Qualcomm incorporated (20240114366). BEAM FAILURE DETECTION REFERENCE SIGNAL SET UPDATE simplified abstract

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BEAM FAILURE DETECTION REFERENCE SIGNAL SET UPDATE

Organization Name

qualcomm incorporated

Inventor(s)

Tianyang Bai of Somerville NJ (US)

Yan Zhou of San Diego CA (US)

Tao Luo of San Diego CA (US)

Junyi Li of Fairless Hills PA (US)

BEAM FAILURE DETECTION REFERENCE SIGNAL SET UPDATE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240114366 titled 'BEAM FAILURE DETECTION REFERENCE SIGNAL SET UPDATE

Simplified Explanation

The abstract describes methods, systems, and devices for wireless communications involving beam failure detection reference signal sets for component carriers. Here is a simplified explanation of the abstract:

  • User equipment (UE) can receive indications of beam failure detection reference signal sets for a list of component carriers.
  • The inclusion of a component carrier in the list and the applicability of a beam failure detection reference signal set to the component carrier depend on whether the component carrier is of a first type (single beam failure detection reference signal set) or a second type (multiple beam failure detection reference signal sets).
  • The UE monitors component carriers in the list for beam failure using the indicated beam failure detection reference signal sets.

Potential Applications

The technology described in this patent application could be applied in various wireless communication systems, such as 5G networks, to enhance beam failure detection and improve overall network performance.

Problems Solved

This technology addresses the challenge of efficiently detecting beam failures in wireless communication systems, ensuring seamless connectivity and optimal performance for users.

Benefits

The benefits of this technology include improved reliability, reduced downtime due to beam failures, and enhanced user experience in wireless communication environments.

Potential Commercial Applications

One potential commercial application of this technology could be in telecommunications equipment manufacturing, where companies can integrate these beam failure detection methods into their products to offer advanced features to network operators.

Possible Prior Art

One possible prior art related to this technology could be existing patents or research papers on beam failure detection in wireless communication systems, although specific details would need to be researched further.

Unanswered Questions

How does this technology impact battery life in user equipment?

The abstract does not mention the potential impact of implementing these beam failure detection methods on the battery life of user equipment. Further research or testing may be needed to determine if there are any effects on battery consumption.

Are there any specific frequency bands or standards where this technology is most effective?

The abstract does not specify if there are particular frequency bands or wireless communication standards where these beam failure detection reference signal sets are most effective. Additional information or studies may be required to determine the optimal use cases for this technology.


Original Abstract Submitted

methods, systems, and devices for wireless communications are described. a user equipment (ue) may receive an indication of one or more beam failure detection reference signal sets corresponding to a list of component carriers. whether a component carrier is included in the list or whether a beam failure detection reference signal set of the one or more beam failure detection reference signal sets is applicable to the component carrier, or both, may be based on whether the component carrier is of a first type configured for a single beam failure detection reference signal set or is of a second type configured for multiple beam failure detection reference signal sets. the ue may monitor one or more component carriers included in the list for beam failure using the one or more indicated beam failure detection reference signal sets.