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Development of a Novel Disturbance Observer Based Fractional Order PD Controller for a Gun Control System

机译:用于枪控制系统的新型干扰观测器的小数阶PD控制器的开发

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Motion control of gun barrels is an ongoing topic for the development of gun control equipment (GCE) with excellent performances. In this paper, a novel disturbance observer (DOB) based fractional order PD (FOPD) control strategy is proposed for the GCE. By adopting the DOB, the control system behaves as if it were the nominal closed-loop system in the absence of disturbances and uncertainties. The optimal control parameters of the FOPD are determined from the loop-shaping perspective, and theQ-filter of the DOB is deliberately designed with consideration of system robustness. The linear frame of the proposed control system will enable the analysis process more convenient. The disturbance rejection properties and the tracking performances of the control system are investigated by both numerical and experimental tests, the results demonstrate that the proposed DOB based FOPD control system is of more robustness, and it is much more suitable for the gun control system with strong nonlinearity and disturbance.
机译:枪桶的运动控制是枪支控制设备(GCE)的持续主题,具有出色的性能。本文提出了一种新的扰动观察者(DOB)的分数阶PD(FOPD)控制策略,用于GCE。通过采用DOB,控制系统的表现得像在没有干扰和不确定性的情况下是标称闭环系统。 FOPD的最佳控制参数由环形整形透视确定,并且考虑到系统鲁棒性,故意设计DOB的Q-滤波器。所提出的控制系统的线性框架将使分析过程更方便。通过数值和实验测试研究了控制系统的扰动抑制特性和控制系统的跟踪性能,结果表明,所提出的基于DOB的FOPD控制系统具有更具鲁棒性,并且更适合强大的枪控制系统更适合非线性和干扰。

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