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Toroidal-type shielding coil systems for the power system control SMES

机译:环形屏蔽线圈系统,用于电力系统控制SMES

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SMES systems for applications of power system control, such as power line stabilization and compensation of power fluctuation, attract interest recently. In these applications, the use of low-loss type conductors as strand cables are necessary to reduce AC losses accompanied with rapid changes of magnetic fields; however, it brings some difficulties of high cost and low mechanical strength of the superconducting coil. To solve the above problems, the shielding coil system, which is composed of a main superconducting coil and a normal shielding coil connected in parallel, were proposed. In the shielding coil system, the fluctuated current at energy input and output is diverted to the shielding coil and only the constant current flows in the main superconducting coil. In this paper, we propose a new shielding coil system of toroidal arrangement, which has low stray magnetic fields in ambient areas. Results of the optimization of coil configurations in the toroidal shielding system are presented. Besides the toroidal systems of the circular elementary coil, those of D-shaped elementary coils, which have lower electromagnetic stress than circular one, are also studied.
机译:最近,用于电力系统控制的SMES系统引起了人们的关注,例如电力线稳定和电力波动补偿。在这些应用中,必须使用低损耗型导体作为多股电缆,以减少伴随磁场快速变化的交流损耗。然而,这带来了超导线圈的高成本和低机械强度的困难。为了解决上述问题,提出了一种由主超导线圈和并联的普通屏蔽线圈组成的屏蔽线圈系统。在屏蔽线圈系统中,能量输入和输出处的波动电流被转移到屏蔽线圈,只有恒定电流在主超导线圈中流动。在本文中,我们提出了一种新的环形线圈屏蔽系统,该系统在周围环境中具有低杂散磁场。给出了在环形屏蔽系统中优化线圈配置的结果。除了圆形基本线圈的环形系统外,还研究了电磁力比圆形基本形状小的D形基本线圈的环形系统。

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