Qualcomm incorporated (20240097749). TECHNIQUES FOR MANAGING LOW OR VARIABLE PHASE SHIFT RESOLUTIONS IN BEAM-BASED COMMUNICATIONS simplified abstract

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TECHNIQUES FOR MANAGING LOW OR VARIABLE PHASE SHIFT RESOLUTIONS IN BEAM-BASED COMMUNICATIONS

Organization Name

qualcomm incorporated

Inventor(s)

Vasanthan Raghavan of West Windsor Township NJ (US)

Shrenik Patel of San Diego CA (US)

Rajagopalan Rangarajan of San Diego CA (US)

Damin Cao of San Diego CA (US)

Kang Yang of San Diego CA (US)

Jung Ho Ryu of Fort Lee NJ (US)

Junyi Li of Fairless Hills PA (US)

TECHNIQUES FOR MANAGING LOW OR VARIABLE PHASE SHIFT RESOLUTIONS IN BEAM-BASED COMMUNICATIONS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240097749 titled 'TECHNIQUES FOR MANAGING LOW OR VARIABLE PHASE SHIFT RESOLUTIONS IN BEAM-BASED COMMUNICATIONS

Simplified Explanation

The patent application describes methods, systems, and devices for wireless communication, specifically focusing on beam-based communications and phase shifting operations.

  • User equipment (UE) can request to update the resolution of a phase shifting operation associated with beam-based communications.
  • The UE receives approval from the network entity to update the resolution.
  • The UE then communicates using a beam based on the updated resolution of the phase shifting operation.
  • The UE can also request to suspend a beam refinement process based on the resolution of the phase shifting operation.
  • Upon approval from the network entity, the UE communicates with the network entity using a beam based on suspending further beam refinement.

Potential Applications

This technology can be applied in various wireless communication systems, such as 5G networks, satellite communications, and IoT devices.

Problems Solved

This technology solves the problem of optimizing beam-based communications by allowing for the adjustment of phase shifting operations and the suspension of beam refinement processes.

Benefits

The benefits of this technology include improved communication efficiency, reduced interference, and enhanced network performance.

Potential Commercial Applications

Potential commercial applications of this technology include telecommunications infrastructure, smart city networks, and industrial IoT systems.

Possible Prior Art

One possible prior art could be related to previous patents or research on beamforming techniques in wireless communication systems.

Unanswered Questions

How does this technology impact battery life in user equipment?

This article does not address the potential impact of these beam-based communication methods on the battery life of user equipment. It would be interesting to explore how these operations affect power consumption in devices.

Are there any limitations to the range of beam-based communications using this technology?

The article does not discuss any limitations in terms of the range of communication achievable with beam-based communications. It would be valuable to understand the extent to which this technology can support long-distance communication.


Original Abstract Submitted

methods, systems, and devices for wireless communication are described. in some systems, a user equipment (ue) may transmit, to a network entity, a first signal including a request to update a resolution of a phase shifting operation associated with beam-based communications. the ue may receive, from the network entity, a second signal approving the request. the ue may communicate using a beam according to an updated resolution of the phase shifting operation based on the second signal approving the request. additionally, or alternatively, the ue may transmit a first signal including a request to suspend a beam refinement process based on the resolution of the phase shifting operation. the ue may receive a second signal approving the request to suspend the beam refinement process. the ue may communicate with the network entity using a beam based on suspending further beam refinement in response to the second signal.