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Advanced Four-Pair Architecture With Input Current Balance Function for Power Over Ethernet (PoE) System

机译:具有输入电流平衡功能的高级四对架构,用于以太网供电(PoE)系统

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摘要

In the typical Power over Ethernet (PoE) system, the conventional powered device (PD) with two-pair architecture can only provide power below 20 W to the distant loads, which greatly restricts its applications in many areas. An advanced type of four-pair architecture with an input current balance function for the PoE system is proposed in this paper to not only improve the power level, but also achieve the high conversion efficiency. The steady-state model of the four-pair architecture is built to explore the existing imbalance problem, which is mainly caused by the structure and impedance inconsistency. The proposed four-pair architecture consists of two main converter modules operated in parallel. An input current balance scheme is adopted to reduce the difference of both primary currents, which can increase the transmission power and improve the current sharing performance. Furthermore, the small-signal model of the paralleled converters with an input current balance control strategy is constructed to give a design guideline for the control loop. Finally, a 50-W prototype is built and tested to verify the effectiveness of the presented architecture and control strategy.
机译:在典型的以太网供电(PoE)系统中,具有两对架构的常规受电设备(PD)只能向远处的负载提供低于20 W的功率,这极大地限制了其在许多领域的应用。本文提出了一种具有输入电流平衡功能的高级四线对PoE系统,不仅可以提高功率水平,而且可以实现较高的转换效率。建立四对架构的稳态模型是为了探讨现有的不平衡问题,该问题主要是由结构和阻抗不一致引起的。提出的四对架构包括两个并行运行的主转换器模块。采用输入电流平衡方案来减小两个初级电流的差,从而可以增加发射功率并改善均流性能。此外,构建具有输入电流平衡控制策略的并联转换器的小信号模型,以给出控制回路的设计指南。最后,构建并测试了50 W原型,以验证所提出的体系结构和控制策略的有效性。

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