Apple inc. (20240137819). CROSS LAYER OPTIMIZATION FOR SELECTION OF A BEST CELL FROM CONDITIONAL SPECIAL CELL CHANGE CANDIDATE CELLS simplified abstract

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CROSS LAYER OPTIMIZATION FOR SELECTION OF A BEST CELL FROM CONDITIONAL SPECIAL CELL CHANGE CANDIDATE CELLS

Organization Name

apple inc.

Inventor(s)

Sushant Vikram of San Jose CA (US)

Amr Abdelrahman Yousef A. Mostafa of Munich (DE)

Yuanye Wang of San Jose CA (US)

Pradeep S. Sharma of Cupertino CA (US)

Ajay Singh of San Jose CA (US)

CROSS LAYER OPTIMIZATION FOR SELECTION OF A BEST CELL FROM CONDITIONAL SPECIAL CELL CHANGE CANDIDATE CELLS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240137819 titled 'CROSS LAYER OPTIMIZATION FOR SELECTION OF A BEST CELL FROM CONDITIONAL SPECIAL CELL CHANGE CANDIDATE CELLS

Simplified Explanation

The patent application discusses systems and methods for optimizing the selection of a best or most preferred cell from conditional special cell change candidate cells, such as conditional handover or conditional primary cell of a secondary cell group change. Criteria for selecting a cell from compliant candidate cells may include cell quality, handover type, bandwidth, carrier type, application needs, congestion, frequency range, and other considerations.

  • Cell selection criteria may include cell quality, handover type, bandwidth, carrier type, application needs, congestion, frequency range, and other factors.
  • The technology aims to optimize the selection of the best cell for a conditional special cell change based on user equipment measurements and provided conditions.

Potential Applications

This technology can be applied in cellular networks to improve handover processes and enhance network performance.

Problems Solved

This technology helps in efficiently selecting the most suitable cell for a conditional special cell change, reducing handover failures and improving overall network quality.

Benefits

The benefits of this technology include enhanced network performance, improved user experience, and optimized resource utilization in cellular networks.

Potential Commercial Applications

Potential commercial applications of this technology include telecommunications companies, network equipment providers, and mobile device manufacturers looking to enhance network efficiency and user experience.

Possible Prior Art

One possible prior art could be related to existing methods for cell selection and handover optimization in cellular networks. Research papers or patents in the field of network optimization may also be relevant.

Unanswered Questions

How does this technology impact battery life in mobile devices?

This article does not address the potential impact of the cell selection optimization on the battery life of mobile devices. It would be interesting to explore whether the optimized cell selection process has any implications for power consumption in user equipment.

What are the potential security implications of this technology?

The article does not delve into the security aspects of the optimized cell selection process. It would be important to consider any security vulnerabilities or risks that may arise from implementing this technology in cellular networks.


Original Abstract Submitted

systems and methods for cross layer optimization for selection of a best or most preferred cell from conditional special cell (spcell) change candidate cells are disclosed. the conditional spcell change may be, for example, a conditional handover (cho) or a conditional primary cell of a secondary cell group (pscell) change (cpc). conditions for a conditional spcell change may be provided to a user equipment (ue). it may be that measurements on multiple cells meet the condition(s) for a conditional spcell change by the ue. preferences/criteria for selecting a cell from these multiple compliant candidate cells meeting the conditional spcell change conditions are discussed herein. these criteria may include, but are not limited to, for example, a cell quality, an inter-versus intra-frequency handover, bandwidth, component carrier (cc) use, band, carrier type, needs/criticality of the application, congestion, frequency range, multiple subscriber identity module (msim) considerations, etc.