Blockchain Ridesharing With Controlled Video Access and Alerts
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Solution Overview
Problem
Conventional ridesharing systems face issues such as limited availability, safety concerns, unauthorized video recording, fraud protection, and lack of integration with vehicle technology, leading to inadequate control over video access and insufficient social experiences for riders and drivers.
Innovation Solution
The integration of ridesharing functionality into vehicles using blockchain technology, which enables secure data recording, panic buttons for emergency situations, and selective video access, while providing enhanced safety features and user experiences through AI and blockchain collaboration.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If conventional mobile application-based ridesharing approaches are used, then ridesharing can be enabled for commuting trips, but availability is limited to predetermined thresholds and not available at all times of the day
Solution Approach 1:
The patent implements dynamic ridesharing availability by allowing the system to adaptively adjust service parameters based on real-time conditions. The vehicle controller continuously monitors system state and modifies ridesharing operations dynamically, enabling service beyond predetermined thresholds and at all times of day rather than following fixed schedules or distance limits.
2Reliability
If drivers use dash cameras for livestreaming video of riders, then video recording capability is provided, but control over when and where scenes are recorded and access to video is insufficient
Solution Approach 1:
The patent introduces a blockchain-based intermediary system that mediates between the video recording function and access requests. The distributed ledger records all video access requests and permissions, providing cryptographic verification and audit trails. This intermediary layer ensures that video access is controlled according to predefined policies while maintaining ease of operation through automated smart contract enforcement.
Solution Approach 2:
The system implements feedback mechanisms where the vehicle controller continuously monitors video recording status and access requests, adjusting permissions based on real-time conditions. The blockchain network provides feedback loops by validating and recording access decisions, ensuring that video recording control remains reliable while adapting to operational needs.
3Reliability
If conventional ridesharing systems are used, then basic ridesharing functionality is provided, but safety features such as fraud protection and protection from dangerous situations are limited
Solution Approach 1:
The patent merges multiple safety functions including fraud detection, emergency response, and video verification into a unified blockchain-based safety system. By combining these previously separate safety features into an integrated architecture led by the vehicle controller and supported by the distributed ledger, the system achieves comprehensive safety coverage while managing complexity through centralized coordination and decentralized verification.
4Adaptability or versatility
If conventional mobile application-based ridesharing approaches are used, then ridesharing trips can be facilitated, but integration with vehicle technology for infotainment and dynamic social experiences is lacking
Solution Approach 1:
The patent implements a universal vehicle controller architecture that handles multiple functions including ridesharing coordination, infotainment management, social experience facilitation, and safety monitoring. This multi-functional design allows the same hardware platform to support diverse user experience features like dynamic social interactions and infotainment services while maintaining ridesharing operations, reducing overall system complexity through consolidation.
Data Source
AI summary
Systems, methods, and computer-readable media are disclosed describing ridesharing using blockchain. Example methods may include determining a state associated with a user of a ridesharing vehicle from at least one first device associated with the ridesharing vehicle; identifying a confirmation of the state by one or more second devices; and adding a transaction to a blockchain, the transaction comprising a description of the state, the confirmation, and a link to a trip footage of the state.


