SGAC: A Multi-Layered Access Control Model with Conflict Resolution Strategy

Author:

Huynh Nghi12,Frappier Marc1,Pooda Herman1,Mammar Amel3,Laleau Régine2

Affiliation:

1. GRIF, Département d’informatique, Université de Sherbrooke, Canada

2. LACL, Université Paris-Est Créteil, Val de Marne, France

3. SAMOVAR, Télécom SudParis, CNRS, Université Paris-Saclay, EVRY, France

Abstract

AbstractThis paper presents SGAC (Solution de Gestion Automatisée du Consentement / automated consent management solution), a new healthcare access control model and its support tool, which manages patient wishes regarding access to their electronic health records (EHR). This paper also presents the verification of access control policies for SGAC using two first-order-logic model checkers based on distinct technologies, Alloy and ProB. The development of SGAC has been achieved within the scope of a project with the University of Sherbrooke Hospital (CHUS), and thus has been adapted to take into account regional laws and regulations applicable in Québec and Canada, as they set bounds to patient wishes: for safety reasons, under strictly defined contexts, patient consent can be overriden to protect his/her life (break-the-glass rules). Since patient wishes and those regulations can be in conflict, SGAC provides a mechanism to address this problem based on priority, specificity and modality. In order to protect patient privacy while ensuring effective caregiving in safety-critical situations, we check four types of properties: accessibility, availability, contextuality and rule effectivity. We conducted performance tests comparison: implementation of SGAC versus an implementation of another access control model, XACML, and property verification with Alloy versus ProB. The performance results show that SGAC performs better than XACML and that ProB outperforms Alloy by two order of magnitude thanks to its programmable approach to constraint solving.

Publisher

Oxford University Press (OUP)

Subject

General Computer Science

Reference32 articles.

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Static Profiling of Alloy Models;IEEE Transactions on Software Engineering;2023-02-01

2. Effect of Quantum computing on Blockchain-based Electronic Health Record Systems;2022 4th International Conference on Smart Sensors and Application (ICSSA);2022-07-26

3. Security and Privacy Requirements for Electronic Consent;ACM Transactions on Computing for Healthcare;2021-03

4. Resolving Policy Conflicts for Cross-Domain Access Control: A Double Auction Approach;Computational Science – ICCS 2021;2021

5. Verifying SGAC Access Control Policies: A Comparison of ProB, Alloy and Z3;Rigorous State-Based Methods;2020

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