Nokia technologies oy (20240340810). METHOD AND APPARATUS FOR DETERMINING A CONFIGURED MAXIMUM OUTPUT POWER BASED ON AT LEAST ONE BOUNDARY simplified abstract

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METHOD AND APPARATUS FOR DETERMINING A CONFIGURED MAXIMUM OUTPUT POWER BASED ON AT LEAST ONE BOUNDARY

Organization Name

nokia technologies oy

Inventor(s)

Hiromasa Umeda of Tokyo (JP)

Pekka Johannes Marjelund of Lohja (FI)

METHOD AND APPARATUS FOR DETERMINING A CONFIGURED MAXIMUM OUTPUT POWER BASED ON AT LEAST ONE BOUNDARY - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240340810 titled 'METHOD AND APPARATUS FOR DETERMINING A CONFIGURED MAXIMUM OUTPUT POWER BASED ON AT LEAST ONE BOUNDARY

Simplified Explanation:

This patent application describes a method, apparatus, and computer program product for defining the configured maximum output power of a user equipment in a cellular network. The method involves determining the maximum output power based on certain boundaries and reporting it to the network node for accurate control of uplink transmission conditions.

  • The method determines the configured maximum output power of user equipment in a slot for a carrier of a serving cell based on at least one boundary.
  • The boundary is determined using a scaling factor dependent on the number of antenna ports with non-zero transmission power on a physical uplink shared channel (PUSCH).
  • The determined configured maximum output power is reported to the network node operating the serving cell for precise control of uplink transmission conditions.

Potential Applications: - This technology can be applied in cellular networks to optimize the power output of user equipment for efficient uplink transmission. - It can enhance network performance by ensuring accurate control of transmission conditions based on the configured maximum output power.

Problems Solved: - Addresses the need for precise control of uplink transmission conditions in cellular networks. - Optimizes the power output of user equipment to improve network efficiency.

Benefits: - Improved network performance and efficiency. - Enhanced control over uplink transmission conditions. - Optimization of power output for user equipment.

Commercial Applications: Title: Enhanced Power Control Technology for Cellular Networks This technology can be utilized by telecommunications companies to enhance the performance and efficiency of their cellular networks. It can lead to better network management and improved user experience, ultimately benefiting both the service providers and end-users.

Prior Art: Readers interested in prior art related to this technology can explore research papers, patents, and industry publications in the field of cellular network optimization, power control, and uplink transmission management.

Frequently Updated Research: Researchers in the field of telecommunications and network optimization frequently publish studies on power control techniques, uplink transmission management, and cellular network efficiency. Stay updated on the latest advancements in these areas to further enhance the understanding and application of this technology.

Questions about Enhanced Power Control Technology for Cellular Networks: 1. How does this technology improve the efficiency of uplink transmission in cellular networks? 2. What are the key factors influencing the determination of the configured maximum output power for user equipment in this method?


Original Abstract Submitted

a method, apparatus and computer program product are provided for defining a configured maximum output power of a user equipment. in the context of a method, a configured maximum output power of the user equipment in a respective slot for a carrier of a serving cell is determined based on at least one boundary. the at least one boundary is determined based at least partly upon a scaling factor dependent upon a number of antenna ports having a non-zero transmission power on a physical uplink shared channel (pusch). the method also reports the determined configured maximum output power to a network node operating the serving cell, thereby allowing the network to control the conditions of the uplink transmission more accurately.