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Limitations of 2BASE-TL
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Just as 10PASS-TS is targeted at residential applications, 2BASE-TL is targeted at business applications It is not as effective a residential technology because it lacks triple-play asymmetric capabilities and also does not support simultaneous voice ( POTS ) services 2BASE-TL is targeted as a next-generation T1/E1 service replacement and can be used in an analogous manner to today s T1/E1 services just with more bandwidth and higher resiliency!
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The Mid-Band Ethernet Technologies discussed here can be applied to solve both business and residential applications They offer next-generation Ethernet services without the cost and complexity of fiber deployments, but also without the unlimited bandwidth and unlimited reach of fiber deployments Copper-based technologies always have rate/reach limitations, meaning that customers farther from the serving office have less bandwidth potential than customers closer to the serving office; you have to trade rate to get reach and vice versa This is a result of signal dissipation across the copper wires VDSL2, for example, can deliver 100 Mbps on a single pair of copper, but only at very short distances (less than a 1000 ft) The higher the rates required, the smaller the service radius Mid-Band Ethernet has improved upon normal copper limitations by allowing multiple pairs of copper to be aggregated into a single connection This improves the service radius, but doesn t remove it Optical connections, on the other hand, have a relatively unlimited service radius different optical transceivers can be used to cover hundreds and hundreds of miles So the use of Mid-Band Ethernet services will always have distance and speed shortcomings when compared to optical services But Mid-Band Ethernet has the benefit of using the in-place copper plant you don t have to dig, wait, or build new serving sites It allows the carrier to leverage what is already in place to deliver better services and get more revenue today without heavy investment
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Typical Deployment Scenarios
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The techniques for deploying Mid-Band Ethernet are pretty straightforward Because the copper plant is already in place, deployments must fit the existing copper plant architecture
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Core network Ethernet/MPLS/IP/ SONET/SDH
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Optical Ethernet distribution Ethernet-over-copper access Central office or RT business 2BASE-TL deployments cover 15 Kft and beyond Remote terminal triple-play VDSL2 covers 3 5 Kft voice, video and Internet
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In-building MTU with 10BASE-TS up to 1 Kft
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Figure 54 Typical deployments of Mid-Band Ethernet
There is generally a piece of equipment located at the customer site that terminates the copper pairs and translates the Mid-Band Ethernet to a more traditional LAN variety of Ethernet (eg, a 10/100BASE-T port) There is also a piece of equipment that resides at the serving office, which aggregates multiple customers together and performs translation between the carrier Ethernet network and the Mid-Band Ethernet access network The variety in the deployments comes from where the serving office is located and where the customer demarcation is located Figure 54 shows multiple scenarios The serving office could be a carrier s central office equipment, a remote terminal, or a wiring closet in the basement of a building The customer demarcation equipment could be at a termination at the customer s building, in the customer s building (for example, in a home office), or in a hut or other outside enclosure All of these options are shown in the figure
Ongoing Developments
In the time since IEEE 8023ah developed the advanced mechanisms for Ethernet transport and bonding over outside plant copper, many other standards bodies around the world have recognized their work by incorporating those same techniques into other international standards Both ANSI T1 and the ITU have referenced the IEEE 8023ah techniques for all forward-looking DSL technologies The dependencies and relationships between the IEEE and ITU standards are depicted in Figure 55 The highly efficient IEEE 8023ah 64/65-octet method for framing and transporting Ethernet packets on xDSL lines has been incorporated into ADSL2+ [5] and VDSL2 [6] as the preferred packet transport technique Both of these standards reference IEEE 8023ah as the technology source
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