Digital Title and Transmission Form for Network Resource Optimization
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Solution Overview
Problem
The transmission of large digital objects over networks is resource-intensive due to the tight coupling of rights and decryption information with the objects, leading to significant utilization of computer resources, bandwidth, and electricity.
Innovation Solution
Separate transmission of title and security information from the digital object, using a digital title and transmission form (DTTF) that contains metadata and encryption details, allowing for independent routing and reducing network resource usage.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If rights and decryption information are tightly coupled to digital objects, then security and authorization are ensured, but network resource utilization increases significantly
Solution Approach 1:
The patent segments the digital object transmission into two independent parts: the digital object itself and the title/security information. The title block contains decryption keys and authorization data, while the digital object payload contains the actual content. This segmentation allows them to be transmitted separately, reducing the overhead of transmitting security information with every digital object while maintaining security through the title block authentication mechanism.
Solution Approach 2:
The patent extracts the title and security information from the digital object transmission stream. The title block is transmitted separately before the digital object payload, allowing security verification to be performed independently. This extraction eliminates the need to transmit redundant security information with each digital object, reducing network resource utilization while maintaining security through the extracted title block.
2Reliability
If rights and decryption information are transmitted with digital objects, then authorization is established, but transmission bandwidth is consumed
Solution Approach 1:
The patent divides the transmission into a title block segment containing authorization data and a payload segment containing the digital object. The title block is transmitted once and can authenticate multiple digital objects, reducing the quantity of data transmitted over bandwidth compared to embedding authorization information with each digital object.
Solution Approach 2:
The patent performs preliminary transmission of the title block before transmitting the digital object payload. This preliminary action establishes the authorization framework in advance, allowing subsequent digital objects to be authenticated without retransmitting the full authorization information, thereby conserving bandwidth.
3Reliability
If decryption information is embedded in digital objects, then security is maintained, but computer time and processing resources are utilized
Solution Approach 1:
The patent segments decryption information into a separate title block from the digital object payload. This segmentation allows the decryption keys and authorization data to be processed once during title block authentication, rather than being processed repeatedly with each digital object, reducing computer time and processing resource utilization.
Solution Approach 2:
The patent performs preliminary authentication and decryption key establishment through the title block before processing the digital object payload. This preliminary action prepares the decryption context in advance, eliminating the need for repeated processing of security information during digital object decryption, thereby reducing computer time consumption.
Data Source
AI summary
Embodiments for generating digital title and transmission information are disclosed.


