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Architectural Principles for Secure Streaming Secure Adaptation in the Developing Scalable Video Coding (SVC) Standard

机译:在开发可伸缩视频编码(SVC)标准中安全流媒体和安全适应的架构原则

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Scalable video coding has long been known to provide important functionalities such as low-complexity adaptation for diverse clients with different resources and for delivery over heterogeneous networks with time-varying available bandwidths. Recent advancements in scalable video coding have significantly improved the achievable compression performance, and the scalable video coding (SVC) standard is currently under intense development. An additional capability of scalable coding, which we believe has received less attention than it deserves, is the possibility with careful cross-layer design to support secure adaptive streaming at an untrustworthy sender and secure adaptation at an untrustworthy mid-network node. Building on the secure scalable streaming framework for video, and its realization within the JPEG-2000 security (JPSEC) standard, we describe the architectural principles and design details necessary so that SVC can also enable secure adaptive streaming at a sender and secure R-D optimized adaptation at an untrustworthy mid-network node
机译:已经知道可缩放的视频编码,以提供重要的功能,例如具有不同资源的不同客户的低复杂性适应性,并且在具有时变的可用带宽的异构网络上交付。可伸缩视频编码中的最新进步显着提高了可实现的压缩性能,并且可伸缩的视频编码(SVC)标准目前在激烈的发展中。我们相信的可扩展编码的额外能力比其值得注意的关注,是仔细的跨层设计的可能性,以支持在不值得信任的发件人的安全自适应流,并在不值得信任的中央网络节点处安全适应。建立在安全可扩展的媒体框架上用于视频,其在JPEG-2000安全性(JPSEC)标准中的实现,我们描述了所需的架构原则和设计细节,使得SVC还可以在发件人和安全RD优化适应时启用安全的自适应流式传输在不可信的中间网络节点

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