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Fabrication and performance testing of a 1-kW-class high-temperature superconducting generator with a high-temperature superconducting contactless field exciter*

机译:具有高温超导非接触式接触式励磁励磁机的1-kW级高温超导发生器的制造和性能测试

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This paper deals with the fabrication and performance testing of a prototype machine for the world's first implementation of a new type high-temperature superconducting rotating machine (HTSRM), which is charged and operated by the application of a contactless superconducting excitation technique with a rotary-type HTS flux pump based on a permanent magnet. Although this type of flux pump has been actively applied in stationary superconducting applications, its practical demonstration on rotary superconducting applications, namely, rotating machines, has not yet been conducted or reported. Therefore, laboratory-scale hardware implementation was conducted to investigate the feasibility of using an HTS contactless field exciter (CFE) as the field exciter of an HTSRM. Firstly, the various core components were manufactured, assembled, and tested to configure the 1-kW-class high-temperature superconducting generator (HTSG) system. Then, the assembled machine was connected with a conventional induction motor and three-phase resistive load. In non-load tests, the characteristics of the induced voltage of the HTSG, which was generated and affected by contactless field excitation and the operating speed, respectively, were tested and measured. In particular, the charge and discharge behaviors of the field current excited by the HTS CFE were experimentally analyzed based on the induced voltage profiles of the HTSG. Then, the HTSG output characteristics were tested and measured by performing experiments on the characteristics of constant load and constant speed, respectively. The generator test results were satisfactory in terms of output, voltage regulation, and the total harmonic distortion in the voltage and current.Our developed HTS CFE can excite an HTS field coil with 101 A in a noncontact manner, resulting in an operating field current margin of approximately 79% and a decrease of approximately 91.5% in the field excitation loss. In addition, the results demonstrated the possibility of designing HTS magnets with self-protecting features.
机译:本文涉及全球首次实施新型高温超导旋转机(HTSRM)的原型机的制造和性能测试,通过应用具有旋转的非接触式超导励磁技术来充电和操作。基于永磁体型HTS焊剂泵。尽管这种类型的磁通泵已经主动应用于固定超导应用,但其对旋转超导应用的实际演示,即旋转机器尚未进行或报道。因此,进行了实验室规模的硬件实现,以研究使用HTS非接触式场激励器(CFE)作为HTSRM的野外激励仪的可行性。首先,将各种芯部件制造,组装和测试以配置1-kW级高温超导发生器(HTSG)系统。然后,组装机与传统的感应电动机和三相电阻负载连接。在非负载测试中,测试并测量由非接触式野外激发产生和影响的HTSG的诱导电压的特性和影响,并测量。特别地,基于HTSG的诱导电压谱进行实验分析HTS CFE的磁场电流的电荷和放电行为。然后,通过对恒定载荷和恒定速度的特性进行实验来测试HTSG输出特性和测量。发电机测试结果在输出,电压调节和电压和电流中的总谐波失真方面令人满意。HTS CFE可以以不接触的方式激发HTS场线圈,导致操作场电流余量在野外励磁损失中约为79%,减少约91.5%。此外,结果表明了具有自保护功能的HTS磁体的可能性。

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