Telefonaktiebolaget lm ericsson (publ) (20240348685). MANAGING DATA STORAGE IN A COMMUNICATION SYSTEM simplified abstract
Contents
- 1 MANAGING DATA STORAGE IN A COMMUNICATION SYSTEM
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 MANAGING DATA STORAGE IN A COMMUNICATION SYSTEM - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Key Features and Innovation
- 1.6 Potential Applications
- 1.7 Problems Solved
- 1.8 Benefits
- 1.9 Commercial Applications
- 1.10 Prior Art
- 1.11 Frequently Updated Research
- 1.12 Questions about Data Storage and Recovery System for Communication Networks
- 1.13 Original Abstract Submitted
MANAGING DATA STORAGE IN A COMMUNICATION SYSTEM
Organization Name
telefonaktiebolaget lm ericsson (publ)
Inventor(s)
[[:Category:Róbert Szab� of Budapest (HU)|Róbert Szab� of Budapest (HU)]][[Category:Róbert Szab� of Budapest (HU)]]
Ákos Recse of Halasztelek (HU)
MANAGING DATA STORAGE IN A COMMUNICATION SYSTEM - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240348685 titled 'MANAGING DATA STORAGE IN A COMMUNICATION SYSTEM
Simplified Explanation
The patent application describes a method for storing data in a communication system, where a certain number of data blocks are needed to recover the data. The method involves distributing these data blocks across different storage nodes in a cluster closest to the data source.
- Data is stored in a communication system using a method that ensures data recovery.
- The method involves distributing data blocks across storage nodes in clusters.
- The closest cluster to the data source is utilized for storing the data blocks.
Key Features and Innovation
- Method for storing data in a communication system.
- Utilizes clusters of storage nodes to distribute data blocks.
- Ensures data recovery by storing data blocks in different nodes within a cluster.
Potential Applications
This technology can be applied in various communication systems, data storage solutions, and network operations where data reliability and recovery are crucial.
Problems Solved
- Ensures data recovery in case of node failures.
- Efficient storage and retrieval of data in a communication system.
Benefits
- Enhanced data reliability.
- Improved data recovery capabilities.
- Efficient data storage and retrieval processes.
Commercial Applications
Title: Data Storage and Recovery System for Communication Networks This technology can be commercialized for use in telecommunications, cloud computing, data centers, and other industries where data storage and recovery are essential for operations.
Prior Art
Further research can be conducted in the field of data storage systems, communication networks, and distributed computing to explore similar technologies and innovations.
Frequently Updated Research
Stay updated on advancements in data storage systems, communication protocols, and network security to enhance the efficiency and reliability of data storage and recovery processes.
Questions about Data Storage and Recovery System for Communication Networks
How does this technology improve data reliability in communication systems?
This technology enhances data reliability by distributing data blocks across different storage nodes, ensuring data recovery in case of failures.
What are the potential commercial applications of this data storage and recovery system?
The technology can be applied in telecommunications, cloud computing, data centers, and other industries where data reliability and recovery are crucial for operations.
Original Abstract Submitted
methods and apparatus are provided. in an example aspect, a method of storing data in a communication system is provided. the data comprises n data blocks, and k data blocks of the n data blocks are required to recover the data. the communication system includes a plurality of clusters of data storage nodes including a first cluster that is a closest cluster of the plurality of clusters to a source of the data. the method comprises receiving, from a node associated with a respective network operator of each of the clusters of storage nodes, information identifying the data storage nodes that are in each of the clusters. the method also comprises causing each of at least k data blocks of the n data blocks to be stored in a different storage node in the first cluster.