18158120. METHOD AND SYSTEM FOR HANDLING SERVICE REQUEST PROCEDURE IN COMMUNICATION NETWORK simplified abstract (SAMSUNG ELECTRONICS CO., LTD.)

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METHOD AND SYSTEM FOR HANDLING SERVICE REQUEST PROCEDURE IN COMMUNICATION NETWORK

Organization Name

SAMSUNG ELECTRONICS CO., LTD.

Inventor(s)

Lalith Kumar of Bangalore (IN)

Kailash Kumar Jha of Bangalore (IN)

Nitesh Pushpak Shah of Bangalore (IN)

Ricky Kumar Kaura of Bangalore (IN)

Shweta M of Bangalore (IN)

Ajay Kumawat of Bangalore (IN)

Vikrant Bajaj of Bangalore (IN)

METHOD AND SYSTEM FOR HANDLING SERVICE REQUEST PROCEDURE IN COMMUNICATION NETWORK - A simplified explanation of the abstract

This abstract first appeared for US patent application 18158120 titled 'METHOD AND SYSTEM FOR HANDLING SERVICE REQUEST PROCEDURE IN COMMUNICATION NETWORK

Simplified Explanation

The present disclosure describes a communication method and system that combines 5G technology with Internet of Things (IoT) technology to support higher data rates and enable intelligent services in various domains.

  • The method involves configuring a User Equipment (UE) to establish a Protocol Data Unit (PDU) session type as either always-ON or normal PDU type.
  • The UE then sends a PDU session establishment request message to the network during the initial PDU session establishment procedure, specifying the desired PDU session type.

Potential applications of this technology:

  • Smart home: The method can be used to enable seamless connectivity and communication between various IoT devices in a smart home environment.
  • Smart building: It can facilitate efficient management and control of various systems in a smart building, such as lighting, HVAC, security, and energy management.
  • Smart city: The method can support the integration of different IoT devices and services in a smart city infrastructure, enabling improved urban planning, resource management, and citizen services.
  • Smart car and connected car: It can enhance the connectivity and communication capabilities of vehicles, enabling features like remote diagnostics, vehicle-to-vehicle communication, and autonomous driving.
  • Health care: The method can enable remote patient monitoring, telemedicine, and real-time data exchange between medical devices and healthcare providers.
  • Digital education: It can support interactive and immersive learning experiences through connected devices and platforms.
  • Smart retail: The method can enable personalized shopping experiences, inventory management, and real-time analytics in retail environments.
  • Security and safety services: It can enhance surveillance systems, emergency response systems, and overall security and safety measures.

Problems solved by this technology:

  • The method addresses the need for higher data rates and improved connectivity in the 5G era, enabling seamless communication between devices and systems.
  • It provides a standardized approach for establishing PDU sessions, ensuring compatibility and interoperability between different devices and networks.
  • The method enables efficient and reliable communication in IoT applications, supporting real-time data exchange and intelligent services.

Benefits of this technology:

  • Higher data rates: The method supports higher data rates beyond 4G systems, enabling faster and more efficient communication.
  • Seamless connectivity: It allows for always-ON or normal PDU session types, ensuring continuous and uninterrupted connectivity between devices.
  • Intelligent services: The method enables the development and deployment of intelligent services in various domains, enhancing efficiency, convenience, and user experience.
  • Compatibility and interoperability: The standardized approach ensures compatibility and interoperability between different devices, networks, and applications.
  • Enhanced IoT capabilities: The method enhances the capabilities of IoT devices and applications, enabling real-time data exchange, remote control, and automation.


Original Abstract Submitted

The present disclosure relates to a communication method and system for converging a 5th-Generation (5G) communication system for supporting higher data rates beyond a 4th-Generation (4G) system with a technology for Internet of Things (IoT). The present disclosure may be applied to intelligent services based on the 5G communication technology and the IoT-related technology, such as smart home, smart building, smart city, smart car, connected car, health care, digital education, smart retail, security and safety services. The method includes configuring, by a User Equipment (UE) (), a Protocol Data Unit (PDU) session type as an always-ON type or a normal PDU type. Further, the method includes sending, by the UE (), a PDU session establishment request message including the PDU session type to be the always-ON type or the normal PDU type to a network () during an initial PDU session establishment procedure.