Informatics and Applications
2018, Volume 12, Issue 4, pp 2-8
MODELING MOVEMENT OF DEVICES IN A WIRELESS NETWORK BY RANDOM WALK MODELS
- K. E. Samouylov
- Yu. V. Gaidamaka
- S. Ya. Shorgin
Abstract
The authors overview mobility models which are applicable for simulation of movement of users' devices in a fifth generation (5G) wireless network. Mobility patterns that are typical for simulating the behavior of users of a wireless ad hoc network are considered. The features of the models are discussed, both for individual motion of objects and for motion of groups of objects, from the point of view of appliance to the analysis of interference in wireless networks. The purpose of the paper is to propose a number of mobility models for making an informed decision when choosing a model for evaluating the quality of service in 5G wireless networks. The authors present simulation results that illustrate the method of estimation of the key performance quality parameter, i. e., signal to interference ratio. For illustration, the developed complex of analytical and simulation models is used for simulation of movement of shopping moll customers with the help of the grid random walk mobility model.
[+] References (13)
- Andrews, J. G., S. Buzzi, W Choi, S. V. Hanly, A. Lozano, A. C. Soong., and J. C. Zhang. 2014. What will 5G be? IEEEJ. Sel.Area. Comm. 32(6):1065-1082. doi: 10.1109/ JSAC.2014.2328098.
- Orlov, Yu. N., S. L. Fedorov, A. K. Samuylov, Yu. V. Gaida-maka, and D. A. Molchanov. 2016. Simulation of devices mobility to estimate wireless channel quality metrics in 5G networks. AlPConf. Proc. 1863:090005-1-090005-3.
2017. doi: 10.1063/1.4992270.
- Gaidamaka, Yu.V., Yu. N. Orlov, D.A. Molchanov, and A. K. Samuylov. 2017. Modelirovanie otnosheniya signal/ interferentsiya v mobil'noy seti so sluchaynym bluzh- daniem vzaimodeystvuyushchikh ustroystv [Modeling the signal-interference ratio in a mobile network with moving devices]. Informatika i ee Primeneniya - Inform. Appl. 11(2):50-58. doi: 10.14357/19922264170206.
- Risken, H., andT. Frank. 1996. TheFokker-Planckequation: Methods of solution and applications. Springer ser. in synergetics. Berlin-Heidelberg: Springer-Verlag. Vol. 8. 486 p. doi: 10.1007/978-3-642-61544-3.
- Toffoli, T, and N. Margolus. 1987. Cellular automata machines. The MIT Press. 276 p.
- Grewal, M. S., and A. P. Andrews. 2001. Kalman filtering: Theory and practice using MATLAB. 2nd ed. John Wiley & Sons, Inc. 410 p.
- Semushin, I.V., A.V. Tsyganov, Yu.V. Tsyganova, A. V. Golubkov, and S. D. Vinokurov. 2017. Modelirovanie i otsenivanie traektorii dvizhushchegosya ob"ekta [Modelling and estimation of a moving object trajectory]. South Ural State University Bulletin. Ser. Mathematical Modelling, Programming & Computer Software 10(3):108-119. doi: 10.14529/mmp170309.
- The VINT Project (Virtual InterNetwork Testbed). The Network Simulator ns-2. Available at: http://www.isi. edu/nsnam/ns/ (accessed September 10, 2018).
- The Wolfram Demonstrations Project. Constrained Random Walk. Available at: http://demonstrations.wolfram. com (accessed September 10, 2018).
- Camp, T, J. Boleng, and V. Davies. 2002. Asurvey of mo-bility models for ad hoc network research. Wirel. Commun. Com. (2):483-502.
- Talwar, G., H. Narang, K. Pandey, and P. Singhal. 2013. Analysis of different mobility models for ad hoc on- demand distance vector routing protocol and dynamic source routing protocol. Lecture notes in electrical engineering ser. New York, NY: Springer. 131:579-588. doi: 10.1007/978-1-4614-6154-8_57.
- Ott, G. 1976. Noise reduction techniques in electronic systems. New York, NY: Wiley. 312 p.
- Gaidamaka, Yu.V., S. D. Andreev, E. S. Sopin, K. E. Samouylov, and S. Ya. Shorgin. 2016. Analiz kharakteristik interferentsii v modeli vzaimodeystviya ustroystv s uche- tom sredy rasprostraneniya signala [Analysis of the char-acteristics of the interference in the model of interaction between devices taking into account the signal propagation environment]. Informatika i ee Primeneniya - Inform. Appl. 10(4):2-10. doi:10.14357/19922264160401.
[+] About this article
Title
MODELING MOVEMENT OF DEVICES IN A WIRELESS NETWORK BY RANDOM WALK MODELS
Journal
Informatics and Applications
2018, Volume 12, Issue 4, pp 2-8
Cover Date
2018-12-30
DOI
10.14357/19922264180401
Print ISSN
1992-2264
Publisher
Institute of Informatics Problems, Russian Academy of Sciences
Additional Links
Key words
entity mobility model; group mobility model; ad hoc network simulation; signal to interference and noise ratio; SINR
Authors
K. E. Samouylov , ,
Yu. V. Gaidamaka , , and S. Ya. Shorgin
Author Affiliations
Peoples' Friendship University of Russia (RUDN University), 6 Miklukho-Maklaya Str., Moscow 117198, Russian Federation
Federal Research Center "Computer Science and Control" of the Russian Academy of Sciences, 44-2 Vavilov Str., Moscow 119333, Russian Federation
Institute of Informatics Problems, Federal Research Center "Computer Science and Control" of the Russian Academy of Sciences, 44-2 Vavilov Str., Moscow 119333, Russian Federation
|