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Adaptive Random Key Scheme for Authentication and Key Agreement (ARKS-AKA) for Efficient LTE Security

机译:用于认证和密钥协议(ARKS-AKA)的自适应随机关键方案,以实现高效的LTE安全性

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Long Term Evolution (LTE) networks are getting popular every year and adding more number of users to the networks. The LTE networks offer very high transmission throughput albeit, which also attracts the hackers to the networks. The primary security has to be provided in order to prevent the attacks during the initial set up phase as well during the other network transactions. Adaptive Random Key Scheme for Authentication and Key Agreement (ARKS-AKA) is presented in this paper for efficient LTE security. ARKS-AKA is intended to reduce the delay time for the voice data delivery. The proposed model diminishes the LTE call drops due to the false positive key matching transactions. ARKS-AKA offers the lightweight key management scheme with double layer encryption contrasted with the existing model termed as Efficient Extensible Authentication Protocol-Authentication and Key Agreement (EEPS-AKA). The simulation results proved the effectiveness of the proposed model.
机译:长期演进(LTE)网络每年都受欢迎,并将更多数量的用户添加到网络中。 LTE网络提供了非常高的传输吞吐量,虽然也吸引了黑客到网络。必须提供主要安全性,以防止在其他网络事务期间初始设置阶段期间的攻击。本文提出了用于认证和密钥协议(ARKS-AKA)的自适应随机关键方案,以实现高效的LTE安全性。 ARKS-AKA旨在减少语音数据传递的延迟时间。由于错误的正密钥匹配事务,所提出的模型降低了LTE呼叫丢弃。 ARKS-AKA提供了具有双层加密的轻量级密钥管理方案,与现有模型称为有效的可扩展认证协议 - 身份验证和密钥协议(EEPS-AKA)。仿真结果证明了拟议模型的有效性。

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