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ULTRA-WIDE-BAND PROPOGATION CHANNELS

Platform : DSP

IEEE Projects Years : 2005

This paper appears in: Global Telecommunications Conference, 2005. GLOBECOM '05. IEEE Issue Date: 2-2 Dec. 2005 AIM: OPTIMIZE THE CHANNEL PARAMETERS OF ULTRA-WIDE-BAND PROPOGATION CHANNELS ABSTRACT This paper describes a comprehensive statistical model for UWB propagation channels that is valid for a frequency range from 3-10 GHz. It is based on measurements and simulations in the following environments: residential indoor, office indoor, built-up outdoor, industrial indoor, farm environments, and body area networks. The model is independent of the used antennas. It includes the frequency dependence of the pathloss, as well as several generalizations of the Saleh-Valenzuela model, like mixed Poisson times of arrival and delay dependent cluster decay constants. The model can thus be used for realistic performance assessment of UWB systems. It was accepted by the IEEE 802.15.4a working group (WG) as standard model for evaluation of UWB system proposals LEARNING OBJECTIVE: To calculate and compensate the delay and noise distortion over ULTRA-WIDE-BAND PROPOGATION CHANNELS INPUT: Original Signal OUTPUT : 1. Original & Noisy signal 2. Recovered original signal APPLICATIONS: Speech Signal Processing SOFTWARE TOOL USED: MATLAB 2007A

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