具有部分信道信息的衰落窃听信道的波束形成

Sabrina Gerbracht, A. Wolf, Eduard Axel Jorswieck
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引用次数: 34

摘要

物理层的保密性受到越来越多的研究兴趣。特别是在无线通信场景中,对消息保密性的兴趣增加了。本文讨论了在保密约束下最大比传输(MRT)、零强迫(ZF)和优化波束形成(BF)策略的有效性。应用的信道模型是平坦衰落的MISO(多输入单输出)窃听信道,其中到窃听者的信道在发射机上只有部分已知。对窃听者来说,信道信息完备且无信道信息的场景作为特殊情况。我们表明,在一定条件下,通过将信道零空间中的人工噪声(AN)传输到预期的接收器,可以提高具有优化波束形成的传输的可实现保密率,这只会在窃听者处产生额外的干扰。我们给出了最佳波束形成和人工噪声波束形成的特性,并分析了渐近情况下(低信噪比和高信噪比以及无信道信息和完全信道信息)的最佳功率分配。数值模拟验证了结果。
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Beamforming for fading wiretap channels with partial channel information
Secrecy on the physical layer receives increased research interest. Especially in the wireless communication scenarios, the interest in confidentiality of messages increases. In this paper, we discuss the effectiveness of the beamforming strategies maximum ratio transmission (MRT), zero forcing (ZF), and an optimized beamforming (BF) strategy for the transmission under secrecy constraints. The applied channel model is the flat-fading MISO (multiple-input singleoutput) wiretap channel, where the channel to the eavesdropper is only partly known at the transmitter. The scenario with perfect and no channel information to the eavesdropper are included as special cases. We show that under certain conditions the achievable secrecy rates for the transmission with optimized beam-forming can be increased by transmitting artificial noise (AN) in the null space of the channel to the intended receiver, which produces additional interference only at the eavesdropper. We provide a characterization of the optimal beamforming and artificial noise beamforming and analyze the optimal power allocation for asymptotic cases (low and high SNR as well as no and perfect channel information). Numerical simulations illustrate the results.
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