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Parallel compensator versus Smith predictor for control of the plants with delay

机译:并联补偿器与Smith预估器用于延迟控制电厂

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In the paper the parallel compensator considered in [1] is applied to control of the plants with delay and compared with Smith predictor. It is noted that Smith predictor removes only the delay, while the parallel compensator also changes the dynamics of the replacement plant; the latter may be in some degree of freedom shaped by the designer. Owing to this the transients of the system with parallel compensator are significantly faster. Accounting implementability, the control saturations are introduced in control algorithms. Additionally it is shown that using parallel compensator we may apply a relay control to the plants with delay and nonminimum phase zeros, which is impossible by using Smith predictor. Several results of simulations are described which confirm these observations.
机译:在本文中,将[1]中考虑的并联补偿器应用于带延迟的电站控制,并与史密斯预测器进行比较。值得注意的是,史密斯预测器仅消除了延迟,而并行补偿器也改变了替换工厂的动态。后者可能在某种程度上由设计者来决定。因此,带有并联补偿器的系统的瞬变明显更快。考虑到可实现性,在控制算法中引入了控制饱和度。另外还表明,使用并行补偿器,我们可以将继电器控制应用于具有延迟和非最小相位零的设备,而使用史密斯预测器是不可能的。描述了一些模拟结果,这些结果证实了这些观察结果。

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