from such diffracted signals. Propagation paths involving successive diffractions at the edges of window frames at different floors of the building and their subsequent reflections/transmissions from such diffracted signals are also included. The model is based on a uniform theory of diffraction (UTD) formulation, multiple image and 3-D ray launching concepts to include all the major propagation paths. Comparisons between results from theoretical models and measurements have shown good agreement for power delay profiles, root-mean-square (rms) delay spreads and signal path loss.

Key concepts: Delay spread, Power delay profile, Multipath propagation, Path loss, Diffraction, Ray tracing (physics), Wireless, Radio propagation model

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