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Light weight cryptographic address generation (LW-CGA) using system state entropy gathering for IPv6 based MANETs

机译:使用系统状态熵收集基于IPv6的MANET的轻量级加密地址生成(LW-CGA)

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摘要

In IPv6 based MANETs, the neighbor discovery enables nodes to self-configure and communicate with neighbor nodes through autoconfiguration. The Stateless address autoconfiguration (SLAAC) has proven to face several security issues. Even though the Secure Neighbor Discovery (SeND) uses Cryptographically Generated Addresses (CGA) to address these issues, it creates other concerns such as need for CA to authenticate hosts, exposure to CPU exhaustion attacks and high computational intensity. These issues are major concern for MANETs as it possesses limited bandwidth and processing power. The paper proposes empirically strong Light Weight Cryptographic Address Generation (LW-CGA) using entropy gathered from system states. Even the system users cannot monitor these system states; hence LW-CGA provides high security with minimal computational complexity and proves to be more suitable for MANETs. The LW-CGA and SeND are implemented and tested to study the performances. The evaluation shows that LW-CGA with good runtime throughput takes minimal address generation latency.
机译:在基于IPv6的MANET中,邻居发现使节点能够自我配置并通过自动配置与邻居节点进行通信。无状态地址自动配置(SLAAC)已证明面临多个安全问题。即使安全邻居发现(SeND)使用加密生成的地址(CGA)来解决这些问题,它也会引起其他问题,例如需要CA对主机进行身份验证,暴露于CPU耗尽攻击和高计算强度。这些问题是MANET的主要问题,因为它具有有限的带宽和处理能力。本文利用从系统状态收集的熵提出了经验上很强的轻型密码地址生成(LW-CGA)。甚至系统用户也无法监视这些系统状态。因此,LW-CGA以最小的计算复杂度提供了高安全性,并被证明更适合于MANET。 LW-CGA和SeND已实施并经过测试以研究性能。评估表明,具有良好运行时吞吐量的LW-CGA占用的地址生成延迟最少。

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