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Secure Multicast Tree Construction Using Bacterial Foraging Optimization (BFO) for MANET

机译:使用MANET的细菌觅食优化(BFO)构建安全的组播树

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In Mobile Ad-Hoc Networks (MANET), the group communication for multiple senders and receivers threatens the security features. The multicasting is provoked to various security attacks, eavesdropping etc., hence secure multicasting requires imperative significance. The secure multicast tree construction using Bacterial Foraging Optimization (BPO) algorithm is proposed to develop a secure multicast tree construction in MANET. During routing, the proposed algorithm utilizes the public routing proxy to hide identity of the sender and receiver from other nodes for maintaining confidentiality. The public routing proxy is estimated using bacterial foraging optimization algorithm and path reliability is evaluated after the each iteration. Path reliability enhances the security of the network from black hole attacker and DoS attackers compared to traditional approaches for secure multicast tree formation in MANETs. By simulation results, we have shown that the proposed technique offers authentication and confidentiality during secure multicasting which is compared to conventional multicast tree formation algorithms in MANETs.
机译:在移动自组织网络(MANET)中,多个发送者和接收者的组通信威胁到安全功能。多播会引发各种安全攻击,窃听等,因此,安全多播势在必行。提出了利用细菌觅食优化(BPO)算法构建安全的组播树,以发展MANET中的安全组播树。在路由过程中,提出的算法利用公共路由代理对其他节点隐藏了发送者和接收者的身份,以保持机密性。使用细菌觅食优化算法估计公共路由代理,并在每次迭代后评估路径可靠性。与MANET中用于安全组播树形成的传统方法相比,路径可靠性增强了黑洞攻击者和DoS攻击者的网络安全性。通过仿真结果,我们表明,与MANET中的常规多播树形成算法相比,该技术在安全多播期间提供了身份验证和机密性。

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