18669328. UPLINK POWER CONTROL simplified abstract (Lenovo (Singapore) Pte. Ltd.)
Contents
- 1 UPLINK POWER CONTROL
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 UPLINK POWER CONTROL - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Key Features and Innovation
- 1.6 Potential Applications
- 1.7 Problems Solved
- 1.8 Benefits
- 1.9 Commercial Applications
- 1.10 Prior Art
- 1.11 Frequently Updated Research
- 1.12 Questions about Uplink Power Control
- 1.13 Original Abstract Submitted
UPLINK POWER CONTROL
Organization Name
Inventor(s)
Ebrahim Molavianjazi of Lincolnwood IL (US)
Vijay Nangia of Woodridge IL (US)
Hyejung Jung of Northbrook IL (US)
Colin D. Frank of Park Ridge IL (US)
Robert T. Love of Barrington IL (US)
Ravi Kuchibhotla of Chicago IL (US)
Hossein Bagheri of Dearborn Heights MI (US)
UPLINK POWER CONTROL - A simplified explanation of the abstract
This abstract first appeared for US patent application 18669328 titled 'UPLINK POWER CONTROL
Simplified Explanation
The patent application describes a method for uplink power control in wireless communication systems.
- Receiving a message that configures a set of resources for uplink transmissions.
- Determining the uplink transmission beam pattern associated with the resource.
- Calculating the maximum output power based on antenna array properties.
- Setting the transmit power for the uplink transmission.
- Performing the uplink transmission using the determined transmit power.
Key Features and Innovation
- Configuring resources for uplink transmissions based on beam patterns.
- Calculating maximum output power based on antenna array properties.
- Efficient uplink power control for wireless communication systems.
Potential Applications
This technology can be applied in various wireless communication systems, such as 5G networks, satellite communications, and IoT devices.
Problems Solved
- Optimizing uplink power control for better transmission efficiency.
- Enhancing the performance of wireless communication systems.
- Improving the reliability of uplink transmissions.
Benefits
- Increased efficiency in uplink power control.
- Enhanced performance and reliability of wireless communication systems.
- Better utilization of resources for uplink transmissions.
Commercial Applications
Uplink Power Control in 5G Networks and Satellite Communications
This technology can be utilized in 5G networks and satellite communications to improve uplink transmission efficiency and reliability, leading to better overall network performance.
Prior Art
There may be prior art related to uplink power control in wireless communication systems, which can be found by researching patents and publications in the field of wireless communications and signal processing.
Frequently Updated Research
Researchers are constantly working on improving uplink power control algorithms and techniques in wireless communication systems to enhance performance and efficiency.
Questions about Uplink Power Control
How does uplink power control impact the overall performance of wireless communication systems?
Uplink power control plays a crucial role in optimizing transmission efficiency and ensuring reliable communication in wireless systems.
What are the key factors that influence the determination of transmit power for uplink transmissions?
Factors such as antenna array properties, beam patterns, and resource configurations affect the calculation of transmit power for uplink transmissions.
Original Abstract Submitted
Apparatuses, methods, and systems are disclosed for uplink power control. One method includes: receiving a message that configures a set of resources that each includes a downlink resource or an uplink sounding resource and is associated with an uplink transmission beam pattern; receiving scheduling information for an uplink transmission that is associated with a resource of the set of resources; determining an uplink transmission beam pattern associated with the resource; determining a configured maximum output power for the uplink transmission beam pattern that is based on an antenna array property associated with the uplink transmission beam pattern; determining a transmit power for the uplink transmission based on the configured maximum output power; and performing the uplink transmission using the uplink transmission beam pattern based on the transmit power.
- Lenovo (Singapore) Pte. Ltd.
- Ebrahim Molavianjazi of Lincolnwood IL (US)
- Vijay Nangia of Woodridge IL (US)
- Hyejung Jung of Northbrook IL (US)
- Colin D. Frank of Park Ridge IL (US)
- Robert T. Love of Barrington IL (US)
- Ravi Kuchibhotla of Chicago IL (US)
- Hossein Bagheri of Dearborn Heights MI (US)
- H04W52/36
- H04B7/0426
- H04B7/06
- H04B7/08
- H04L5/00
- H04W16/28
- H04W52/08
- H04W52/10
- H04W52/14
- H04W52/24
- H04W52/32
- H04W72/044
- H04W72/12
- H04W72/121
- H04W72/1268
- H04W72/23
- CPC H04W52/365