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Simulation of traction rectifier using proprietary simulators

机译:使用专有模拟器仿真牵引整流器

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The dynamic study of inevitably involves simulation techniques, especially with high-power circuits such as traction rectifiers, because of the time and costs involved in experimental observations. Furthermore, it is possible in a simulation to undertake 'experiments' that would be impossible (or unrealistic) in practice and to test the validity of modelling assumptions which can be a considerable aid to developing adequate analytical models of circuit behaviour or to evolving faster simulation methods. This paper reviews the results obtained from using a particular simulator (Saber) for the modelling of a 12-pulse traction rectifier including the influence of variable mutual coupling between the independent secondaries which feed the two 6-pulse bridges.
机译:不可避免地涉及模拟技术的动态研究,特别是具有牵引整流器等高功率电路,因为实验观察中所涉及的时间和成本。此外,在模拟中可以进行“实验”,实际上是不可能的(或不现实的),并测试建模假设的有效性,这可能是开发适当的电路行为模型或演化更快的模拟方法。本文综述了使用特定模拟器(Sabre)获得的结果,用于建模12脉冲牵引整流器,包括在馈送两个6脉冲桥的独立借调之间的可变相互耦合之间的影响。

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