- -

Intelligent beaconless geographical forwarding for urban vehicular environments

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Intelligent beaconless geographical forwarding for urban vehicular environments

Mostrar el registro completo del ítem

Ghafoor, KZ.; Abu Bakar, K.; Lloret, J.; Khokhar, RH.; Lee, KC. (2013). Intelligent beaconless geographical forwarding for urban vehicular environments. Wireless Networks. 19(3):345-362. doi:10.1007/s11276-012-0470-z

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/45113

Ficheros en el ítem

Metadatos del ítem

Título: Intelligent beaconless geographical forwarding for urban vehicular environments
Autor: Ghafoor, Kayhan Zrar Abu Bakar, Kamalrulnizam Lloret, Jaime Khokhar, Rashid Hafeez Lee, Kevin C.
Entidad UPV: Universitat Politècnica de València. Departamento de Comunicaciones - Departament de Comunicacions
Universitat Politècnica de València. Instituto de Investigación para la Gestión Integral de Zonas Costeras - Institut d'Investigació per a la Gestió Integral de Zones Costaneres
Fecha difusión:
Resumen:
A Vehicular Ad hoc Network is a type of wireless ad hoc network that facilitates ubiquitous connectivity between vehicles in the absence of fixed infrastructure. Source based geographical routing has been proven to perform ...[+]
Palabras clave: VANET , Multi-metric based self election , IEEE 802.11 , Street map aware routing
Derechos de uso: Reserva de todos los derechos
Fuente:
Wireless Networks. (issn: 1022-0038 )
DOI: 10.1007/s11276-012-0470-z
Editorial:
Springer Verlag (Germany)
Versión del editor: http://dx.doi.org/10.1007/s11276-012-0470-z
Tipo: Artículo

References

Wireless acess for vehicular environment (wave), October 2010. http://standards.ieee.org/findstds/standard/1609.3-2010.html .

Perkins, C. E., Royer, E. M. (1999). Ad-hoc on-demand distance vector routing. In Proceedings of the 1999 WMCSA workshop on mobile computing systems and application (pp. 90–101). New Orleans, LA: IEEE, 25–26 February 1999.

Johnson, D. B., & Maltz, D. A. (1996). Dynamic source routing in ad hoc wireless networks. Mobile Computing, 353, 153–181. [+]
Wireless acess for vehicular environment (wave), October 2010. http://standards.ieee.org/findstds/standard/1609.3-2010.html .

Perkins, C. E., Royer, E. M. (1999). Ad-hoc on-demand distance vector routing. In Proceedings of the 1999 WMCSA workshop on mobile computing systems and application (pp. 90–101). New Orleans, LA: IEEE, 25–26 February 1999.

Johnson, D. B., & Maltz, D. A. (1996). Dynamic source routing in ad hoc wireless networks. Mobile Computing, 353, 153–181.

Karp, B., & Kung, H. T. (2000). Gpsr: Greedy perimeter stateless routing for wireless networks. In Proceedings of the 2000 ACM international conference on mobile computing and networking (pp. 243–254). Boston, MA: ACM, 06–11 August 2000.

Lochert, C., Hartenstein, H., Tian, J., Fussler, H., Hermann, D., & Mauve M. (2003). A routing strategy for vehicular ad hoc networks in city environments. In Proceedings of the 2003 IEEE international symposium on intelligent vehicles (pp. 156–161). Columbus, OH: IEEE, 9–11 June 2003.

Lochert, C., Mauve, M., Fußler, H., & Hartenstein, H. (2005). Geographic routing in city scenarios. Mobile Computing and Communications Review, 9(1), 69–72.

Seet, B. C., Liu, G., Lee, B. S., Foh, C. H., Wong, K. J., & Lee, K. K. (2004). A-star: A mobile ad hoc routing strategy for metropolis vehicular communications. In Proceedings of the 2004 international conference on networking technologies, services, and protocols (pp. 989–999). Athens: Springer, 9–14 May 2004.

Wu, H., Fujimoto, R., Guensler, R., Hunter, M. (2004). Mddv: A mobility-centric data dissemination algorithm for vehicular networks. In Proceedings of the 2004 ACM international workshop on vehicular ad hoc networks (pp. 56). Philadelphia, PA: ACM, 01–01 October 2004.

Chen, Y. S., Lin, Y. W., & Pan, C. Y. (2010). Dir: Diagonal-intersection-based routing protocol for vehicular ad hoc networks. Telecommunication Systems, 10(1007), 1–18.

Ghafoor, K. Z., Abu Bakar, K., Van Eenennaam, E., Khokhar, R. H., & Gonzalez, A. J. (2011). A fuzzy logic approach to beaconing for vehicular ad hoc networks. International Journal of Telecommunication Systems, 53(4), 330–342.

Jerbi, M., Senouci, S. M., Rasheed, T., & Ghamri-Doudane, Y. (2009). Towards efficient geographic routing in urban vehicular networks. IEEE Transactions on Vehicular Technology, 58(9), 5048–5059.

Nzouonta, J., Rajgure, N., Wang, G., & Borcea, C. (2009). Vanet routing on city roads using real-time vehicular traffic information. IEEE Transactions on Vehicular Technology, 58(7), 3609–3626.

Cheng, P. C., Lee, K. C., Gerla, M., & Härri, J. (2010). Geodtn+nav: Geographic dtn routing with navigator prediction for urban vehicular environments. Mobile Networks and Applications, 15(1), 61–82.

Lee, K. C., Cheng, P. C., & Gerla, M. (2010). Geocross: A geographic routing protocol in the presence of loops in urban scenarios. Ad Hoc Networks, 8(5), 474–488.

Ghafoor, K. Z., Abu Bakar, K., Lee, K., & Salleh, S. (2011). Fuzzy logic-assisted geographical routing over vehicular ad hoc networks. International Journal of Innovative Computing Information and Control, 8(6), 5095–5120

Chawla, M., Goel, N., Kalaichelvan, K., Nayak, A., & Stojmenovic, I. (2006). Beaconless position based routing with guaranteed delivery for wireless ad-hoc and sensor networks. Ad-Hoc Networking, 212, 61–70.

Fußler, H., Hartenstein, H., Widmer, J., Mauve, M., & Effelsberg, W. (2004). Contention-based forwarding for street scenarios. In Proceedings of the 2004 WIT international workshop in intelligent transportation (pp. 15–21). Hamburg: Citeseer, 23–24 March 2004.

Ruhrup, S., Kalosha, H., Nayak, A., & Stojmenovic, I. (2010) Message-efficient beaconless georouting with guaranteed delivery in wireless sensor, ad hoc, and actuator networks. IEEE Transactions on Networking, 18(1), 95–108.

Barr, R. (2004). An efficient, unifying approach to simulation using virtual machines, PhD thesis. Citeseer: Cornell University.

WLAN-MAC. (1999). Wireless lan medium access control (mac) and physical layer specifications. IEEE Computer Society. http://standards.ieee.org/getieee802/802.11.html .

Ke, C.-H., Wei, C.-C., Lin, K. W., & Ding, J.-W. (2011). A smart exponential-threshold-linear backoff mechanism for ieee 802.11 wlans. International Journal of Communication Systems, 24(8), 1–16.

Sadiq, A. S., Abu Bakar, K., & Ghafoor, K. Z. (2011). A fuzzy logic approach for reducing handover latency in wireless networks. Network Protocols and Algorithms, 2(4), 61–87.

Egoh, K., & De, S. (2006). A multi-criteria receiver-side relay election approach in wireless ad hoc networks. In Proceedings of the 2006 IEEE international conference on military communications (pp. 1–7). Bellevue, WA: IEEE, 23–25 October 2006.

inSSIDer. (2011). Wi-fi scanner software. http://www.metageek.net/products/inssider .

Choffnes, D. R., & Bustamante, F. E. (2005). An integrated mobility and traffic model for vehicular wireless networks. In Proceedings of the 2005 ACM international workshop on vehicular ad hoc networks (pp. 69–78). Cologne: ACM, 02–02 September 2005.

Rappaport, T.S. (1996). Wireless Communications: principles and practice, 2nd. ed. New Jersey: Prentice Hall PTR.

Wang, X., Yang, Y., & An, J. (2009). Multi-metric routing decisions in vanet. In Proceedings of the 2009 IEEE international conference on dependable, autonomic and secure computing (pp. 551–556). Chengdu: IEEE, 12–14 December 2009.

Lee, K. C., Lee, U., & Gerla, M. (2010). Geo-opportunistic routing for vehicular networks. IEEE Communication Magazine, 10, 164–170.

Jarupan, B., & Ekici, E. (2009). Location-and delay-aware cross-layer communication in v2i multihop vehicular networks. IEEE Communications Magazine, 47(11), 112–118.

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem