Radioelectronics and radioelectronic equipment manufacturing

Development of Mathematical Models for Assessing the Effective Speed of Information Transmission in Space Rooms for a Wireless Channel of 802.11 Standard

Authors

D. V. Mykhalevskyi
Vinnytsia National Technical University ROR

Keywords

wireless channel 802.11 standard effective data rate signal strength spatial model

Abstract

The main structural unit of 802.11 standard networks is the wireless channel. Its characteristics are affected by a large number of destabilizing factors. The most reliable way to assess such factors is through experimental studies and the creation of empirical models based on them. The use of such models makes it possible to predict the efficiency of channels at the design stages and when connecting to networks for fixed and mobile subscribers.

The paper proposes new empirical models for assessing the effective data speed based on the measurement of the signal input parameter of the receiver input for any 802.11 standard wireless channels. The peculiarity of the models is the use of spatial distribution of the signal for different types of rooms with geometric dimensions up to 40×20 m. This takes into account the most common cases of construction of wireless networks: angular and central location of the access point. The models obtained take into account signal fluctuations and the maximum possible number of destabilizing factors.

The study of the obtained models showed the correspondence of the highs and lows of the fluctuations of the spatial distribution of the signal power to the fluctuations of the effective data speed. It is established that for the 5 GHz frequency band there is a greater decrease in the characteristics of the effective speed of information transmission from a distance, as well as its greater value relative to the 2,4 GHz band. This confirms the sufficiently high load of the 2,4 GHz band by interference and noise interference. The presence of destabilizing factors in the channel and the dependence of the signal level on the location of the subscriber device in space relative to the access point, is taken into account by measuring the signal power at the input of the receiver.

The reliability of the assessment of the spatial models depends on the linear regression coefficients and the signal attenuation coefficients, which are determined experimentally. This can be attributed to the disadvantages of the models, assumes that the assessment error occurs when the geometry and the number of objects of the room change. It is possible to minimize this disadvantage by creating a database of studies of various destabilizing factors with the introduction of correction coefficients.

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How to Cite

[1]
“Development of Mathematical Models for Assessing the Effective Speed of Information Transmission in Space Rooms for a Wireless Channel of 802.11 Standard”, Вісник ВПІ, no. 1, pp. 110–115, Feb. 2020, doi: 10.31649/1997-9266-2020-148-1-110-115.

Author Biography

D. V. Mykhalevskyi, Vinnytsia National Technical University

Cand. Sc. (Eng.), Associate Professor of the Chair of Telecommunication Systems and Television

References

D. Liu, H. Wang, X. Peng, S. McCann, P. Fang, X. Duan, H. Deng, and L. Lu, “WLAN new technologies in IEEE 802.11,” in XXXIth URSI General Assembly and Scientific Symposium (URSI GASS), 2014. https://doi.org/10.1109/URSIGASS.2014.6929347.
A. Al-Fuqaha, M. Guizani, M. Mohammadi, M. Aledhari, and M. Ayyash, “Internet of Things: A survey on enabling technologies protocols and applications,” IEEE Commun. Surveys Tuts., vol. 17, no. 4, pp. 2347-2376, 4th Quart. 2015. https://doi.org/10.1109/IWCMC.2015.7289234 .
K. Rathod, R. Vatti, and M. Nandre. “Optimization of Campus Wide WLAN,” International Journal of Electrical Electronics & Computer Science Engineering, vol. 4, i. 5, pp. 1-6, 2017.
A. Sârbu, M. Sârbu, and C. Șumălan. “Non Wi-Fi Devices Interference Testing,” in a 2.4 GHz Wi-Fi Home. Land Forces Academy Review, vol. 23, i. 2 (90), pp 143-150, 2018. https://doi.org/10.2478/raft-2018-0017 .
D. V. Mykhalevskiy. “Investigation of wireless channels of 802.11 standard in the 5GHz frequency band,” Latvian journal of physics and technical sciences, № 1, pp 41-51, 2019. https://doi.org/10.2478/lpts-2019-0004 .
D. V. Mykhalevskiy, and O. S. Horodetska, “Investigation of wireless channels according to the standard 802.11 in the frequency range of 5 GHz for two subscribers,” Journal of Mechanical Engineering Research & Developments (JMERD), no. 42 (2), pp. 50-57, 2019. https://doi.org/10.26480/jmerd.02.2019.50.57 .
D. Mykhalevskiy, “Development of a spartial method for the estimation of signal strength at the imput of the 802.11 standard receiver,” Easten-European Journal of Enterprise Technologies, № 4/9 (88), pp. 29-36, 2017. https://doi.org/10.15587/1729-4061.2017.106925 .
D. Mykhalevskiy, N. Vasylkivskiy, and O. Horodetska. “Development of a mathematical model for estimating signal strength at the input of the 802.11 standard receiver,” Easten-European Journal of Enterprise Technologies, № 4/9 (88), pp. 38-43, 2017. https://doi.org/10.15587/1729-4061.2017.114191 .
D. Mykhalevskiy, “Construction of mathematical models for the estimation of signal strength at the imput to the 802.11 standard receiver in a 5 GHz band.,” Easten-European Journal of Enterprise Technologies, № 6/9 (96), pp. 16-21, 2018. https://doi.org/10.15587/1729-4061.2018.150983 .

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