Efficient and Privacy-Preserving Ride Sharing Organization for Transferable and Non-Transferable Services
Mahmoud Nabil, Ahmed Sherif, Mohamed Mahmoud, Ahmad Alsharif, and, Mohamed Abdallah

TL;DR
This paper introduces two efficient, privacy-preserving ride-sharing schemes for both non-transferable and transferable services, enabling secure trip organization without revealing sensitive location data and improving scalability over large areas.
Contribution
It proposes novel encrypted ride-sharing schemes using Bloom filters and graph algorithms, enhancing privacy, flexibility, and scalability in ride-sharing organization.
Findings
Successfully organized rides without revealing user locations.
Achieved efficient ride matching using encrypted data and graph algorithms.
Supported transferability in ride-sharing with privacy preservation.
Abstract
Ride-sharing allows multiple persons to share their trips together in one vehicle instead of using multiple vehicles. This can reduce the number of vehicles in the street, which consequently can reduce air pollution, traffic congestion and transportation cost. However, a ride-sharing organization requires passengers to report sensitive location information about their trips to a trip organizing server (TOS) which creates a serious privacy issue. In addition, existing ride-sharing schemes are non-flexible, i.e., they require a driver and a rider to have exactly the same trip to share a ride. Moreover, they are non-scalable, i.e., inefficient if applied to large geographic areas. In this paper, we propose two efficient privacy-preserving ride-sharing organization schemes for Non-transferable Ride-sharing Services (NRS) and Transferable Ride-sharing Services (TRS). In the NRS scheme, a…
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Taxonomy
TopicsTransportation and Mobility Innovations · Blockchain Technology Applications and Security · Vehicular Ad Hoc Networks (VANETs)
