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Design of Loosely Coupled Inductive Power Transfer Systems for Instrumented Wheelset

机译:仪表轮对松耦合感应功率传输系统的设计

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To provide power to test system on instrumented wheelset there are many approaches.Such as collector rings,photocell,lithium cell,microwave power transmission and loosely coupled inductive power transfer.Due to be characteristic of contactless,safety,stability,easy fixations and low cost,loosely coupled inductive power transfer become the most popular means to transfer power to a rotating object.In this paper,a loosely coupled inductive power transfer systems for instrumented wheelset is presented,which consisting of a high frequency source,primary compensate,a primary winding fixed on the bogie,and a secondary winding,secondary compensate,a rectifier fixed on rotating axis. to optimize the energy transmission system,a finite element model is developed For the optimized configuration,an experimental setup is built to validate the model by experiments. After processing and analysis of the experimental data,it shows that design proposal meets the challenge.
机译:要为仪表盘上的测试系统提供电源,有许多方法,例如集电环,光电池,锂电池,微波功率传输和松耦合电感功率传输。由于具有非接触,安全,稳定,易于固定和成本低的特点本文提出了一种用于仪表盘的松耦合感应功率传输系统,该系统由高频源,一次补偿,一次绕组组成。固定在转向架上,次级绕组,次级补偿,整流器固定在旋转轴上。为了优化能量传输系统,开发了一个有限元模型。为了优化配置,建立了一个实验装置以通过实验验证该模型。经过对实验数据的处理和分析,表明设计方案可以应对挑战。

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