2006Unpublished venueRequires access

Research on Mobile Communication Radio Propagation Characteristic Based on 3DPE

Huibin Hu, Zhongkuan Chen, Shunlian Chai, Junjie Mao

Open publisher page 7 citations

Abstract

In this paper, a macrocell radio propagation model for mobile communication is established based on three-dimensional parabolic equation (3DPE). The loss characteristics of radio propagation around buildings are calculated by using this 3DPE model when buildings distributing differently on flat ground or irregular terrain. The results are compared with the physical optics (PO) method and three-dimensional Ray tracing method. The compare shows the 3DPE model is accurate and valid. So it provides an excellent propagation prediction model for mobile communication.

About this research paper

What this paper is about

In this paper, a macrocell radio propagation model for mobile communication is established based on three-dimensional parabolic equation (3DPE). The loss characteristics of radio propagation around buildings are calculated by using this 3DPE model when buildings distributing differently on flat ground or irregular terrain. The results are compared with the physical optics (PO) method and three-dimensional Ray tracing method. The compare shows the 3DPE model is accurate and valid. So it provides an excellent propagation prediction model for mobile communication.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

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Available abstract

In this paper, a macrocell radio propagation model for mobile communication is established based on three-dimensional parabolic equation (3DPE). The loss characteristics of radio propagation around buildings are calculated by using this 3DPE model when buildings distributing differently on flat ground or irregular terrain. The results are compared with the physical optics (PO) method and three-dimensional Ray tracing method. The compare shows the 3DPE model is accurate and valid. So it provides an excellent propagation prediction model for mobile communication.

Key concepts: Macrocell, Ray tracing (physics), Radio propagation model, Radio propagation, Mobile radio, Terrain, Computer science, Mobile telephony

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