EPRT: An Efficient Privacy-Preserving Medical Service Recommendation and Trust Discovery Scheme for eHealth System

Author:

Peng Cong1ORCID,He Debiao2ORCID,Chen Jianhua3,Kumar Neeraj4ORCID,Khan Muhammad Khurram5

Affiliation:

1. School of Mathematics and Statistics, Wuhan University, China and Guangdong Key Laboratory of Data Security and Privacy Protection, Jinan University, Guangdong, China

2. School of Cyber Science and Engineering, Wuhan University, China and Guangdong Key Laboratory of Data Security and Privacy Protection, Jinan University, Guangdong, China

3. School of Mathematics and Statistics, Wuhan University, Wuhan, China

4. Department of Computer Science and Engineering, Thapar University, India and Department of Computer Science and Information Engineering, Asia University, China, School of Computer Science, University of Petroleum and Energy Studies, Dehradun, Uttarakhand, and Department of Computer Science and Information Engineering, King Abdul Aziz University, Jiddah, Saudi Arabia

5. Center of Excellence in Information Assurance (CoEIA), King Saud University, Riyadh, Saudi Arabia

Abstract

As one of the essential applications of health information technology, the eHealth system plays a significant role in enabling various internet medicine service scenes, most of which primarily rely on service recommendation or an evaluation mechanism. To avoid privacy leakage, some privacy-preserving mechanisms must be adopted to protect raters’ privacy and make evaluation trust reliable. To tackle this challenge, this article proposes an efficient service recommendation and evaluation scheme, called EPRT , which is based on a similarity calculation and trust discovery method. This scheme uses homomorphic encryption technology to encrypt the sensitive data and combines the threshold mechanism and double-trap mechanism to realize the secure computing on the encrypted data, so as to ensure that the plaintexts of the final calculation results (e.g., recommendation value and evaluation truth) are only obtained by the authorized subject. In addition, a detailed security analysis shows that the proposed EPRT scheme can achieve the expected security. In addition, performance comparison results are carried out, demonstrating its effectiveness and accuracy.

Funder

National Natural Science Foundation of China

Opening Project of Guangdong Key Laboratory of Data Security and Privacy Protection

Researchers Supporting Project of King Saud University

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications

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