围绕外包数据的安全性问题与用户隐私性问题,展开对加密数据库方案的研究,提出了一个面向多用户的多层嵌套数据库加密方案.该方案根据洋葱模型多层理论,采用多种不同类型的加密算法对用户的外包数据进行多层嵌套加密,实现了既保证数据...围绕外包数据的安全性问题与用户隐私性问题,展开对加密数据库方案的研究,提出了一个面向多用户的多层嵌套数据库加密方案.该方案根据洋葱模型多层理论,采用多种不同类型的加密算法对用户的外包数据进行多层嵌套加密,实现了既保证数据机密性又满足多种不同SQL查询类型的数据库加密方案.针对用户递交包含敏感信息的查询语句在一定程度上泄露用户自身的隐私这一问题,设计了基于单服务器私有信息检索(private information retrieval,PIR)技术的用户隐私保护机制,实现了用户匿名查询.安全性分析表明,该方案满足数据机密性与用户隐私性. Sysbench基准测试实验分析表明,该方案具有良好的查询处理效率、读写吞吐量以及健壮性.展开更多
Concentration distribution of the deterrent in single-base propellant during the process of firing plays an important role in the ballistic properties of gun propellant in weapons. However, the diffusion coefficient c...Concentration distribution of the deterrent in single-base propellant during the process of firing plays an important role in the ballistic properties of gun propellant in weapons. However, the diffusion coefficient calculated by molecular dynamics(MD) simulation is 6 orders of magnitude larger than the experimental values. Meanwhile, few simple and comprehensive theoretical models can explain the phenomenon and accurately predict the concentration distribution of the propellant. Herein, an onion model combining with MD simulation and finite element method of diffusion in propellants is introduced to bridge the gap between the experiments and simulations, and correctly predict the concentration distribution of deterrent. Furthermore, a new time scale is found to characterize the diffusion process. Finally, the time-and position-depended concentration distributions of dibutyl phthalate in nitrocellulose are measured by Raman spectroscopy to verify the correctness of the onion model. This work not only provides guidance for the design of the deterrent, but could be also extended to the diffusion of small molecules in polymer with different crystallinity.展开更多
文摘围绕外包数据的安全性问题与用户隐私性问题,展开对加密数据库方案的研究,提出了一个面向多用户的多层嵌套数据库加密方案.该方案根据洋葱模型多层理论,采用多种不同类型的加密算法对用户的外包数据进行多层嵌套加密,实现了既保证数据机密性又满足多种不同SQL查询类型的数据库加密方案.针对用户递交包含敏感信息的查询语句在一定程度上泄露用户自身的隐私这一问题,设计了基于单服务器私有信息检索(private information retrieval,PIR)技术的用户隐私保护机制,实现了用户匿名查询.安全性分析表明,该方案满足数据机密性与用户隐私性. Sysbench基准测试实验分析表明,该方案具有良好的查询处理效率、读写吞吐量以及健壮性.
基金sponsored by the National Natural Science Foundation of China (91834301, 22078088, 22005143)the National Natural Science Foundation of China for Innovative Research Groups (51621002)。
文摘Concentration distribution of the deterrent in single-base propellant during the process of firing plays an important role in the ballistic properties of gun propellant in weapons. However, the diffusion coefficient calculated by molecular dynamics(MD) simulation is 6 orders of magnitude larger than the experimental values. Meanwhile, few simple and comprehensive theoretical models can explain the phenomenon and accurately predict the concentration distribution of the propellant. Herein, an onion model combining with MD simulation and finite element method of diffusion in propellants is introduced to bridge the gap between the experiments and simulations, and correctly predict the concentration distribution of deterrent. Furthermore, a new time scale is found to characterize the diffusion process. Finally, the time-and position-depended concentration distributions of dibutyl phthalate in nitrocellulose are measured by Raman spectroscopy to verify the correctness of the onion model. This work not only provides guidance for the design of the deterrent, but could be also extended to the diffusion of small molecules in polymer with different crystallinity.