Huawei technologies co., ltd. (20240097936). COMMUNICATION INTERFACE AND METHOD FOR SEAMLESS ASYMMETRIC COMMUNICATION OVER MULTILANE COMMUNICATION LINK simplified abstract

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COMMUNICATION INTERFACE AND METHOD FOR SEAMLESS ASYMMETRIC COMMUNICATION OVER MULTILANE COMMUNICATION LINK

Organization Name

huawei technologies co., ltd.

Inventor(s)

Sujan Pandey of Leuven (BE)

COMMUNICATION INTERFACE AND METHOD FOR SEAMLESS ASYMMETRIC COMMUNICATION OVER MULTILANE COMMUNICATION LINK - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240097936 titled 'COMMUNICATION INTERFACE AND METHOD FOR SEAMLESS ASYMMETRIC COMMUNICATION OVER MULTILANE COMMUNICATION LINK

Simplified Explanation

The communication interface described in the patent application is designed to manage communication lanes in a communication link. The interface includes logic that can detect changes in the status of awake communication lanes, stop sending data over a lane that has changed status, switch an asleep lane to an awake state, and inform the corresponding interface at the other end of the link.

  • Communication interface with multiple communication lanes
  • Logic to manage awake and asleep communication lanes
  • Detect changes in lane status
  • Stop sending data over changed lanes
  • Switch asleep lane to awake state
  • Inform corresponding interface at other end

Potential Applications

The technology described in this patent application could be applied in various communication systems where efficient management of communication lanes is crucial. Some potential applications include:

  • High-speed data transmission systems
  • Networking equipment
  • Telecommunication systems
  • Data centers

Problems Solved

This technology addresses the following issues:

  • Efficient management of communication lanes
  • Minimizing data transmission errors
  • Improving overall communication link performance

Benefits

The benefits of this technology include:

  • Enhanced data transmission efficiency
  • Reduced data transmission errors
  • Improved reliability of communication links
  • Optimal utilization of communication lanes

Potential Commercial Applications

The technology described in this patent application has potential commercial applications in various industries, including:

  • Telecommunications
  • Networking
  • Data storage and management
  • Information technology

Possible Prior Art

One possible prior art related to this technology is the concept of lane management in communication systems, where different techniques are used to optimize data transmission over multiple lanes. Additionally, there may be existing patents or publications related to communication interface logic for managing communication lanes.

Unanswered Questions

How does the logic determine the status change of an awake communication lane?

The patent application does not provide specific details on the method used by the logic to detect changes in the status of awake communication lanes. Further information on the detection mechanism would be helpful for a better understanding of the technology.

What are the specific criteria for switching an asleep communication lane to an awake state?

The patent application mentions the process of switching an asleep lane to an awake state but does not elaborate on the criteria or conditions that trigger this switch. More information on the factors considered for this transition would provide clarity on the functionality of the technology.


Original Abstract Submitted

a communication interface is used at a first end of a communication link and includes a number of communication lanes. the communication interface includes a logic configured to cooperate with another communication interface at a second end of the communication link to send data to the second end over the communication lanes. the logic is configured to store a communication lane status for an awake communication lane, and upon detecting that the communication lane status for the awake communication lane is changed to a first determined status: to stop sending data over the awake communication lane, change an asleep communication lane into a new awake communication lane, and inform the communication interface at the second end.