论文标题

COVID-19抗体测试 /疫苗接种认证:有一个应用程序

COVID-19 Antibody Test / Vaccination Certification: There's an app for that

论文作者

Eisenstadt, Marc, Ramachandran, Manoharan, Chowdhury, Niaz, Third, Allan, Domingue, John

论文摘要

目标:随着2019/2020年冠状病毒大流行的发展,Covid-19的“免疫护照”被认为是使个人能够重返工作岗位的一种方式。尽管抗体测试的质量,疫苗的可用性以及甚至达到COVID-19免疫力的可能性仍在研究中,但我们解决了为测试结果和疫苗接种提供防篡改和保留隐私认证所涉及的问题。方法:我们开发了一个原型手机应用程序和必要的分散服务器体系结构,可促进侵犯防篡改测试结果的即时验证。个人身份信息仅由用户的自由裁量权存储,该应用程序允许最终用户选择性地仅介绍特定的测试结果,没有显示其他个人信息。该体系结构旨在可扩展性,依赖于(a)2019年万维网联盟标准,称为“可验证的凭据”,(b)蒂姆·伯纳斯·李(Tim Berners-Lee)的分散个人数据平台“ solid”,以及(c)以太坊基于Ethereum的区块链。结果:我们的手机应用程序和分散的服务器体系结构可以以一种从公共/私钥对和数字签名得出的方式来验证性和隐私的混合,以避免对敏感的数字键和/或数据的限制所有权。基准性能测试表明,在最坏的情况下,由于在每个应用程序上本地进行了重大处理,因此在最坏的情况下进行了线性扩展。对于测试证书持有人,发行人(例如医疗保健人员,药房)和验证者(例如雇主),它只是“另一个应用程序”,仅需几分钟即可使用。结论:该应用程序和分散的服务器体系结构提供了一个原型概念证明,该概念易于扩展,适用,并且实际上“在机翼中等待生物学问题”,以及在讨论部分提出的关键道德问题,以及要解决的问题。

Goal: As the Coronavirus Pandemic of 2019/2020 unfolds, a COVID-19 'Immunity Passport' has been mooted as a way to enable individuals to return back to work. While the quality of antibody testing, the availability of vaccines, and the likelihood of even attaining COVID-19 immunity continue to be researched, we address the issues involved in providing tamper-proof and privacy-preserving certification for test results and vaccinations. Methods: We developed a prototype mobile phone app and requisite decentralized server architecture that facilitates instant verification of tamper-proof test results. Personally identifiable information is only stored at the user's discretion, and the app allows the end-user selectively to present only the specific test result with no other personal information revealed. The architecture, designed for scalability, relies upon (a) the 2019 World Wide Web Consortium standard called 'Verifiable Credentials', (b) Tim Berners-Lee's decentralized personal data platform 'Solid', and (c) a Consortium Ethereum-based blockchain. Results: Our mobile phone app and decentralized server architecture enable the mixture of verifiability and privacy in a manner derived from public/private key pairs and digital signatures, generalized to avoid restrictive ownership of sensitive digital keys and/or data. Benchmark performance tests show it to scale linearly in the worst case, as significant processing is done locally on each app. For the test certificate Holder, Issuer (e.g. healthcare staff, pharmacy) and Verifier (e.g. employer), it is 'just another app' which takes only minutes to use. Conclusions: The app and decentralized server architecture offer a prototype proof of concept that is readily scalable, applicable generically, and in effect 'waiting in the wings' for the biological issues, plus key ethical issues raised in the discussion section, to be resolved.

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