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e-DMDAV: A new privacy preserving algorithm for wearable enterprise information systems

机译:e-DMDAV:可穿戴企业信息系统的一种新的隐私保护算法

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摘要

Wearable devices have been widely used in many fields to improve the quality of people's lives. More and more data on individuals and businesses are collected by statistical organizations though those devices. Almost all of this data holds confidential information. Statistical Disclosure Control (SDC) seeks to protect statistical data in such a way that it can be released without giving away confidential information that can be linked to specific individuals or entities. The MDAV (Maximum Distance to Average Vector) algorithm is an efficient micro-aggregation algorithm belonging to SDC. However, the MDAV algorithm cannot survive homogeneity and background knowledge attacks because it was designed for static numerical data. This paper proposes a systematic dynamic-updating anonymity algorithm based on MDAV called the e-DMDAV algorithm. This algorithm introduces a new parameter and a table to ensure that the k records in one cluster with the range of the distinct values in each cluster is no less than e for numerical and non-numerical datasets. This new algorithm has been evaluated and compared with the MDAV algorithm. The simulation results show that the new algorithm outperforms MDAV in terms of minimizing distortion and disclosure risk with a similar computational cost.
机译:可穿戴设备已广泛用于许多领域,以改善人们的生活质量。统计组织通过这些设备收集了越来越多的有关个人和企业的数据。几乎所有这些数据都包含机密信息。统计披露控制(SDC)试图以一种统计数据保护的方式来发布统计数据,而不会泄露可以链接到特定个人或实体的机密信息。 MDAV(平均向量的最大距离)算法是属于SDC的一种有效的微聚合算法。但是,MDAV算法是为静态数值数据而设计的,因此无法抵抗同质性和背景知识攻击。提出了一种基于MDAV的系统动态更新匿名算法,称为e-DMDAV算法。该算法引入了一个新参数和一个表格,以确保在一个群集中的k条记录的数值和非数值数据集的每个群集中不同值的范围不少于e。该新算法已经过评估,并与MDAV算法进行了比较。仿真结果表明,新算法在最小化失真和披露风险方面优于MDAV,并且具有相似的计算成本。

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