What is a Network Operations Center (NOC)?

Definition of Network Operations Center(NOC)

Network Operations Center, or NOC for short. It is a team composed of network engineers, system administrators, and security engineers. Its purpose is to ensure the safe operation of network equipment, real-time exchange of data and provide emergency response protection in case of network attacks. NOCs typically work closely with the IT organization and senior corporate leadership to ensure network reliability. To ensure the stable operation and security of an enterprise's network, a good network operation center (NOC) is very important.

What is the structure of NOC?

A network operation center (NOC) is generally composed of three centers (network service center, command and dispatch center, and display experience center).

 

What are the main responsibilities of the NOC?

Network monitoring and maintenance

Network monitoring and maintenance is the most basic responsibility of NOC. Its core task is to track and monitor the flow and exchange of data packets, ensure network security, and detect and prevent network failures.

Optimize network performance

The NOC team needs to optimize network performance. This work includes increasing network bandwidth, modifying router and switch configurations, and more. Optimizing network performance can improve network speed and efficiency, and overall improve user experience.

Respond to cyber threats

The NOC team also needs to respond to network threats, including responding in time when an attack is encountered, to ensure the safe and stable operation of the network.

Why should SOC and NOC work together?

Security Operations Center (SOC) and Network Operations Center (NOC) complement each other to ensure smooth operations. They are all responsible for observing, identifying, analyzing, prioritizing, escalating, and resolving issues, but the problems and solutions they address are very different.

1.Security Operations Center (SOC):

SOC mainly focuses on information/data security by identifying any events and alerts that affect the security of information assets. The SOC team continuously monitors and analyzes corporate security and responds quickly when issues are discovered to ensure the security of corporate IT infrastructure. So the SOC mainly performs operations based on network security.

2.Network Operations Center (NOC):

The NOC is primarily concerned with any network-related events and alerts that affect performance and availability. The NOC team manages incidents in a manner that meets service level agreements (SLAs) and reduces downtime. It is also known as Network Management Center. It continuously supervises, monitors and maintains telecommunications networks. If necessary, the performance and health of the network will be analyzed and any required actions will be taken.

There are subtle differences in the responsibilities of the two, but they are indeed essential differences. To be sure, both are responsible for identifying, investigating, prioritizing, and progressively resolving issues. The type of problem and the impact it has are different. The NOC is responsible for handling events that affect performance or availability, while the SOC handles events that affect the security of information assets. The goal of each is to manage risk, but the means of accomplishing this goal differ markedly.

The ideal system is one where the NOC has access to the SIEM, so it can collaborate with the SOC and each other can complete their tasks. The SOC identifies and analyzes problems, recommends repairs to the NOC, and the NOC identifies the impact of these repairs on the enterprise, and then performs corresponding repairs and implementations. As the network operation center, the NOC is the basis for maintaining the stable operation of the network.

 

What is the role of video walls in NOC?

In the network operation center, the video wall can be used to display real-time network monitoring data, network operation status and other information. By splicing multiple display screens together, the relevant staff can have a clearer and more comprehensive understanding of the operation status of the network to present richer visual effects. In addition, it can respond and deal with unexpected network problems more quickly.

In addition, the video wall can also be used as the command and control center of the NOC, providing an environment for centrally displaying and monitoring network operation status. Through the large-screen display effect of the video wall, relevant staff can observe and analyze network data more intuitively, so as to better manage and operate the network.

To sum up, the video wall plays an important role in the network operation center and can provide better network monitoring, management and operation effects.

The value of building NOC:

Scalability:

Can expand with the business to new locations and markets

Always On:

The 24x7 capability of the NOC means that someone is always there to keep all the software, hardware and network up and running.

Rapid Response:

A NOC is designed to continuously monitor network systems, quickly identify a problem and respond to stop it before it happens.

Network Optimization:

The NOC provides real-time reports on the health of the network, identifying areas for improvement. Fix what's lacking to build a better web.

 

Large-scale video wall installations are a key resource in providing a holistic view of the network ecosystem, welcome to iSEMC's Network Operations Center solutions.

The difference between splicing screen matrix and processor

In the splicing screen control system, matrices, processors, and controllers are commonly used. However, there are still significant differences between splicing screen matrices and splicing screen processors and controllers. The devices used for LCD or LED in different applications are also different. However, it is basically only necessary to choose among these devices, which are mostly used in LCD splicing screen display systems, and the signal source is mainly computer signals, The choice of which product to use mainly depends on objective factors such as the display purpose and the category and quantity of signal sources.

 

The splicing screen matrix, also known as high-definition matrix, usually uses DI interface input and output, so the EDI matrix is currently mainly used in the industry. Its input and output interfaces are more than 4, supporting multiple computer inputs and switching, and simultaneously outputting to multiple splicing screens for display, achieving signal control and switching functions. It is mainly used for connecting computer signal sources at the front end and connecting splicing screens at the back end, It is a control device mainly used in LCD splicing screen systems.

 

Image1:Matched screen matrix display function

And the splicing screen processor, also known as an image processor or external splicing processor, is a more powerful central processing device. It adds more diverse image processing functions on top of the matrix function, such as being able to connect to multiple computer signals and switch, and can also achieve functions such as cross screen, roaming, segmentation, stacking, and picture in picture, which is equivalent to its more comprehensive functions, This is the biggest difference between the splicing screen processor and the splicing screen matrix. So in some large-scale command and dispatch centers and other splicing screen display projects, users have multiple computer signals that need to be switched, and also need functions such as roaming and stacking. The use of splicing screen processors is very widespread.

 

Image2:Splice screen processor function

The splicing screen controller mainly refers to the control box behind the splicing screen, which is not a separate device. It is usually integrated with the panel of the splicing screen, and is mainly responsible for the input of power and signal. The power first passes through the controller before entering the splicing screen, and the signal source is also the same because the splicing screen is only responsible for display, and controlling the splicing between various splicing screens still needs to be achieved through the controller. However, generally, when selling products, splicing screen manufacturers integrate the splicing screen and controller, as it involves compatibility and ensures the normal input and control of signals.

 

So, the difference between the splicing screen matrix and the splicing screen processor is mainly in terms of functionality. The matrix is only used in L-splicing screen systems where the front-end input signal source is multiple computers, responsible for signal switching display, and can achieve both single screen and full screen display effects. The splicing screen processor has stronger functions, which can be used in both LCD splicing screens and LD splicing screen display systems. It can achieve the processing and distribution of monitoring signals and computer signals, and can achieve a wider range of display functions, meeting the needs of large-scale monitoring command and data display systems. So their differences are quite obvious. In addition, the splicing screen matrix and splicing screen controller are completely different products. The former is responsible for signal switching and display, while the controller is a part of the splicing screen.

Maximizing Video Wall Performance: 10 Expert Tips

A video wall is a large display system made up of multiple smaller displays tiled together to form one large screen. The purpose of a video wall is to display large and impactful visuals, such as high-resolution video, graphics, or images, in a public or commercial setting, such as a command center, control room, trade show, or digital signage. The goal of a video wall is to provide a large and high-quality viewing experience that can grab the attention of the viewer and convey information in a clear and concise manner.

Deploying a video wall that meets your needs and budget can be a challenging task. To make the process easier, here are 10 tips to follow:

1.Set clear goals: Determine the purpose of the video wall and how it will be used by end users. This will help you choose the right video wall solution.

2.Consider the location: The environment, such as indoor or outdoor lighting, viewing angle, and distance from the viewer, can all impact the appearance of the video wall.

3.Plan for space and display size: The wall surface and number of displays will affect the size of the video wall. Larger monitors have less bezels, but also cost more. Consider both landscape and portrait orientation and unique angles.

4.Focus on content: The quality of your video wall depends on the content displayed. Choose content that matches the aspect ratio of the video wall for better accessibility. Also, consider the types of content, sources of input, and any advanced features needed, such as interactivity or scheduling.

5.Choose the right monitors: Commercial-grade monitors are better for video walls, but they are more expensive. Make sure your solution can work with any type of display.

6.Make a complete shopping list: Video walls require components like monitors, media players, cabling, and monitor mounts. Look for solutions with as few components as possible to reduce the risk of system failure.

7.Calibrate the video wall: Proper calibration will ensure that the video wall looks seamless. Choose a solution with simple calibration tools.

8.Determine if you can install it yourself: Some solutions can be installed by the user, which can save money. Look for solutions that are easy to install.

9.Plan for the future: A video wall can be a good investment, but make sure the solution can be easily upgraded as technology changes. Consider solutions that use standard architectures or software-based solutions for better flexibility.

10.Take your time: Deploying a video wall can be a complex process, but by following these tips, you can ensure a successful deployment.

LCD splicing screen installation test

With the rapid development of the LCD video wall market, we can see it everywhere in our daily life. Unlike before, it is only used in some law enforcement and supervision departments.

Four development trends of outdoor LED video walls in the future

If you stand in front of an LED video wall today, you'll find that they're noticeably larger, brighter, and more refined than previous models, allowing for seamless viewing and a deeper and more powerful visual experience.