Fluid antenna is a promising wireless communication technology that enhances communication rate by changing the antenna positions. This article proposes a new communication system that combines multiple-input single-output (MISO) fluid antennas with traditional fixed-position antennas, utilizing antenna position optimization to improve energy harvesting efficiency. In this model, we consider simultaneous wireless information and power transfer (SWIPT) which transmits identical signals from the base station to both information receiver (IR) and energy receiver (ER). We strive to enhance the power delivered to the ER by fine-tuning the positions of transmit and receive fluid antennas, along with optimizing the transmit covariance matrix, subject to a given minimum signal-to-interference-plus-noise ratio (SINR) constraint at the IR. Simulation results indicate that fluid antenna systems significantly enhance the energy harvesting efficiency of the ER compared to traditional fixed-position antennas.
翻译:流体天线是一种通过改变天线位置提升通信速率的潜力无线通信技术。本文提出一种将多输入单输出流体天线与传统固定位置天线相结合的新型通信系统,利用天线位置优化提高能量收集效率。在该模型中,我们考虑同时无线信息与功率传输技术,基站向信息接收器与能量接收器发送相同信号。在满足信息接收器最低信干噪比约束条件下,通过精细调整收发端流体天线位置并优化发射协方差矩阵,力求提升传输至能量接收器的功率。仿真结果表明,相较于传统固定位置天线系统,流体天线系统能显著提升能量接收器的能量收集效率。