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A study on new connection types of the main circuits for low voltage dynamic reactive power compensation device and its synchronous trigger circuits

机译:低压动态无功补偿装置主电路及其同步触发电路的新型连接方式研究

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The research of reactive power compensation is of great theoretical significance and practical value to maintain the voltage stability and improve the quality of the electric power. The operation modes of the low-voltage dynamic reactive power compensation devices are flexible and variable, therefore how to choose the circuit structure and control method is the key to improve their performances. In this paper, some kinds of possible connection types and their characteristics are discussed in detail. A more stable and reliable double Y-type circuit is presented in this paper, which could eliminate the switched impulsion caused by the neutral current. To overcome the disadvantages of conventional /spl Delta/- type circuits, a more economical /spl Delta/type circuit controlled by two thyristors is also presented. Based on the analysis of compensation theorem of thyristor-switched capacitor banks and connection types of the corresponding main circuit, the transient-free technical conditions of switching capacitor banks are presented in this paper. The synchronous trigger circuit that adapts to the above circuits is also designed. This provides a scheme for the practical application of switching capacitor banks in low-voltage dynamic reactive power compensation devices.
机译:无功补偿的研究对于保持电压的稳定性和提高电能质量具有重要的理论意义和实用价值。低压动态无功补偿装置的工作方式灵活多样,因此如何选择电路结构和控制方法是提高其性能的关键。在本文中,详细讨论了几种可能的连接类型及其特性。本文提出了一种更稳定,更可靠的双Y型电路,可以消除中性线电流引起的开关冲击。为了克服常规/ spl Delta /型电路的缺点,还提出了一种由两个晶闸管控制的更经济的/ spl Delta /型电路。在对晶闸管开关电容器组的补偿定理和相应主电路的连接类型进行分析的基础上,提出了开关电容器组的无暂态技术条件。还设计了适合上述电路的同步触发电路。这为低压动态无功补偿装置中开关电容器组的实际应用提供了一种方案。

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