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Many models for indoor propagation predictions have already been proposed [1 3].
It includes channel models for indoor residential, indoor office, industrial, outdoor, and open outdoor environments, usually with a distinction between LOS and non-LOS (NLOS) properties.
Unfortunately, despite it provides standard compliant definition of the LTE network architecture as well as several propagation loss models for indoor scenarios, at the current status it cannot be sufficient in helping researchers during the study of femtocell related issues.
In Section 3., the developed module is described, with particular emphasis on the newly implemented propagation loss models for indoor scenarios, the introduction of new network topology objects, and the enhancements of some modules of the LTE-sim framework.
Table 2 Parameters of the CI and the CIF models for indoor office environments [18] n los σ los n nlos b f 0 σ nlos c Value 1.73 3.02 2.19 0.06 24.2 GHz 8.28 3×108 m/s.
Several open-source and commercial tools are today available for simulating some parts of the LTE system[9 14], but none of them provides media access control (MAC) and PHY models for femtocell architectures, handover strategies properly conceived for HetNet, and specific propagation loss models for indoor environments.
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Our previous study proposed a Fast Fluid Dynamics (FFD) model for indoor flow simulation.
Sander said the model for indoor track and field in much of the world is a short season in arenas with approximately 5,000 seats.
The paper describes the application of a combined neuro-fuzzy model for indoor temperature dynamic and automatic regulation.
A model for indoor corrosion of steel depending on time of exposure and deposition of dust, sulphur compounds and chlorides is proposed.
A dynamic model for indoor PN concentration, which performed adequately in this study also revealed that using mixing/outdoor air filters can significantly reduce indoor particle concentration in buildings where indoor air was strongly influenced by outdoor particle levels.
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