DocumentCode :
3602896
Title :
Two-Dimensional Deterministic Propagation Models Approach and Comparison With Calibrated Empirical Models
Author :
Ayadi, M. ; Torjemen, N. ; Tabbane, S.
Author_Institution :
Higher Sch. of Commun. of Tunis (Sup´Com), Ariana, Tunisia
Volume :
14
Issue :
10
fYear :
2015
Firstpage :
5714
Lastpage :
5722
Abstract :
Since the development of wireless cellular networks in the early 1970s, their unpredictable success has led to particular interest in developing accurate propagation models, particularly for indoor environments where small cells are deployed. Many propagation models have been proposed in literature, and they are classified into three major categories, i.e., empirical, semiempirical, and deterministic models. Deterministic models such as ray tracing and radiosity are very attractive due to their accuracy, but their 3-D formulation makes them tedious to use, and their migration to a 2-D representation becomes a necessity. In this paper, we propose to develop and implement a 2-D approach for ray tracing and radiosity that allows saving memory and processing time while maintaining prediction accuracy. The performance of the two methods is evaluated using measurements taken in the CITI laboratory building. It is shown that 2-D radiosity meets the ITU accuracy statistics recommendations for a 2.4-GHz indoor test environment with a mean error near to zero and a standard deviation of 5.98 dB. The comparison to 2-D ray tracing and an empirical calibrated model such as log-normal shadowing and the Cheung model shows that 2-D radiosity is the most accurate and saves more than 70% of the processing time compared with 2-D ray tracing while using almost the same memory load.
Keywords :
cellular radio; indoor environment; indoor radio; radio networks; ray tracing; 2-D ray tracing; CITI laboratory building; Cheung model; deterministic models; frequency 2.4 GHz; indoor environments; log-normal shadowing; radiosity; semiempirical models; two-dimensional deterministic propagation models; wireless cellular networks; Accuracy; Computational modeling; Mathematical model; Measurement uncertainty; Ray tracing; Shadow mapping; Standards; 2D-Radiosity; 2D-Ray tracing; Indoor propagation; Log Normal Shadowing; log normal shadowing;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2015.2442572
Filename :
7119601
Link To Document :
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