大功率直流供电系统的技术分析与综合节能设计

Zhihao Ning, L. Luo, Jiazhu Xu, Zhiyu Zhao, Jie Zhang, Dajiang He
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引用次数: 3

摘要

以工业直流供电系统的晶闸管控相整流技术为基础,介绍了现有的系统拓扑结构以及在电网侧多脉冲整流技术和无源滤波技术的谐波抑制方面的应用。分析了现有谐波电流对整流变压器的有害影响以及传统方案的缺点。然后,提出了一种基于电感滤波技术的绿色节能直流供电系统。基于新型整流变压器,新型直流供电系统通过滤波绕组和LC全调谐滤波器构成的谐波抑制电路,达到了谐波源附近谐波抑制和无功补偿的目的。从谐波电流对整流变压器的影响和现有谐波电流的流动路径两方面说明了新整流系统的节能效果。然后从系统节能的角度出发,从系统及关键设备的节能设计、阀侧谐波抑制和无功补偿等方面对直流供电系统的节能进行了综合设计和分析。最后,从工程试验结果可以看出,谐波抑制和综合节能设计具有相当的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technical analysis and synthesis energy saving design of the high power DC power supply system
Based on the thyristor phase-controlled rectifier technology of the industry DC power supply system, the existing system topologies and application on harmonic suppression of multi-pulse rectifier technology and passive filtering technology in the grid side are introduced. The harmful effects of the existing harmonic currents to the rectifier transformers and the disadvantages of the traditional schemes are analyzed. Then, a green and energy saving DC power supply system based on inductive filtering technology is presented. Based on the new rectifier transformer, the new DC power supply system reaches the goal that harmonic suppression nearby harmonic sources and reactive power compensation by the harmonic suppression circuit constructed by filtering windings and LC full-tuned filters. From the respects of harmonic currents' effects to the rectifier transformer and flow path of the existing harmonic currents, energy savings of the new rectifier system is shown. Later, from the point of the energy saving of system, the energy savings of the DC power supply system are synthesis designed and analyzed on the following aspects: energy saving design of the system and critical equipments, harmonic suppression and reactive power compensation on the valve side. Finally, from the engineering testing results, it could be seen that harmonic suppression and synthesis design of energy saving are considerable superiority.
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