Samsung electronics co., ltd. (20240196292). A METHOD AND SYSTEM FOR REPLACEMENT OF ENERGY AND CAPACITY-CONSTRAINED 6G AERIAL CELLS simplified abstract

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A METHOD AND SYSTEM FOR REPLACEMENT OF ENERGY AND CAPACITY-CONSTRAINED 6G AERIAL CELLS

Organization Name

samsung electronics co., ltd.

Inventor(s)

TUSHAR Vrind of Bengaluru (IN)

LALIT KUMAR Pathak of Bengaluru (IN)

SAMIR KUMAR Mishra of Bengaluru (IN)

DEBABRATA Das of Bengaluru (IN)

A METHOD AND SYSTEM FOR REPLACEMENT OF ENERGY AND CAPACITY-CONSTRAINED 6G AERIAL CELLS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240196292 titled 'A METHOD AND SYSTEM FOR REPLACEMENT OF ENERGY AND CAPACITY-CONSTRAINED 6G AERIAL CELLS

Simplified Explanation

The patent application describes a method for replacing a source aerial cell with a target aerial cell in a communication network. This involves transferring link-related parameters and notifying the user equipment (UE) of the change in the cell identity.

Key Features and Innovation

  • Transfer of link-related parameters between source and target aerial cells
  • Notification to UE of change in cell identity
  • Cell switching request to target aerial cell with positioning information for switchover
  • Target aerial cell moves to hovering position indicated by positioning information

Potential Applications

This technology can be applied in cellular communication networks to facilitate seamless handovers between aerial cells, ensuring uninterrupted communication for users.

Problems Solved

The method addresses the challenge of smoothly transitioning communication operations from one aerial cell to another without causing disruptions or data loss.

Benefits

  • Improved user experience with seamless cell transitions
  • Enhanced network reliability and stability
  • Efficient utilization of aerial cell resources

Commercial Applications

  • Telecommunications companies can use this technology to enhance the quality of service for their customers.
  • It can be integrated into 5G networks to optimize aerial cell management and improve network performance.

Prior Art

Readers interested in exploring prior art related to this technology can start by researching patents or publications in the field of cellular communication networks, aerial cell technology, and network handover protocols.

Frequently Updated Research

Researchers in the field of mobile communications and network optimization may be conducting studies on improving handover procedures in aerial cell networks. Stay updated on relevant publications and conferences for the latest advancements in this area.

Questions about Aerial Cell Handover Technology

How does this technology impact the efficiency of aerial cell networks?

This technology enhances the efficiency of aerial cell networks by enabling seamless handovers between cells, reducing disruptions in communication and optimizing resource utilization.

What are the potential challenges in implementing this method in real-world networks?

Implementing this method in real-world networks may face challenges related to network compatibility, interoperability with existing systems, and ensuring a smooth transition without affecting ongoing communication operations.


Original Abstract Submitted

a method of replacing a source aerial cell with a target aerial cell includes receiving a transfer request from the target aerial cell to transfer link related parameters between the source aerial cell and ue and link related parameters between the source aerial cell and a core network. the method further includes transmitting each of the link related parameters to the target aerial cell in response to the received transfer request and further notifying, via a notification message, a change in pcid of the source aerial cell to the ue. the method furthermore includes transmitting a cell switching request to the target aerial cell along with positioning information of the source aerial cell for a switchover of a communication operation with the ue and terrestrial cells served by the source aerial cell, and thereafter the target aerial cell moves to a hovering position indicated by the transmitted positioning information.