Samsung electronics co., ltd. (20240340749). METHODS PERFORMED BY USER EQUIPMENT AND BASE STATION simplified abstract

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METHODS PERFORMED BY USER EQUIPMENT AND BASE STATION

Organization Name

samsung electronics co., ltd.

Inventor(s)

Yanze Fu of Beijing (CN)

Haijie Qiu of Beijing (CN)

METHODS PERFORMED BY USER EQUIPMENT AND BASE STATION - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240340749 titled 'METHODS PERFORMED BY USER EQUIPMENT AND BASE STATION

The disclosure pertains to a 5G or 6G communication system designed to support higher data transmission rates. A method executed by a user equipment (UE) in a wireless communication system is presented. The method involves receiving a system information block (SIB) from a base station, containing details on a threshold for location-based measurements in RRC idle or RRC inactive, as well as information on the reference location of a serving cell. If the distance between the UE in RRC idle or RRC inactive and the reference location of the serving cell exceeds the threshold, the method includes conducting the location-based measurement for cell reselection.

  • Method for UE in a wireless communication system to perform location-based measurements for cell reselection based on received system information.
  • Includes information on threshold for measurements in RRC idle or RRC inactive and reference location of serving cell.
  • Conducts location-based measurements if distance between UE and serving cell exceeds the threshold.
  • Aimed at enhancing network efficiency and optimizing cell selection for improved performance.
  • Addresses the need for seamless connectivity and efficient handover procedures in high-speed communication systems.

Potential Applications: - Enhanced network performance in 5G and future 6G communication systems. - Improved cell selection and handover processes for better user experience. - Optimization of network resources for increased efficiency and data transmission rates.

Problems Solved: - Addressing challenges related to cell reselection and handover in wireless communication systems. - Enhancing network reliability and performance in high-speed data transmission environments.

Benefits: - Improved network efficiency and performance. - Enhanced user experience with seamless connectivity. - Optimal resource utilization for higher data transmission rates.

Commercial Applications: Title: "Enhancing Cell Selection in High-Speed Communication Systems" This technology can be utilized in telecommunications companies to improve network performance and user experience in high-speed communication environments. It can also benefit equipment manufacturers by providing innovative solutions for optimizing network resources and enhancing data transmission rates.

Questions about 5G/6G: 1. How does this technology improve network efficiency in high-speed communication systems? This technology enhances network efficiency by enabling location-based measurements for cell reselection, ensuring optimal cell selection and handover procedures for improved performance.

2. What are the potential applications of this innovation in the telecommunications industry? This innovation can be applied in telecommunications for enhancing network performance, optimizing resource utilization, and improving user experience in high-speed communication systems.


Original Abstract Submitted

the disclosure relates to a 5g or 6g communication system for supporting a higher data transmission rate. a method performed by a user equipment (ue) in a wireless communication system is provided. the method comprises receiving, from a base station, a system information block (sib) including information on a threshold for a location-based measurement in a radio resource control (rrc) idle or rrc inactive and information on a reference location of a serving cell and in case that a distance between the ue in the rrc idle or the rrc inactive and the reference location of the serving cell is larger than the threshold, performing the location-based measurement for cell reselection