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Modeling and Analysis of Ambient RF Energy Harvesting in Networks with Secrecy Guard Zones

机译:具有保密保护区的网络中环境射频能量收集的建模和分析

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This paper studies the secrecy performance in wireless networks (primary network) overlaid with an ambient RF energy harvesting network (secondary network). The nodes in the secondary network are assumed to be solely powered by ambient RF energy harvested from transmissions of the primary network. We assume that the secondary nodes can eavesdrop on the primary transmissions due to which the primary network uses {em secrecy guard zones}. The primary transmitter goes silent if any secondary receiver is detected within its guard zone. Using tools from stochastic geometry, we first derive the optimal guard zone radius that minimizes the probability of going silent while ensuring a predefined minimum secure connection probability. Clearly, when more secondary nodes are deployed, more primary transmitters will remain silent for a given guard zone radius, thus impacting the amount of energy harvested by the secondary network. This introduces an interesting coupling between the performance of the two networks. We study this coupling using tools from game theory and propose an algorithm that can assist the two networks to converge to Nash equilibrium. Our results demonstrate the convergence of the proposed algorithm to the Nash equilibrium in finite number of iterations. Overall, this work forms one of the few concrete works that symbiotically merge tools from stochastic geometry and game theory.
机译:本文研究了覆盖有环境射频能量收集网络(辅助网络)的无线网络(主要网络)的保密性能。假定辅助网络中的节点仅由从主要网络的传输中收集的环境RF能量供电。我们假设次要节点可以窃听主要传输,因此主要网络使用{\ em seseccy guard zone}。如果在其保护区内检测到任何辅助接收器,则主要发送器将保持静音。使用随机几何中的工具,我们首先得出最佳的保护区半径,该半径在确保预定义的最小安全连接概率的同时,最大程度地降低了静音的可能性。显然,当部署更多辅助节点时,对于给定的保护区半径,更多的主发射机将保持沉默,从而影响了辅助网络收集的能量。这在两个网络的性能之间引入了有趣的耦合。我们使用博弈论中的工具研究了这种耦合,并提出了一种可以帮助两个网络收敛到纳什均衡的算法。我们的结果证明了该算法在有限次数的迭代中收敛到Nash平衡。总的来说,这项工作是将随机几何和博弈论共生地融合在一起的为数不多的具体作品之一。

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