论文标题

标量产品晶格计算用于高效隐私系统

Scalar Product Lattice Computation for Efficient Privacy-preserving Systems

论文作者

Rahulamathavan, Yogachandran, Dogan, Safak, Shi, Xiyu, Lu, Rongxing, Rajarajan, Muttukrishnan, Kondoz, Ahmet

论文摘要

隐私性应用程序允许用户执行在线日常操作而不会泄漏敏感信息。隐私标量产品是许多私人应用程序中的关键算法之一。最先进的隐私标量产品方案使用计算密集的同态(公钥)加密技术,例如Paillier加密来实现强大的安全性(即128位)或随机掩盖技术,以实现高效率的低安全性。在本文中,已经利用了晶格结构来开发有效的隐私权系统。与最先进的情况相比,所提出的方案不仅有效地计算有效,而且还提供了针对量子攻击的高度安全性。已提供了对拟议计划的严格安全性和隐私分析,并与一组具体的参数相同,以实现128位和256位安全性。绩效分析表明,该方案的订单至少五个订单比Paillier方案快五个订单,并且至少是128位安全处的现有随机化技术的速度的两倍。

Privacy-preserving applications allow users to perform on-line daily actions without leaking sensitive information. Privacy-preserving scalar product is one of the critical algorithms in many private applications. The state-of-the-art privacy-preserving scalar product schemes use either computationally intensive homomorphic (public-key) encryption techniques such as Paillier encryption to achieve strong security (i.e., 128-bit) or random masking technique to achieve high efficiency for low security. In this paper, lattice structures have been exploited to develop an efficient privacy-preserving system. The proposed scheme is not only efficient in computation as compared to the state-of-the-art but also provides high degree of security against quantum attacks. Rigorous security and privacy analyses of the proposed scheme have been provided along with a concrete set of parameters to achieve 128-bit and 256-bit security. Performance analysis shows that the scheme is at least five orders faster than the Paillier schemes and at least twice as faster than the existing randomisation technique at 128-bit security.

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