The physical motivation and interpretation of the stochastic propagation channel model of Saleh and Valenzuela are discussed in detail. This motivation mainly relies on assumptions on the stochastic properties of the positions of transmitter, receiver and scatterers in the propagation environment, and on the frequency range that is covered by the model. Some of these assumptions break down when the application of the model is extended from wideband to ultra-wideband propagation channels. Another important difference between these application contexts is the spatial scale over which the stochastic properties of the channel fluctuate when the transmitter or receiver is moved. This is further illustrated by analyzing the average power delay pr...
The main contribution of this work is to extend the present multi-path fading channel (MFC) models i...
In this paper we revisit the classical channel modelby Saleh & Valenzuela via the theory of spat...
In this letter, we propose a new stochastic model for the time-variance of channels for fixed wirele...
The physical motivation and interpretation of the stochastic propagation channel model of Saleh and ...
Wireless communications or navigation are heavily influenced by electromagnetic wave propagation. Th...
This paper presents an overview of UWB propagation channels. It first demonstrates how the frequency...
In this paper we analyze measurements conducted in an indoor environment of our university building ...
In this contribution the radio channel model proposedin [1] is extended to include multiple transmit...
In this paper we analyze measurements conducted in an indoor environment of our university building ...
This paper presents a physical-statistical radio channel power delay profiles model for room-to-room...
Abstract—A simple statistical model of azimuthal and temporal dispersion in mobile radio channels is...
In this paper, measurements of the power delay profile and small-scale fading statistics in industri...
In this paper we establish a geometry-based stochastic ultra-wideband channel model for outdoor info...
This paper presents a physical-statistical radio channel power delay profiles model for room-to-room...
In this paper, we study the effects of the variations of the propagation delay over large-scale ante...
The main contribution of this work is to extend the present multi-path fading channel (MFC) models i...
In this paper we revisit the classical channel modelby Saleh & Valenzuela via the theory of spat...
In this letter, we propose a new stochastic model for the time-variance of channels for fixed wirele...
The physical motivation and interpretation of the stochastic propagation channel model of Saleh and ...
Wireless communications or navigation are heavily influenced by electromagnetic wave propagation. Th...
This paper presents an overview of UWB propagation channels. It first demonstrates how the frequency...
In this paper we analyze measurements conducted in an indoor environment of our university building ...
In this contribution the radio channel model proposedin [1] is extended to include multiple transmit...
In this paper we analyze measurements conducted in an indoor environment of our university building ...
This paper presents a physical-statistical radio channel power delay profiles model for room-to-room...
Abstract—A simple statistical model of azimuthal and temporal dispersion in mobile radio channels is...
In this paper, measurements of the power delay profile and small-scale fading statistics in industri...
In this paper we establish a geometry-based stochastic ultra-wideband channel model for outdoor info...
This paper presents a physical-statistical radio channel power delay profiles model for room-to-room...
In this paper, we study the effects of the variations of the propagation delay over large-scale ante...
The main contribution of this work is to extend the present multi-path fading channel (MFC) models i...
In this paper we revisit the classical channel modelby Saleh & Valenzuela via the theory of spat...
In this letter, we propose a new stochastic model for the time-variance of channels for fixed wirele...