data communications network model

31
Network Models Ahmad Zainudin, S.ST, M.T http://zai.lecturer.pens.ac.id Data Communications 2015

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Page 1: Data Communications Network Model

Network Models

Ahmad Zainudin, S.ST, M.T

http://zai.lecturer.pens.ac.id

Data Communications

2015

Page 2: Data Communications Network Model

LAYERED TASKS

� We use the concept of layers in our daily life. As an example,

let us consider two friends who communicate through postal

mail. The process of sending a letter to a friend would be

complex if there were no services available from the post

office.

Page 3: Data Communications Network Model

Tasks involved in sending a letter

Page 4: Data Communications Network Model

THE OSI MODEL

� Established in 1947, the International Standards

Organization (ISO) is a multinational body dedicated to

worldwide agreement on international standards. An ISO

standard that covers all aspects of network communications

is the Open Systems Interconnection (OSI) model. It was first

introduced in the late 1970s.

Page 5: Data Communications Network Model

ISO is the organization.

OSI is the model.

Note

OSI is the model.

Page 6: Data Communications Network Model

Seven layers of the OSI model

Page 7: Data Communications Network Model

The interaction between layers in the OSI model

Page 8: Data Communications Network Model

An exchange using the OSI model

Page 9: Data Communications Network Model

Physical layer

Page 10: Data Communications Network Model

The physical layer is responsible for movements of

Note

The physical layer is responsible for movements of

individual bits from one hop (node) to the next.

Page 11: Data Communications Network Model

Data link layer

Page 12: Data Communications Network Model

The data link layer is responsible for moving

Note

The data link layer is responsible for moving

frames from one hop (node) to the next.

Page 13: Data Communications Network Model

Hop-to-hop delivery

Page 14: Data Communications Network Model

Network layer

Page 15: Data Communications Network Model

The network layer is responsible for the

Note

The network layer is responsible for the

delivery of individual packets from

the source host to the destination host.

Page 16: Data Communications Network Model

Source-to-destination delivery

Page 17: Data Communications Network Model

Transport layer

Page 18: Data Communications Network Model

The transport layer is responsible for the delivery

Note

The transport layer is responsible for the delivery

of a message from one process to another.

Page 19: Data Communications Network Model

Session layer

Page 20: Data Communications Network Model

The session layer is responsible for dialog

Note

The session layer is responsible for dialog

control and synchronization.

Page 21: Data Communications Network Model

Presentation layer

Page 22: Data Communications Network Model

The presentation layer is responsible for translation,

Note

The presentation layer is responsible for translation,

compression, and encryption.

Page 23: Data Communications Network Model

Application layer

Page 24: Data Communications Network Model

The application layer is responsible for

Note

The application layer is responsible for

providing services to the user.

Page 25: Data Communications Network Model

Summary of layers

Page 26: Data Communications Network Model

TCP/IP and OSI model

Page 27: Data Communications Network Model

ADDRESSING

� Four levels of addresses are used in an internet employing

the TCP/IP protocols: physical, logical, port, and specific.

� Topics discussed in this section:

- Physical Addresses

- Logical Addresses

- Port Addresses

- Specific Addresses

Page 28: Data Communications Network Model

Addresses in TCP/IP

Page 29: Data Communications Network Model

Relationship of layers and addresses in

TCP/IP

Page 30: Data Communications Network Model

Example 1

� A node with physical address 10 sends a frame to a node

with physical address 87. The two nodes are connected by a

link (bus topology LAN). As the figure shows, the computer

with physical address 10 is the sender, and the computer

with physical address 87 is the receiver.

Page 31: Data Communications Network Model

Example 1