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1)  Control gain
控制增益
1.
The extinction angle control gains of HVDC subsystems are optimized by selecting small values during steady period and large values during transient period.
该策略首先优化各回直流子系统的熄弧角控制增益:稳态期间取较小值,暂态期间取较大值,使得改进后的熄弧角控制具有一定的自适应性,以减少逆变侧发生后续换相失败的几率。
2)  gain control
增益控制
1.
A gain control design of IF amplifier applied in the receiver RF destination
接收射频前端中频放大器增益控制电路设计
2.
The technique compresses the input signal with large dynamic range via programmed gain control.
该技术采用程控增益控制对大动态范围的输入信号进行压缩,能实时测量输入声呐脉冲信号的幅度、脉宽和周期,以及单频脉冲的频率,并可通过上位工控机显示并保存测量结果。
3)  Controller gain
控制器增益
1.
Considering that the network-induced delay is a constant,which is less than one sampling period,Lyapunov Function,linear matrix inequality(LMI) and interval matrices technique are used to design the local optimal controller gain for state feedback network control systems.
假定延时恒定且小于1个采样周期,采用Lyapunov函数、线性矩阵不等式(LMI)以及区间矩阵的概念,对状态反馈回路网络化的控制系统控制器增益进行设计,以寻求某个局部最优控制器增益,使网络化控制系统渐近稳定并同时使该控制器增益可变区间达到最大。
4)  variable gain control
变增益控制
1.
For the pressure control system of feedwater manifold with some fixedand variable speed pumps of a power plant, variable gain control was implementedto get optimal control in the operation condition of different combination of fixedand variable speed pumps by taking the advantage of DCSs flexibility.
对于由多台定速和调速给水泵组成的给水母管压力自动调节系统,利用DCS的灵活功能模块,采用变增益控制,以满足不同给水泵组合运行及不同台数调速水泵调节母管压力的控制为最佳。
2.
The variable gain control based on linear parameter varying(LPV) overcomes the shortcomings of the traditional variable gain control,simplifies the first phase works,and makes the system stability and performance analysis simple in theory.
基于LPV系统的变增益控制克服了传统变增益控制的缺点,不仅减少了繁杂的前期工作,而且也使得系统的稳定性和性能分析在理论上变得简单易用。
5)  L 2-gain control
L2-增益控制
6)  L2 gain control
L2增益控制
1.
Novel nonlinear L2 gain control method for doubly-fed induction motor based on port controlled Hamiltonian model
基于PCH的DFIM非线性L2增益控制新方法
2.
The paper proposes a novel nonlinear L2 gain control method based on the averaged port controlled Hamiltonian(PCH) model of active power filter(APF).
在所建立的有源电力滤波器APF(active power filter)端口受控哈密顿系统PCH(port controlledHamiltonian)平均化模型基础上,提出了一种非线性L2增益控制新方法。
3.
This paper proposes a novel adaptive L2 gain control algorithm with sliding dissipative damping and limitation for Active power filter (APF) based on its averaged port controlled hamitonian (PCH) model.
基于有源电力滤波器(APF)的端口受控哈密顿系统(PCH)平均化模型,提出了一种采用滑动耗散阻尼限幅的自适应L2增益控制新方法。
补充资料:增益调度适应控制
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性质:一种简单适应控制系统。对有时变的工业过程依据偏差来自动整定控制器的增益。例如,控制器增益可设计为Kc|e|.Kc为比例增益,|e|为偏差绝对值。当偏差大时控制增益大,控制作用相应增强,偏差小时,控制作用就和缓。可用于pH控制。

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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