4.7 Article

Design and Analysis of an Omnidirectional Dual-Band Wireless Power Transfer System

期刊

IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION
卷 69, 期 6, 页码 3493-3502

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TAP.2020.3037713

关键词

Coils; Dual band; Sensors; Receivers; Transmitters; Three-dimensional displays; Wireless sensor networks; Dual-band; misalignment; omnidirectional; wireless power transfer (WPT)

资金

  1. National Key Research and Development Program of China [2018YFB0106300]

向作者/读者索取更多资源

Wireless power transfer system is crucial for smart home automation, and this study introduces a dual-band omnidirectional 3-D WPT system to efficiently charge wireless sensors. The system achieves high efficiency in transmitting power to sensors operating at different frequencies.
The wireless power transfer system (WPT) is becoming increasingly important for smart home automation, in which an array of wireless sensors is used to monitor and manage smart devices and furniture. Charging the sensors, which may require different frequencies, at any position in the home is a challenge. In this article, a dual-band omnidirectional 3-D WPT system is introduced for the sensors in a smart home. The power transmitted by the transmitter can be received by any receivers operating at 13.56 and 27.12 MHz located at any position. The dual-band 3-D square and circular transmitters are designed and demonstrated. In particular, an equivalent circuit model of the proposed system is derived and numerically analyzed. In addition, the efficiency of the dual-band 3-D WPT system is evaluated based on the receiving angle through simulation and measurement. At a 16 cm distance, the system can achieve efficiencies of 61.6% and 65.4% (57.15% and 61.2%) for rotating 360 degrees at 13.56 and 27.12 MHz without a null value in the square (circular) system. Furthermore, the effect of the angular misalignment of the receiver on efficiency is also analyzed. Finally, the performance of the WPT system in a concrete structure is validated for practical scenarios.

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