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Reputation Aware Obfuscation for Mobile Opportunistic Networks

机译:移动机会网络的信誉感知混淆

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摘要

Current anonymity techniques for mobile opportunistic networks typically use obfuscation algorithms to hide node's identity behind other nodes. These algorithms are not well suited to sparse and disconnection prone networks with large number of malicious nodes and new opportunistic, adaptive. So, new, opportunistic, adaptive fully localized mechanisms are needed for improving user anonymity. This paper proposes reputation aware localized adaptive obfuscation for mobile opportunistic networks that comprises of two complementary techniques: opportunistic collaborative testing of nodes' obfuscation behaviour (OCOT) and multidimensional adaptive anonymisation (AA). OCOT-AA is driven by both explicit and implicit reputation building, complex graph connectivity analytics and obfuscation history analyses. We show that OCOT-AA is very efficient in terms of achieving high levels of node identity obfuscation and managing low delays for answering queries between sources and destinations while enabling fast detection and avoidance of malicious nodes typically within the fraction of time within the experiment duration. We perform extensive experiments to compare OCOT-AA with several other competitive and benchmark protocols and show that it outperforms them across a range of metrics over a one month real-life GPS trace. To demonstrate our proposal more clearly, we propose new metrics that include best effort biggest length and diversity of the obfuscation paths, the actual percentage of truly anonymised sources' IDs at the destinations and communication quality of service between source and destination.
机译:当前用于移动机会网络的匿名技术通常使用混淆算法将节点的身份隐藏在其他节点之后。这些算法不适用于具有大量恶意节点和新的机会性自适应方法的稀疏和易断开网络。因此,需要新的机会主义的自适应完全本地化机制来改善用户匿名性。本文提出了一种用于移动机会网络的信誉感知的局部自适应混淆技术,该技术包括两种互补技术:节点的混淆行为的机会协同测试(OCOT)和多维自适应匿名化(AA)。 OCOT-AA由显式和隐式信誉建立,复杂的图形连接分析和混淆历史分析驱动。我们展示了OCOT-AA在实现高级别的节点身份混淆和管理低延迟来回答源与目的地之间的查询方面非常高效,同时通常在实验持续时间内的短时间内就能快速检测并避免恶意节点。我们进行了广泛的实验,将OCOT-AA与其他几种竞争和基准协议进行了比较,并显示在一个月的真实GPS跟踪记录中,它在一系列指标上的性能均优于它们。为了更清楚地展示我们的建议,我们提出了新的指标,包括最大努力,混淆路径的最大长度和多样性,目的地中真正匿名源ID的实际百分比以及源与目的地之间的服务通信质量。

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