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A joint signal processing and cryptographic approach to multimedia encryption

机译:多媒体加密的联合信号处理和加密方法

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In recent years, there has been an increasing trend for multimedia applications to use delegate service providers for content distribution, archiving, search, and retrieval. These delegate services have brought new challenges to the protection of multimedia content confidentiality. This paper discusses the importance and feasibility of applying a joint signal processing and cryptographic approach to multimedia encryption, in order to address the access control issues unique to multimedia applications. We propose two atomic encryption operations that can preserve standard compliance and are friendly to delegate processing. Quantitative analysis for these operations is presented to demonstrate that a good tradeoff can be made between security and bitrate overhead. In assisting the design and evaluation of media security systems, we also propose a set of multimedia-oriented security scores to quantify the security against approximation attacks and to complement the existing notion of generic data security. Using video as an example, we present a systematic study on how to strategically integrate different atomic operations to build a video encryption system. The resulting system can provide superior performance over both generic encryption and its simple adaptation to video in terms of a joint consideration of security, bitrate overhead, and friendliness to delegate processing.
机译:近年来,多媒体应用越来越多地使用委托服务提供商进行内容分发,归档,搜索和检索。这些委托服务给多媒体内容保密性带来了新的挑战。本文讨论了将联合信号处理和加密方法应用于多媒体加密的重要性和可行性,以解决多媒体应用程序特有的访问控制问题。我们提出了两种原子加密操作,这些操作可以保持标准合规性并且易于委托处理。提出了对这些操作的定量分析,以证明可以在安全性和比特率开销之间进行权衡。在协助设计和评估媒体安全系统时,我们还提出了一套面向多媒体的安全评分,以量化针对近似攻击的安全性并补充现有的通用数据安全性概念。以视频为例,我们对如何策略地集成不同的原子操作以构建视频加密系统进行了系统的研究。就安全性,比特率开销和委派处理的友好性的共同考虑而言,最终的系统可以提供优于通用加密及其对视频的简单适应性的卓越性能。

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