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An Inductive Power Transfer System for Driving Multiple OLED Light Panels

机译:用于驱动多个OLED灯面板的感应功率传输系统

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摘要

An inductive power transfer system for driving multiple organic light-emitting diode (OLED) light panels is presented. Each light panel is driven by an output in a daisy-chained transformer (DCT) structure through a detachable transformer. The DCT structure allows using a single switching network to drive multiple light panels with good current balancing. A primary-side freewheeling (FW) circuit and an open-load protection network are introduced to maintain the current-balancing function of the DCT structure upon abnormal power transfer from the primary side to the secondary side of the detachable transformer. Apart from easy and safe operation, the proposed system also offers a modular, scalable, maintenance-free, and hot-swappable platform for large-area illumination. Modeling, design, and analysis of the system under normal and faulty operating conditions and misalignment of the detachable transformer will be given. A prototype system with four OLED light panels has been built and evaluated. The experimental results show that the circuit has a robust current balancing ability and fault condition tolerance. In addition, a comparison on the cost effectiveness between DCT structure and “one-drive-to-one-load” structure is investigated.
机译:提出了一种用于驱动多个有机发光二极管(OLED)光面板的感应功率传输系统。菊花链式变压器(DCT)结构中的输出通过可拆卸的变压器驱动每个照明面板。 DCT结构允许使用单个开关网络以良好的电流平衡来驱动多个照明面板。引入了一次侧续流(FW)电路和一个开放负载保护网络,以在从可拆卸变压器的一次侧向二次侧进行异常功率传输时保持DCT结构的电流平衡功能。除了简单安全的操作外,拟议的系统还为大面积照明提供了模块化,可扩展,免维护和可热插拔的平台。将给出正常和故障操作条件下系统的建模,设计和分析,以及可拆卸变压器的未对准情况。已构建并评估了具有四个OLED灯面板的原型系统。实验结果表明,该电路具有很强的电流平衡能力和故障条件容限。此外,还对DCT结构与“一驱动一负载”结构的成本效益进行了比较。

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