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Simultaneous Wireless Information and Power Transfer for MIMO Interference Channel Networks Based on Interference Alignment

机译:基于干扰对准的MIMO干扰信道网络同时无线信息和功率传输

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This paper considers power splitting (PS)-based simultaneous wireless information and power transfer (SWIPT) for multiple-input multiple-output (MIMO) interference channel networks where multiple transceiver pairs share the same frequency spectrum. As the PS model is adopted, an individual receiver splits the received signal into two parts for information decoding (ID) and energy harvesting (EH), respectively. Aiming to minimize the total transmit power, transmit precoders, receive filters and PS ratios are jointly designed under a predefined signal-to-interference-plus-noise ratio (SINR) and EH constraints. The formulated joint transceiver design and power splitting problem is non-convex and thus difficult to solve directly. In order to effectively obtain its solution, the feasibility conditions of the formulated non-convex problem are first analyzed. Based on the analysis, an iterative algorithm is proposed by alternatively optimizing the transmitters together with the power splitting factors and the receivers based on semidefinite programming (SDP) relaxation. Moreover, considering the prohibitive computational cost of the SDP for practical applications, a low-complexity suboptimal scheme is proposed by separately designing interference-suppressing transceivers based on interference alignment (IA) and optimizing the transmit power allocation together with splitting factors. The transmit power allocation and receive power splitting problem is then recast as a convex optimization problem and solved efficiently. To further reduce the computational complexity, a low-complexity scheme is proposed by calculating the transmit power allocation and receive PS ratios in closed-form. Simulation results show the effectiveness of the proposed schemes in achieving SWIPT for MIMO interference channel (IC) networks.
机译:本文考虑了针对多输入多输出(MIMO)干扰信道网络的基于功率分配(PS)的同时无线信息和功率传输(SWIPT),其中多个收发器对共享同一频谱。当采用PS模型时,单个接收器将接收到的信号分为两部分,分别用于信息解码(ID)和能量收集(EH)。为了使总发射功率最小,在预定义的信号干扰加噪声比(SINR)和EH约束下,共同设计了发射预编码器,接收滤波器和PS比。制定的联合收发器设计和功率分配问题是非凸的,因此难以直接解决。为了有效地获得其解,首先分析了所提出的非凸问题的可行性条件。在此基础上,提出了一种迭代算法,通过基于半定规划(SDP)松弛对发射机,功率分配因子和接收机进行优化。此外,考虑到实际应用中SDP的过高计算成本,通过基于干扰对准(IA)分别设计抑制干扰的收发器并优化发射功率分配和分裂因子,提出了一种低复杂度次优方案。然后将发射功率分配和接收功率分配问题重铸为凸优化问题并有效解决。为了进一步降低计算复杂度,通过以封闭形式计算发射功率分配和接收PS比,提出了一种低复杂度方案。仿真结果表明,所提出的方案对于实现MIMO干扰信道(IC)网络的SWIPT是有效的。

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