1 Kyung Hee University Circuit Switching and Telephone Network.
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Transcript of 1 Kyung Hee University Circuit Switching and Telephone Network.
![Page 1: 1 Kyung Hee University Circuit Switching and Telephone Network.](https://reader030.fdocuments.in/reader030/viewer/2022032605/56649e7a5503460f94b7a05b/html5/thumbnails/1.jpg)
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Kyung Hee University
Circuit Switching andCircuit Switching andTelephone NetworkTelephone Network
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Kyung Hee University
88 장 장 Circuit Switching and Telephone NetworkCircuit Switching and Telephone Network
8.1 회선교환 (Circuit Switching)
8.2 전화망 (Telephone Network)
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Kyung Hee University
SwitchingSwitching
Switching
~ whenever we have multiple devices, we have the problem of how to connect them to make one-to-one communication possible.
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Kyung Hee University
Switching(cont’d)Switching(cont’d)
Switching method
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Kyung Hee University
8.1 Circuit Switching8.1 Circuit Switching
~ create a direct physical connection between two
devices such as phones or computer.
Circuit-switched network
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Circuit Switch
a device with n inputs and m outputs that creates a temporary connection between an input link and output link.
A circuit switch
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Circuit Switching
~ can use either two technologies.
Switching
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Space-Division Switches
the paths in the circuit are separated from each other spatially(crossbar switch)
Crossbar switch
~ connect n input to m output in a grid, using electronic microswitch(transistor) at each crosspoint.
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Crossbar switch
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Limitation of crossbar switch
The number of switch (huge size)
: connect n inputs by m output
require n * m crosspoint.
(ex : 1000 input, 1000 output → 1,000,000 crosspoint)
inefficient
fewer than 25% of the crosspoints are in use at a given time.
the rest are idle
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d) Multistage Switches
Devices are linked to switches that, in turn are linked to a hierarchy of other switches
Combines crossbar switches in several stages
Provides multiple paths connecting each pair of linked devices
Reduction in crosspoints results in blocking during heavy traffic
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Multiple paths
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Crosspoint
~ compare the number of crosspoints in a 15-by-15 single-stage crossbar switch with the 15-by-15 multistage switch.
single-stage switch
need 225 crosspoint(15 * 15)
multistage switch
first-stage : 10 crosspoint(5 * 2) *3 = 30 crosspoint second-stage : 9 crosspoint(3 *3) * 2 = 18 crosspoint third-stage : 10 crosspoint(5 * 2) *3 = 30 crosspoint
total number of crosspoint : 78
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Time-Division Switch
~ is accomplished using TDM(Time-division multiplexing) and TSI(Time-Slot Interchange)
TSI - change the ordering of the slots based on the desired connections.
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Time-division multiplexing without a time-slot
interchange(TSI)
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Time-division multiplexing with a time-slot
interchange(TSI)
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
TSI 동작과정
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
TDM Bus
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Space-and Time-Division Switching Combinations
~ combine space-division and time-division technology to take advantage of the best of both
TST(time-space-time)
TSST(time-space-space-time)
STTS(space-time-time-space)
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
TST switch
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Kyung Hee University
8.2 Telephone Network8.2 Telephone Network
Major Components
• local loop connects subscriber to nearest end office, 1st 3 digits of phone number define the office, next four define the local loop number
• trunks are the transmission media handling the communication between offices
• switching office has switches that connects several local loops or trunks
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Kyung Hee University
Telephone Network (cont’d)Telephone Network (cont’d)
Intra-LATA (local access transport area) services are pr
ovided by local exchange carriers. Since 1996, there are
two types of LECs (local exchange carriers): incumbent
local exchange carriers and competitive local exchange
carriers.
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Kyung Hee University
Telephone Network (cont’d)Telephone Network (cont’d)
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Kyung Hee University
Telephone Network (cont’d)Telephone Network (cont’d)
IXCs are interexchange carriers (long-distance companies)
POPs are points of presence – a switching office in a LATA
that allows an IXC to provide inter-LATA services
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Kyung Hee University
Telephone Network (cont’d) - POPsTelephone Network (cont’d) - POPs
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Kyung Hee University
Telephone Network (cont’d)Telephone Network (cont’d)
Voice communication used analog signals in the past,
but is now moving to digital signals. On the other hand,
dialing started with digital signals (rotary) and is now
moving to analog signals (touch-tone).
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Kyung Hee University
Circuit Switching(cont’d)Circuit Switching(cont’d)
Touch-Tone Dialing
When a user dials, for example, the number 8, two bursts of analog signals with frequencies 852 and 1336 Hz are sent to the end office