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The influence of manufacturing tolerances on the magnetic field of compensated three-phase power cables

机译:制造公差对补偿型三相电力电缆磁场的影响

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Due to compensation effects the magnetic field of a twisted three-phase power cable built up by 3 wires of finite length can be reduced by splitting each conductor into N smaller wires. Maximum compensation occurs if the 3N conductors are placed on their exact positions prescribed by the theory. In reality the perfect order is affected by tolerances of the manufacturing process. Compared with the ideal 3N-wire cable this leads to higher field values. By our investigation we found that despite the impairing influence of inaccuracies the split of the 3-wire cable leads to a remarkable field reduction in the range from 30 to 50 dB. Attenuation diagrams show how the field of the 3N-wire cable depends on different splitting steps N and on the jitter domain /spl Delta//spl Phi/ of the random angle deviation of the wires.
机译:由于补偿效应,可以通过将每根导体分成N条较小的导线来减少由3根有限长度的电线构成的双绞三相电力电缆的磁场。如果将3N导体放置在理论规定的确切位置上,则会获得最大补偿。实际上,完美的订单会受到制造过程公差的影响。与理想的3N电线电缆相比,这会导致更高的磁场值。通过我们的调查,我们发现,尽管误差的影响会受到影响,但3线电缆的分裂仍会导致30至50 dB范围内的显着场衰减。衰减图显示了3N电缆的磁场如何取决于不同的分裂步长N和导线随机角度偏差的抖动域/ spl Delta // spl Phi /。

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