17917370. METHOD AND APPARATUS FOR UPLINK/DOWNLINK TRANSMISSION/RECEPTION ON BASIS OF BEAM LINKAGE STATE IN WIRELESS COMMUNICATION SYSTEM simplified abstract (LG ELECTRONICS INC.)

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METHOD AND APPARATUS FOR UPLINK/DOWNLINK TRANSMISSION/RECEPTION ON BASIS OF BEAM LINKAGE STATE IN WIRELESS COMMUNICATION SYSTEM

Organization Name

LG ELECTRONICS INC.

Inventor(s)

Jaehoon Chung of Seoul (KR)

Kyuseok Kim of Seoul (KR)

Jiwon Kang of Seoul (KR)

Seongwon Go of Seoul (KR)

METHOD AND APPARATUS FOR UPLINK/DOWNLINK TRANSMISSION/RECEPTION ON BASIS OF BEAM LINKAGE STATE IN WIRELESS COMMUNICATION SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 17917370 titled 'METHOD AND APPARATUS FOR UPLINK/DOWNLINK TRANSMISSION/RECEPTION ON BASIS OF BEAM LINKAGE STATE IN WIRELESS COMMUNICATION SYSTEM

Simplified Explanation

The patent application describes a method and apparatus for uplink/downlink transmission and reception in a wireless communication system based on a beam linkage state (BLS). The BLS includes information on the mapping relation between reference transmission and reception and target transmission and reception. The method involves receiving information on the BLS and a first spatial parameter for the reference transmission and reception from a base station (BS), and performing uplink transmission or downlink reception based on a second spatial parameter corresponding to the first spatial parameter.

  • The invention is related to wireless communication systems.
  • It introduces the concept of a beam linkage state (BLS) which includes information on the mapping relation between reference transmission and reception and target transmission and reception.
  • The method involves receiving information on the BLS and a first spatial parameter for reference transmission and reception from a base station (BS).
  • It also involves performing uplink transmission or downlink reception based on a second spatial parameter corresponding to the first spatial parameter.

Potential Applications

The technology described in this patent application can be applied in various wireless communication systems, including cellular networks, Wi-Fi networks, and satellite communication systems. It can improve the efficiency and reliability of uplink and downlink transmissions, leading to better overall network performance.

Problems Solved

This technology addresses the challenge of optimizing uplink and downlink transmissions in wireless communication systems. By utilizing the concept of a beam linkage state and mapping relations between different transmission and reception scenarios, it enables more efficient use of spatial parameters and improves the overall quality of communication.

Benefits

- Improved efficiency: The method allows for optimized uplink and downlink transmissions, leading to better utilization of network resources and improved overall efficiency. - Enhanced reliability: By considering the mapping relations between different transmission and reception scenarios, the technology improves the reliability of wireless communication, reducing the chances of signal interference or loss. - Better network performance: With more efficient and reliable uplink and downlink transmissions, the technology contributes to better network performance, providing users with a smoother and more seamless communication experience.


Original Abstract Submitted

A method and an apparatus for uplink/downlink transmission and reception based on a beam linkage state in a wireless communication system are disclosed. A method for performing uplink transmission or downlink reception according to an embodiment of the present disclosure may comprise: receiving, from a base station (BS), information on a beam linkage state (BLS), wherein the BLS includes information on a mapping relation between reference transmission and reception and at least one target transmission and reception; receiving, from the BS, information on a first spatial parameter for the reference transmission and reception which is related to a specific BLS; and performing the uplink transmission or the downlink reception based on a second spatial parameter corresponding to the first spatial parameter.