Privacy Secure Social Set Delegated Expiring Encryption
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Solution Overview
Problem
Current cryptographic distributed communication systems lack robust mechanisms for ensuring privacy and enforcing terms of service, leading to potential violations and lack of compensation for users when their privacy is breached.
Innovation Solution
The Privacy Secure Social Set (PSSS) system implements delegated expiring encryption, where users agree to terms before conversations, disabling copying and pasting, and enforcing fees for violations, using retention policies for encrypted data with expiration dates, and a Bitcoin double proxy for anonymization, along with a new crypto currency that grows with resource production.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If cryptographic distributed communication systems allow free copying and pasting of messages, then ease of operation is improved, but privacy security deteriorates
Solution Approach 1:
The system performs preliminary actions by establishing terms of service agreements and setting retention policies before communication occurs. Users agree to terms that prohibit copying and pasting, and data is encrypted with expiration dates set in advance, preventing privacy breaches before they can occur.
Solution Approach 2:
The patent introduces intermediary mechanisms including term enforcement agents that monitor communication and prevent unauthorized copying/pasting, and blockchain-based verification systems that act as mediators to enforce privacy rules without requiring direct trust between users.
2Reliability
If cryptographic distributed communication systems implement strict privacy enforcement mechanisms, then privacy security is improved, but device complexity increases
Solution Approach 1:
The system segments privacy enforcement into separate modular components: term management modules that handle agreement creation, retention policy engines that manage data lifecycle, and enforcement agents that monitor compliance. This segmentation allows complex privacy security functions to be implemented as independent, manageable modules.
Solution Approach 2:
The patent implements universal term enforcement mechanisms that can be applied across multiple communication platforms and data types. The blockchain-based verification system and encryption framework serve multiple functions including privacy protection, term enforcement, and automated dispute resolution, reducing overall system complexity through multi-functionality.
3Ease of operation
If cryptographic distributed communication systems allow unrestricted data access, then ease of operation is improved, but loss of information increases due to privacy violations
Solution Approach 1:
The system sets data expiration dates and retention policies in advance before data is accessed or shared. This preliminary action ensures that even if data is copied or accessed unauthorizedly, the information automatically becomes unusable after the expiration date, preventing permanent loss of sensitive information.
Solution Approach 2:
The patent implements feedback mechanisms where term enforcement agents monitor data access patterns and provide real-time feedback when violations occur. Blockchain verification systems record access events and enforce consequences, creating a feedback loop that prevents information loss by immediately responding to unauthorized access attempts.
Data Source
AI summary
The Privacy Secure Social Set Apparatuses, Methods and Systems (“PSSS”) transforms atom interaction mechanism actuations, atom action interaction mechanism actuations, message shard send request, resource production allocation indication inputs via PSSS components into message shard acknowledgement response, user interface display, message shard acknowledgement response, crypto currency provision notification request outputs. An atom interaction interface mechanism initial actuation is obtained from a user. An atom messaging object datastructure corresponding to the actuated atom interaction interface mechanism is determined. An atom terms datastructure associated with the atom messaging object datastructure is retrieved. Atom action interaction interface mechanisms corresponding to allowed common atom actions are generated and provided for the user. An atom action interaction interface mechanism subsequent actuation is obtained from the user. A performed atom action is determined. An atom action message corresponding to the performed atom action is generated.


