论文标题
两次无线无线电源传递的最佳天线放置
Optimal Antenna Placement for Two-Antenna Near-Field Wireless Power Transfer
论文作者
论文摘要
通信系统设计的当前趋势会导致运营状态从传统远场变为辐射近场(菲涅尔)地区。我们研究了用于在菲涅尔区域中的三维核心室设计的多输入单输出(MISO)无线电源传输(WPT)系统的最佳传输天线放置系统。我们通过考虑在菲涅尔区域中电磁(EM)波前的球形性质,同时假设发射机处的通道了解完美的知识,从而提出了一个优化问题,以最大程度地利用接收器的接收器位置接收器。对于两个传输天线的情况,我们得出了一种封闭形式的表达,以使天线的最佳定位纯粹由环境的几何形状确定。如果房间包含远场近似值的位置,则建议的定位显示为远场溶液。通过仿真验证了分析解决方案。此外,量化了最差性能的位置的最大接收功率,并提出了最佳远场解决方案的功率增益。对于被认为的长方体环境,我们表明分布式天线系统在菲涅尔区域是最佳的,而共同层的天线结构是远场的理想选择。
Current trends in communication system design precipitate a change in the operating regime from the traditional far-field to the radiating near-field (Fresnel) region. We investigate the optimal transmit antenna placement for a multiple-input single-output (MISO) wireless power transfer (WPT) system designed for a three-dimensional cuboid room under line-of-sight (LoS) conditions in the Fresnel region. We formulate an optimisation problem for maximising the received power at the worst possible receiver location by considering the spherical nature of the electromagnetic (EM) wavefronts in the Fresnel region while assuming perfect knowledge of the channel at the transmitter. For the case of two transmit antennas, we derive a closed-form expression for the optimal positioning of the antennas which is purely determined by the geometry of the environment. If the room contains locations where the far-field approximation holds, the proposed positioning is shown to reduce to the far-field solution. The analytical solution is validated through simulation. Furthermore, the maximum received power at the locations yielding the worst performance is quantified and the power gain over the optimal far-field solution is presented. For the considered cuboid environment, we show that a distributed antenna system is optimal in the Fresnel region, whereas a co-located antenna architecture is ideal for the far-field.