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Two-Stage Design Method for Enhanced Inductive Energy Transmission with Q-Constrained Planar Square Loops

机译:Q约束平面方环增强感应能量传输的两阶段设计方法

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摘要

Q-factor constraints are usually imposed on conductor loops employed as proximity range High Frequency Radio Frequency Identification (HF-RFID) reader antennas to ensure adequate data bandwidth. However, pairing such low Q-factor loops in inductive energy transmission links restricts the link transmission performance. The contribution of this paper is to assess the improvement that is reached with a two-stage design method, concerning the transmission performance of a planar square loop relative to an initial design, without compromise to a Q-factor constraint. The first stage of the synthesis flow is analytical in approach, and determines the number and spacing of turns by which coupling between similar paired square loops can be enhanced with low deviation from the Q-factor limit presented by an initial design. The second stage applies full-wave electromagnetic simulations to determine more appropriate turn spacing and widths to match the Q-factor constraint, and achieve improved coupling relative to the initial design. Evaluating the design method in a test scenario yielded a more than 5% increase in link transmission efficiency, as well as an improvement in the link fractional bandwidth by more than 3%, without violating the loop Q-factor limit. These transmission performance enhancements are indicative of a potential for modifying proximity HF-RFID reader antennas for efficient inductive energy transfer and data telemetry links.
机译:Q因子约束通常施加在用作接近范围高频射频识别(HF-RFID)阅读器天线的导体环路上,以确保足够的数据带宽。然而,在感应能量传输链路中将这种低Q因子回路配对会限制链路传输性能。本文的贡献在于评估一种两阶段设计方法所实现的改进,该方法涉及相对于初始设计的平面正方形环路的传输性能,而不影响Q因子约束。合成流程的第一阶段是方法上的分析,它确定匝数和间距,通过该匝数和间距,可以在不偏离初始设计所呈现的Q因子极限的情况下,以较小的偏差增强相似的成对方形环之间的耦合。第二阶段应用全波电磁仿真来确定更合适的匝距和宽度,以匹配Q因子约束,并相对于初始设计实现改进的耦合。在测试方案中评估设计方法,可以使链路传输效率提高5%以上,并且链路分数带宽提高3%以上,而不会违反环路Q因子限制。这些传输性能的增强表明有可能为有效的感应式能量传输和数据遥测链路修改近距离HF-RFID阅读器天线。

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