The next generation network NGN (Next generation Network) especially IMS (IP multimedia Subsystem) requires bandwidth and appropriate QoS can increase the number of users and services. The NSIS (Next Steps in Signaling) appears as a magic solution that couples the both DiffServ and IntServ with other controladded properties. However the implementation of NSIS must be piratical to encourage the operators to deploy over network. The article presents a model that merge QoS mechanisms in an agnostic architecture to provide NSIS-based management in the IMS network (core LTE). The work shows the integration of NSIS in IMS network and coexistence mechanisms with the possibility of unifying all management QoS; with a comparison of NSISDiffServ and RSVP (Reservation Protocol) for multimedia services.
Refers To: Taam Abdelkarim, Hjiaj Hassane, Said El Alaoui Ouatik, Mohammed Oumsis, Raouyane Brahim, RETRACTED: Mobility in the NSIS Signaling Protocol , (2014) International Journal on Communications Antenna and Propagation (IRECAP) , 4(5), pp. 215-220. ______________________________________ On the indication of the Editor-In-Chief , after a careful evaluation of a duty constituted Ethical Committee, this paper has been retracted by the Publisher because the Ethical Committee found with clear evidence that the contents of the paper are the results of a misconduct sanctioned by the Ethical Policy of Praise Worthy Prize . Significant contents of this paper originate by the paper cited below: Badr Benmammar, Francine Krief, "MQoS NSLP: a mobility profile management based approach for advance resource reservation in a mobile environment", 7th IFIP IEEE International Conference on Mobile and Wireless Communications Networks (MWCN 2005) , Marrakech, Morocco, 2005. To know which further actions are previewed by Praise Worthy Prize in case of Retraction, please see the following link: http://www.praiseworthyprize.com/ethics/
To provide a QoS (Quality of Service) for mobile terminals in an all-IP environment requires a very extensive research. In integrated services networks, most of work is seeking to extend RSVP to a mobile environment. In this case, the article describes a new procedure for resource reservation in the wireless environment. It is based on the application of QoS NSLP signaling, following the work of the IETF NSIS (Next Steps In Signaling) WG. This is primarily based on a reservation Mspec (Mobility Specification) object that determines the future locations of the terminal which is included in a mobility profile. In this way, we can improve the QoS.
Providing QoS (Quality of Service) to mobile terminals in an all-IP environment is a very extensive research. In integrated services networks, the most of work seeking to extend RSVP to a mobile environment. In this case, the article describes a new procedure for resource reservation in the wireless environment. It is based on the application of QoS NSLP signaling [1], following the work of the IETF NSIS (Next Steps In Signaling) WG. This is based on a reservation MSpec object that determines the future locations of the terminal which is included in a mobility profile. In this way we can improve the QoS.
Vehicular Ad hoc Network (VANET) is a type of network where a user can access the data while driving the vehicle constantly. At any junction, each vehicle can form a temporary network to send information to nearby vehicles. Vehicles movement can gradually increase the breakage in the communication whenever there is a traffic situation faced by the vehicles. Connection breakage or Link Breakage can make temporary delay in the data transmission and it is also called as unstable route failure between the vehicles. This breakage may happen during the communication in the vehicular network even when the receiver is in offline or busy mode. By storing the route information in a static node permanently, there is a chance for non-stop routing in the network even it faces the link failure. CBAODV routing protocol acts as hotspot between the vehicles to avoid breakage in the connection. Several routing protocols are studied to propose CS-CBAODV routing protocol which is a new reactive based routing which stores the routing information in a node permanently and this concept can be reused in case of failure in the route maintenance. NS2 based simulation is used to prove the effectiveness of the research to reduce connection breakage in VANET by comparing the CS-CBAODV with CBAODV protocol.
Referred to by: Taam Abdelkarim, Hjiaj Hassane, Said El Alaoui Ouatik, Mohammed Oumsis, Raouyane Brahim, Retraction notice to "Mobility in the NSIS Signaling Protocol" [(2014) IRECAP 4 (5), pp. 215-220] , (2015) International Journal on Communications Antenna and Propagation (IRECAP) , 5 (6), pp. 389-389. ______________________________________ On the indication of the Editor-In-Chief , after a careful evaluation of a duty constituted Ethical Committee, this paper has been retracted by the Publisher because the Ethical Committee found with clear evidence that the contents of the paper are the results of a misconduct sanctioned by the Ethical Policy of Praise Worthy Prize . Significant contents of this paper originate by the paper cited below: Badr Benmammar, Francine Krief, "MQoS NSLP: a mobility profile management based approach for advance resource reservation in a mobile environment", 7th IFIP IEEE International Conference on Mobile and Wireless Communications Networks (MWCN 2005) , Marrakech, Morocco, 2005. To know which further actions are previewed by Praise Worthy Prize in case of Retraction, please see the following link: http://www.praiseworthyprize.com/ethics/
The next generation network requires a suitable QoS that can increase number of users and revenues. The IMS (IP Multimedia Subsystem) import new taxation strategy flow based and QoS management policy-based. The QoS management poses a competition in terms of limitations of physical resources and the onset of congestion, which encourages more organisaton to look for management solutions other than DiffServ and IntServ. The NSIS (Next Steps in Signaling) appears as a magical solution that couples DiffServ and IntServ with other properties of control traffic to validate these properties and shows the integration with IMS we present this article. Our goal, in this article, is give an idea about a Framework that coupling NSIS and policy-based management in IMS, and experimentally verify results.