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A controllable reactor of transformer type

机译:变压器式可控电抗器

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This paper clarifies the operating principles of a controllable reactor of transformer type (CRT). In nature, a CRT is equivalent to a multi-winding transformer for which the low-voltage windings (control windings) operate at short-circuited states in turn. This kind of reactor possesses such advantages as smooth power regulation, low current harmonic content, and fast response. Taking account of the coupling of the control windings, this paper examined the current harmonic content for the work winding by Fourier series decomposition, and thus derived the current harmonic coefficients. Based on the solution of the branch current equation of a multi-winding transformer, and introduction of the concept of equivalent winding impedance, a polygon-type equivalent circuit is proposed for a multi-winding transformer. Subsequently, formulae for the branch impedances of the equivalent circuit are presented. According to the harmonic content constraints, the number of control steps is determined. Then, by combining the MMF and branch current equations, an expanded equation about the winding currents and current-limiting reactances is obtained. According to the feature that the control windings are short-circuited in turn, the current-limiting reactances are calculated for each control winding step by step. At last, based on the proposed equivalent circuit for a multi-winding transformer, a simulation model for a CRT is fabricated with MATLAB/SIMULINK/PSB. The simulation results confirmed the presented work, which underpins the further analysis and design of a CRT.
机译:本文阐明了可控变压器型电抗器(CRT)的工作原理。本质上,CRT等效于多绕组变压器,其低压绕组(控制绕组)依次在短路状态下运行。这种电抗器具有功率调节平稳,电流谐波含量低,响应速度快等优点。考虑到控制绕组的耦合,本文通过傅里叶级数分解研究了工作绕组的电流谐波含量,从而得出了电流谐波系数。基于多绕组变压器支路电流方程的求解,并引入等效绕组阻抗的概念,提出了一种多绕组变压器的多边形等效电路。随后,给出了等效电路的分支阻抗的公式。根据谐波含量限制,确定控制步骤的数量。然后,通过将MMF和支路电流方程式相结合,可以获得有关绕组电流和限流电抗的扩展方程式。根据控制绕组依次短路的特点,逐步为每个控制绕组计算限流电抗。最后,基于提出的多绕组变压器等效电路,利用MATLAB / SIMULINK / PSB建立了CRT仿真模型。仿真结果证实了提出的工作,这为CRT的进一步分析和设计奠定了基础。

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