Qualcomm incorporated (20240298336). TRANSMISSION ACROSS PARTITIONED RESOURCE POOLS simplified abstract
Contents
- 1 TRANSMISSION ACROSS PARTITIONED RESOURCE POOLS
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 TRANSMISSION ACROSS PARTITIONED RESOURCE POOLS - 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 Wireless Communication Technology
- 1.13 Original Abstract Submitted
TRANSMISSION ACROSS PARTITIONED RESOURCE POOLS
Organization Name
Inventor(s)
Ahmed Elshafie of San Diego CA (US)
Ahmed Attia Abotabl of San Diego CA (US)
Hung Dinh Ly of San Diego CA (US)
Seyedkianoush Hosseini of San Diego CA (US)
TRANSMISSION ACROSS PARTITIONED RESOURCE POOLS - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240298336 titled 'TRANSMISSION ACROSS PARTITIONED RESOURCE POOLS
Simplified Explanation
The patent application describes apparatus, methods, and computer program products for wireless communication. It involves transmitting repetition configurations and sidelink information associated with specific transmissions.
- The method includes transmitting repetition configurations to a network entity.
- The repetition configurations contain information about frequency hopping patterns for specific transmissions.
- Sidelink information is included in the transmissions based on the frequency hopping patterns.
Key Features and Innovation
- Transmission of repetition configurations for specific transmissions.
- Inclusion of sidelink information based on frequency hopping patterns.
- Enhancing wireless communication efficiency and reliability.
Potential Applications
This technology can be applied in various wireless communication systems to improve transmission efficiency and reliability.
Problems Solved
- Enhances the accuracy and reliability of wireless transmissions.
- Optimizes frequency hopping patterns for better communication performance.
Benefits
- Improved wireless communication efficiency.
- Enhanced reliability of transmissions.
- Optimal utilization of frequency hopping patterns.
Commercial Applications
Potential commercial applications include telecommunications, IoT devices, and other wireless communication systems where reliable and efficient data transmission is crucial.
Prior Art
Readers can explore prior patents related to wireless communication systems, frequency hopping patterns, and sidelink information transmission to gain a deeper understanding of the technology.
Frequently Updated Research
Stay updated on the latest research in wireless communication systems, frequency optimization techniques, and transmission reliability enhancements to further enhance the application of this technology.
Questions about Wireless Communication Technology
How does this technology improve wireless communication efficiency?
This technology improves wireless communication efficiency by optimizing frequency hopping patterns and including sidelink information in transmissions, enhancing reliability and accuracy.
What are the potential commercial applications of this wireless communication technology?
Potential commercial applications include telecommunications, IoT devices, and various wireless communication systems where reliable and efficient data transmission is essential.
Original Abstract Submitted
apparatus, methods, and computer program products for wireless communication are provided. an example method may include transmitting, to a second network entity, a repetition configuration associated with a first pssch transmission and a second pssch transmission, where the repetition configuration includes information indicative of a frequency hopping pattern associated with the first pssch transmission and the second pssch transmission. the example method may further include transmitting, to the second network entity, the first pssch transmission including a first instance of sidelink information based on the frequency hopping pattern. the example method may further include transmitting, to the second network entity, the second pssch transmission including a second instance of the sidelink information based on the frequency hopping pattern.