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首页> 外文期刊>Internet of Things Journal, IEEE >Random Energy Beamforming for Magnetic MIMO Wireless Power Transfer System
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Random Energy Beamforming for Magnetic MIMO Wireless Power Transfer System

机译:用于磁性MIMO无线电力传输系统的随机能量波束形成

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Magnetic MIMO is a wireless power transfer (WPT) system that employs multiple magnetic resonance coils to provide high efficient wireless power in the near field. Magnetic energy beamforming is a typical scheme to control the currents or voltages of the transmitter coils in order to achieve some objectives. Thus, the magnetic channel information is essential to magnetic beamforming (MagBF), and it needs complicated circuits and communication protocols to feedback such information. Such information may be not available due to the circuit limits or privacy concerns. In addition, the performance will be degraded with imperfect channel estimation in the noisy and mobile dynamic environment. In this case, only some limited feedback information is available, e.g., received power. In this article, we propose a random MagBF method to achieve maximum received power efficiency and simplify the system architecture. This scheme employs iterative Monte Carlo sampling and resampling to search an optimal beamforming solution based on the received power feedbacks. We design an online training protocol to implement the proposed scheme. It is computationally light and requires only limited feedback information, which avoids complex channel estimation or AC measurements. The simulation and real experimental results indicate that our algorithm can effectively increase the received power and approach the optimal performance with a fast convergent rate.
机译:磁性MIMO是一种无线电力传输(WPT)系统,采用多个磁共振线圈,为近场提供高效的无线电力。磁能波束形成是一种控制发射器线圈的电流或电压以实现一些目标的典型方案。因此,磁信道信息对于磁波束成形(MAGBF)至关重要,并且它需要复杂的电路和通信协议以反馈此类信息。由于电路限制或隐私问题,此类信息可能不可用。此外,性能将在嘈杂和移动动态环境中具有不完美的信道估计来降低。在这种情况下,只有一些有限的反馈信息可用,例如,接收功率。在本文中,我们提出了一种随机的MagBF方法来实现最大接收功率效率并简化系统架构。该方案采用迭代蒙特卡罗采样和重采样基于所接收的功率反馈来搜索最佳波束形成解决方案。我们设计了一个在线培训协议来实施拟议计划。它是计算的光,只需要有限的反馈信息,这避免了复杂的信道估计或交流测量。仿真和实验结果表明,我们的算法可以有效地增加所接收的功率并以快速收敛速率接近最佳性能。

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