联合聚合多方基因组数据的隐私效用平衡协议

Hai Liu, Changgen Peng, Youliang Tian, Feng Tian, Zhenqiang Wu
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引用次数: 0

摘要

云服务器聚合了来自多个基因组捐献者的大量基因组数据,方便科学研究。然而,不可信的云服务器容易侵犯聚合基因组数据的隐私。因此,每个基因组供体可以在聚合前使用差分隐私机制随机干扰其基因组数据。但由于每个基因组供体的隐私偏好不同,容易导致聚合基因组数据的效用灾难,并且由于基因组供体之间的亲缘关系,容易导致聚合基因组数据的隐私泄露。这里的关键挑战是实现隐私保护和聚合多方基因组数据的数据效用之间的平衡。为此,我们提出了具有隐私效用均衡的多方基因组数据联邦聚合协议(MGD-FAP),以保证期望的隐私保护和期望的数据效用。首先,我们将隐私预算和准确性分别作为基因组数据的期望隐私效用指标。其次,将保证预期数据效用的基因组数据随机扰动方法与实现预期隐私保护的局部隐私预算的联邦比较更新方法相结合,构建了多方基因组数据的联邦聚合模型。第三,我们提出了在多方基因组数据联合聚合模型下保持隐私-效用均衡的MGD-FAP。最后,我们的理论和实验分析表明,MGD-FAP能够保持隐私-效用均衡。MGD-FAP在保证聚合多方基因组数据的云服务器的隐私-效用平衡方面是切实可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Privacy-Utility Equilibrium Protocol for Federated Aggregating Multiparty Genome Data
Cloud server aggregates a large amount of genome data from multi genome donors to facilitate scientific research. However, the untrusted cloud server is prone to violate privacy of aggregating genome data. Thus, each genome donor can randomly perturb her genome data using differential privacy mechanism before aggregating. But this is easy to lead to utility disaster of aggregating genome data due to the different privacy preferences of each genome donor, and privacy leakage of aggregating genome data because of the kinship between genome donors. The key challenge here is to achieve an equilibrium between privacy preserving and data utility of aggregating multiparty genome data. To this end, we proposed federated aggregation protocol of multiparty genome data (MGD-FAP) with privacy-utility equilibrium for guaranteeing desired privacy protection and desired data utility. First, we regarded the privacy budget and the accuracy as the desired privacy-utility metrics of genome data respectively. Second, we constructed the federated aggregation model of multiparty genome data by combining random perturbation method of genome data guaranteeing desired data utility with federated comparing update method of local privacy budget achieving desired privacy preserving. Third, we presented the MGD-FAP maintaining privacy-utility equilibrium under the federated aggregation model of multiparty genome data. Finally, our theoretical and experimental analysis showed that MGD-FAP can maintain privacy-utility equilibrium. The MGD-FAP is practical and feasible to ensure the privacy-utility equilibrium of cloud server aggregating multiparty genome data.
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