Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:2464-2470. doi: 10.1109/EMBC48229.2022.9871738.
The 'power frequency splitting' phenomenon is widely observed over critical coupling conditions in the wireless power transfer system. Frequency splitting occurs in the voltage gain and power delivered to the load (PDL) curve but not in the end-to-end power transfer efficiency curve. This brief has considered the mutual inductance model to analyze the relationship between characteristic frequencies and circuit parameters in the wireless series-parallel system. Here authors have proposed a novel co-simulation platform using ANSYS MAXWELL and SIMPLORER for dynamic modeling of frequency-dependent resistance in a flexible polymer coil setup. The wireless power and bidirectional data transmission protocol were developed over a single link using Frequency shift keying (FSK) based forward data transfer (downlink) and Load shift keying (LSK) based backward data transfer (uplink) technique. The split frequency-based FSK modulation scheme helps in continuous wireless power transmission without disrupting the carrier amplitude for large power delivery, high data rate, and high-power transfer efficiency. The trade-off between link gain, bandwidth, and efficiency limits the application of the 'frequency splitting based data transfer technique' after a certain distance. A detection (tertiary) coil co-planar with the transmitter coil receives and decodes backscattered data from the receiver side using LSK. The three-coil architecture does not affect the split point locations of the two-coil system and slightly reduces link gain.
“工频分裂”现象在无线功率传输系统的临界耦合条件下广泛存在。频率分裂发生在电压增益和向负载(PDL)传输的功率曲线中,但不在端到端功率传输效率曲线中。本简要考虑了互感模型,以分析无线串并联系统中特征频率与电路参数之间的关系。本文提出了一种使用 ANSYS MAXWELL 和 SIMPLORER 的新型协同仿真平台,用于在柔性聚合物线圈设置中对频率相关电阻进行动态建模。使用基于频移键控(FSK)的前向数据传输(下行链路)和基于负载移键控(LSK)的后向数据传输(上行链路)技术,在单个链路中开发了无线功率和双向数据传输协议。基于分裂频率的 FSK 调制方案有助于在不中断载波幅度的情况下进行连续无线功率传输,以实现大功率传输、高数据速率和高功率传输效率。在一定距离后,链路增益、带宽和效率之间的权衡限制了“基于频率分裂的数据传输技术”的应用。与发射线圈共面的检测(三级)线圈使用 LSK 从接收侧接收和解码反向散射数据。三线圈结构不会影响两线圈系统的分裂点位置,只会略微降低链路增益。