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Characterization of Band Codes for Pollution-Resilient Peer-to-Peer Video Streaming

机译:具有抗污染能力的点对点视频流的频段代码表征

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摘要

We provide a comprehensive characterization of band codes (BC) as a resilient-by-design solution to pollution attacks in network coding (NC)-based peer-to-peer live video streaming. Consider one malicious node injecting bogus coded packets into the network: the recombinations at the nodes generate an avalanche of novel coded bogus packets. Therefore, the malicious node can cripple the communication by injecting into the network only a handful of polluted packets. Pollution attacks are typically addressed by identifying and isolating the malicious nodes from the network. Pollution detection is, however, not straightforward in NC as the nodes exchange coded packets. Similarly, malicious nodes identification is complicated by the ambiguity between malicious nodes and nodes that have involuntarily relayed polluted packets. This paper addresses pollution attacks through a radically different approach which relies on BCs. BCs are a family of rateless codes originally designed for controlling the NC decoding complexity in mobile applications. Here, we exploit BCs for the totally different purpose of recombining the packets at the nodes so to avoid that the pollution propagates by adaptively adjusting the coding parameters. Our streaming experiments show that BCs curb the propagation of the pollution and restore the quality of the distributed video stream.
机译:我们提供频带代码(BC)的全面表征,作为基于设计的弹性解决方案,可解决基于网络编码(NC)的对等实时视频流中的污染攻击。考虑一个恶意节点将伪造的伪造数据包注入网络:节点上的重组会产生大量新颖的伪造的伪造数据包。因此,恶意节点可以通过仅将少量污染的数据包注入网络来削弱通信。通常通过识别恶意节点并将其与网络隔离来解决污染攻击。但是,由于节点之间交换编码的数据包,因此在NC中污染检测并非一帆风顺。类似地,恶意节点与具有非自愿中继污染数据包的节点之间的歧义使恶意节点识别变得复杂。本文通过一种完全不同的方法来解决污染攻击,这种方法依赖于BC。 BC是最初设计用于控制移动应用程序中NC解码复杂度的无速率码家族。在这里,我们利用BC的目的完全不同,目的是在节点处重新组合数据包,从而避免通过自适应地调整编码参数来传播污染。我们的流媒体实验表明,BC抑制了污染的传播,并恢复了分布式视频流的质量。

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