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The electrical measurement of AC losses in a three-phase tri-axial superconducting cable

机译:三相三轴超导电缆中交流损耗的电气测量

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In a three-phase tri-axial cable, the magnetic interaction between the phases makes the loss measurement by an electromagnetic method very complex. We developed the theoretical background showing that three-phase AC loss measurements by the electromagnetic method are, in principle, possible. We then implemented this theory in practical measurements on a 3 m long, tri-axial cable fabricated from RABiTS (rolling-assisted biaxially textured substrate) coated conductor. Initially, the proposed measurement technique was implemented in the simpler cases when the three cable phases are 180° out of phase, i.e. (0°, 180°, 360°) or (0°,360°, 180°) rather than (0°, 120°, 240°) as in a traditional three-phase system. For these cases, the currents in the phases are either in phase (360° phase difference) or anti-phase (180° phase difference). These are essentially single-phase measurements with only one transport current used as the supply for all three phases. This simplification allowed us to use both the established and the proposed techniques to measure the total losses of the cable for these cases.An excellent agreement between the two measurement methods confirmed the validation of our proposed measurement technique. The proposed measurement method was then employed to measure the total AC losses in a cable when it operates in the true three-phase mode. We believe that these data represent the first electromagnetic three-phase AC loss measurements.
机译:在三相三轴电缆中,各相之间的磁相互作用使得通过电磁方法的损耗测量非常复杂。我们开发了理论背景,表明通过电磁方法测量三相交流损耗在原则上是可行的。然后,我们在由RABiTS(滚动辅助双轴纹理化基材)涂层导体制成的3 m长,三轴电缆的实际测量中实施了该理论。最初,在三个电缆相位异相180°(即(0°,180°,360°)或(0°,360°,180°)而不是(0)的情况下,在较简单的情况下实施了建议的测量技术°,120°,240°),就像传统的三相系统一样。对于这些情况,相中的电流为同相(360°相差)或反相(180°相差)。这些本质上是单相测量,只有一个传输电流用作所有三相的电源。这种简化使我们能够使用既定的和拟议的技术来测量这些情况下电缆的总损耗。两种测量方法之间的出色协议证实了我们所提出的测量技术的有效性。然后,当电缆在真正的三相模式下工作时,采用建议的测量方法来测量电缆中的总交流损耗。我们认为,这些数据代表了首次电磁三相交流损耗测量。

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