18681475. DATA TRANSMISSION METHOD, APPARATUS, AND STORAGE MEDIUM simplified abstract (DATANG MOBILE COMMUNICATIONS EQUIPMENT CO., LTD.)

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DATA TRANSMISSION METHOD, APPARATUS, AND STORAGE MEDIUM

Organization Name

DATANG MOBILE COMMUNICATIONS EQUIPMENT CO., LTD.

Inventor(s)

Li Chen of Beijing (CN)

DATA TRANSMISSION METHOD, APPARATUS, AND STORAGE MEDIUM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18681475 titled 'DATA TRANSMISSION METHOD, APPARATUS, AND STORAGE MEDIUM

The present application introduces a method for data transmission, an apparatus, and a storage medium for terminals or network devices. The method involves determining a group of IP packets within the same data frame at the user plane air interface protocol layer. If the number of IP packets with transmission errors in the group exceeds a certain threshold, the transmission of the remaining IP packets is stopped or their priority is lowered to prioritize other data frames on the QoS flow or other QoS flows. This helps prevent data transmission delays and improves the efficiency of air interface resources.

  • Method for data transmission at the user plane air interface protocol layer
  • Stopping transmission or lowering priority of IP packets with errors to prevent delays
  • Prioritizing other data frames on the same QoS flow or other QoS flows
  • Improving efficiency of air interface resources
  • Avoiding data transmission delays caused by errors in IP packets

Potential Applications: This technology can be applied in various communication systems where data transmission errors need to be managed efficiently to prevent delays and optimize resource usage.

Problems Solved: This technology addresses the issue of data transmission delays caused by errors in IP packets within a data frame, ensuring smoother and more efficient communication.

Benefits: - Improved data transmission efficiency - Reduced delays in communication systems - Optimal utilization of air interface resources

Commercial Applications: This technology can be valuable in telecommunications, IoT devices, and other network systems where efficient data transmission is crucial for performance and reliability.

Prior Art: Prior research in the field of data transmission protocols and error handling mechanisms can provide insights into similar approaches to managing transmission errors.

Frequently Updated Research: Stay updated on advancements in data transmission protocols, error handling techniques, and resource optimization strategies to enhance the performance of communication systems.

Questions about Data Transmission Efficiency: 1. How does this technology improve the efficiency of air interface resources? - This technology improves efficiency by managing transmission errors effectively and prioritizing data frames based on their importance. 2. What are the potential implications of prioritizing data frames on different QoS flows? - Prioritizing data frames can help ensure critical data is transmitted promptly, enhancing overall system performance.


Original Abstract Submitted

The present application provides a data transmission method, an apparatus, and a storage medium, applied to a terminal or a network device. The data transmission method includes: determining, at a user plane air interface protocol layer, a plurality of IP packets belonging to a same data frame; if a quantity of an IP packet with transmission error in the plurality of IP packets is greater than or equal to a quantity threshold, at the user plane air interface protocol layer, stopping a transmission of a remaining IP packet in the plurality of IP packets, or lowering a transmission priority of the remaining IP packet to prioritize a transmission of other data frames on a QoS flow where the data frame is located or prioritize a transmission of a data frame on other QoS flows. Therefore, in a case that the IP packet transmission error in the data frame may affect correct parsing of the data frame, a data transmission delay of the same QoS flow or other QoS flows caused by the remaining IP packet continuing to occupy the air interface resource is avoided, thereby improving the efficiency of air interface resources.