Multi-secondary transformer: A modeling technique for simulation

A. Patel, N. Singh, B. Raval, A. Roy, A. Thakar, D. Parmar, H. Dhola, R. Dave, S. Gajjar, Vikrant Gupta, U. Baruah, V. Tripathi, L. Gupta, P. Patel
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引用次数: 1

Abstract

Pulse Step Modulation based High voltage power supply has played significant role in fusion research. Multi-Secondary transformers are invariably used for generation of tens of kV range outputs with fast (µS order) transient response. In this scheme, large numbers of isolated voltage sources are connected in series to generate the output. Isolated voltage sources can be achieved by large number of separate transformers or by single unit of multi-secondary transformer. Naturally, a transformer having numbers of secondary windings (∼40) on single core is the preferred solution due to its space and cost consideration. For design and simulation analysis of such a power supply, the model of a multi-secondary transformer poses special problem to any circuit analysis software. While many simulation softwares provide transformer models with limited number (3–6) of secondary windings, they still fail to predict the actual observed results from a manufactured unit. This paper discusses the difficulties in modelling, step by step with representative schemes of multi-secondary transformer, advantages/disadvantages of each scheme with simulation results. Finally, a model using flux coupled cores as basic building block is proposed, this model is able to simulate actual transformers very close to its observed parameters in test and actual usage.
多二次变压器:一种仿真建模技术
基于脉冲阶跃调制的高压电源在核聚变研究中起着重要的作用。多次变压器总是用于产生几十千伏范围的输出,具有快速(µS级)瞬态响应。在该方案中,将大量隔离的电压源串联起来产生输出。隔离电压源可以通过大量单独的变压器或单个单元的多次变压器来实现。当然,由于其空间和成本考虑,在单铁心上具有多个次级绕组(~ 40)的变压器是首选的解决方案。对于这种电源的设计和仿真分析,多二次变压器的模型对任何电路分析软件来说都是一个特殊的问题。虽然许多仿真软件提供的变压器模型具有有限数量(3-6)次绕组,但它们仍然无法预测从制造单元实际观察到的结果。本文讨论了建模的难点,逐步介绍了多二次变压器的代表性方案,并给出了各方案的优缺点及仿真结果。最后,提出了一个以磁通耦合铁芯为基本构件的模型,该模型能够很好地模拟实际变压器在试验和实际使用中所观察到的参数。
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