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Shaft torque observer and excitation control for turbine-generator torsional oscillation

机译:涡轮发电机扭振的轴转矩观测器和励磁控制

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摘要

In recent years, gas turbines have been attracting a lot of attention in the field of dispersed generations and co-generation systems. The gas turbine generation system always has the problem of the shaft torsional oscillation, and their counter measures that can apply especially for the in-house generating plants at 10 MW scale are required. For technical and financial reasons, the number of sensors has to be reduced to an acceptable minimum, and generally it is not possible to measure the torsional oscillations at all critical shaft locations. Thus the torsional oscillations on the crucial components should be estimated by using the measured rotating speed at turbine shaft end. This paper presents the shaft torque observer and coordinated controllers for the in-house generating plants. In this study the turbine model with 7-mass has been used, and the rate of the in-house generating shaft is 5 MVA. Linear quadratic regulat or theory (LQR) is used to design the observer gain, which provides acceptable estimated values. The estimation accuracy of this observer is within 10%, and the influence by the measurement error of the shaft parameter is also a little.
机译:近年来,燃气轮机在分散发电和热电联产系统领域中引起了很多关注。燃气轮机发电系统总是存在轴扭转振动的问题,因此需要其特别适用于10兆瓦规模的内部发电站的对策。出于技术和经济原因,必须将传感器的数量减少到可接受的最小值,并且通常不可能在所有关键轴位置上测量扭转振动。因此,应使用涡轮轴端的测得转速估算关键部件上的扭转振动。本文介绍了内部发电站的轴转矩观测器和协调控制器。在这项研究中,使用了具有7质量的涡轮机模型,并且内部发电井的比率为5 MVA。线性二次方或理论(LQR)用于设计观测器增益,该增益可提供可接受的估计值。该观察者的估计精度在10%以内,并且轴参数的测量误差的影响也很小。

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