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Analysing the linear equivalent circuits of electromechanical systems for steam turbine generator units

机译:分析汽轮发电机组机电系统的线性等效电路

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摘要

The article utilises the analogy in dynamic equations between a mechanical and an electrical system to convert a turbine-generator mechanical model to an equivalent electrical circuit model. Based on the synchronous generator's dynamic equations and the electromagnetic torque equation, an equivalent electrical interface circuit was derived. By using the interface circuit, the circuit model of synchronous generator and the equivalent electrical circuit model of turbine-generator mechanism can thus be combined into an integrated circuit model. The integrated circuit model is helpful for analysing the interactions between the mechanical and electrical systems for a steam turbine generator unit. Based on the integrated circuit model, the article has made a comparative study between a small and a large steam turbine-generator unit. The focus was on torsional mode frequencies, and the frequency scanning and eigen-analysing approaches were used. The result shows that torsional mode frequencies can be changed by means of the electromechanical integration. Moreover, the small unit was more affected than the large one.
机译:本文利用机械系统和电气系统之间的动态方程类比,将涡轮发电机机械模型转换为等效电路模型。基于同步发电机的动力学方程和电磁转矩方程,推导了等效的电接口电路。通过使用接口电路,可以将同步发电机的电路模型和涡轮发电机机构的等效电路模型组合为集成电路模型。集成电路模型有助于分析汽轮发电机组机械和电气系统之间的相互作用。本文基于集成电路模型,对小型和大型蒸汽轮发电机组进行了比较研究。重点是扭转模式频率,并使用了频率扫描和本征分析方法。结果表明,扭转模态频率可以通过机电积分来改变。而且,小型单位比大型单位受影响更大。

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