论文标题

玻璃:以公民为中心的分布式数据共享模型

GLASS: A Citizen-Centric Distributed Data-Sharing Model within an e-Governance Architecture

论文作者

Lo, Owen, Buchanan, William J., Sayeed, Sarwar, Papadopoulos, Pavlos, Pitropakis, Nikolaos, Chrysoulas, Christos

论文摘要

电子政务是一个过程,旨在增强政府简化所有可能涉及政府,公民,企业等的过程的能力。数字技术的快速发展经常为建立电子政务模型的建立带来了必要性。通常需要使用综合的电子政府治理服务以及可以采用单一市场方法的包容性电子政务模型。电子政务通常旨在最大程度地减少官僚流程,同时包括对公共服务的数字默认方法。这旨在进行行政效率和裁员过程的降低。它还可以提高政府能力,并增强信任和安全,从而对政府交易产生信心。但是,在电子政务体系结构中的分布式数据共享模型的可靠实现远非现实。因此,欧洲国家的公民经常经历核实其机密信息的繁琐过程。本文重点介绍了基于分布式文件交换网络的安全性,透明度,成本效益和信任(GLASS)模型的单一签署电子政务范式,该网络旨在确保公民可以控制其与政府机构的关系。因此,本文提出了一种将许可区块链与行星际文件系统(IPFS)集成的方法。该方法演示了我们如何以安全的方式加密和存储玻璃生态系统的可验证凭据,例如学术奖项,ID文档等,因此只允许受信任的用户阅读区块链记录,并获得加密密钥。这允许解密在IPFS上存储的给定可验证的凭证。本文概述了一个示威者的创建,该示威者证明了玻璃方法的原理。

E-governance is a process that aims to enhance a government's ability to simplify all the processes that may involve government, citizens, businesses, and so on. The rapid evolution of digital technologies has often created the necessity for the establishment of an e-Governance model. There is often a need for an inclusive e-governance model with integrated multiactor governance services and where a single market approach can be adopted. e-Governance often aims to minimise bureaucratic processes, while at the same time including a digital-by-default approach to public services. This aims at administrative efficiency and the reduction of bureaucratic processes. It can also improve government capabilities, and enhances trust and security, which brings confidence in governmental transactions. However, solid implementations of a distributed data sharing model within an e-governance architecture is far from a reality; hence, citizens of European countries often go through the tedious process of having their confidential information verified. This paper focuses on the sinGLe sign-on e-GovernAnce Paradigm based on a distributed file-exchange network for security, transparency, cost-effectiveness and trust (GLASS) model, which aims to ensure that a citizen can control their relationship with governmental agencies. The paper thus proposes an approach that integrates a permissioned blockchain with the InterPlanetary File System (IPFS). This method demonstrates how we may encrypt and store verifiable credentials of the GLASS ecosystem, such as academic awards, ID documents and so on, within IPFS in a secure manner and thus only allow trusted users to read a blockchain record, and obtain the encryption key. This allows for the decryption of a given verifiable credential that stored on IPFS. This paper outlines the creation of a demonstrator that proves the principles of the GLASS approach.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源