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Optimal Design of Flux Coupling Differential Zero-Sequence Current Transformer

机译:磁通耦合差分零序电流互感器的最优设计

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With the operation of neutral point grounding syste m with small resistance, zero sequence current transformer ha s the problems of huge volume and insufficient accuracy in pra ctical engineering. Using flux constrained zero sequence curren t transformer can solve the problem of crossing three-phase ca ble and reduce the volume of equipment. At present, the design of flux constrained zero sequence current transformer needs t o be studied. Therefore, an optimal design method of flux const rained zero sequence current transformer is proposed. Firstly, the working principle of flux constrained zero sequence curren t transformer is introduced. Secondly, the optimization directio n of flux constrained zero sequence current transformer is pro posed, and the winding method and air gap optimization desig n of flux constrained zero sequence current transformer are ca rried out aiming at accuracy. Finally, the finite element model and circuit simulation model are established for simulation cal culation, and a flux constrained zero sequence current transfor mer is developed and tested. Simulation and experimental results show that the proposed method can be used to design high-p recision flux constrained zero sequence current transformer.
机译:随着中性点接地系统的操作,零序电流互感器HA S在PRA CTICAL工程中巨大的体积巨大和不充分的准确性。使用助焊剂约束零序电流T变压器可以解决交叉三相CA BLE的问题并减少设备的体积。目前,磁通量约束零序电流互感器的设计需要进行T o。因此,提出了一种最佳设计方法,磁通芯下调零序电流互感器。首先,介绍了磁通量约束零序电流T变压器的工作原理。其次,Prox约束零序电流互感器的优化DirectiO n采用曝光,绕组方法和空气隙优化Desig N的通量约束零序电流互感器是Ca瞄准精度的CA。最后,建立了用于仿真Cal Culation的有限元模型和电路仿真模型,开发并测试了通量约束零序电流转晶ransfor MER。仿真和实验结果表明,该方法可用于设计高P调制磁通量约束零序电流互感器。

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