Performance of the DBS Satellite Receiver under the Impact of Rainfall and Terrestrial Interference

Author:

Shamsan Zaid Ahmed12ORCID,Al-Saman Ahmed3ORCID

Affiliation:

1. College of Engineering, Electrical Eng. Department, Imam Mohammad Ibn Saud Islamic University, Riyadh, Saudi Arabia

2. Faculty of Engineering and Information Technology, Taiz University, Taiz, Yemen

3. Department of Manufacturing and Civil Engineering, Norwegian University of Science and Technology, 2815 Gjøvik, Norway

Abstract

This article presents a new study on the feasibility of operating a direct broadcasting satellite (DBS) system under the effect of both precipitation and interference from a fixed service (FS) at K-band in a semiarid region. The carrier-to-noise plus interference ratio (CNIR) as a protection criterion has been adopted to make sure that the receiver of the DBS system operates with an acceptable performance under rainfall and interference from FS. Various measured data for rainfall in different areas have been utilized to investigate different rain rate exceedance percentages. Results have been shown that areas with high rain rates have a small CNIR at the DBS receiver and require large protection distances compared to low-rain rate areas and vice versa. Some mitigation techniques have been suggested to alleviate the effect of rain and terrestrial interference on the DBS receiver performance.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

Reference44 articles.

1. Interference and fade mitigation techniques for Ka and Q/V band satellite communication systems;L. Castanet

2. Rainfall and Diffraction Modeling for Millimeter-Wave Wireless Fixed Systems

3. 38-GHz point-to-point wireless radio link prediction based on propagation and terrain path profile in Riyadh;Z. A. Shamsan;University Politehnica Of Bucharest Scientific Bulletin, Series C-Electrical Engineering And Computer Science,2018

4. Potential interference and rain attenuation at 21.4–22 GHz downlink broadcasting satellite signals;W. A. Hasan;International Journal of Electronics,2011

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