论文标题

WETRACE-一种保护隐私的移动联盟19号跟踪方法和应用

WeTrace -- A Privacy-preserving Mobile COVID-19 Tracing Approach and Application

论文作者

De Carli, A., Franco, M., Gassmann, A., Killer, C., Rodrigues, B., Scheid, E., Schoenbaechler, D., Stiller, B.

论文摘要

为了保护人民和社会免受伤害和健康威胁,尤其是对于19日大流行而言,需要参与各种不同的学科。当今高度流动社会中个人数据的非常基本和健康相关的数据的数据收集确实有助于计划,保护和确定卫生机构和政府可以,或需要计划甚至需要实施甚至需要实施的下一步。因此,每个人,每个人和世界的每个居民都是关键人物 - 与许多过去的危机截然不同。而且,由于个人参与 - 所有个人 - 他/她的健康和(b)隐私应以非常精心制作的平衡来考虑,而不是将一个方面与另一个方面划定,甚至优先考虑某些方面。隐私仍然是关键。因此,当前大流行数据收集的解决方案可以基于完全保护隐私的应用程序,该应用程序可以在其移动设备(例如智能手机)上使用,同时维护其隐私。此外,在如此完全分布的环境中收集的各个数据确实有助于局限大流行,并且可以在民主的,非常开放的,但仍然,尤其是保护隐私的世界中实现。因此,本文所述的Wetrace方法和应用利用了许多现代移动设备提供的蓝牙低能(BTE)通信渠道,在这些设备上提供了不对称的加密术,允许为其预定的目的地提供一条消息。从字面上看,其他所有潜在参与者只会听随机数据,即使是蛮力攻击也不会成功。 Wetrace及其开源实施是迄今为止唯一已知的方法,它确保了任何消息的任何接收者都知道这是对他/她的,但不知道原始发件人是谁。

For the protection of people and society against harm and health threats -- especially for the COVID-19 pandemic -- a variety of different disciplines needs to be involved. The data collection of very basic and health-related data of individuals in today's highly mobile society does help to plan, protect, and identify next steps health authorities and governments can, shall, or need to plan for or even implement. Thus, every individual, every human, and every inhabitant of the world is the key player -- very different to many past crises'. And since the individual is involved -- all individuals -- his/her (a) health and (b) privacy shall be considered in a very carefully crafted balance, not overruling one aspect with another one or even prioritizing certain aspects. Privacy remains the key. Thus, the solution of the current pandemic's data collection can be based on a fully privacy-preserving application, which can be used by individuals on their mobile devices, such as smartphones, while maintaining at the same time their privacy. Additionally, respective data collected in such a fully distributed setting does help to confine the pandemic and can be achieved in a democratic and very open, but still and especially privacy-protecting world. Therefore, the WeTrace approach and application as described in this paper utilizes the Bluetooth Low Energy (BTE) communication channel, many modern mobile devices offer, where asymmetric cryptography is being applied to allows for the decyphering of a message for that destination it had been intended for. Since literally every other potential participant only listens to random data, even a brute force attack will not succeed. WeTrace and its Open Source implementation is the only known approach so far, which ensures that any receiver of a message knows that this is for him/her, but does not know who the original sender was.

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