首页> 外文会议>Information Networking: Advances in Data Communications and Wireless Networks; Lecture Notes in Computer Science; 3961 >Design of Modified CGA for Address Auto-configuration and Digital Signature in Hierarchical Mobile Ad-Hoc Network
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Design of Modified CGA for Address Auto-configuration and Digital Signature in Hierarchical Mobile Ad-Hoc Network

机译:分层移动自组织网络中地址自动配置和数字签名的改进CGA设计

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The CGA (Cryptographically Generated Address) is designed to prevent address spoofing and stealing and to provide digital signature to users without certification authority or any other security infrastructures, but fake key generation and address collision appear in flat-tiered network. To solve these critical problems, CGA defines security parameter (SEC), which is set to high value when high security is required and vice versa. Although CGA with high SEC makes attackers be difficult to find fake key and to try address stealing, it brings an alarming increase in processing time to generate CGA. On the contrary, the probability to find a fake key is high if low SEC is applied to CGA. We propose modified CGA (MCGA), which is proper to mobile ad-hoc network. The proposed MCGA has shorter processing time than CGA and offers digital signature with no additional overheads. We have settled fake key and address collision problems by employing hierarchical network structure. The MCGA is applicable to as well public networks as ad-hoc networks. In this paper, we design mathematical model to analysis processing time for MCGA and CGA firstly and evaluate processing time via simulations, where processing time for MCGA is reduced down 3.3 times and 68,000 times, compared to CGA with SEC 0 and SEC 1, respectively. Further, we have proved that CGA is inappropriate for both ad-hoc networks and public networks when SEC is 3 or bigger than 3.
机译:CGA(密码生成的地址)旨在防止地址欺骗和窃取,并为没有证书颁发机构或任何其他安全基础结构的用户提供数字签名,但是伪密钥生成和地址冲突出现在平面网络中。为了解决这些关键问题,CGA定义了安全性参数(SEC),当需要高度安全性时将其设置为高值,反之亦然。尽管具有高SEC的CGA使攻击者很难找到伪造的密钥并尝试窃取地址,但它却大大增加了生成CGA的处理时间。相反,如果将低SEC应用于CGA,则发现伪造密钥的可能性就很高。我们提出了改进的CGA(MCGA),适用于移动自组织网络。拟议的MCGA的处理时间比CGA短,并且提供了数字签名,而没有额外的开销。我们已经通过采用分层网络结构解决了假密钥和地址冲突问题。 MCGA适用于公共网络以及自组织网络。在本文中,我们首先设计数学模型来分析MCGA和CGA的处理时间,然后通过仿真评估处理时间,与使用SEC 0和SEC 1的CGA相比,MCGA的处理时间分别减少了3.3倍和68,000倍。此外,我们已经证明,当SEC大于3或大于3时,CGA既不适用于自组织网络,也不适用于公共网络。

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