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Analysis of Saturation Effects on the Operation of Magnetic-controlled Switcher Type FCL

机译:饱和对电磁控制型FCL开关操作的影响分析

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With the extensive application of electrical power system, suppression of fault current limiter is an important subject that guarantees system security. The superconducting fault current limiters (SFCL) have been expected as a possible type of power apparatus to reduce the fault current in the power system. The results shown that under normal state, the FCL has no obvious effect on the power system; under fault state, the current limiting inductance connected in the bias current will be inserted into the fault circuit to limit the fault current. By regulating the bias current, the FCL voltage loss under normal state and the fault current can be adjusted to prescribed level. This kind of SFCL used the nonlinear permeability of the magnetic core for create a sufficient impedance and The transient performance considering the magnetic saturation is analyzed by Preisach model. Preisach model that intrinsically satisfies nonlinear properties is used as the numerical method for analysis of saturation effects. It is able to identification isotropic and no isotropic behaviour. The main idea is to compute the magnetization vector in two steps independently, amplitude and phase. The described model yield results in qualitative agreement with the experimental results.
机译:随着电力系统的广泛应用,故障限流器的抑制是保证系统安全的重要课题。人们期望将超导故障电流限制器(SFCL)作为减少电力系统中故障电流的一种可能的电力设备。结果表明,在正常状态下,整箱整定对电力系统无明显影响。在故障状态下,将与偏置电流相连的限流电感插入故障电路以限制故障电流。通过调节偏置电流,可以将正常状态下的FCL电压损耗和故障电流调整到规定水平。这种SFCL利用磁芯的非线性磁导率来创建足够的阻抗,并通过Preisach模型分析了考虑磁饱和的瞬态性能。本质上满足非线性特性的Preisach模型用作分析饱和效应的数值方法。它能够识别各向同性的行为,而不能识别各向同性的行为。主要思想是分两步分别计算振幅和相位的磁化矢量。所描述的模型产量与实验结果在质量上吻合。

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