Topology network

 Topology:-

Topology defines the structure of the network of how all the components are interconnected

to each other. There are two types of topology: physical and logical topology.

Physical topology is the geometric representation of all the nodes in a network.



Bus Topology:-

o The bus topology is designed in such a way that all the stations are connected through

a single cable known as a backbone cable.

o Each node is either connected to the backbone cable by drop cable or directly

connected to the backbone cable.

o When a node wants to send a message over the network, it puts a message over the

network. All the stations available in the network will receive the message whether it

has been addressed or not.

o The bus topology is mainly used in 802.3 (ethernet) and 802.4 standard networks.

o The configuration of a bus topology is quite simpler as compared to other topologies.

o The backbone cable is considered as a "single lane" through which the message is

broadcast to all the stations.

o The most common access method of the bus topologies is CSMA (Carrier Sense

Multiple Access).

CSMA: It is a media access control used to control the data flow so that data integrity is

maintained, i.e., the packets do not get lost. There are two alternative ways of handling the

problems that occur when two nodes send the messages simultaneously.

o CSMA CD: CSMA CD (Collision detection) is an access method used to detect the

collision. Once the collision is detected, the sender will stop transmitting the data.

Therefore, it works on "recovery after the collision".

o CSMA CA: CSMA CA (Collision Avoidance) is an access method used to avoid the

collision by checking whether the transmission media is busy or not. If busy, then the

sender waits until the media becomes idle. This technique effectively reduces the

possibility of the collision. It does not work on "recovery after the collision".




Advantages of Bus topology:-'

o Low-cost cable: In bus topology, nodes are directly connected to the cable without

passing through a hub. Therefore, the initial cost of installation is low.

o Moderate data speeds: Coaxial or twisted pair cables are mainly used in bus-based

networks that support upto 10 Mbps.

o Familiar technology: Bus topology is a familiar technology as the installation and

troubleshooting techniques are well known, and hardware components are easily

available.

o Limited failure: A failure in one node will not have any effect on other nodes.

Disadvantages of Bus topology:-

o Extensive cabling: A bus topology is quite simpler, but still it requires.

o Difficult troubleshooting: It requires specialized test equipment to determine the

cable faults. If any fault occurs in the cable, then it would disrupt the communication

for all the nodes.

o Signal interference: If two nodes send the messages simultaneously, then the signals

of both the nodes collide with each other.

o Reconfiguration difficult: Adding new devices to the network would slow down the

network.

o Attenuation: Attenuation is a loss of signal leads to communication issues. Repeaters

are used to regenerate the signal.

Ring Topology:-

o Ring topology is like a bus topology, but with connected ends.

o The node that receives the message from the previous computer will retransmit to the

next node.

o The data flows in one direction, i.e., it is unidirectional.

o The data flows in a single loop continuously known as an endless loop.

o It has no terminated ends, i.e., each node is connected to other node and having no

termination point.

o The data in a ring topology flow in a clockwise direction.

o The most common access method of the ring topology is token passing.

o Token passing: It is a network access method in which token is passed from

one node to another node.

o Token: It is a frame that circulates around the network.

Working of Token passing

o A token moves around the network, and it is passed from computer to computer until

it reaches the destination.

o The sender modifies the token by putting the address along with the data.

o The data is passed from one device to another device until the destination address

matches. Once the token received by the destination device, then it sends the

acknowledgment to the sender.

o In a ring topology, a token is used as a carrier





.

Advantages of Ring topology:-

o Network Management: Faulty devices can be removed from the network without

bringing the network down.

o Product availability: Many hardware and software tools for network operation and

monitoring are available.Dr. SK THAHERBASHA, VNITSW Page 13

o Cost: Twisted pair cabling is inexpensive and easily available. Therefore, the

installation cost is very low.

o Reliable: It is a more reliable network because the communication system is not

dependent on the single host computer.

Disadvantages of Ring topology:

o Difficult troubleshooting: It requires specialized test equipment to determine the

cable faults. If any fault occurs in the cable, then it would disrupt the communication

for all the nodes.

o Failure: The breakdown in one station leads to the failure of the overall network.

o Reconfiguration difficult: Adding new devices to the network would slow down the

network.

o Delay: Communication delay is directly proportional to the number of nodes. Adding

new devices increases the communication delay.

Star Topology:

o Star topology is an arrangement of the network in which every node is connected to

the central hub, switch or a central computer.

o The central computer is known as a server, and the peripheral devices attached to the

server are known as clients.

o Coaxial cable or RJ-45 cables are used to connect the computers.

o Hubs or Switches are mainly used as connection devices in a physical star topology.

o Star topology is the most popular topology in network implementation.






Advantages of Star topology

o Efficient troubleshooting: Troubleshooting is quite efficient in a star topology as

compared to bus topology. In a bus topology, the manager has to inspect the

kilometers of cable. In a star topology, all the stations are connected to the centralized

network. Therefore, the network administrator has to go to the single station to

troubleshoot the problem.

o Network control: Complex network control features can be easily implemented in

the star topology. Any changes made in the star topology are automatically

accommodated.

o Limited failure: As each station is connected to the central hub with its own cable,

therefore failure in one cable will not affect the entire network.

o Familiar technology: Star topology is a familiar technology as its tools are cost￾effective.

o Easily expandable: It is easily expandable as new stations can be added to the open

ports on the hub.Dr. SK THAHERBASHA, VNITSW Page 14

o Cost effective: Star topology networks are cost-effective as it uses inexpensive

coaxial cable.

o High data speeds: It supports a bandwidth of approx 100Mbps. Ethernet 100BaseT is

one of the most popular Star topology networks.

Disadvantages of Star topology

o A Central point of failure: If the central hub or switch goes down, then all the

connected nodes will not be able to communicate with each other.

o Cable: Sometimes cable routing becomes difficult when a significant amount of

routing is required.

Tree topology:

oTree topology combines the characteristics of bus topology and star topology.

o A tree topology is a type of structure in which all the computers are connected with

each other in hierarchical fashion.

o The top-most node in tree topology is known as a root node, and all other nodes are

the descendants of the root node.

o There is only one path exists between two nodes for the data transmission. Thus, it

forms a parent-child hierarchy.






Advantages of Tree topology

o Support for broadband transmission: Tree topology is mainly used to provide

broadband transmission, i.e., signals are sent over long distances without being

attenuated.

o Easily expandable: We can add the new device to the existing network. Therefore,

we can say that tree topology is easily expandable.

o Easily manageable: In tree topology, the whole network is divided into segments

known as star networks which can be easily managed and maintained.

o Error detection: Error detection and error correction are very easy in a tree topology.

o Limited failure: The breakdown in one station does not affect the entire network.

o Point-to-point wiring: It has point-to-point wiring for individual segments.

Disadvantages of Tree topology

o Difficult troubleshooting: If any fault occurs in the node, then it becomes difficult to

troubleshoot the problem.

o High cost: Devices required for broadband transmission are very costly.

o Failure: A tree topology mainly relies on main bus cable and failure in main bus

cable will damage the overall network.

o Reconfiguration difficult: If new devices are added, then it becomes difficult to

reconfigure. 

Mesh topology:

o Mesh technology is an arrangement of the network in which computers are

interconnected with each other through various redundant connections.

o There are multiple paths from one computer to another computer.

o It does not contain the switch, hub or any central computer which acts as a central

point of communication.

o The Internet is an example of the mesh topology.

o Mesh topology is mainly used for WAN implementations where communication

failures are a critical concern.

o Mesh topology is mainly used for wireless networks.

o Mesh topology can be formed by using the formula:

Number of cables = (n*(n-1))/2;

Where n is the number of nodes that represents the network.

Mesh topology is divided into two categories:

o Fully connected mesh topology

o Partially connected mesh topology

o Full Mesh Topology: In a full mesh topology, each computer is connected to all the

computers available in the network.

o Partial Mesh Topology: In a partial mesh topology, not all but certain computers are

connected to those computers with which they communicate frequently.






Advantages of Mesh topology:

Reliable: The mesh topology networks are very reliable as if any link breakdown will not

affect the communication between connected computers.

Fast Communication: Communication is very fast between the nodes.

Easier Reconfiguration: Adding new devices would not disrupt the communication between

other devices.Dr. SK THAHERBASHA, VNITSW Page 16

Disadvantages of Mesh topology

o Cost: A mesh topology contains a large number of connected devices such as a router

and more transmission media than other topologies.

o Management: Mesh topology networks are very large and very difficult to maintain

and manage. If the network is not monitored carefully, then the communication link

failure goes undetected.

o Efficiency: In this topology, redundant connections are high that reduces the

efficiency of the network.

Hybrid Topology:

o The combination of various different topologies is known as Hybrid topology.

o A Hybrid topology is a connection between different links and nodes to transfer the

data.

o When two or more different topologies are combined together is termed as Hybrid

topology and if similar topologies are connected with each other will not result in

Hybrid topology. For example, if there exist a ring topology in one branch of ICICI

bank and bus topology in another branch of ICICI bank, connecting these two

topologies will result in Hybrid topology.





Advantages of Hybrid Topology

o Reliable: If a fault occurs in any part of the network will not affect the functioning of

the rest of the network.

o Scalable: Size of the network can be easily expanded by adding new devices without

affecting the functionality of the existing network.

o Flexible: This topology is very flexible as it can be designed according to the

requirements of the organization.

o Effective: Hybrid topology is very effective as it can be designed in such a way that

the strength of the network is maximized and weakness of the network is minimized.

Disadvantages of Hybrid topology

o  design: The major drawback of the Hybrid topology is the design of the

Hybrid network. It is very difficult to design the architecture of the Hybrid network.

o Costly Hub: The Hubs used in the Hybrid topology are very expensive as these hubs

are different from usual Hubs used in other topologies.Dr. SK THAHERBASHA, VNITSW Page 17

o Costly infrastructure: The infrastructure cost is very high as a hybrid network

requires a lot of cabling, network devices, etc.

Daisy Chain Topology:

In a daisy chain network topology, the connection of one network node can be done to the

next network node in a chain or a line without any dominant devices. So the message can be

transmitted from one computer to other, then to the next one. This kind of topology is linear,

wherever the primary and final nodes are not linked. So this network is one of the easiest

network topologies to include several computer devices into the computer network. A Daisy

Chain can be linear or ring.

This type of method is mainly used by administrators of the system to include more otherwise

latest machines toward the network. However, it mainly depends on the type of topology we

are using. For example, if we are utilizing a point-to-point type, we should include the latest

device at the ending of the chain. But, in the ring-type topology, there is no last point, so the

additional node will turn into an element of the topology.

These network topologies are classified into two types like linear daisy and ring daisy. In a

linear daisy chain, the connection of a single computer can be done to the next one through

the 2-way wire connection whereas, in the ring daisy chain topology, a single computer can

become a part of the ring network by being placed within the center of the chain.

Linear Daisy Chain





Advantages

Additional cables are not required

The transmission of data is fast & simple

Construction is less cost

Disadvantages

The speed of the entire network can be reduced if the number of nodes increases.

It permits the station to transmit & receive the information in a two-way manner. Thus, all the

computer needs two transmitters & receivers for communication.

Applications

It is used to direct the network nodes’ connection as well as the computer nodes. It is a usual

type of topology.






The ring daisy chain includes many benefits as compared to the linear daisy network due to

the 2-way links. When the ring breaks, then transmission occurs within the reversible lane

through verifying the connectivity. Therefore it is used in the MAN (Metropolitan Area

Network).

MultiDrop Network Topology

A fully interconnected network was limited in this topology by using an individual cable

around all nodes. Thus in this topology, only one line is shared by all nodes. Whenever any

network transmits a message, it keeps both the sender address and the destination or receiver

address as tags.

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