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Confidential Information Ensurance through Physical Layer Security in Device-to-Device Communication

机译:设备到设备通信中通过物理层安全性确保机密信息的安全

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This paper inquires the achievement of secret key generation (SKG) in device-to-device (D2D) communications with the aid of relay. The confidential information between D2D users is taken under the consideration of physical layer secret key generation scheme with the help of colluding or non-colluding relay node. The selected relay conforms to help in the generation of secret keys to keep the information confidential from eavesdropping. In order to ensure the information confidential between D2D users, we explicate a mechanism for selecting relay node based on two basic social phenomena for the selection of relay node. The non-colluding relay selection is considered under the scenario of social trust, while colluding relay selection is based on social reciprocity. Furthermore, we utilize coalition game theory for the selection of optimal relay node in order to improve secret key generation rate (SKGR). Particularly, to attain more eminent SKGR within channel coherence time, the coalition game approach is determined to select an optimal node for relaying by D2D users. On the basis of relay selection, social phenomena, and coalition game theory, we propose an algorithm for achieving higher SKGR. The generated keys are not only protected from eavesdropper but also from the selected (colluding or non-colluding) relay. The performance of our proposed scheme validates and guarantees information confidentiality in D2D communications.
机译:本文探讨了借助中继的设备到设备(D2D)通信中秘密密钥生成(SKG)的实现。 D2D用户之间的机密信息是在共谋或非共谋中继节点的帮助下,在考虑物理层秘密密钥生成方案的情况下获取的。选定的中继符合帮助生成密钥的要求,以防止信息被窃听。为了确保D2D用户之间的信息机密性,我们阐述了一种基于两种基本社会现象的中继节点选择机制。在社会信任的情况下考虑非冲突中继选择,而中继中继选择则基于社会互惠。此外,我们利用联盟博弈理论来选择最佳中继节点,以提高秘密密钥生成率(SKGR)。特别地,为了在信道相干时间内获得更出色的SKGR,确定联盟游戏方法以选择最佳节点以供D2D用户进行中继。基于接力选择,社会现象和联盟博弈理论,我们提出了一种实现较高SKGR的算法。不仅保护生成的密钥免遭窃听,而且还保护其免受所选(有争议或无争议)中继的攻击。我们提出的方案的性能验证并保证了D2D通信中的信息机密性。

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