Samsung electronics co., ltd. (20240107421). METHOD AND APPARATUS FOR PERFORMING DISCOVERY FOR SIDELINK COMMUNICATION IN WIRELESS COMMUNICATION SYSTEM simplified abstract

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METHOD AND APPARATUS FOR PERFORMING DISCOVERY FOR SIDELINK COMMUNICATION IN WIRELESS COMMUNICATION SYSTEM

Organization Name

samsung electronics co., ltd.

Inventor(s)

Jeongseok Yu of Gyeonggi-do (KR)

Anil Agiwal of Gyeonggi-do (KR)

Hyunjeong Kang of Gyeonggi-do (KR)

METHOD AND APPARATUS FOR PERFORMING DISCOVERY FOR SIDELINK COMMUNICATION IN WIRELESS COMMUNICATION SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240107421 titled 'METHOD AND APPARATUS FOR PERFORMING DISCOVERY FOR SIDELINK COMMUNICATION IN WIRELESS COMMUNICATION SYSTEM

Simplified Explanation

The patent application abstract describes a method for a fifth or sixth generation communication system to support higher data transmission rates. The method involves a first user equipment (UE) determining whether to relay a message from a second UE based on configuration information and received power levels.

  • The method involves a first UE obtaining configuration information, including a threshold for identifying whether to relay a message from a second UE.
  • The first UE receives a discovery message from the second UE, containing information about the second UE.
  • The first UE measures the received power levels from the second UE and compares it to the threshold to decide whether to relay the message.
  • Based on the comparison result, the first UE performs the transmission of the message from the second UE.

Potential Applications

This technology could be applied in advanced communication systems, such as 5G and 6G networks, to improve data transmission rates and efficiency.

Problems Solved

This technology solves the problem of efficiently relaying messages between user equipment in high-speed communication systems, ensuring reliable and fast data transmission.

Benefits

The benefits of this technology include improved data transmission rates, reduced latency, and enhanced overall performance of communication systems.

Potential Commercial Applications

This technology could be valuable for telecommunications companies, network equipment manufacturers, and other industries involved in developing and implementing advanced communication systems.

Possible Prior Art

One possible prior art could be existing methods for UE-to-UE relay operations in previous generations of communication systems, which may not be as efficient or optimized for high-speed data transmission.

Unanswered Questions

How does this method impact battery life in user equipment devices?

The abstract does not mention the potential impact of this method on the battery life of user equipment devices. It would be important to understand if the relay operations increase power consumption and affect the overall battery performance.

What are the potential security implications of UE-to-UE relay operations?

The abstract does not address the security aspects of UE-to-UE relay operations. It would be essential to consider potential vulnerabilities or risks associated with relaying messages between user equipment devices in a communication network.


Original Abstract Submitted

the disclosure relates to a fifth generation (5g) or sixth generation (6g) communication system to support a data transmission rate higher than before. disclosed is a method performed by a first user equipment (ue), including obtaining configuration information including information on a threshold used for identifying, by the first ue performing a ue-to-ue (u2u) relay operation, whether to perform transmission of a second message based on a first message received by the first ue from a second ue, receiving, from the second ue, a first discovery message including information on the second ue, identifying, based on reference signal received power (rsrp) measured based on communication with the second ue and the threshold, whether to perform transmission of the second message based on the received first discovery message, and performing, based on a result of the identification, transmission of the second message based on the received first discovery message.