Qualcomm incorporated (20240214962). ROHC OPTIMIZATION TO AVOID DECOMPRESSION FAILURE simplified abstract

From WikiPatents
Jump to navigation Jump to search

ROHC OPTIMIZATION TO AVOID DECOMPRESSION FAILURE

Organization Name

qualcomm incorporated

Inventor(s)

Deepak Sah of Hyderabad (IN)

Rahul Jain of Sawai Madhopur (IN)

Nagamanikandan Sivakumar of Hyderabad (IN)

ROHC OPTIMIZATION TO AVOID DECOMPRESSION FAILURE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240214962 titled 'ROHC OPTIMIZATION TO AVOID DECOMPRESSION FAILURE

Simplified Explanation:

The patent application describes a transmitter device that optimizes header compression to enhance channel throughput. It involves establishing base and replication contexts between the transmitter and receiver devices, assigning context identifiers, and reassigning identifiers when a new context is identified.

  • The transmitter device establishes a first base context with a context identifier.
  • A replication context is created based on the first base context, with a second context identifier.
  • When a new context is identified, the first context identifier is reassigned to it.
  • The second context identifier is disassociated from the first context identifier.
  • A second base context is established with a new context identifier.
  • The second context identifier is associated with the third context identifier derived from the second base context.

Key Features and Innovation:

  • Robust header compression optimization for improved channel throughput.
  • Establishment of base and replication contexts between transmitter and receiver devices.
  • Reassignment of context identifiers when a new context is identified.

Potential Applications:

The technology can be applied in wireless communication systems, IoT devices, and network infrastructure to enhance data transmission efficiency.

Problems Solved:

The technology addresses the challenge of optimizing header compression to improve channel throughput in communication systems.

Benefits:

  • Increased data transmission efficiency.
  • Enhanced channel throughput.
  • Improved overall network performance.

Commercial Applications:

The technology can be utilized in telecommunications, networking equipment, and IoT devices to optimize data transmission and improve network efficiency.

Prior Art:

Prior art related to this technology may include research on header compression optimization and context management in communication systems.

Frequently Updated Research:

Stay updated on advancements in header compression optimization, context management, and network throughput enhancement in communication technologies.

Questions about the Technology: 1. How does the technology improve channel throughput in communication systems? 2. What are the potential commercial applications of this technology in the telecommunications industry?


Original Abstract Submitted

a transmitter device may be configured to perform to robust header compression optimization to improve channel throughput. in some aspects, the transmitter device may establish a first base context between the transmitter device and a receiver device, wherein a first context identifier is assigned to the first base context, establish a replication context between the devices, wherein the replication context is derivable from the first base context and a second context identifier is assigned to the replication context, and identify a new context. further, the transmitter device may reassign the first context identifier to the new context, disassociate the second context identifier from the first context identifier, establish a second base context between the devices, wherein a third context identifier is assigned to the second base context, and associate, based on the replication context being derivable from the second base context, the second context identifier to the third context identifier.