基于IPv6网络的隐藏身份节点保护

Maytham Hakim Ali, S. Al-Alak
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引用次数: 0

摘要

保护IPv6数据包的身份免受拒绝服务(DoS)攻击,取决于所提出的加密和隐写方法。使用安全方面的可靠通信是最明显的问题,特别是在IPv6网络应用中。诸如DoS攻击、IP欺骗和其他类型的被动攻击等问题很常见。本文提出了一种基于为每个节点生成随机唯一身份的方法。生成的身份被加密并隐藏在发送方传输的数据包中。在接收端,对接收到的数据包进行验证,以确定源,然后再进行处理。此外,本文还实施了9个实验来测试所提出的方案。该方案基于创建IPv6地址,然后将其传递给物流映射,然后通过RSA加密和SHA2认证。此外,采用OPNET模块化计算网络性能。结果表明,丢包、平均事件、内存和时间的计算功耗较好,其中总内存为35,523 KB,平均事件/秒为250,52,发送流量为30,324个数据包/秒,接收流量为27,227个数据包/秒,丢失数据包为3,097个数据包/秒时效果较好。
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Node Protection using Hiding Identity for IPv6 Based Network
Protecting an identity of IPv6 packet against Denial-of-Service (DoS) attack, depend on the proposed methods of cryptography and steganography. Reliable communication using the security aspect is the most visible issue, particularly in IPv6 network applications. Problems such as DoS attacks, IP spoofing and other kinds of passive attacks are common. This paper suggests an approach based on generating a randomly unique identities for every node. The generated identity is encrypted and hided in the transmitted packets of the sender side. In the receiver side, the received packet verified to identify the source before processed. Also, the paper involves implementing nine experiments that are used to test the proposed scheme. The scheme is based on creating the address of IPv6, then passing it to the logistics map then encrypted by RSA and authenticated by SHA2. In addition, network performance is computed by OPNET modular. The results showed better computation power consumption in case of lost packet, average events, memory and time, and the better results as total memory is 35,523 KB, average events/sec is 250,52, traffic sent is 30,324 packets/sec, traffic received is 27,227 packets/sec, and lose packets is 3,097 packets/sec.
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