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首页> 外文期刊>Power Delivery, IEEE Transactions on >Experiment and Simulation Research on the Influence of Different Main Contact System on the Interruption Performance of Control and Protective Switch
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Experiment and Simulation Research on the Influence of Different Main Contact System on the Interruption Performance of Control and Protective Switch

机译:不同主触头系统对控制和保护开关的中断性能影响的实验与仿真研究

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摘要

Research on the interruption process of control and protective switch devices (CPS) is helpful for improving its current-limiting performance. Three different structures of the main contact system are proposed and experimentally investigated on their influence on CPS's interruption performance first. Then, a calculation model that enables us to simulate the interruption process of a low-voltage apparatus with a complex mechanical structure is realized by carrying out the second development of ADAMS, in which a set of differential equations describing the coupling of complex mechanical movements, electric circuits, magnetic fields, and dynamic mathematic arc models is constructed. With this model, further investigations on the interruption process, arc movement, and arc characteristic variation of CPS with the three main contact systems are carried out. The improvement mechanism of the current-limiting performance of CPS using an arc run-on plate is especially analyzed with the calculation model.
机译:对控制和保护开关设备(CPS)的中断过程的研究有助于提高其限流性能。提出了三种主要接触系统结构,并通过实验研究了它们对CPS中断性能的影响。然后,通过进行ADAMS的第二次开发,实现了一个能够使我们模拟具有复杂机械结构的低压设备的中断过程的计算模型,在该模型中,一组描述复杂机械运动耦合的微分方程,构造电路,磁场和动态数学弧模型。使用该模型,对三个主要接触系统的CPS的中断过程,电弧运动和电弧特性变化进行了进一步的研究。通过计算模型,重点分析了电弧磨合板对CPS限流性能的改善机理。

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