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An efficient key management scheme for content access control for linear hierarchies

机译:用于线性层次结构的内容访问控制的有效密钥管理方案

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The content access control problem appears in any context with a set of users and resources. The difference in access rights of the users defines classes, where members of a given class have exactly the same access rights. A hierarchy can be defined on the classes. Linear hierarchies constitute a particularly interesting type of hierarchies. They appear in a wide range of applications such as secure multi-layered data streaming and communications within security corps. Many proposals have dealt with key management issues for tree hierarchies but they result in unjustified overhead when applied to linear hierarchies. In this paper, we discuss the general problem of Content Access Control in a Hierarchy (CACH). Thereafter, we present the main requirements in key management to ensure confidentiality in linear hierarchies. In particular, we define a model to make a uniform and coherent description of the existing key management schemes. Thereafter, we propose an efficient key management scheme for linear hierarchies that not only provides mechanisms to manage membership changes but also hierarchy shape changes, and we describe it using our model. We conduct intensive simulations which show that our solution scales very well in terms of storage, bandwidth, and computation. Finally, we determine the complexity of some well-known key management schemes and compare them to the complexity of our scheme. This comparison shows that our scheme offers efficient compromises in complexity and overall overheads.
机译:内容访问控制问题出现在具有一组用户和资源的任何上下文中。用户访问权限的差异定义了类,其中给定类的成员具有完全相同的访问权限。可以在类上定义层次结构。线性层次结构构成了一种特别有趣的层次结构类型。它们出现在广泛的应用程序中,例如安全多层数据流和安全公司内部的通信。许多提议已经处理了树层次结构的关键管理问题,但是当将它们应用于线性层次结构时,会导致不合理的开销。在本文中,我们讨论了层次结构中内容访问控制(CACH)的一般问题。此后,我们提出了密钥管理中的主要要求,以确保线性层次结构的机密性。特别是,我们定义一个模型以对现有密钥管理方案进行统一和一致的描述。此后,我们为线性层次结构提出了一种有效的密钥管理方案,该方案不仅提供了管理成员资格更改的机制,而且还提供了层次结构形状更改的机制,并使用我们的模型对其进行了描述。我们进行了密集的仿真,结果表明我们的解决方案在存储,带宽和计算方面可以很好地扩展。最后,我们确定一些众所周知的密钥管理方案的复杂度,并将其与我们方案的复杂度进行比较。这种比较表明,我们的方案在复杂性和总体开销方面提供了有效的折衷方案。

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