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Power maximisation technique for generating secret keys by exploiting physical layer security in wireless communication

机译:用于通过利用无线通信中的物理层安全生成密钥的功率最大化技术

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摘要

The intrinsic broadcast nature of wireless communication let the attackers to initiate several passive attacks such as eavesdropping. In this attack, the attackers do not disturb/stop or interrupt the communication channel, but it will silently steal the information between authentic users. For this purpose, physical layer security (PLS) is one of the promising methodologies to secure wireless transmissions from eavesdroppers. However, PLS is further divided into keyless security and secret key-based security. The keyless security is not practically implemented because it requires full/part of instantaneous/statistical channel state information (CSI) of the eavesdroppers. Alternatively, key-based security is exploiting the randomness and reciprocity of wireless channels that do not require any CSI from an eavesdropper. The secret key-based security is due to the unpredictability of wireless channels between two users. However, the secret key-based security mainly on two basic parameters, i.e. coherence time and transmission power. Nevertheless, the wireless channel between users has a short coherence time, and it will provide shorter keys' length due to which eavesdropper can easily extract keys between communicating parties. To overcome this limitation, we proposed the power allocation scheme to improve the secret key generation rate (SKGR) to strengthen the security between authentic users.
机译:无线通信的内在广播性质让攻击者启动几种被动攻击,例如窃听。在这次攻击中,攻击者不会打扰/停止或中断通信通道,但它将默默地窃取正品用户之间的信息。为此目的,物理层安全性(PLS)是有希望的方法,以保护来自窃听者的无线传输。但是,PLS进一步分为无密钥安全和基于密钥的安全性。无钥匙安全性实际上不是因为它需要窃听者的瞬时/统计信道状态信息(CSI)的完整/部分。或者,基于钥匙的安全性正在利用无线信道的随机性和互动,这些无线信道不需要来自窃听器的任何CSI。基于秘密的基于钥匙的安全性是由于两个用户之间无线信道的不可预测性。但是,秘密基于钥匙的安全性主要是在两个基本参数上,即相干时间和传输功率。然而,用户之间的无线通道具有短暂的相干时间,并且它将提供较短的键长度,因为窃听器可以容易地提取通信方之间的键。为了克服这一限制,我们提出了能力分配方案来改善秘密关键生成率(SKGR),以加强真实用户之间的安全性。

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