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Robust Beamforming Designs in Secure MIMO SWIPT IoT Networks With a Nonlinear Channel Model

机译:具有非线性通道模型的安全MIMO SWIPT IOT网络中的强大波束成形设计

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摘要

In this article, we study a robust beamforming design for multiuser multiple-input–multiple-output secrecy networks with simultaneous wireless information and power transfer (SWIPT). In this system, an access point, multiple Internet-of-Things (IoT) devices under the nonlinear energy harvesting (EH) model with a help of one cooperative jammer (CJ). We employ artificial noise (AN) generation to facilitate efficient wireless energy transfer and secure transmission. To achieve EH fairness, we aim to maximize the minimum harvested energy among users subject to secrecy rate constraint and total transmit power constraint in the presence of channel estimation errors. By incorporating a norm-bounded channel uncertainty model, the original robust problem is transformed into a two-layer optimization problem, where the inner layer problem is reformulated as semidefinite programming (SDP) and the outer layer problem is solved by a one-dimensional (1-D) line search algorithm. In addition, in order to reduce computational complexity, we propose an algorithm based on sequential parametric convex approximation (SPCA). Finally, simulation results show that the proposed SPCA method achieves the same performance as the two-layer algorithm with much lower complexity.
机译:在本文中,我们研究了具有同时无线信息和电力传输(SWITC)的多用户多输入多输出保密网络的强大波束成形设计。在该系统中,在非线性能量收集(EH)模型下的接入点,多个内容(IOT)设备,以及一个合作卡钳(CJ)。我们采用人工噪声(AN)来促进有效的无线能量传递和安全传输。为了实现EH公平,我们的目标是在存在信道估计误差存在下,最大化受保密率约束和总发射功率约束的用户之间的最小收获能量。通过结合常规界限信道不确定性模型,将原始的稳健问题转换为双层优化问题,其中内层问题被重新重新重新重新重新重新重新设计为SemideFinite编程(SDP),并且通过一维( 1-D)线路搜索算法。另外,为了降低计算复杂性,我们提出了一种基于顺序参数凸近似(SPCA)的算法。最后,仿真结果表明,所提出的SPCA方法达到与具有较低复杂性的双层算法相同的性能。

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