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A new design methodology for a 1 meter distance, 6.78 MHz wireless power supply system for telemetries

机译:用于遥测的1米距离,6.78 MHz无线电源系统的新设计方法

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In this paper a new large distance, 6.78 MHz, fixed frequency, 50 W output, wireless power transfer system design methodology for telemetries has been proposed. Receiver side tuning topology is selected in the first step of the design methodology. Then, a nominal coupling coefficient between the transmitter and the receiver coil has been calculated using given distance and coil diameters. Feasible ranges of the transmitter and the receiver coil inductances are identified in the following step of the design methodology that satisfy given voltage and current limits. In the feasible design space concept, multiple transmitter and receiver coil geometries are found that result in maximum power transfer efficiency. Then, the control stability, copper weight, volt-amp ratings of the coils are calculated and their contour plots are plotted using the coil geometries. The contour plots shows the trade-offs between the system performance and the coil geometry selection. A new variable K is defined in order to find an optimal coil geometry. Using the variable K, the geometries of the transmitter and the receiver are able to be determined. The proposed design methodology is evaluated using an example wireless power transfer system design for an on-line condition monitoring system for a catenary. The efficiency and loss distribution of the designed wireless power system is evaluated by comparison of the theoretical, FEA, and circuit simulation results.
机译:本文提出了一种用于遥测的新型大距离,6.78 MHz,固定频率,50 W输出,无线功率传输系统的设计方法。在设计方法的第一步中选择接收器侧调谐拓扑。然后,已经使用给定的距离和线圈直径计算了发射器线圈和接收器线圈之间的标称耦合系数。在设计方法的以下步骤中,确定满足给定电压和电流限制的发射器和接收器线圈电感的可行范围。在可行的设计空间概念中,发现了多个发射器和接收器线圈的几何形状,可实现最大的功率传输效率。然后,计算线圈的控制稳定性,铜重量,伏安额定值,并使用线圈几何形状绘制其轮廓图。等高线图显示了系统性能和线圈几何形状选择之间的权衡。为了找到最佳的线圈几何形状,定义了新的变量K。使用变量K,能够确定发射器和接收器的几何形状。使用用于悬链线的在线状态监视系统的示例无线电力传输系统设计来评估所提出的设计方法。通过比较理论,有限元分析和电路仿真结果,可以评估设计的无线电源系统的效率和损耗分布。

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