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Historically, businesses have been connected to their service provider s network by copper pairs, while fiber has been deployed slowly over time to meet increased bandwidth requirements Figure 1013 contains a prediction for the number of businesses requiring data connectivity at T1 or higher rates in the coming years The graph shows the number of businesses in locations with copper connectivity only and those with fiber connectivity Although fiber build-outs are occurring, the majority of businesses exist at locations served only by copper This will not change in the near future This data must be interpreted carefully Deployed fiber is generally intended for the service provider s use to interconnect facilities Having fiber in place allows the service
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20 18 Number of Circuits (Millions) 16 14 12 10 08 06 04 02 00 2003 2004 2005 2006 Fiber served businesses Copper only businesses
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Figure 1013 Prediction for the number if businesses requiring data connectivity
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provider to efficiently support all of the customers in a large building Fiber entering a building is generally not connected directly to the end customer, as a relatively small percentage of individual businesses have bandwidth requirements necessitating fiber Fibers that reach the end customer s building are typically terminated on service provider equipment The cost of utilizing fiber within a LAN is negligible, while the cost of using fiber in the MAN is high Even after expensive fiber build-outs occur, the extension of fiber to a building does not necessarily mean fiber is available and economical for use by individual businesses, especially for point-to-point connectivity between geographically diverse locations Circuit bonding can be used to provide Ethernet services by bonding multiple T1s together to form a broadband pipe Additionally, this pipe can then be used to support Ethernet services and other legacy traffic, such as TDM voice traffic Because fiber is expensive, scarce, and generally not needed from a bandwidth perspective, an Ethernet deployment requiring fiber to the customer location severely limits the market for the service Fiber connectivity is typically provided to large businesses with high bandwidth requirements The vast majority of the businesses, however, lack fiber connectivity and can make use of circuit-bonding solutions
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The current transport network is designed for TDM voice traffic As demonstrated in Figure 1014, it has very inflexible and rigid TDM increments For example, from a T1
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TDM: Circuit Bonding
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Inflexible scalability in rigid TDM increments
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Flexible scalability in rigid TDM increments
Traditional Metro Data Service Offerings
STS-12
STS-3 DS3/ STS1 DS1 1544 Mbps 447/518 Mbps 155 Mbps 1 622 Mbps Gbps
Metro Ethernet Service Offerings 1544 Mbps
STS -48
447/518 Mbps
155 Mbps
622 1 Mbps Gbps
Figure 1014 TDM bandwidth increments
(1544 Mbps), the next bandwidth increment is a DS3 (45 Mbps) On the other hand, Ethernet has a much more flexible and granular bandwidth increments Circuit bonding can help to bond smaller TDM pipes together so it will match the smaller Ethernet bandwidth granularity much better In this way, circuit bonding helps reduce the cost of leased circuits and the cost of providing these services by matching customer requirements with the appropriate transport pipe The following table shows some examples of the efficiency gained by using bonded circuits
Customer Requirements in Mbps 10 Mbps 90 Mbps 450 Mbps 1 Gbps Current Provisioning Method DS3 45 Mbps OC-3 155 Mbps OC-12 622 Mbps OC-48 2500 Mbps Circuit Bonded Pipe 7 T1 2 DS3 3 OC3 2 OC12 Bandwidth Bandwidth Provisioned Saved 108 Mbps 90 Mbps 465 Mbps 1244 Mbps 342 Mbps 65 Mbps 157 Mbps 1256 Mbps Percentage Bandwidth Saved 76% 42% 25% 50%
Ability to Grow
With the adaptation of the ITU standard on LCAS for virtual concatenated signals (ITU standard G7042/Y1305), circuit bonding has the ability to dynamically and hitlessly change (add and subtract) the capacity of a bonded transport pipe This ability to
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add capacity seamlessly without a truck roll offers carriers the ability to sell additional bandwidth without adding more hardware and operational costs
Quality of Service and Protection
One of the main features of circuit bonding is its ability to offer hard QoS and multiple levels of protection Much like TDM/SONET-based services, carriers can offer SLAs on Ethernet services to their customers and deliver carrier-grade Ethernet services without building out a completely new overlay network
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