Apple inc. (20240187928). METHOD AND APPARATUS FOR UP ENHANCEMENT simplified abstract
Contents
- 1 METHOD AND APPARATUS FOR UP ENHANCEMENT
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 METHOD AND APPARATUS FOR UP ENHANCEMENT - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Potential Applications
- 1.6 Problems Solved
- 1.7 Benefits
- 1.8 Potential Commercial Applications
- 1.9 Possible Prior Art
- 1.10 Original Abstract Submitted
METHOD AND APPARATUS FOR UP ENHANCEMENT
Organization Name
Inventor(s)
Alexander Sirotkin of Tel Aviv (IL)
Dawei Zhang of Saratoga CA (US)
Haijing Hu of Los Gatos CA (US)
Naveen Kumar R. Palle Venkata of San Diego CA (US)
Pavan Nuggehalli of San Carlos CA (US)
Sarma V. Vangala of Campbell CA (US)
Sethuraman Gurumoorthy of San Ramon CA (US)
Weidong Yang of San Diego CA (US)
Zhibin Wu of Los Altos CA (US)
METHOD AND APPARATUS FOR UP ENHANCEMENT - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240187928 titled 'METHOD AND APPARATUS FOR UP ENHANCEMENT
Simplified Explanation
The patent application describes a method for a user equipment (UE) to perform data transmission/reception via a configured grant (CG)/semi-persistent scheduling (SPS) configuration determined by configuration information acquired, including first configuration information for determining the CG/SPS configuration.
- Acquiring configuration information for determining a CG/SPS configuration, included in a radio resource control (RRC) message.
- Performing data transmission/reception via the determined CG/SPS configuration.
Potential Applications
This technology could be applied in the telecommunications industry for improving data transmission efficiency and reliability in wireless communication systems.
Problems Solved
This technology solves the problem of efficiently determining and utilizing the CG/SPS configuration for data transmission/reception in a UE.
Benefits
The benefits of this technology include enhanced data transmission performance, optimized resource allocation, and improved overall system efficiency in wireless communication networks.
Potential Commercial Applications
Potential commercial applications of this technology include mobile network operators, telecommunications equipment manufacturers, and providers of wireless communication services looking to enhance their network performance and user experience.
Possible Prior Art
One possible prior art could be related to methods for configuring grant and scheduling in wireless communication systems, but specific details would need to be researched further.
Unanswered Questions
How does this technology impact battery life in UEs?
This article does not address the potential impact of the described method on the battery life of user equipment. Further research or testing may be needed to determine if there are any effects on battery consumption.
Are there any compatibility issues with existing network infrastructure?
The article does not mention any potential compatibility issues with current network infrastructure. It would be important to investigate if this method can seamlessly integrate with existing systems without causing any disruptions or conflicts.
Original Abstract Submitted
provided is a method for a user equipment (ue), comprising: acquiring configuration information including a first configuration information for determining a configured grant (cg)/semi-persistent scheduling (sps) configuration, the first configuration information is included in a radio resource control (rrc) message; and performing a data transmission/reception via the cg/sps configuration determined by the configuration information.
- Apple inc.
- Fangli Xu of Beijing (CN)
- Alexander Sirotkin of Tel Aviv (IL)
- Dawei Zhang of Saratoga CA (US)
- Haijing Hu of Los Gatos CA (US)
- Naveen Kumar R. Palle Venkata of San Diego CA (US)
- Pavan Nuggehalli of San Carlos CA (US)
- Ralf Rossbach of Munich (DE)
- Sarma V. Vangala of Campbell CA (US)
- Sethuraman Gurumoorthy of San Ramon CA (US)
- Weidong Yang of San Diego CA (US)
- Yuqin Chen of Beijing (CN)
- Zhibin Wu of Los Altos CA (US)
- H04W28/06