18197874. BASE STATION AND USER EQUIPMENT PERFORMING MULTIPLE INPUT AND MULTIPLE OUTPUT COMMUNICATION, AND OPERATING METHOD THEREOF simplified abstract (SAMSUNG ELECTRONICS CO., LTD.)

From WikiPatents
Jump to navigation Jump to search

BASE STATION AND USER EQUIPMENT PERFORMING MULTIPLE INPUT AND MULTIPLE OUTPUT COMMUNICATION, AND OPERATING METHOD THEREOF

Organization Name

SAMSUNG ELECTRONICS CO., LTD.

Inventor(s)

Leechun Kim of Suwon-si (KR)

Kwonyeol Park of Suwon-si (KR)

Yookeun Kang of Suwon-si (KR)

Sanghyun Lee of Suwon-si (KR)

Seongho Hur of Suwon-si (KR)

BASE STATION AND USER EQUIPMENT PERFORMING MULTIPLE INPUT AND MULTIPLE OUTPUT COMMUNICATION, AND OPERATING METHOD THEREOF - A simplified explanation of the abstract

This abstract first appeared for US patent application 18197874 titled 'BASE STATION AND USER EQUIPMENT PERFORMING MULTIPLE INPUT AND MULTIPLE OUTPUT COMMUNICATION, AND OPERATING METHOD THEREOF

Simplified Explanation

The abstract describes a method for a base station to communicate with multiple User Equipments (UEs). Here are the bullet points explaining the patent/innovation:

  • Identifying the number of activated UEs from a group of UEs.
  • Selecting a feedback scheme that supports the highest data throughput for the identified number of activated UEs based on historical information.
  • Determining the number of UEs in a companion group and a codebook size corresponding to the selected feedback scheme.
  • Performing Multiple Input and Multiple Output (MIMO) communication with the activated UEs based on the determined number of UEs in the companion group and the determined codebook size.

Potential applications of this technology:

  • Wireless communication systems: This method can be applied in various wireless communication systems, such as cellular networks, to improve the efficiency and throughput of communication between base stations and UEs.
  • Internet of Things (IoT): The method can be used in IoT networks to enhance the communication between IoT devices and base stations, enabling faster and more reliable data transmission.

Problems solved by this technology:

  • Throughput optimization: By selecting the feedback scheme that supports the highest data throughput, this method helps optimize the communication between the base station and UEs, ensuring efficient data transmission.
  • Resource allocation: The determination of the number of UEs in the companion group and the codebook size allows for effective resource allocation, maximizing the utilization of available resources.

Benefits of this technology:

  • Improved data throughput: By selecting the feedback scheme that supports the highest data throughput, this method enhances the overall data transmission rate, resulting in faster and more efficient communication.
  • Enhanced resource allocation: The determination of the number of UEs in the companion group and the codebook size enables better resource allocation, leading to improved network performance and increased capacity.
  • Increased reliability: The use of MIMO communication based on the determined parameters enhances the reliability of the communication between the base station and UEs, reducing errors and improving the overall quality of service.


Original Abstract Submitted

A method of a base station communicating with a plurality of User Equipments (UEs), includes: identifying a number of activated UEs from among the plurality of UEs; selecting, among a plurality of feedback schemes, a feedback scheme supporting a highest data throughput at the identified number of activated UEs with reference to history information; determining (i) a number of UEs in a companion group and (ii) a codebook size, the number of UEs in the companion group and the codebook size being corresponding to the selected feedback scheme; and performing Multiple Input and Multiple Output (MIMO) communication with the activated UEs based on the determined number of UEs in the companion group and the determined codebook size.