17944838. CYCLIC REDUNDANCY CHECK DESIGN FOR COMMON AND PRIVATE TRANSPORT BLOCKS IN RATE SPLITTING TRANSMISSIONS simplified abstract (QUALCOMM Incorporated)

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CYCLIC REDUNDANCY CHECK DESIGN FOR COMMON AND PRIVATE TRANSPORT BLOCKS IN RATE SPLITTING TRANSMISSIONS

Organization Name

QUALCOMM Incorporated

Inventor(s)

Ahmed Attia Abotabl of San Diego CA (US)

Ahmed Elshafie of San Diego CA (US)

Marwen Zorgui of San Diego CA (US)

Ahmed Abdelaziz Ibrahim Abdelaziz Zewail of San Diego CA (US)

Wanshi Chen of San Diego CA (US)

CYCLIC REDUNDANCY CHECK DESIGN FOR COMMON AND PRIVATE TRANSPORT BLOCKS IN RATE SPLITTING TRANSMISSIONS - A simplified explanation of the abstract

This abstract first appeared for US patent application 17944838 titled 'CYCLIC REDUNDANCY CHECK DESIGN FOR COMMON AND PRIVATE TRANSPORT BLOCKS IN RATE SPLITTING TRANSMISSIONS

Simplified Explanation

The patent application describes methods, systems, and devices for wireless communication, specifically focusing on rate splitting for multiple user equipments (UEs) in a communication system.

  • Device performs rate splitting on messages for different UEs, dividing them into private and common portions.
  • Common portions from different messages are combined into a single common portion.
  • Cyclic redundancy check (CRC) parity bits are generated for private and common portions, attached to transmission blocks.
  • First UE receives first private portion and common portion, while second UE receives second private portion and common portion.

Potential Applications

  • Wireless communication systems
  • Mobile networks
  • Internet of Things (IoT) devices

Problems Solved

  • Efficient data transmission to multiple UEs
  • Optimized use of resources in wireless communication
  • Enhanced reliability through CRC parity bits

Benefits

  • Increased data transmission efficiency
  • Improved reliability and error detection
  • Enhanced performance in multi-user scenarios


Original Abstract Submitted

Methods, systems, and devices for wireless communication are described. A device may perform rate splitting on a first message for a first user equipment (UE) and a second message for a second UE, the first message comprising a first private portion and a first common portion, and the second message comprising a second private portion and a second common portion. The device may combine the first common portion and the second common portion into a third common portion. The device may generate cyclic redundancy check (CRC) parity bits associated with at least one of the first private portion and the third common portion and attach the generated CRC parity bits to one or more blocks associated with the transmission. The device may transmit the first private portion and the third common portion to the first UE, and the second private portion and the third common portion to the second UE.