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Frame Relay uses virtual circuits (VCs) to establish connections Virtual circuits are like "pretend" wires They don't really exist physically; rather, they exist logically But, like a real wire, they connect your device to another device VCs are used because in a large ISP, telephone company (telco), or even a moderate-sized company, running multiple physical wires would be wasteful and cost-prohibitive This is because, in general, higher port density on a router leads to higher costs For example, take a network with five remote offices linked to a central home office Without VCs, at the home office, we would need a router with five WAN ports and at least one Ethernet port We can't do this type of configuration with a lowend router, like a 2600 series, so we would need to step up to either two 2600 routers or one 3620 router This configuration is shown in Figure 3-1

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Figure 3-1: Five physical Frame Relay links to our central office However, with VCs, we could use a single 2600 router with five VCs and one physical WAN port, as shown in Figure 3-2 In just this (rather small) example, the cost difference would be around $12,000 In other words, going with multiple physical links is going to cost us five times what a single link with VCs would cost By consolidating these links, we are putting the responsibility for high port density on our provider, who probably has more than enough ports anyway

Figure 3-2: Single physical Frame Relay link with five VCs How this process is actually accomplished is a bit more complicated Frame Relay uses a process known as multiplexing to support these VCs Multiplexing can be done in one of two

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In Figure 12-4, you can see the same image with two distinct weather effects: lightning and snow I wish I could show every weather effect available, but describing the snow effect will probably give you a pretty good idea of how to create a rain effect The lightning effect in Figure 12-4 was accomplished by painting the white by hand with a simple brush and then creating a layer underneath so I could paint in a blue glow, to give the photo that electric look Here s how to create the snow effect:

1 2 3

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ways, depending on whether the media is baseband or broadband Because Frame Relay is baseband, we will concentrate on how VCs are multiplexed in baseband media In baseband technologies, data is typically multiplexed by using what is known as timedivision multiplexing (TDM) In TDM, packets on different channels are sent in different "time slots" This flow is similar to traffic on a single-lane road Just because it is a single lane does not necessarily mean that only one car can travel down the road The cars just need to travel in a straight line This principle is the same in TDM More than one data stream can be sent or received on the line They just have to do so in "single file" This concept is illustrated in Figure 3-3

Figure 3-3: TDM multiple VCs flowing through one physical link Frame Relay uses statistical multiplexing, which differs from TDM in that it uses VCs, which are variable slots, rather than fixed slots like channels This technique allows Frame Relay to better divide bandwidth among differing applications Instead of just handing out a fixed amount of bandwidth to a given connection, statistical multiplexing alters the bandwidth offered based on what the application requires It also allows Frame Relay to be less wasteful with "bursty" traffic Rather than allocating a fixed amount of bandwidth to the connection, even when no data is being transmitted, Frame Relay can allocate only what each connection needs at any given time In addition, VCs are divided into two types: a permanent virtual circuit (PVC) and a switched virtual circuit (SVC) Currently, SVCs are used rarely or not at all, so we will concentrate mostly on PVCs In a permanent virtual circuit, the connection is always up, always on, and always available You can think of this like the bat phone When Batman picks up the bat phone, he always gets Commissioner Gordon He never has to dial The connection is always there This is how a PVC works Once established, it's like having a direct piece of cable connecting two locations, which makes it ideal for replacing dedicated links A switched virtual circuit works similarly to a standard phone You need to dial a number to establish a connection Once established, you can communicate When you have finished, you terminate the connection, and you are free to contact a different party SVC standards exist, but they are currently rare and used mostly when running Frame Relay in a LAN such as a Lab environment

Select Projects Add Frameworks. Enter /usr/lib/libMallocDebug.a into the Go text field. Click the Add button.

Figure 19-3: A physical star with switches In a mesh topology, however, the switch repeats the frame to all other redundantly connected switches, causing the frame to be repeated indefinitely (or until all bandwidth is consumed) This dilemma is the same looping problem in a redundant (full or hybrid physical mesh) topology, like the one shown in Figure 19-4

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