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1)  Fuzzy Gain Compensation
模糊增益补偿
2)  gain compensation
增益补偿
1.
This paper introduces a gain compensating circuit based on voltage-operated gain, which can realize gain compensation effectively.
增益补偿是超声医学测量中极其重要的环节。
2.
On the basis of theoretical analysis of the attenuation of ultrasonic wave in a river,by using gain compensation we put forward a new method to measure the sand content in a river.
通过对河水中超声波的衰减规律进行了理论推导和分析,提出了用增益补偿实现对河水泥沙含量进行测量的新方法,它能快速、准确、直观地测量泥沙含量,且实现过程较简单,抗干扰能力强。
3.
The state feedback matrix and gain compensation were developed to remodel controlled system, establishing generalized first-order model by method of removing the same zero and pole, therefore, the smooth transition problem in multim.
采用状态反馈矩阵和增益补偿环节来改造被控对象,采用零极点相消方法建立广义的一阶模型,解决了多模态的平稳过渡问题。
3)  fuzzy compensation
模糊补偿
1.
The automatic control system for pour moulding process in aerated concrete production is particular introduced based on paper A fuzzy compensation algorithm is presented for the accuracy problem in measuring mortar.
为了解决料浆计量的准确性 ,提出了模糊补偿算法。
2.
In order to ensure good disturbance-opposing ability of robots,speed up the convergence and increase the accuracy of trackin error, based on fuzzy logic system,combining fuzzy logic systems,adaptive control,H_∞control and a fuzzy compensation,a new adaptive fuzzy control method for unknown robot is presented.
该控制算法基于模糊逻辑系统,将模糊自适应控制器的设计与H_∞控制相结合,在鲁棒补偿的基础上引入模糊补偿;并基于Lyapunov方法,给出了学习自适应律,及H_∞跟踪特性的证明。
3.
The gain error compensation algorithm is proposed to reduce gain error,and moreover fuzzy compensation replacing gain compensation is used to improve the robustness of the system.
对此提出误差增益补偿算法以减小增益误差,并进一步用模糊补偿替代增益补偿以提高系统的鲁棒性。
4)  compensatory fuzzy
补偿模糊
5)  gain self-compensation
增益自补偿
6)  variable gain compensation
变增益补偿
1.
It has been used in a large loading system with non linear variable gain compensation t.
在一套大型结构加载系统的节能改造中,采用一种新型的无须外加辅助油源的自供式伺服变量泵节能控制系统,并针对容积式控制方式中存在的问题,采用非线性变增益补偿法改善系统动态性能。
补充资料:布里斯托尔相对增益
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性质:在一个装置上设置多个控制系统时,系统间会存在相互耦合。但其关联程度可用布里斯托尔相对增益λij来衡量。相对增益λij的定义是在其他控制系统均为开环时,第j个控制变量Uj对第i个输出变量Yi通道的放大系数(增益)与该通道在其他控制系统均为闭环时放大系数(增益)之比,称为相对增益。由于是布里斯托尔提出的,所以又称布里斯托尔相对增益。当系统间无耦合时,一个控制回路是处于开环或闭环状态,对另一个控制回路是不会起影响的,故λij=1。但在系统间存在耦合时,情况就不同了,耦合越严重,一个控制回路处于开环或闭环,对其他控制回路影响就越大,λij偏离l就越远。因此,相对增益λij可用来衡量控制系统间关联的程度。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条