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1)  Least privilege
最小特权
1.
Implementation and Automatic Testing of Least Privilege Principle on Linux;
基于Linux的最小特权管理机制及其安全测试自动化的研究
2.
This paper described a framework for implementing dynamically modified least privilege security policy,which combined role s duty separation property and domain s function separation property.
最小特权机制可为安全操作系统提供恰当的安全保证级。
3.
These algorithms were only applicable to specified least privilege control policies,and had such defects as semantic conflicts and no defined security-objectives.
多数支持POSIX权能机制的安全操作系统提出了各自的权能遗传算法,但这些算法都只适用于特定的最小特权控制策略,并且存在语义冲突、安全目标不明确等问题,不能有效支持多种安全需求不同的特权策略。
2)  principle of least privilege
最小特权原则
1.
A security policy for multilevel security,RDBMS,is proposed together with a detailed description of the discretionary security,multilevel security and the principle of least privilege.
提出了多级安全RDBMS的一种安全策略,对策略中的自主安全、多级安全和最小特权原则进行了详细的叙述。
3)  Least privilege theorem
最小特权原理
4)  PAC (privileged access control)
最小特权管理
1.
In this paper, a MBLP (modified BLP) security model is presented which is PAC (privileged access control) oriented.
建立了一个面向最小特权管理的修改BLP安全模型。
5)  least privilege
最小授权
1.
Present researches only compared the expressiveness of policies, but never considered the policy’s structure and the granularity of authorization, which makes it difficult to support the dynamic policy and satisfy the least privilege requirement.
现有的研究只关注安全策略的描述能力,却忽略了对策略结构与授权粒度的分析,从而无法全面满足动态策略支持与最小授权要求。
6)  Minimum weight
最小权
1.
That is how to get a spanning subgraph which has a k-unicycle partition with minimum weight in a weighted graph, and how to add minimum edges to get a spanning supgraph with k-unicyclic partition in a graph, if the graph doesn t have a spanning subgraph with the partition.
本文进一步研究基于k-单圈划分的优化问题,即在一个赋权图中求一个最小权可k-单圈划分的支撑子图,以及对一个不存在k-单圈划分支撑子图的图,如何添最少的边使得它有k-单圈划分的支撑子图。
补充资料:最小辐亮度与最小辐照度(见核爆炸火球)


最小辐亮度与最小辐照度(见核爆炸火球)
minimum-brightness and minimum-irradiance

zuixiao fuliangdu yu zuixiaofu乙haodu最小辐亮度与最小辐照度(minimum-brightness and而nimum一irradianee)见核爆炸火球。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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