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COMMUNICATION TECHNOLOGY by Shashi Bhushan School of Computer and Information Sciences.

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Presentation on theme: "COMMUNICATION TECHNOLOGY by Shashi Bhushan School of Computer and Information Sciences."— Presentation transcript:

1 COMMUNICATION TECHNOLOGY by Shashi Bhushan School of Computer and Information Sciences

2 Communication Technologies ATM FDDI Fast Ethernet WAP, GSM

3 ATM Analyse the type of connection to be made. Analyse the type of data to be transmitted and knowing its traffic profile.

4 ATM Reserve a virtual path for the data to allow Splitting the data into small packets which have minimum overhead

5 Type of Connection Dependent upon type of data Computer data requires a reliable connection

6 Traffic Profile of Data Computer data tends to create bursts of traffic Real time data requires constant traffic

7 ATM

8

9 Integrate real-time data (such as voice and video signals) and non-real-time data (such as computer data).

10 Objective of ATM Connection should be free of errors for computer type data Real time data are more tolerant to errors any losses of small part the data

11 Objective of ATM For real time data, constant sampling rate and low propagation delay required

12 Real Time Sampling The basic principle in analog to digital conversion involves: Sampling Theory Pulse Code Modulation (PCM)

13 Sampling Theory If a signal is to be reconstructed as the original signal, it must be sampled at a rate defined by the Nyquist Criterion.

14  Ts  Sampling The Sampling Process

15 Sampling Theory The sampling rate must be twice the highest frequency of the signal.

16 Sampling Theory Type of DataFrequency Range (Bandwidth) Sampling Rate Speech (Telephone Channel) 4 khz8000 time per second (8kz every 125  s) Hi-fi quality audio 20 khz40000 times per second Video Signal6 mhz12mhz (or once every 83.3ns)

17 PCM Once analog signals have been sampled for their amplitude, they can be converted into a digital format using PCM. The digital form is then transmitted over the transmission media.

18 Technology used in Transmitting Digital Signals PCM-TDM ISDN (Integrated Services Digital Network)

19 ATM Vs ISDN & PCM-TDM ISDN & PCM-TDM uses a synchronous transfer mode (STM) technique where a connection is made between two devices by circuit switching.

20 The main problems with this type of transmission are: Fixed time slots, no matter whether data is being transmitted or not ATM Vs ISDN & PCM-TDM

21 Not possible to service high burst rate by allocating either time slots or switched circuits when all of the other time slots are full, or because switched circuits are being used. ATM Vs ISDN & PCM-TDM

22 ATM ATM overcomes these problems by– Splitting the data up into small length packets, known as cells Statistical multiplexing

23 ISDN ISDN uses transmission bit rate of 64 kbps. This is the same as digitized speech signal rate.

24 ISDN Digitized speech signal rate = 8 Sampling rate  bits used for sampling = 8 khz  8 bits = 64 kbps

25 ISDN Computer type data can be transmitted using 64 kbps rate or can be split to transmit over several 64 kbps channels.

26 ISDN Channels ISDN uses channels to identify the data rate, each based on the 64 kbps provisions.

27 ISDN Channels CHANNELDESCRIPTION B64 kbps D16 kbps signalling for channel B (ISDN) 64 kbps signalling for channel B (B-ISDN)

28 ISDN Channels H0 384 kbps (6  64 kbps) for B- ISDN H11 1.536 mbps (26  64 kbps) for B-ISDN H12 1.920 mbps (30  64 kbps) for B-ISDN

29 Ethernet Most commonly used LAN Based on IEEE 802.3 standard Requires other protocols such as TCP/IP to allow nodes to communicate

30 Ethernet Ethernet networks are easy to plan and cheap to install Well proven technology, which is fairly robust and reliable Simple to add and delete computers on the network

31 Ethernet Drawback Not deterministic Does not cope with heavy traffic

32 Bit Rate 10 kbps – In its standard form 100 kbps – Fast Ethernet 1 gbps – Fast Ethernet

33 Ethernet Use of coaxial, fiber optic or twisted-pair cable Use of bus-type network topology where all nodes share a common bus Use of CSMA/CD

34 Ethernet Types The six main types of standard Ethernet are: Standard or thick-wire, Ethernet (10BASE5) Thinnet or thin wire (10BASE2) Twisted pair Ethernet (10BASE-T)

35 Ethernet Types Optical Fiber Ethernet (10BASE-FL) Fast Ethernet Gigabit Ethernet

36 10BASE5 Parameters Data rate – 10Mbps Max. Segment Length – 500m Max. nodes on a segment – 100 Max. number of repeaters – 2

37 10BASE5 Parameters Max. nodes per Network – 1024 Min. node spacing – 2.5m


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