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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Secure Transmission Using Linearly Distributed Virtual Antenna Array With Element Position Perturbations
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Secure Transmission Using Linearly Distributed Virtual Antenna Array With Element Position Perturbations

机译:使用具有元素位置扰动的线性分布式虚拟天线阵列安全传输

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摘要

Physical-layer security (PLS) is a promising alternative or complement to cryptography-based solutions, because security key management and distribution required in such schemes are challenging in future wireless technologies with a distributed nature (e.g., Internet-of-Things (IoT) and massive machine-type communication). Motivated by this fact, in this paper, we investigate a PLS algorithm using linear virtual antenna array (VAA) constructed by multiple single-antenna nodes in mobile ad hoc networks such as unmanned aerial vehicles (UAVs) and mobile robots. Digital cooperative beamforming (CB) has been extensively explored such as cooperative null-steering or jamming. However, in spite of their effectiveness, the digital CB-based schemes incur prohibitive overhead and complexity, which creates difficulty in networks with limited hardware (e.g., IoT). To overcome this issue, we consider an analog CB-based PLS with linearly distributed VAA, which can be implemented in a fully distributed manner. In the proposed scheme, the received signal at the intended receiver is co-phased, while other receivers capture noise-like signals through randomized radiation patterns using the linear VAA. Assuming Rician channels, we derive secrecy rate of the proposed algorithm in a closed-from expression for an arbitrary K-factor, which is not available in previous work on the analog CB-based PLS. Furthermore, we show that the random location perturbations of the VAA elements following Gaussian distributions can enhance the secrecy performance by resolving the angle-of-departure ambiguity issue in linear arrays.
机译:物理层安全性(PLS)是基于加密的解决方案的有前途的替代或补充,因为这种方案所需的安全密钥管理和分布在未来的无线技术具有分布式性质的未来无线技术(例如,互联网(IOT)和大量机器型通信)。在本文中,在本文中,我们研究了由移动临时网络中的多个单天线节点(如无人机(UAV)和移动机器人)构成的线性虚拟天线阵列(VAA)的PLS算法。数字合作波束成形(CB)已被广泛探索,例如合作零转向或干扰。然而,尽管它们的有效性,基于数字CB的方案会产生令人望而气的开销和复杂性,这在具有有限硬件(例如,IOT)的网络中产生了困难。为了克服这个问题,我们考虑一种基于模拟CB的PLS,具有线性分布的VAA,其可以以完全分布的方式实现。在所提出的方案中,预期接收器处的接收信号是共相控的,而其他接收器通过使用线性VAA通过随机辐射模式捕获类似的噪声信号。假设RICIAN频道,我们在闭合从表达式中导出了所提出的算法的保密率,以获得任意K系数,这在以前的基于CB的PLS上的工作中不可用。此外,我们表明高斯分布后VAA元素的随机位置扰动可以通过解析线性阵列中的离境角度歧义问题来提高保密性能。

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