Three-Party Communication Platform With Blockchain Identity Verification
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current service delivery platforms lack transparency and fail to provide transaction history, leading to stressful and unsafe situations for users, particularly in scenarios like airport pickups where communication between service providers and users is hindered by poor signage and lack of connectivity.
Innovation Solution
A three-party communication platform utilizing blockchain-based identity verification and geofencing to create a seamless communication channel between service providers, users, and secondary parties, enabling real-time location tracking and secure transaction management without the need for public lists or internet connectivity.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional service delivery platforms are used, then service providers can manually provide services, but transparency is lost and transaction history is not provided to users
Solution Approach 1:
The patent introduces a three-party communication platform acting as an intermediary between service providers and users. This platform includes a communication module that establishes secure communication channels and a transaction module that records all service transactions on a blockchain ledger, ensuring transparency while maintaining manageable system complexity through modular design
2Productivity
If drivers wait in the airport lobby for guests, then service can be provided, but stress and waiting time increase for both parties
Solution Approach 1:
The patent implements preliminary actions by requiring advance registration and profile creation for both service providers and users. The system pre-establishes communication channels and pre-arranges service details before the actual service encounter, enabling parties to meet directly without prolonged waiting periods
Solution Approach 2:
The communication module provides real-time feedback between service providers and users, allowing them to coordinate arrival times, share location information, and confirm service details. This continuous feedback loop eliminates unnecessary waiting by keeping both parties informed of each other's status
3Ease of operation
If guests use public placards with names in crowded places, then drivers can locate guests, but privacy and safety are compromised
Solution Approach 1:
The patent uses the communication platform as an intermediary that facilitates guest-driver connection without exposing personal information publicly. The system generates unique temporary identifiers and uses encrypted communication channels, allowing parties to connect safely without displaying sensitive information in public view
Solution Approach 2:
Instead of using real personal information on public placards, the system creates digital copies or representations of identification through unique codes and encrypted profiles. These digital identifiers enable recognition and connection while preserving the actual privacy of personal details
4Ease of operation
If guests lack local phone or data connection, then communication with driver or hotel becomes difficult, but service delivery should proceed
Solution Approach 1:
The communication module is designed with universal functionality that supports multiple communication modes including but not limited to internet-based messaging, SMS, and offline communication methods. This multi-functional approach ensures that service coordination can proceed regardless of the user's connectivity status
Data Source
AI summary
System and method for creating a third-party communication platform to deliver services are disclosed. The system includes one or more processors. The processor includes an input module configured to receive a plurality of identity details associated with three parties, an identity verification module configured to verify the plurality of identity details of the first primary party, the second primary party and the secondary party using a blockchain-based storage subsystem, a service delivery module configured to define a set of transactions between the first primary party and the second primary party via a secondary party. The service delivery module is also configured to form a three-party network among the three parties to complete the set of transactions, prior to commencing at least one of a future transaction between the same parties, and record transactions using block-party and the second primary party via a secondary party chain platform for later perusal by any party.


