Improving Campus Network Environment
To overcome the limitations of existing products, such as increasing traffic load, complex and inefficient QoS policy management, and unstable service quality, the BQN platform was introduced.
"Through PoC, we confirmed that the overall network stability and wireless network performance were dramatically improved."
Background & Challenges
- Limitations of existing QoS products and the need to improve unstable wireless environments
- Difficulty in complex and passive QoS policy management
- Inability to update policies in real-time according to changes in the network environment
Network Operational Environment
Conducted a unique network environment analysis specific to K University.
Diverse Users
Service utilization based on various devices such as personal laptops and smartphones
Critical Core Apps
Stable service of academic administration and e-learning systems is mandatory
High Dependency
High dependence on wireless networks in all spaces including classrooms, libraries, and dormitories
Precise Management
Ensuring priority for academic traffic and efficient separation of general traffic
BQN Implementation Effects
Revolutionary changes after introducing the BQN platform
Increased User Satisfaction
Through improved wireless network performance, satisfaction with online lectures and research activities was maximized.
Enhanced Network Stability
Dramatically reduced the failure rate by proactively detecting and responding to potential issues.
Improved Operational Convenience
Complex manual settings were replaced with AI-based automatic optimization, reducing the burden on administrators.
Cost Reduction & Efficiency
Reduced costs by maximizing the utilization efficiency of existing infrastructure without additional hardware expansion.
The BQN platform
maximizes network performance in any complex environment.
BQN platform's artificial intelligence algorithms increase user experience satisfaction and
maintain optimal infrastructure status through intelligent automation systems.