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Small Signal Modelling, Evaluation Application of Synchronous Generator-SVC System in Single Machine Environment for Three Different Model of Synchronous Generator

机译:三种不同模型同步发电机单机环境中同步发电机SVC系统的小信号建模,评价与应用

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In this paper the Small Signal Stability (SSS) of Synchronous Generator (SG) - SVC system is investigated in Single Machine-Infinite Bus environment. The SVC has very important role to compensate reactive power fast and also for damping out power system oscillations and It has damping control loop as well as standard voltage control loop. In this paper there are three Models of Synchronous Generator (SG) has been studied which are SG-1 which has damper winding in both d-axis & q-axis, SG-2 which has damper winding in q-axis only and SG-3 which has no damper winding. These three SG models with SVC system are examined and obtained suitable SG model based on high degree of reliability and minimum computational time requirement by using comprehensive transfer-function (TF) block-diagram model (BDM) of a synchronous generator-SVC system. This transfer function is analyzed by Bode Plot for different variables. The validation of proposed method is done by MATLAB-Simulink Software.
机译:本文在单机 - 无限总线环境中研究了同步发电机(SG) - SVC系统的小信号稳定性(SSS)。 SVC具有非常重要的作用,可以快速补偿无功功率,并且还用于阻尼电力系统振荡,并且它具有阻尼控制回路以及标准电压控制回路。在本文中,已经研究了三种模型的同步发电机(SG),该模型是D轴和Q轴的D轴和Q轴的阻尼器绕组,SG-2仅在Q轴上绕组和SG- 3没有阻尼绕组。通过使用同步发电机-SVC系统的综合传输 - 功能(TF)块 - 图模型(BDM),通过使用同步发电机-SVC系统的综合传输 - 功能(TF)块模型(BDM)来检查和获得具有SVC系统的三种SG模型。通过Bode Plot分析该传递函数以进行不同变量。建议方法的验证是由Matlab-Simulink软件完成的。

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