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Secure Multiuser Communications in Wireless Sensor Networks with TAS and Cooperative Jamming

机译:通过TAS和协作干扰在无线传感器网络中实现安全的多用户通信

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In this paper, we investigate the secure transmission in wireless sensor networks (WSNs) consisting of one multiple-antenna base station (BS), multiple single-antenna legitimate users, one single-antenna eavesdropper and one multiple-antenna cooperative jammer. In an effort to reduce the scheduling complexity and extend the battery lifetime of the sensor nodes, the switch-and-stay combining (SSC) scheduling scheme is exploited over the sensor nodes. Meanwhile, transmit antenna selection (TAS) is employed at the BS and cooperative jamming (CJ) is adopted at the jammer node, aiming at achieving a satisfactory secrecy performance. Moreover, depending on whether the jammer node has the global channel state information (CSI) of both the legitimate channel and the eavesdropper’s channel, it explores a zero-forcing beamforming (ZFB) scheme or a null-space artificial noise (NAN) scheme to confound the eavesdropper while avoiding the interference to the legitimate user. Building on this, we propose two novel hybrid secure transmission schemes, termed TAS-SSC-ZFB and TAS-SSC-NAN, for WSNs. We then derive the exact closed-form expressions for the secrecy outage probability and the effective secrecy throughput of both schemes to characterize the secrecy performance. Using these closed-form expressions, we further determine the optimal switching threshold and obtain the optimal power allocation factor between the BS and jammer node for both schemes to minimize the secrecy outage probability, while the optimal secrecy rate is decided to maximize the effective secrecy throughput for both schemes. Numerical results are provided to verify the theoretical analysis and illustrate the impact of key system parameters on the secrecy performance.
机译:在本文中,我们研究了由一个多天线基站(BS),多个单天线合法用户,一个单天线窃听者和一个多天线协作干扰器组成的无线传感器网络(WSN)中的安全传输。为了降低调度的复杂性并延长传感器节点的电池寿命,在传感器节点上采用了开关和停留组合(SSC)调度方案。同时,在BS处采用发射天线选择(TAS),并且在干扰节点处采用协作干扰(CJ),以实现令人满意的保密性能。此外,根据干扰节点是​​否同时具有合法信道和窃听者信道的全局信道状态信息(CSI),它探索了一种强制零波束成形(ZFB)方案或零空间人工噪声(NAN)方案,在避免干扰合法用户的同时,混淆窃听者。在此基础上,我们为WSN提出了两种新颖的混合安全传输方案,分别称为TAS-SSC-ZFB和TAS-SSC-NAN。然后,我们得出两种方案的保密中断概率和有效保密吞吐量的精确封闭式表达式,以表征保密性能。使用这些闭合形式的表达式,我们进一步确定两种方案的最佳切换阈值,并在BS和干扰节点之间获得最佳功率分配因子,以最大程度地降低保密中断概率,同时确定最佳保密率以最大化有效保密吞吐量。对于两种方案。提供数值结果以验证理论分析,并说明关键系统参数对保密性能的影响。

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