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Low-Complexity Power Control and Energy Harvesting Algorithms for Wiretap Channels Employing Finite-Alphabet Input Schemes

机译:采用有限字母输入方案的窃听通道的低复杂度功率控制和能量收集算法

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We discuss the design rules of an energy-efficient wireless wiretap channel in this paper. On the transmitter side, we investigate the optimal power control policy for secrecy rate maximization over wiretap channels with the bit-interleaved coded modulation scheme. On the receiver side, an energy harvesting algorithm is used to collect wireless signal energy without degrading the secrecy rate performance. These objectives are challenging as the closed-form solution to the mutual information of finite-alphabet input schemes remains unknown. In this paper, we derive a closed-form relationship between the secrecy rate and the signal-to-noise ratio (SNR) by transforming the SNR from the linear domain to the logarithm domain. The optimal power control policy (PCP) can be easily obtained by exhaustive search in a small interval, whereas the traditional search is performed over the entire SNR range. We also propose a sub-optimal PCP algorithm that significantly reduces the search complexity with only a minor performance loss. The optimal power splitting ratio is studied to save energy while achieving the target secrecy rate. We show that if the transmission power is too high, the receiver is unable to simultaneously harvest energy from the wireless signals and achieve the target secrecy rate.
机译:我们讨论了节能无线窃听通道的设计规则。在发射机端,我们研究了采用比特交织编码调制方案在窃听通道上实现秘密速率最大化的最佳功率控制策略。在接收器端,能量收集算法用于收集无线信号能量,而不会降低保密速率性能。这些目标具有挑战性,因为对有限字母输入方案的互信息的封闭形式解决方案仍然未知。在本文中,我们通过将SNR从线性域转换为对数域,得出了保密率与信噪比(SNR)之间的闭合形式关系。通过在很小的时间间隔内进行穷举搜索就可以轻松获得最佳功率控制策略(PCP),而传统搜索则是在整个SNR范围内执行的。我们还提出了次优PCP算法,该算法可显着降低搜索复杂度,而仅会造成很小的性能损失。研究了最佳功率分配比,以在达到目标保密率的同时节省能源。我们表明,如果传输功率过高,则接收器无法同时从无线信号中收集能量并达到目标保密率。

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