18503418. METHODS AND DEVICES FOR POWER CONTROL simplified abstract (Nokia Technologies Oy)

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METHODS AND DEVICES FOR POWER CONTROL

Organization Name

Nokia Technologies Oy

Inventor(s)

Matha Deghel of Massy (FR)

Keeth Saliya Jayasinghe Laddu of Espoo (FI)

METHODS AND DEVICES FOR POWER CONTROL - A simplified explanation of the abstract

This abstract first appeared for US patent application 18503418 titled 'METHODS AND DEVICES FOR POWER CONTROL

Simplified Explanation

Embodiments of the present disclosure relate to methods and apparatus for uplink transmission power control. A terminal device obtains ratio information for power adjustment of at least one uplink transmission occasion of two or more uplink transmission occasions, where the two or more uplink transmission occasions at least partially overlap in a time domain and the ratio information indicates an adjustment factor for bits per resource element of the at least one uplink transmission occasion of the two or more uplink transmission occasions. The terminal device determines a power adjustment component for the at least one uplink transmission occasion of the two or more uplink transmission occasions at least partially based on the ratio information. In this way, efficient power control for simultaneous uplink transmissions can be achieved, thereby improving energy efficiency.

  • Efficient power control for simultaneous uplink transmissions
  • Ratio information for power adjustment
  • Adjustment factor for bits per resource element
  • Overlapping uplink transmission occasions in a time domain
  • Improved energy efficiency

Potential Applications

This technology can be applied in:

  • Wireless communication systems
  • Internet of Things (IoT) devices
  • Mobile networks

Problems Solved

This technology solves the following problems:

  • Inefficient power control for simultaneous uplink transmissions
  • Lack of energy efficiency in uplink transmission power control

Benefits

The benefits of this technology include:

  • Improved energy efficiency
  • Enhanced performance of uplink transmissions
  • Optimal power adjustment for better resource utilization

Potential Commercial Applications

This technology has potential commercial applications in:

  • Telecommunications industry
  • IoT device manufacturers
  • Mobile network operators

Possible Prior Art

One possible prior art in this field is the use of traditional power control methods for uplink transmissions in wireless communication systems. These methods may not efficiently handle simultaneous uplink transmissions and may not optimize energy usage.

Unanswered Questions

How does this technology compare to existing power control methods for uplink transmissions?

This article does not provide a direct comparison with existing power control methods for uplink transmissions. It would be beneficial to understand the specific advantages and limitations of this technology compared to traditional methods.

What impact does this technology have on battery life in mobile devices?

The article does not mention the impact of this technology on battery life in mobile devices. It would be interesting to know if the improved energy efficiency translates to longer battery life for users.


Original Abstract Submitted

Embodiments of the present disclosure relate to methods and apparatus for uplink transmission power control. A terminal device obtains ratio information for power adjustment of at least one uplink transmission occasion of two or more uplink transmission occasions, wherein the two or more uplink transmission occasions at least partially overlap in a time domain and the ratio information indicates an adjustment factor for bits per resource element of the at least one uplink transmission occasion of the two or more uplink transmission occasions. The terminal device determines a power adjustment component for the at least one uplink transmission occasion of the two or more uplink transmission occasions at least partially based on the ratio information. In this way, efficient power control for simultaneous uplink transmissions can be achieved, thereby improving energy efficiency.