Qualcomm incorporated (20240179696). SEMI-PERSISTENTLY SCHEDULED RATE-SPLITTING COMMUNICATIONS simplified abstract

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SEMI-PERSISTENTLY SCHEDULED RATE-SPLITTING COMMUNICATIONS

Organization Name

qualcomm incorporated

Inventor(s)

Marwen Zorgui of San Diego CA (US)

Ahmed Attia Abotabl of San Diego CA (US)

Ahmed Elshafie of San Diego CA (US)

Wanshi Chen of San Diego CA (US)

SEMI-PERSISTENTLY SCHEDULED RATE-SPLITTING COMMUNICATIONS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240179696 titled 'SEMI-PERSISTENTLY SCHEDULED RATE-SPLITTING COMMUNICATIONS

Simplified Explanation

The patent application describes methods, systems, and devices for wireless communications that involve a semi-persistent design for communicating rate-split messages from a network entity to multiple user equipments (UEs). The network entity transmits control information to UEs indicating encoding information for receipt of downlink messages during respective downlink occasions, which are configured for rate-split communications. Each UE is made aware of semi-persistent downlink occasions where downlink messages are encoded into a common portion and a private portion, allowing the UE to decode the rate-split messages accordingly.

  • Rate-split communication design for wireless communications
  • Semi-persistent downlink occasions for encoding messages
  • Common and private portions for downlink messages
  • Control information transmission from network entity to UEs
  • Decoding of rate-split messages by UEs based on encoding information

Potential Applications

This technology can be applied in various wireless communication systems, such as 5G networks, to efficiently transmit rate-split messages to multiple user equipments.

Problems Solved

- Efficient communication of rate-split messages to multiple UEs - Optimization of downlink message encoding and decoding processes

Benefits

- Improved data transmission efficiency - Enhanced network capacity and performance - Better utilization of wireless communication resources

Potential Commercial Applications

Optimizing wireless communication systems for industries such as telecommunications, IoT, and smart devices.

Possible Prior Art

One possible prior art could be the use of semi-persistent scheduling in wireless communication systems to improve resource allocation and data transmission efficiency.

Unanswered Questions

How does this technology impact battery life of user equipments (UEs)?

The patent application does not provide information on the potential impact of this technology on the battery life of UEs. It would be important to understand if the rate-split communication design has any implications on power consumption.

Are there any limitations to the number of UEs that can be efficiently served using this technology?

The patent application does not address the scalability of this technology in terms of serving a large number of UEs simultaneously. It would be crucial to know if there are any limitations in the number of UEs that can be effectively supported.


Original Abstract Submitted

methods, systems, and devices for wireless communications are described. generally, the proposed techniques provide for a semi-persistent design for communicating rate-split messages from a network entity to multiple user equipments (ues). the network entity may transmit control information to one or more ues indicating encoding information for receipt of one or more downlink messages to be communicated during respective downlink occasions, which may be configured for rate-split communications. thus, a first ue may be made aware of one or more semi-persistent downlink occasions via which respective downlink messages (e.g., respective to each downlink occasion) are to be encoded into a common portion and a private portion. in some cases, the common portion may be common with other downlink messages (e.g., intended for other ues) and the private portion may be specific to the first ue. the first ue may then decode the rate-split downlink messages according to the encoding information.