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A Dynamic Key Length Based Approach for Real-Time Security Verification of Big Sensing Data Stream

机译:基于动态密钥长度的大传感数据流实时安全验证方法

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The near real-time processing of continuous data flows in large scale sensor networks has many applications in risk-critical domains ranging from emergency management to industrial control systems. The problem is how to ensure end-to-end security (e.g., integrity, and authenticity) of such data stream for risk-critical applications. We refer this as an online security verification problem. Existing security techniques cannot deal with this problem because they were not designed to deal with high volume, high velocity data in real-time. Furthermore, they are inefficient as they introduce a significant buffering delay during security verification, resulting in a requirement of large buffer size for the stream processing server. To address this problem, we propose a Dynamic Key Length Based Security Framework (DLSeF) based on the shared key derived from synchronized prime numbers; the key is dynamically updated in short intervals to thwart Man in the Middle and other Network attacks. Theoretical analyses and experimental results of DLSeF framework show that it can significantly improve the efficiency of processing stream data by reducing the security verification time without compromising the security.
机译:大规模传感器网络中连续数据流的近实时处理在从紧急情况管理到工业控制系统的风险至关重要的领域中具有许多应用。问题在于如何为风险关键型应用程序确保此类数据流的端到端安全性(例如,完整性和真实性)。我们将此称为在线安全验证问题。现有的安全技术无法解决此问题,因为它们并非旨在实时处理大量,高速数据。此外,它们效率低下,因为它们在安全验证期间引入了显着的缓冲延迟,从而导致流处理服务器需要较大的缓冲区大小。为了解决这个问题,我们提出了一个基于动态密钥长度的安全框架(DLSeF),该框架基于从同步素数得出的共享密钥。密钥会在短时间内动态更新,以阻止中间人攻击和其他网络攻击。 DLSeF框架的理论分析和实验结果表明,DLSeF框架可以通过减少安全性验证时间而不损害安全性来显着提高流数据的处理效率。

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