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Frequency domain analysis of three phase linear current regulators

机译:三相线性电流调节器的频域分析

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Stationary frame linear PI current regulators are conventionally regarded as unsatisfactory for AC systems because they cannot eliminate steady state errors. Consequently, synchronous frame regulators are perceived to be superior, since theyachieve zero steady state error by acting on DC signals in a rotating frame of reference. However, a synchronous frame regulator is more complex, and requires in particular a way of transforming a measured stationary frame AC current (or error) torotating frame DC quantities, and transforming the resultant control action back to the stationary frame for implementation.This paper presents a technique for interpreting the stationary/rotating frame transformations as modulation processes in the Laplace domain which move the control function from one part of the frequency spectrum to another. The technique is used tocompare stationary and synchronous frame PI regulators on a common basis to better understand the advantages of a synchronous frame regulator, and then to develop a new form of stationary frame resonant regulator which achieves zero steady state errorwithout requiring the complex transformations of a synchronous frame regulator. The performance of this new regulator is evaluated and found to be equivalent to that of the synchronous frame PI regulator.
机译:静止框架线性PI电流调节器通常被视为对AC系统不满意,因为它们不能消除稳态误差。因此,同步帧调节器被认为是优越的,因为通过在旋转参考框架中作用于DC信号来实现零稳态误差。然而,同步帧调节器更复杂,并且特别需要改变测量的固定帧AC电流(或误差)拖动帧DC量的方式,并将所得控制动作转换回静止框架以实现。本文呈现一种解释静止/旋转帧变换作为拉普拉斯域中的调制处理的技术,其将控制功能从频谱的一个部分移动到另一个。该技术在常用的基础上使用了静止和同步帧PI调节器,以更好地了解同步框架调节器的优点,然后开发一种新的静止框架谐振调节器,这实现了零稳态误差,需要复杂的变换同步框架稳压器。评估该新调节器的性能,并发现相当于同步帧PI调节器的性能。

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