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Improved internal model controller design to control speed and torque surges for wind turbine driven permanent magnet synchronous generator

机译:改进的内部模型控制器设计以控制风力涡轮机驱动永磁同步发电机的速度和扭矩浪涌

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The paper compares proportional and Integral (PI) controller based Permanent Magnet Synchronous Generator (PMSG) with improved Internal Model Controller (IMC). The accuracy of speed and torque control of PMSG depends on generator speed control and current control parameters. IMC is an efficient method by which speed of the generator can be controlled efficiently and quickly by reducing surges due to disturbances. There are two current control loop, which are regulated by PI controllers. In this paper, improved feed forward based first order IMC is designed and this is further modified with tuned with second order IMC system. The issues like torque and current surges and speed maintenance during transients were analyzed. Sensible and faster control can be achieved with proposed scheme and also can overcome above torque and current surges the transient behavior of PMSG was tested fewer than two sub-cases like constant generator speed and variable wind speed and constant wind speed and variable generator speed. Results shows that proposed control technique can suppress torque ripples and surges during disturbances than with PI controller. The simulation analysis study was done using MATLAB/ SIMULINK.
机译:本文比较了基于比例和基于PI)的永磁同步发电机(PMSG),改进了内部模型控制器(IMC)。 PMSG的速度和扭矩控制的准确性取决于发电机速度控制和电流控制参数。 IMC是一种有效的方法,通过减少由于干扰引起的浪涌可以有效快速地控制发电机的速度。有两个电流控制回路,由PI控制器调节。在本文中,设计了改进的进料前进的第一订单IMC,并通过第二阶IMC系统进行了调整,进一步修改了这一点。分析了扭矩和电流浪涌和瞬态速度维护等问题。明智的和更快的控制可以与提出的方案来实现,并且还可以克服上述转矩和电流浪涌PMSG的瞬态行为测试少于两个子情况下,像恒定的发电机速度和可变风速和恒定风速和可变发电机速度。结果表明,所提出的控制技术可以抑制扭矩波纹和扰动期间的浪涌,而不是PI控制器。使用MATLAB / SIMULINK进行仿真分析研究。

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