Apple inc. (20240357604). SYSTEMS AND METHODS OF TRIGGERING ACTIVE MODE UE POWER SAVING simplified abstract
Contents
- 1 SYSTEMS AND METHODS OF TRIGGERING ACTIVE MODE UE POWER SAVING
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 SYSTEMS AND METHODS OF TRIGGERING ACTIVE MODE UE POWER SAVING - 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 Behaviors
- 1.13 Original Abstract Submitted
SYSTEMS AND METHODS OF TRIGGERING ACTIVE MODE UE POWER SAVING
Organization Name
Inventor(s)
Huaning Niu of San Jose CA (US)
Chunxuan Ye of San Diego CA (US)
Dawei Zhang of Saratoga CA (US)
Haitong Sun of Cupertino CA (US)
Oghenekome Oteri of San Diego CA (US)
Weidong Yang of San Diego CA (US)
SYSTEMS AND METHODS OF TRIGGERING ACTIVE MODE UE POWER SAVING - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240357604 titled 'SYSTEMS AND METHODS OF TRIGGERING ACTIVE MODE UE POWER SAVING
Simplified Explanation
The patent application describes systems, apparatuses, and methods for adapting physical downlink control channel (PDCCH) monitoring behaviors. In some embodiments, a network node and a UE use search space set group switching or PDCCH skipping to change PDCCH monitoring behavior, indicated in a Downlink Control Indicator (DCI).
- Network nodes and UEs can change PDCCH monitoring behavior using search space set group switching or PDCCH skipping.
- The PDCCH monitoring behavior is indicated in a DCI.
Key Features and Innovation
- Adaptation of PDCCH monitoring behaviors using search space set group switching or PDCCH skipping.
- Indication of PDCCH monitoring behavior in a DCI.
Potential Applications
This technology can be applied in wireless communication systems to optimize PDCCH monitoring behaviors for improved efficiency and performance.
Problems Solved
- Enhances the flexibility and adaptability of PDCCH monitoring behaviors.
- Improves the overall performance of wireless communication systems.
Benefits
- Increased efficiency in PDCCH monitoring.
- Enhanced performance of wireless communication systems.
Commercial Applications
Optimizing PDCCH monitoring behaviors can benefit telecommunications companies, network operators, and manufacturers of wireless communication devices by improving network efficiency and user experience.
Prior Art
Readers can explore prior art related to PDCCH monitoring behaviors in wireless communication systems by researching patents, academic papers, and industry publications in the field of wireless communications.
Frequently Updated Research
Stay updated on the latest research and developments in PDCCH monitoring behaviors in wireless communication systems to understand the evolving landscape of this technology.
Questions about PDCCH Monitoring Behaviors
How do search space set group switching and PDCCH skipping impact PDCCH monitoring behaviors?
Search space set group switching and PDCCH skipping allow network nodes and UEs to change their PDCCH monitoring behaviors, leading to improved efficiency and performance in wireless communication systems.
What are the potential benefits of adapting PDCCH monitoring behaviors in wireless communication systems?
Adapting PDCCH monitoring behaviors can result in increased efficiency, enhanced performance, and improved user experience in wireless communication systems.
Original Abstract Submitted
embodiments herein describe systems, apparatuses, and methods for adapting physical downlink control channel (pdcch) monitoring behaviors. in some embodiments, a network node and a ue use search space set group switching to change pdcch monitoring behavior. in some embodiments, a network node and a ue use pdcch skipping to change pdcch monitoring behavior. the pdcch monitoring behavior may be indicated in a downlink control indicator (dci).
- Apple inc.
- Huaning Niu of San Jose CA (US)
- Chunxuan Ye of San Diego CA (US)
- Dawei Zhang of Saratoga CA (US)
- Haitong Sun of Cupertino CA (US)
- Hong He of San Jose CA (US)
- Oghenekome Oteri of San Diego CA (US)
- Sigen Ye of San Diego CA (US)
- Wei Zeng of Saratoga CA (US)
- Weidong Yang of San Diego CA (US)
- Yushu Zhang of Beijing (CN)
- H04W72/23
- H04L5/00
- H04W24/08
- H04W72/0446
- H04W76/28
- CPC H04W72/23