Hi, My 2 cents
VPLS can be run across several different kinds of layer 1 & 2 technologies and is independent of the underlying technology because it builds it pseudo wires at layers 3 & 4. VPLS leverages technologies like Metro Ethernet and MPLS to extend a business' Ethernet LAN (technically the broadcast domain) to remote sites. At the end of the day you can use several kinds of tunneling technologies to provide VPLS, including GRE, MPLS, and L2TPv3.
For fun you can also do : LDP VPLS over a GRE tunnel LDP over a GRE tunnel within an encrypted network I can be wrong but VPLS is running over MPLS (rfc 4762) because it is using LDP Regards Fabien Le 6 févr. 2013 à 15:41, Scott Helms <khelms@zcorum.com> a écrit :
From my understanding M-Ethernet is a some kind of service. Standartized technology that allows to connect multiple different networks. And it is independent from physical and datalink layers.
Metro Ethernet is a datalink (layer 2) protocol. It also has physical (layer 1) specifications though there are several kinds of physical medium that can be used. Most commonly its delivered over fiber (single or multi-mode depending on distance from the last active element) or cat 5E/6 twisted pair.
And nowadays which tecnology is the most used(VPLS or Metro)? What about MPLS? Sorry I'm a little confused. I really want to understand.
VPLS can be run across several different kinds of layer 1 & 2 technologies and is independent of the underlying technology because it builds it pseudo wires at layers 3 & 4. VPLS leverages technologies like Metro Ethernet and MPLS to extend a business' Ethernet LAN (technically the broadcast domain) to remote sites. At the end of the day you can use several kinds of tunneling technologies to provide VPLS, including GRE, MPLS, and L2TPv3.
Here are the main two RFCs:
http://tools.ietf.org/html/rfc4761 http://tools.ietf.org/html/rfc4762
-- Regards,
Abzal
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