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1)  high order differential feedback controller
高阶微分反馈控制器
1.
Based on the importance of extracting differential signal in industry and aerospace control,an adaptive high order differential feedback controller(AHODFC),which is capable to extract high-quality differential signals and can be applied to AC adjustable-speed system with varying frequency,is presented.
基于提取微分信号在工业控制及航天控制中的重要作用,介绍了一种可提取高品质微分信号的自适应高阶微分反馈控制器(AHODFC),并将其应用于交流调速系统中。
2.
Further more, based on the estimator a high order differential feedback controller is designed, which does not rely on the model of the nonlinear sys.
另外,基于所提出的估计器,本文设计了不依赖非线性系统模型的高阶微分反馈控制器
2)  adaptive high order differential feedback controller
自适应高阶微分反馈控制器
1.
Based on the importance of extracting differential signal in industry and aerospace control,an adaptive high order differential feedback controller(AHODFC),which is capable to extract high-quality differential signals and can be applied to AC adjustable-speed system with varying frequency,is presented.
基于提取微分信号在工业控制及航天控制中的重要作用,介绍了一种可提取高品质微分信号的自适应高阶微分反馈控制器(AHODFC),并将其应用于交流调速系统中。
2.
Making full use of high order differential information extracted,an adaptive high order differential feedback controller is proposed,which does not depend on the model of SISO nonlinear affine system to a certain extent.
利用提取的系统高阶微分信息,提出了自适应高阶微分反馈控制器
3)  pseudo derivative feedback control
伪微分反馈控制
1.
A advanced algorithm called pseudo derivative feedback control is adopted in position ring of this system and we could watch and control it with the upp.
该系统结合西门子6SC610型晶体管脉宽调制变频器与1FT5无刷伺服电机,位置环采用先进的伪微分反馈控制算法,对无刷电机进行速度和位置伺服控制,并在上位机中进行监控。
4)  differential feedback control
微分反馈控制
1.
A linear feedback control method and a differential feedback control method are designed.
针对动力学行为更丰富更复杂的超混沌系统的控制问题,研究了最新提出的超混沌Lü系统的反馈控制问题,设计了一种线性反馈控制LFC(linear feedback control)和一种微分反馈控制DFC(differential feedback control)方法。
5)  decentralized feedback controller
分散反馈控制器
6)  Pseudo-derivative-feedback-subvariable control
伪微分反馈次变量控制
补充资料:比例积分微分控制器
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性质:具有比例、积分和微分控制作用的控制器。当比例放大系数(比例度)、积分时间和微分时间选择适当时,可具有比例、积分和微分控制规律三者之优点,使系统控制周期短、超调量小、无余差。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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