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Information-Energy Region of Mobile SWIPT Networks with Nonlinear EH Model

机译:具有非线性EH模型的移动SWIPT网络的信息 - 能量区域

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This paper investigates the information-energy (I-E) region for simultaneous wireless information and power transfer (SWIPT) system in mobility scenarios, where a moving transmitter transmits information and energy to a power splitting (PS)-based receiver. An optimization problem is formulated to explore the system I-E region under the nonlinear energy harvesting (EH) model by jointly optimizing the transmit power at the transmitter and the PS ratio at the receiver. Since the problem is nonconvex, a successive convex approximate-based (SCA-based) algorithm is proposed, which is able to find the sub-optimal solution with low complexity. For comparison, the I-E region of the system under the linear model is also studied, where some closed and semi-closed solutions are derived by using Lagrange dual method and KKT conditions. Numerical results show that compared with the linear EH model, the nonlinear EH model yields a smaller I-E region due to the limitations of EH circuit features. Nevertheless, using the nonlinear EH model avoids the false achievable I-E region for practical mobile SWIPT systems. Besides, it shows that the higher moving speed yields the smaller I-E region. Moreover, with the increment of the required information amount, the harvested energy bias caused by the linear EH model decreases, but the bias ratio increases.
机译:本文研究了移动性情景中的同时无线信息和电力传输(SWIPT)系统的信息 - 能量(I-e)区域,其中移动发射机将信息和能量发送到功率分割(PS)基准接收器。制定优化问题,通过在接收器处的发射机处的发射功率和PS比中联合优化非线性能量收集(EH)模型下探索非线性能量收集(EH)模型下的系统I-E区域。由于问题是非凸,提出了一种连续的基于近似的(SCA的)算法,其能够找到具有低复杂度的子最优解。为了比较,还研究了线性模型下系统的I-E区域,其中通过使用拉格朗日双方法和KKT条件来导出一些闭合和半封闭的解决方案。数值结果表明,与线性EH模型相比,非线性EH模型由于EH电路特征的局限性导致较小的I-E区域。然而,使用非线性EH模型避免了实用移动SWIPT系统的错误可实现的I-E区域。此外,它表明,较高的移动速度产生较小的I-E区域。此外,随着所需信息量的增量,由线性EH模型引起的收获的能量偏压降低,但偏置比增加。

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