SlideShare a Scribd company logo
1 of 15
DIGITAL COMMUNICATION SYSTEM
INTRODUCTION
Digital communication is a mode of communication where the
information or the thought is encoded digitally as discrete signals and
electronically transferred to the recipients.
Digital communication is one of the most commonly used modes of
communication now a days.
Example of Digital Communication System
• Manager wanted to meet all his team members at the conference
room to discuss their key responsibility areas and areas of expertise.
He didn’t have the time to go to their workstations and invite them
individually. Instead he opted an easier and cheaper mode to
communicate his idea. He sent an email marking a cc to all the
participants, inviting them for the meeting. This is an example of
Digital communication where the information was sent electronically.
Explanation
In digital communication
• Information flows in a digital form and the source is generally the
keyboard of the computer.
• A single individual is capable of digital communication.
• It also saves wastage of manpower and is one of the cheapest modes
of communication.
• Digital communication is also a really quick way to communicate. The
information can reach the recipient within a fraction of a second. An
individual no longer has to wait to personally meet the other individual
and share his information.
Communications Techniques
Digital communication covers a broad area of communications
techniques including:
• Digital transmission is the transmission of digital pulses between two
or more points in a communication system.
• Digital radio is the transmitted of digital modulated analog carriers
between two or more points in a communication system.
Building blocks of Digital Communication System
Building blocks of Digital Communication System
• Input source and input transducer
The source of information can be analog or digital, e.g. analog: audio or
video signal, digital: like teletype signal.
• Source Encoder
The signal produced by source is converted into digital signal consists of
1′s and 0′s. For this we need source encoder. We should like to use as few
binary digits as possible to represent the signal. In such a way this
efficient representation of the source output results in little or no
redundancy. This sequence of binary digits is called information
sequence.
• Source Encoding or Data Compression
The process of efficiently converting the output of analog or digital source
into a sequence of binary digits is known as source encoding.
• Channel Encoder:
The information sequence is passed through the channel encoder. The
purpose of the channel encoder is to introduced, in controlled manner, some
redundancy in the binary information sequence that can be used at the
receiver to overcome the effects of noise and interference encountered in
the transmission on the signal through the channel.
 E.g. take k bits of the information sequence and map that k bits to unique
n bit sequence called code word. The amount of redundancy introduced is
measured by the ratio n/k and the reciprocal of this ratio (k/n) is known as
rate of code or code rate.
Building blocks of Digital Communication System
• Digital Modulator:
The binary sequence is passed to digital modulator which in turns convert the
sequence into electric signals so that we can transmit them on channel. The
digital modulator maps the binary sequences into signal wave forms , for
example if we represent 1 by sin x and 0 by cos x then we will transmit sin x
for 1 and cos x for 0.
• Channel:
The communication channel is the physical medium that is used for
transmitting signals from transmitter to receiver.
• Digital Demodulator:
The digital demodulator processes the channel corrupted transmitted
waveform and reduces the waveform to the sequence of numbers that
represents estimates of the transmitted data symbols.
Building blocks of Digital Communication System
• Channel Decoder:
This sequence of numbers then passed through the channel decoder
which attempts to reconstruct the original information sequence from the
knowledge of the code used by the channel encoder and the redundancy
contained in the received data.
• The average probability of a bit error at the output of the
decoder is a measure of the performance of the demodulator –
decoder combination
• Source Decoder:
Source decoder tries to decode the sequence from the knowledge of the
encoding algorithm. And which results in the approximate replica of the
input at the transmitter end.
• Output Transducer:
Finally we get the desired signal in desired format analog or digital.
Building blocks of Digital Communication System
Channels for Digital Communications
• The modulation and coding used in a digital communication system
depend on the characteristics of the channel. The two main
characteristics of the channel are BANDWIDTH and POWER. In
addition the other characteristics are whether the channel is linear or
nonlinear, and how free the channel is free from the external
interference.
• Five channels are considered in the digital communication, namely:
 Telephone channels
 Coaxial cables
 Optical fibers
 Microwave radio, and satellite channels.
CAUSES OF SIGNAL LOSS
The main factors of degradation of signal in Digital Communication are:
 Loss in Signal to Noise ratio.
 Signal Distortion Caused By ISI.
 Distance.
• Loss in Signal to Noise Ratio:
The SNR can be degrade into two ways.
Through Decrease of desired signal power.
Through the increase of noise power.
• Band limiting Loss:
The use of filters in the transmitter to avoid interfering with other channel
reduces the amount of energy , result in signal loss.
• Intersymbol Interference (ISI):
Filtering through the system the received pulses overlap one another; the
tail of one pulse smears in to the adjacent symbol interval causing the loss
of data in digital communication.
• DISTANCE:
The distance is large is a great chance of signal distortion. As when the
distance is large we use repeaters to amplify the signal ,it amplifies the
noise.
CAUSES OF SIGNAL LOSS
• Intermodulation Products (IM):
Signals having different carrier frequencies when simultaneously
present in a device the result is a interaction between the carrier
frequencies which can produce signals at all combinations of sum and
different frequencies. The energy distributed to these signals
represents a loss in the signal energy.
• Atmospheric Loss:
The magnitude of signal loss due to oxygen and water vapors is a
function of frequencies.
• AM/PM conversion:
A phase noise phenomenon in which signal amplitude fluctuations
produce phase variation that contribute phase noise to signals that will
be coherently detected causing sidebands which result in signal loss.
CAUSES OF SIGNAL LOSS
Comparisons of Digital and Analog Communication Systems
Digital Communication System Analog Communication System
Advantage :
inexpensive digital circuits
privacy preserved (data encryption)
can merge different data (voice, video and
data) and transmit over a common digital
transmission system
error correction by coding
Disadvantages :
expensive analog components : L&C
no privacy
can not merge data from diff. sources
no error correction capability
Disadvantages :
larger bandwidth
synchronization problem is relatively
difficult
Advantages :
smaller bandwidth
synchronization problem is relatively
easier

More Related Content

What's hot (20)

ASk,FSK,PSK
ASk,FSK,PSKASk,FSK,PSK
ASk,FSK,PSK
 
Line coding
Line codingLine coding
Line coding
 
communication system ch1
communication system ch1communication system ch1
communication system ch1
 
Source coding
Source coding Source coding
Source coding
 
Base band transmission
Base band transmissionBase band transmission
Base band transmission
 
Antenna PARAMETERS
Antenna PARAMETERSAntenna PARAMETERS
Antenna PARAMETERS
 
Single Sideband Suppressed Carrier (SSB-SC)
Single Sideband Suppressed Carrier (SSB-SC)Single Sideband Suppressed Carrier (SSB-SC)
Single Sideband Suppressed Carrier (SSB-SC)
 
Multiplexing : FDM
Multiplexing : FDMMultiplexing : FDM
Multiplexing : FDM
 
Noise in Communication System
Noise in Communication SystemNoise in Communication System
Noise in Communication System
 
Telecommunication switching system
Telecommunication switching systemTelecommunication switching system
Telecommunication switching system
 
9. parameters of mobile multipath channels
9. parameters of mobile multipath channels9. parameters of mobile multipath channels
9. parameters of mobile multipath channels
 
5. 2 ray propagation model part 1
5. 2 ray propagation model   part 15. 2 ray propagation model   part 1
5. 2 ray propagation model part 1
 
Amplitude modulation
Amplitude modulationAmplitude modulation
Amplitude modulation
 
Digital modulation techniques...
Digital modulation techniques...Digital modulation techniques...
Digital modulation techniques...
 
MINIMUM SHIFT KEYING(MSK)
MINIMUM SHIFT KEYING(MSK)MINIMUM SHIFT KEYING(MSK)
MINIMUM SHIFT KEYING(MSK)
 
PULSE CODE MODULATION (PCM)
PULSE CODE MODULATION (PCM)PULSE CODE MODULATION (PCM)
PULSE CODE MODULATION (PCM)
 
RF and Microwave Engineering
RF  and Microwave EngineeringRF  and Microwave Engineering
RF and Microwave Engineering
 
Amplitude Modulation ppt
Amplitude Modulation pptAmplitude Modulation ppt
Amplitude Modulation ppt
 
Amplitude shift keying
Amplitude shift keyingAmplitude shift keying
Amplitude shift keying
 
Modulation techniques
Modulation techniquesModulation techniques
Modulation techniques
 

Viewers also liked

Analog communication
Analog communicationAnalog communication
Analog communicationPreston King
 
Digital Communication
Digital CommunicationDigital Communication
Digital CommunicationSujina Ummar
 
Digital Communication ppt
Digital Communication pptDigital Communication ppt
Digital Communication pptBZU lahore
 
Analog and digital communication 2 marks
Analog and digital communication 2 marksAnalog and digital communication 2 marks
Analog and digital communication 2 marksBadri Surya
 
Digital Communications Midterm :D
Digital Communications Midterm :DDigital Communications Midterm :D
Digital Communications Midterm :DChoi Kyung Hyo
 
RADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICES
RADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICESRADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICES
RADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICESDr. Ghanshyam Singh
 
Digital microwave communication principles
Digital microwave communication principles Digital microwave communication principles
Digital microwave communication principles Mohamed Sewailam
 
Microwave link communication system
Microwave link communication systemMicrowave link communication system
Microwave link communication systembillyjoe585
 

Viewers also liked (9)

Analog communication
Analog communicationAnalog communication
Analog communication
 
Modulators
ModulatorsModulators
Modulators
 
Digital Communication
Digital CommunicationDigital Communication
Digital Communication
 
Digital Communication ppt
Digital Communication pptDigital Communication ppt
Digital Communication ppt
 
Analog and digital communication 2 marks
Analog and digital communication 2 marksAnalog and digital communication 2 marks
Analog and digital communication 2 marks
 
Digital Communications Midterm :D
Digital Communications Midterm :DDigital Communications Midterm :D
Digital Communications Midterm :D
 
RADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICES
RADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICESRADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICES
RADIO FREQUENCY COMMUNICATION SYSTEMS, ANTENNA THEORY AND MICROWAVE DEVICES
 
Digital microwave communication principles
Digital microwave communication principles Digital microwave communication principles
Digital microwave communication principles
 
Microwave link communication system
Microwave link communication systemMicrowave link communication system
Microwave link communication system
 

Similar to Digital communication system

Data communication in computer networks ppt
Data communication in computer networks pptData communication in computer networks ppt
Data communication in computer networks pptMannyaAgarwal1
 
DIGITAL COMMUNICATION SYSTEM.pptx
DIGITAL COMMUNICATION SYSTEM.pptxDIGITAL COMMUNICATION SYSTEM.pptx
DIGITAL COMMUNICATION SYSTEM.pptxStylox Noor
 
Data Communication & Computer Networks:Digital Signal Encoding
Data Communication & Computer Networks:Digital Signal EncodingData Communication & Computer Networks:Digital Signal Encoding
Data Communication & Computer Networks:Digital Signal EncodingDr Rajiv Srivastava
 
Introduction to-telecommunication-rf
Introduction to-telecommunication-rfIntroduction to-telecommunication-rf
Introduction to-telecommunication-rfTerra Sacrifice
 
Communication System (3).ppt
Communication System (3).pptCommunication System (3).ppt
Communication System (3).pptPrathamesh508521
 
Introduction to Digital Communication
Introduction to Digital CommunicationIntroduction to Digital Communication
Introduction to Digital CommunicationDr. Sanjay M. Gulhane
 
digital-communication-lecture-1 (1).ppt
digital-communication-lecture-1 (1).pptdigital-communication-lecture-1 (1).ppt
digital-communication-lecture-1 (1).pptKevin317696
 
Data transmission and optical fiber
Data transmission and optical fiberData transmission and optical fiber
Data transmission and optical fiberYogeshLayalu
 
multimedia chapter1
multimedia chapter1multimedia chapter1
multimedia chapter1nes
 
Digital Communication 1
Digital Communication 1Digital Communication 1
Digital Communication 1admercano101
 
lecture_2_basics.pptx
lecture_2_basics.pptxlecture_2_basics.pptx
lecture_2_basics.pptxshakeela33
 
Block diagram of digital communication
Block diagram of digital communicationBlock diagram of digital communication
Block diagram of digital communicationmpsrekha83
 
DIGITALTRANSMISSION TECHNOLOGY
DIGITALTRANSMISSION TECHNOLOGYDIGITALTRANSMISSION TECHNOLOGY
DIGITALTRANSMISSION TECHNOLOGYV S ARJUN
 
Ilovepdf merged
Ilovepdf mergedIlovepdf merged
Ilovepdf mergedxyxz
 
Data transmission rate and bandwidth
Data transmission rate and bandwidth Data transmission rate and bandwidth
Data transmission rate and bandwidth Kajal Chaudhari
 

Similar to Digital communication system (20)

Data communication in computer networks ppt
Data communication in computer networks pptData communication in computer networks ppt
Data communication in computer networks ppt
 
PCM_DC_PPT.pdf
PCM_DC_PPT.pdfPCM_DC_PPT.pdf
PCM_DC_PPT.pdf
 
DIGITAL COMMUNICATION SYSTEM.pptx
DIGITAL COMMUNICATION SYSTEM.pptxDIGITAL COMMUNICATION SYSTEM.pptx
DIGITAL COMMUNICATION SYSTEM.pptx
 
digital communication.pdf
digital communication.pdfdigital communication.pdf
digital communication.pdf
 
Digital modulation
Digital modulationDigital modulation
Digital modulation
 
Data Communication & Computer Networks:Digital Signal Encoding
Data Communication & Computer Networks:Digital Signal EncodingData Communication & Computer Networks:Digital Signal Encoding
Data Communication & Computer Networks:Digital Signal Encoding
 
Introduction to-telecommunication-rf
Introduction to-telecommunication-rfIntroduction to-telecommunication-rf
Introduction to-telecommunication-rf
 
Communication System (3).ppt
Communication System (3).pptCommunication System (3).ppt
Communication System (3).ppt
 
Introduction to Digital Communication
Introduction to Digital CommunicationIntroduction to Digital Communication
Introduction to Digital Communication
 
digital-communication-lecture-1 (1).ppt
digital-communication-lecture-1 (1).pptdigital-communication-lecture-1 (1).ppt
digital-communication-lecture-1 (1).ppt
 
Data transmission and optical fiber
Data transmission and optical fiberData transmission and optical fiber
Data transmission and optical fiber
 
multimedia chapter1
multimedia chapter1multimedia chapter1
multimedia chapter1
 
Digital Communication 1
Digital Communication 1Digital Communication 1
Digital Communication 1
 
Chapter_1.pptx
Chapter_1.pptxChapter_1.pptx
Chapter_1.pptx
 
lecture_2_basics.pptx
lecture_2_basics.pptxlecture_2_basics.pptx
lecture_2_basics.pptx
 
Block diagram of digital communication
Block diagram of digital communicationBlock diagram of digital communication
Block diagram of digital communication
 
DIGITALTRANSMISSION TECHNOLOGY
DIGITALTRANSMISSION TECHNOLOGYDIGITALTRANSMISSION TECHNOLOGY
DIGITALTRANSMISSION TECHNOLOGY
 
Ilovepdf merged
Ilovepdf mergedIlovepdf merged
Ilovepdf merged
 
Data transmission rate and bandwidth
Data transmission rate and bandwidth Data transmission rate and bandwidth
Data transmission rate and bandwidth
 
UNIT-1.pdf
UNIT-1.pdfUNIT-1.pdf
UNIT-1.pdf
 

More from babak danyal

Easy Steps to implement UDP Server and Client Sockets
Easy Steps to implement UDP Server and Client SocketsEasy Steps to implement UDP Server and Client Sockets
Easy Steps to implement UDP Server and Client Socketsbabak danyal
 
Java IO Package and Streams
Java IO Package and StreamsJava IO Package and Streams
Java IO Package and Streamsbabak danyal
 
Swing and Graphical User Interface in Java
Swing and Graphical User Interface in JavaSwing and Graphical User Interface in Java
Swing and Graphical User Interface in Javababak danyal
 
block ciphers and the des
block ciphers and the desblock ciphers and the des
block ciphers and the desbabak danyal
 
key distribution in network security
key distribution in network securitykey distribution in network security
key distribution in network securitybabak danyal
 
Lecture10 Signal and Systems
Lecture10 Signal and SystemsLecture10 Signal and Systems
Lecture10 Signal and Systemsbabak danyal
 
Lecture8 Signal and Systems
Lecture8 Signal and SystemsLecture8 Signal and Systems
Lecture8 Signal and Systemsbabak danyal
 
Lecture7 Signal and Systems
Lecture7 Signal and SystemsLecture7 Signal and Systems
Lecture7 Signal and Systemsbabak danyal
 
Lecture6 Signal and Systems
Lecture6 Signal and SystemsLecture6 Signal and Systems
Lecture6 Signal and Systemsbabak danyal
 
Lecture5 Signal and Systems
Lecture5 Signal and SystemsLecture5 Signal and Systems
Lecture5 Signal and Systemsbabak danyal
 
Lecture4 Signal and Systems
Lecture4  Signal and SystemsLecture4  Signal and Systems
Lecture4 Signal and Systemsbabak danyal
 
Lecture3 Signal and Systems
Lecture3 Signal and SystemsLecture3 Signal and Systems
Lecture3 Signal and Systemsbabak danyal
 
Lecture2 Signal and Systems
Lecture2 Signal and SystemsLecture2 Signal and Systems
Lecture2 Signal and Systemsbabak danyal
 
Lecture1 Intro To Signa
Lecture1 Intro To SignaLecture1 Intro To Signa
Lecture1 Intro To Signababak danyal
 
Lecture9 Signal and Systems
Lecture9 Signal and SystemsLecture9 Signal and Systems
Lecture9 Signal and Systemsbabak danyal
 
Cns 13f-lec03- Classical Encryption Techniques
Cns 13f-lec03- Classical Encryption TechniquesCns 13f-lec03- Classical Encryption Techniques
Cns 13f-lec03- Classical Encryption Techniquesbabak danyal
 
Classical Encryption Techniques in Network Security
Classical Encryption Techniques in Network SecurityClassical Encryption Techniques in Network Security
Classical Encryption Techniques in Network Securitybabak danyal
 

More from babak danyal (20)

applist
applistapplist
applist
 
Easy Steps to implement UDP Server and Client Sockets
Easy Steps to implement UDP Server and Client SocketsEasy Steps to implement UDP Server and Client Sockets
Easy Steps to implement UDP Server and Client Sockets
 
Java IO Package and Streams
Java IO Package and StreamsJava IO Package and Streams
Java IO Package and Streams
 
Swing and Graphical User Interface in Java
Swing and Graphical User Interface in JavaSwing and Graphical User Interface in Java
Swing and Graphical User Interface in Java
 
Tcp sockets
Tcp socketsTcp sockets
Tcp sockets
 
block ciphers and the des
block ciphers and the desblock ciphers and the des
block ciphers and the des
 
key distribution in network security
key distribution in network securitykey distribution in network security
key distribution in network security
 
Lecture10 Signal and Systems
Lecture10 Signal and SystemsLecture10 Signal and Systems
Lecture10 Signal and Systems
 
Lecture8 Signal and Systems
Lecture8 Signal and SystemsLecture8 Signal and Systems
Lecture8 Signal and Systems
 
Lecture7 Signal and Systems
Lecture7 Signal and SystemsLecture7 Signal and Systems
Lecture7 Signal and Systems
 
Lecture6 Signal and Systems
Lecture6 Signal and SystemsLecture6 Signal and Systems
Lecture6 Signal and Systems
 
Lecture5 Signal and Systems
Lecture5 Signal and SystemsLecture5 Signal and Systems
Lecture5 Signal and Systems
 
Lecture4 Signal and Systems
Lecture4  Signal and SystemsLecture4  Signal and Systems
Lecture4 Signal and Systems
 
Lecture3 Signal and Systems
Lecture3 Signal and SystemsLecture3 Signal and Systems
Lecture3 Signal and Systems
 
Lecture2 Signal and Systems
Lecture2 Signal and SystemsLecture2 Signal and Systems
Lecture2 Signal and Systems
 
Lecture1 Intro To Signa
Lecture1 Intro To SignaLecture1 Intro To Signa
Lecture1 Intro To Signa
 
Lecture9 Signal and Systems
Lecture9 Signal and SystemsLecture9 Signal and Systems
Lecture9 Signal and Systems
 
Lecture9
Lecture9Lecture9
Lecture9
 
Cns 13f-lec03- Classical Encryption Techniques
Cns 13f-lec03- Classical Encryption TechniquesCns 13f-lec03- Classical Encryption Techniques
Cns 13f-lec03- Classical Encryption Techniques
 
Classical Encryption Techniques in Network Security
Classical Encryption Techniques in Network SecurityClassical Encryption Techniques in Network Security
Classical Encryption Techniques in Network Security
 

Recently uploaded

Developer Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQLDeveloper Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQLScyllaDB
 
Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebUiPathCommunity
 
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptxThe Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptxLoriGlavin3
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Mattias Andersson
 
Scanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsScanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsRizwan Syed
 
unit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxunit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxBkGupta21
 
The State of Passkeys with FIDO Alliance.pptx
The State of Passkeys with FIDO Alliance.pptxThe State of Passkeys with FIDO Alliance.pptx
The State of Passkeys with FIDO Alliance.pptxLoriGlavin3
 
Merck Moving Beyond Passwords: FIDO Paris Seminar.pptx
Merck Moving Beyond Passwords: FIDO Paris Seminar.pptxMerck Moving Beyond Passwords: FIDO Paris Seminar.pptx
Merck Moving Beyond Passwords: FIDO Paris Seminar.pptxLoriGlavin3
 
Use of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptx
Use of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptxUse of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptx
Use of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptxLoriGlavin3
 
How AI, OpenAI, and ChatGPT impact business and software.
How AI, OpenAI, and ChatGPT impact business and software.How AI, OpenAI, and ChatGPT impact business and software.
How AI, OpenAI, and ChatGPT impact business and software.Curtis Poe
 
Moving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdfMoving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdfLoriGlavin3
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Mark Simos
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024Lorenzo Miniero
 
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfHyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfPrecisely
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenHervé Boutemy
 
TrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data PrivacyTrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data PrivacyTrustArc
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek SchlawackFwdays
 
DSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine TuningDSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine TuningLars Bell
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyAlfredo García Lavilla
 
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024BookNet Canada
 

Recently uploaded (20)

Developer Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQLDeveloper Data Modeling Mistakes: From Postgres to NoSQL
Developer Data Modeling Mistakes: From Postgres to NoSQL
 
Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio Web
 
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptxThe Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
The Fit for Passkeys for Employee and Consumer Sign-ins: FIDO Paris Seminar.pptx
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?
 
Scanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsScanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL Certs
 
unit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptxunit 4 immunoblotting technique complete.pptx
unit 4 immunoblotting technique complete.pptx
 
The State of Passkeys with FIDO Alliance.pptx
The State of Passkeys with FIDO Alliance.pptxThe State of Passkeys with FIDO Alliance.pptx
The State of Passkeys with FIDO Alliance.pptx
 
Merck Moving Beyond Passwords: FIDO Paris Seminar.pptx
Merck Moving Beyond Passwords: FIDO Paris Seminar.pptxMerck Moving Beyond Passwords: FIDO Paris Seminar.pptx
Merck Moving Beyond Passwords: FIDO Paris Seminar.pptx
 
Use of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptx
Use of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptxUse of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptx
Use of FIDO in the Payments and Identity Landscape: FIDO Paris Seminar.pptx
 
How AI, OpenAI, and ChatGPT impact business and software.
How AI, OpenAI, and ChatGPT impact business and software.How AI, OpenAI, and ChatGPT impact business and software.
How AI, OpenAI, and ChatGPT impact business and software.
 
Moving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdfMoving Beyond Passwords: FIDO Paris Seminar.pdf
Moving Beyond Passwords: FIDO Paris Seminar.pdf
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024
 
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdfHyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
Hyperautomation and AI/ML: A Strategy for Digital Transformation Success.pdf
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache Maven
 
TrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data PrivacyTrustArc Webinar - How to Build Consumer Trust Through Data Privacy
TrustArc Webinar - How to Build Consumer Trust Through Data Privacy
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
 
DSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine TuningDSPy a system for AI to Write Prompts and Do Fine Tuning
DSPy a system for AI to Write Prompts and Do Fine Tuning
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easy
 
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
New from BookNet Canada for 2024: Loan Stars - Tech Forum 2024
 

Digital communication system

  • 2. INTRODUCTION Digital communication is a mode of communication where the information or the thought is encoded digitally as discrete signals and electronically transferred to the recipients. Digital communication is one of the most commonly used modes of communication now a days.
  • 3. Example of Digital Communication System • Manager wanted to meet all his team members at the conference room to discuss their key responsibility areas and areas of expertise. He didn’t have the time to go to their workstations and invite them individually. Instead he opted an easier and cheaper mode to communicate his idea. He sent an email marking a cc to all the participants, inviting them for the meeting. This is an example of Digital communication where the information was sent electronically.
  • 4. Explanation In digital communication • Information flows in a digital form and the source is generally the keyboard of the computer. • A single individual is capable of digital communication. • It also saves wastage of manpower and is one of the cheapest modes of communication. • Digital communication is also a really quick way to communicate. The information can reach the recipient within a fraction of a second. An individual no longer has to wait to personally meet the other individual and share his information.
  • 5. Communications Techniques Digital communication covers a broad area of communications techniques including: • Digital transmission is the transmission of digital pulses between two or more points in a communication system. • Digital radio is the transmitted of digital modulated analog carriers between two or more points in a communication system.
  • 6. Building blocks of Digital Communication System
  • 7. Building blocks of Digital Communication System • Input source and input transducer The source of information can be analog or digital, e.g. analog: audio or video signal, digital: like teletype signal. • Source Encoder The signal produced by source is converted into digital signal consists of 1′s and 0′s. For this we need source encoder. We should like to use as few binary digits as possible to represent the signal. In such a way this efficient representation of the source output results in little or no redundancy. This sequence of binary digits is called information sequence. • Source Encoding or Data Compression The process of efficiently converting the output of analog or digital source into a sequence of binary digits is known as source encoding.
  • 8. • Channel Encoder: The information sequence is passed through the channel encoder. The purpose of the channel encoder is to introduced, in controlled manner, some redundancy in the binary information sequence that can be used at the receiver to overcome the effects of noise and interference encountered in the transmission on the signal through the channel.  E.g. take k bits of the information sequence and map that k bits to unique n bit sequence called code word. The amount of redundancy introduced is measured by the ratio n/k and the reciprocal of this ratio (k/n) is known as rate of code or code rate. Building blocks of Digital Communication System
  • 9. • Digital Modulator: The binary sequence is passed to digital modulator which in turns convert the sequence into electric signals so that we can transmit them on channel. The digital modulator maps the binary sequences into signal wave forms , for example if we represent 1 by sin x and 0 by cos x then we will transmit sin x for 1 and cos x for 0. • Channel: The communication channel is the physical medium that is used for transmitting signals from transmitter to receiver. • Digital Demodulator: The digital demodulator processes the channel corrupted transmitted waveform and reduces the waveform to the sequence of numbers that represents estimates of the transmitted data symbols. Building blocks of Digital Communication System
  • 10. • Channel Decoder: This sequence of numbers then passed through the channel decoder which attempts to reconstruct the original information sequence from the knowledge of the code used by the channel encoder and the redundancy contained in the received data. • The average probability of a bit error at the output of the decoder is a measure of the performance of the demodulator – decoder combination • Source Decoder: Source decoder tries to decode the sequence from the knowledge of the encoding algorithm. And which results in the approximate replica of the input at the transmitter end. • Output Transducer: Finally we get the desired signal in desired format analog or digital. Building blocks of Digital Communication System
  • 11. Channels for Digital Communications • The modulation and coding used in a digital communication system depend on the characteristics of the channel. The two main characteristics of the channel are BANDWIDTH and POWER. In addition the other characteristics are whether the channel is linear or nonlinear, and how free the channel is free from the external interference. • Five channels are considered in the digital communication, namely:  Telephone channels  Coaxial cables  Optical fibers  Microwave radio, and satellite channels.
  • 12. CAUSES OF SIGNAL LOSS The main factors of degradation of signal in Digital Communication are:  Loss in Signal to Noise ratio.  Signal Distortion Caused By ISI.  Distance.
  • 13. • Loss in Signal to Noise Ratio: The SNR can be degrade into two ways. Through Decrease of desired signal power. Through the increase of noise power. • Band limiting Loss: The use of filters in the transmitter to avoid interfering with other channel reduces the amount of energy , result in signal loss. • Intersymbol Interference (ISI): Filtering through the system the received pulses overlap one another; the tail of one pulse smears in to the adjacent symbol interval causing the loss of data in digital communication. • DISTANCE: The distance is large is a great chance of signal distortion. As when the distance is large we use repeaters to amplify the signal ,it amplifies the noise. CAUSES OF SIGNAL LOSS
  • 14. • Intermodulation Products (IM): Signals having different carrier frequencies when simultaneously present in a device the result is a interaction between the carrier frequencies which can produce signals at all combinations of sum and different frequencies. The energy distributed to these signals represents a loss in the signal energy. • Atmospheric Loss: The magnitude of signal loss due to oxygen and water vapors is a function of frequencies. • AM/PM conversion: A phase noise phenomenon in which signal amplitude fluctuations produce phase variation that contribute phase noise to signals that will be coherently detected causing sidebands which result in signal loss. CAUSES OF SIGNAL LOSS
  • 15. Comparisons of Digital and Analog Communication Systems Digital Communication System Analog Communication System Advantage : inexpensive digital circuits privacy preserved (data encryption) can merge different data (voice, video and data) and transmit over a common digital transmission system error correction by coding Disadvantages : expensive analog components : L&C no privacy can not merge data from diff. sources no error correction capability Disadvantages : larger bandwidth synchronization problem is relatively difficult Advantages : smaller bandwidth synchronization problem is relatively easier