Figure 9: The histogram of the number of coincided wire-
less networks names between cloud and the multiprotocol
unit.
5 CONCLUSIONS AND FUTURE
WORK
The described technological environment of telematic
maps cloud service and multiprotocol unit interact-
ing with it provides data management of local and
wide area wireless networks in the moving vehicle.
This expands the of multiprotocol routing possibility
in heterogeneous vehicles networks by increasing the
visibility scope of the vehicle networks. Further de-
velopment of the work should be the realization of
user’s uninterrupted access to the network, by fore-
casting the most suitable moments and data channels
inside the software procedure of the routing multipro-
tocol node.
ACKNOWLEDGMENTS
This research was supported by a grant from the Ford
Motor Company. This paper was funded by RFBR
grant 13-07-12106.
REFERENCES
Cheng, Y.-H., Kuo, W.-K., and Su, S.-L. (2010). Design and
implementation of heterogeneous network manage-
ment algorithm. In Signal Processing (ICSP), 2010
IEEE 10th International Conference on, pages 2464–
2467.
Glazunov, V., Kurochkin, L., Kurochkin, M., and Popov, S.
(2013). Instrumental environment of multi-protocol
cloud-oriented vehicular mesh network. In Ferrier, J.-
L., Gusikhin, O. Y., Madani, K., and Sasiadek, J. Z.,
editors, ICINCO (1), pages 568–574. SciTePress.
Gramaglia, M., Bernardos, C. J., and Caldero’n, M. (2011).
Seamless internet 3g and opportunistic wlan vehicular
connectivity. EURASIP J. Wireless Comm. and Net-
working, pages 183–183.
Jaworski, P., Edwards, T., Moore, J., and Burnham, K.
(2011). Cloud computing concept for intelligent trans-
portation systems. In Intelligent Transportation Sys-
tems (ITSC), 2011 14th International IEEE Confer-
ence on, pages 391–936.
Ku, I., Lu, Y., Gerla, M., Ongaro, F., Gomes, R., and
Cerqueira, E. (2014). Towards software-defined vanet:
Architecture and services. In Ad Hoc Network-
ing Workshop (MED-HOC-NET), 2014 13th Annual
Mediterranean, pages 103–110.
Popov, S., Kurochkin, M., Kurochkin, L., and Glazunov, V.
(2014). Hardware and software equipment for mod-
eling of telematics components in intelligent trans-
portation systems. Lecture Notes in Computer Science
(including subseries Lecture Notes in Artificial Intel-
ligence and Lecture Notes in Bioinformatics), 8638
LNCS:598–608. cited By 0.
Remy, G., Senouci, S. M., Jan, F., and Gourhant, Y. (2011).
Lte4v2x: Lte for a centralized vanet organization.
In Global Telecommunications Conference (GLOBE-
COM 2011), 2011 IEEE, pages 1–6.
Zaborovski, V. S., Chuvatov, M., Gusikhin, O. Y., Makkiya,
A., and Hatton, D. (2013). Heterogeneous multipro-
tocol vehicle controls systems in cloud computing en-
vironment. In Ferrier, J.-L., Gusikhin, O. Y., Madani,
K., and Sasiadek, J. Z., editors, ICINCO (1), pages
555–561. SciTePress.
Zaborovskiy, V., Lukashin, A., Popov, S., and Vostrov, A.
(2013). Adage mobile services for its infrastructure.
In ITS Telecommunications (ITST), 2013 13th Inter-
national Conference on, pages 127–132.
Zaborovsky, V., Lukashin, A., Kupreenko, S., and Mulukha,
V. (2011). Dynamic access control in cloud services.
Conference Proceedings - IEEE International Confer-
ence on Systems, Man and Cybernetics, pages 1400–
1404. cited By (since 1996)4.
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