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The Dual-loop Control Scheme of the Electric Arc Furnace Short Circuit Compensation Implemented on the Harmonic Current Soft Survey

机译:电弧炉短路补偿的双环控制方案在谐波电流软测量上实现

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摘要

The random of condition changes in arc furnace and the fluctuation of electrode discharge arcing which bring serious problems, such as the heavy harmonic current and the low power factor, to short net. In this paper, a measuring method based on current decomposition and frequency transformation is proposed. Without additional hardware and complex operations such as conventional coordinate transformation, the testing of fundamental current, harmonic current and power factor are better received. Also, double closed-loop control system is designed which takes power factor as control objective and integrates reactive power compensation and harmonic suppression. The simulation and test show that the feasibility of the current prediction methods and the compensation control law are better verified. The harmonic current can be effectively reduced and power factor can be increased to more than 0.85. So it has obvious energy saving effect and provides a reference model to other electric power conversion equipment for harmonic prediction and reactive power compensation.
机译:条件随机的条件变化在电弧炉中的变化和电极放电电弧的波动,使得严重问题,如重谐波电流和低功率因数,短网。本文提出了一种基于电流分解和频率变换的测量方法。没有额外的硬件和复杂的操作,例如传统坐标转换,更好地接收基本电流,谐波电流和功率因数的测试。此外,设计了双闭环控制系统,该系统采用功率因数作为控制目标,并集成无功补偿和谐波抑制。仿真和测试表明,最新预测方法和补偿控制法的可行性更好地验证。谐波电流可以有效地减小,功率因数可以增加到大于0.85。因此,它具有明显的节能效果,并为其他电力转换设备提供了用于谐波预测和无功补偿的参考模型。

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