The STAR topology offers several advantages, including ease of installation and configuration, as each device connects independently to a central hub or switch, simplifying network management. This design enhances fault tolerance; if one connection fails, it doesn't affect the rest of the network. Additionally, the centralized nature allows for easier troubleshooting and monitoring. Scalability is another benefit, as new devices can be added without disrupting the existing network.
The combination of bus and star refers to a network topology used in computer networking. In this hybrid topology, the "bus" structure allows multiple devices to connect to a single central cable, while the "star" structure connects all devices to a central hub or switch. This design aims to leverage the advantages of both topologies, providing redundancy and ease of troubleshooting while maintaining efficient data transmission. It can enhance network performance and reliability compared to using either topology alone.
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Star bus topology is a network configuration that combines elements of both star and bus topologies. In this setup, all devices are connected to a central hub or switch (like in a star topology), while the data is transmitted along a single backbone cable (like in a bus topology). This design allows for improved performance and easier troubleshooting, as issues can often be isolated to individual connections. However, if the backbone cable fails, it can disrupt the entire network.
Star topology is favored for its simplicity and ease of management, as all devices are connected to a central hub or switch, which simplifies troubleshooting and network expansion. This configuration provides better performance and isolation, as a failure in one cable does not affect the entire network. Additionally, it allows for easy addition or removal of devices without disrupting the network. Overall, star topology enhances reliability and scalability, making it suitable for various networking environments.
A star topology uses a central network device, such as a hub or a switch, to connect all nodes in the network. Each node is connected directly to the central device, creating a centralized architecture that simplifies network management and troubleshooting.
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Advantages include: Its easy to set up, handle, and implement, It is best-suited for small networks and its less costly. There 3 types of topology which are; ring, bus and star topology.
Star topology.
if any computer fails it doesn't affect the entire system
A star topology is a method of connecting several computers to one another in a network. The cables used in a star topology are twisted pair cables or coaxial cables. Coaxial cables would be the cheapest solution.
The most common LAN topology is that of a "star." In a star topology, each computer, or "node", is connected to a central hub. This is more reliable than a more classical "ring" topology, because a node failing will not bring down the entire network. A bus topology is arguably more reliable, but has poorer performance.
The "star" topology is the most common.
Star topology
Star Topology, where Hubs can act as repeaters.
Star topology is one of the oldest topology
bus topology.
Scalability and reliabillty of star topology makes it the best, easy to remove or add a device.