18630369. SYSTEM AND METHOD FOR MONITORING PDCCH IN OVERLAPPING MONITORING OCCASSIONS BASED ON CORESET PRIORITIZATION simplified abstract (SAMSUNG ELECTRONICS CO., LTD.)
Contents
- 1 SYSTEM AND METHOD FOR MONITORING PDCCH IN OVERLAPPING MONITORING OCCASSIONS BASED ON CORESET PRIORITIZATION
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 SYSTEM AND METHOD FOR MONITORING PDCCH IN OVERLAPPING MONITORING OCCASSIONS BASED ON CORESET PRIORITIZATION - 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 PDCCH Monitoring
- 1.13 Original Abstract Submitted
SYSTEM AND METHOD FOR MONITORING PDCCH IN OVERLAPPING MONITORING OCCASSIONS BASED ON CORESET PRIORITIZATION
Organization Name
Inventor(s)
Hamid Saber of San Diego CA (US)
Jung Hyun Bae of San Diego CA (US)
SYSTEM AND METHOD FOR MONITORING PDCCH IN OVERLAPPING MONITORING OCCASSIONS BASED ON CORESET PRIORITIZATION - A simplified explanation of the abstract
This abstract first appeared for US patent application 18630369 titled 'SYSTEM AND METHOD FOR MONITORING PDCCH IN OVERLAPPING MONITORING OCCASSIONS BASED ON CORESET PRIORITIZATION
Simplified Explanation
The patent application describes a system and method for monitoring a PDCCH in a communication network. The method involves selecting a CORESET, determining its qcl type value, identifying overlapping CORESETs with the same qcl type value, and removing them from the slot.
- Select a CORESET from a set of CORESETs in a slot.
- Determine the qcl type value of the reference CORESET.
- Identify overlapping CORESETs with the same qcl type value.
- Remove the overlapping CORESETs from the slot.
Key Features and Innovation
- Monitoring a PDCCH in a communication network.
- Selecting and analyzing CORESETs in a slot.
- Removing overlapping CORESETs with the same qcl type value.
- Improving efficiency and accuracy of PDCCH monitoring.
Potential Applications
This technology can be applied in various communication networks and systems where monitoring PDCCH is essential for efficient data transmission and reception.
Problems Solved
- Ensures accurate monitoring of PDCCH.
- Improves the efficiency of communication networks.
- Enhances data transmission and reception quality.
Benefits
- Enhanced monitoring accuracy.
- Improved network efficiency.
- Better data transmission and reception quality.
Commercial Applications
Title: Enhanced PDCCH Monitoring System This technology can be utilized in 5G networks, IoT systems, and other wireless communication systems to optimize PDCCH monitoring, leading to improved network performance and data transmission efficiency.
Prior Art
Readers can explore existing patents related to PDCCH monitoring systems and methods to understand the evolution of this technology and potential areas for further innovation.
Frequently Updated Research
Researchers are constantly exploring new methods and technologies to enhance PDCCH monitoring in communication networks. Stay updated on the latest advancements in this field to leverage cutting-edge solutions for network optimization.
Questions about PDCCH Monitoring
How does this technology improve the efficiency of PDCCH monitoring?
This technology enhances efficiency by accurately selecting and analyzing CORESETs in a slot, leading to better data transmission and reception quality.
What are the potential applications of this PDCCH monitoring system beyond communication networks?
This system can be applied in various industries where efficient data transmission and reception are crucial, such as IoT, smart cities, and autonomous vehicles.
Original Abstract Submitted
A system and a method are disclosed for monitoring a PDCCH. A method performed by a UE includes i. selecting a CORESET from among a set of CORESETs in a slot; ii. determining a qcl type value of the reference CORESET; iii. determining a first set of CORESETs in the set of CORESETs in the slot that overlap with the reference CORESET and have a same qcl type value as the reference CORESET; iv. determining a second set of CORESETs in the set of CORESETs in the slot that overlaps with the first set of CORESETs and has a different qcl type value than the reference CORESET; and v. removing, from the set of CORESETs in the slot, the first and second sets of CORESETs.