By Jouni Korhonen, Teemu Savolainen, Jonne Soininen(auth.)
Deploying IPv6 in 3GPP Networks – Evolving cellular Broadband from 2G to LTE and past
A sensible consultant permitting cellular operators to install IPv6 with confidence
The most generally used mobile cellular broadband community know-how relies at the 3GPP criteria. The background and heritage of the 3GPP expertise is within the international cellular provider (GSM) know-how and the paintings performed in ecu Telecommunications criteria Institute (ETSI). this first voice provider community has developed to be the dominant cellular net entry technology.
Deploying IPv6 in 3GPP Networks covers how net Protocol model 6 (IPv6) is presently outlined within the criteria for mobile cellular broadband, why and the way this course used to be taken within the know-how, and what's the present truth of the deployment. in addition, it deals the authors’ perspectives on how a few attainable IPv6 similar advances 3GPP networks could be more advantageous through the coming years. It supplies suggestions the right way to enforce and install IPv6 appropriately within the 3rd new release Partnership venture (3GPP) cellular broadband surroundings, and what concerns one may perhaps face while doing so. The publication covers 3GPP applied sciences from 2G to LTE, and gives a few rules for the future.
- written by means of hugely revered and skilled authors from the IPv6 / cellular world
- Provides a proof of the technical history for a few not-so-obvious layout offerings, what to pay attention to, and what transition recommendations could be utilized by the owners and the operators
- Offers an invaluable reference consultant for operators and owners moving into IPv6 business
Chapter 1 advent (pages 1–26):
Chapter 2 fundamentals of the 3GPP applied sciences (pages 27–78):
Chapter three advent to IPv6 (pages 79–162):
Chapter four IPv6 in 3GPP Networks (pages 163–247):
Chapter five IPv6 Transition Mechanisms for 3GPP Networks (pages 248–295):
Chapter 6 way forward for IPv6 in 3GPP Networks (pages 296–336):
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Additional info for Deploying IPv6 in 3GPP Networks: Evolving Mobile Broadband from 2G to LTE and Beyond
0/8 is reserved to loopback addresses. These addresses are exclusively used for host internal communication. Packets with loopback addresses should not be seen on any network. 254/16 address block is used for communication constrained to one link. These addresses are especially used before a host has gotten a real address, private or public. In some cases, such as with directly connected hosts, these may be the only addresses ever available on a link RFC 3927 . 0/4 block is used for multicast services.
IP itself does not have separate User-to-Network Interface (UNI) and Network-toNetwork Interface (NNI) protocols, but IP handles the networking between the end-hosts, the network nodes, and the different networks in the same way. Hence, IP creates networks of networks. 2 Routing and Forwarding The hosts in an IP network communicate between each other by sending IP packets. The source host has to know the IP address of the destination where it wants to send the trafﬁc. The two hosts can be either directly connected to each other, or there can be one or more routers in the path between them.
Tunneling means transporting IP packets inside other IP packets. Practically the outer IP ﬂow creates a ‘tunnel’ – a virtual link over a network. The inner IP packets then are transported via this tunnel to another network. The virtual interface is connected to this remote network, and the IP address comes from that network. 2) technologies. In addition, one special kind of virtual interface is the loopback interface. This is a node internal interface that loops back, that is, sends back, all packets sent to it.
Deploying IPv6 in 3GPP Networks: Evolving Mobile Broadband from 2G to LTE and Beyond by Jouni Korhonen, Teemu Savolainen, Jonne Soininen(auth.)