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Control Systems for High Voltage Thyristor Arms of Ice Melting Plants on Overhead Transmission Lines

机译:架空输电线路上融冰厂的高压晶闸管控制系统

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The article provides general information on ice melting plants (IMPs) on overhead transmission lines (OHL) 110, 220, 330, 500 kV and the field of their application. The relevance of the multipurpose ice melting plants (MIMPs) for OHLs 110, 220 kV and low-voltage device for melting ice (LIMD) on the wires of OHLs of small length is noted. The main elements of the IMPs, such as a thyristor controlled rectifier bridge (CRB) and an ice melting switch (IMS), are highlighted. The results of computer and physical modeling of operation of a CRB with three types of pulse-phase control systems (CPPS) are described. The shortcomings of these three CPPSs are noted, while the most effective CPPS No. 3 is highlighted. The possibility of the presence of the distortion of significant value of power during deep regulation of the rectified current from a CRB is also emphasized. An innovative system of discrete (relay) control (SCD) by the thyristor arms of a CRB and an IMS is considered, while the operability of the SCD on computer and physical models is shown.
机译:本文提供有关架空传输线(OHL)110、220、330、500 kV上的制冰厂(IMP)的一般信息及其应用领域。指出了用于OHL 110、220 kV的多用途融冰厂(MIMP)和小长度OHL导线上融化冰的低压设备(LIMD)的相关性。重点介绍了IMP的主要元素,例如晶闸管控制的整流桥(CRB)和融冰开关(IMS)。描述了使用三种类型的脉冲相位控制系统(CPPS)对CRB进行操作的计算机和物理建模结果。指出了这三个CPPS的缺点,同时强调了最有效的CPPS No. 3。还强调了在深度调节来自CRB的整流电流的过程中可能会出现功率严重失真的可能性。考虑了一种由CRB和IMS的晶闸管臂构成的创新的离散(继电器)控制(SCD)系统,同时显示了SCD在计算机和物理模型上的可操作性。

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