a network system's software components

The most popular kind of networking software is protocols, which explain to network devices how to join to the network and communicate with one another. hardware
Ethernet repeaters, modems, routers, and network switches are examples of network equipment. Hardware is the basis of a network system.
media relationships
The medium used to connect the network's nodes varies depending on the type of network. Without connections, a network cannot function.
client devices
Client devices are the computers and mobile phones that are connected to the network. It makes access easier.
All these things are necessary to run a workshop on network system design within the organisation.
the linkage between related fields and network systems.
Network systems can be divided into two groups:
When communicating peer-to-peer, each computer sends and receives data to every device directly. There is no main server. The TCP/IP protocol is used.
Each computer transmits data through a shared network via a computer that is centrally controlled. Common names for this type of computer include "Server" and "Print Server." Its duty is to control how each print job is printed.
The operation of a workshop requires the cooperation of many components.
As part of the requirements analysis, list the requirements for each component or
related area presented in the exhibit. Include the following components or network
areas:
B. Network systems and related network traffic.

1 answer

Requirements for network systems and related network traffic in the workshop would include:

1. Protocol compatibility: The network systems should support and be compatible with various protocols such as TCP/IP, HTTP, FTP, etc.

2. Scalability: The network systems should be able to accommodate a growing number of devices and users without a significant impact on performance.

3. Security: The network systems should have inbuilt security measures such as firewalls, encryption, and authentication protocols to protect against unauthorized access and data breaches.

4. Bandwidth Management: The network systems should have the capability to manage and allocate bandwidth efficiently, ensuring optimal performance for all connected devices.

5. Quality of Service (QoS): The network systems should prioritize network traffic based on specific requirements, ensuring smooth and uninterrupted communication.

6. Network Monitoring and Management: The network systems should include tools for monitoring network performance, identifying bottlenecks, and managing network devices.

7. Redundancy and Failover: The network systems should have redundancy features in case of hardware or software failures, ensuring minimal downtime and uninterrupted network connectivity.

8. Network Optimization: The network systems should provide features and capabilities to optimize network performance, such as load balancing, traffic shaping, and caching mechanisms.

9. Interoperability: The network systems should be able to integrate and communicate seamlessly with other systems and technologies, such as cloud services, third-party applications, and mobile devices.

10. Disaster Recovery: The network systems should have backup and recovery mechanisms in place to minimize the impact of network failures or disasters and ensure quick restoration of services.
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