变增益鲁棒控制,gain scheduling robust control
1)gain scheduling robust control变增益鲁棒控制
1.Then, the gain scheduling robust controllers were designed on every subset by H∞ performance preserved interpolation, and the bound of the parameter-rate which assure system H∞ performance above the whole parameter set was gained.首先,把整个参数集基于"H∞性能覆盖"的概念分割成若干个子集,然后在每个子集上利用保H∞性能插值设计变增益鲁棒控制器,并在计算出各子集的插值以后得到保证系统在整个变参数集上具有H∞性能的变参数变化率的上界。
英文短句/例句

1.Design of Attitude Control System of Kinetic Interceptor Based on Gain Scheduling Robust Control基于变增益鲁棒控制的拦截弹姿控系统设计
2.Robust H_∞ Control for Uncertain Discrete Time-delay Systems with Controller Gain Variations具有控制器增益变化的不确定离散时滞系统的鲁棒H_∞控制
3.Uncertain Tailless Aircraft Robust Gain-scheduling Controller Design Using LMI基于LMI的不确定性无尾飞行器鲁棒变增益控制器设计
4.Study on Robust Adaptive Fuzzy Control with Unknown Control Gain Sign;控制增益符号未知的鲁棒自适应模糊控制研究
5.Robust Controller Design for Linear Feeding System Based on L_2 Gain;基于L_2增益的直线进给系统的鲁棒控制器研究
6.Application of robust multi-variable predictive control technology in CDU常减压装置鲁棒多变量预测控制应用
7.Robust Invariance Switching Control for Nonlinear Cascade Systems;非线性级联系统的鲁棒不变切换控制
8.Impulse Elimination Controllability of Periodically Time-varying Descriptor Systems;广义周期时变系统的鲁棒消脉冲控制
9.Robust Control of Markovian Jump Systems with Input SaturationMarkov跳变饱和系统的鲁棒控制
10.Design of Robust Partially Decentralized Controllers for MIMO Systems多变量系统鲁棒部分分散控制器设计
11.Robust receding horizon dual-mode control for Markov jump systemsMarkov跳变系统的滚动时域鲁棒双模控制
12.Robust control for a combined shape and gauge multivariable system in hot strip rolling热连轧板形板厚多变量系统鲁棒控制
13.Design of robust integrity controller for a class of uncertain systems with time-varying delay时变时滞不确定系统鲁棒完整性控制
14.A Robust Control Algorithm With Adaptive Prediction for Time-varying Delay Systems时变时滞系统自适应预报鲁棒控制算法
15.Robust Control and Filtering for Uncertain Time-Delay Systems with Jnmping Parameters;跳变时滞不确定系统的鲁棒控制与滤波
16.Robust Resilient H_∞ Control for Interval Singular Systems with Time-varying Delays;区间广义变时滞系统的鲁棒H_∞弹性控制
17.Robust H_∞ Control of Uncertain Discrete Singular Systems with Time-Varying Delays;不确定离散奇异时变时滞系统的鲁棒H∞控制
18.Robust Adaptive Variable Universe Fuzzy Control for Nonlinear System;非线性系统的鲁棒自适应变论域模糊控制
相关短句/例句

variable structure robust control变结构鲁棒控制
1.A design scheme of variable structure robust controller with output tracking performance is given for single-input single-output linear time-varying systems with unknown time-varying parameters and system disturbances.对含有未知时变参数和系统干扰的单输入单输出线性时变系统,给出了一种输出跟踪变结构鲁棒控制器设计机制。
2.A variable structure robust control algorithm with robust sliding mode function is presented for a class of uncertain linear systems with the absence of matching assumption in which the uncertainty is not acted within channels implicit in the control inputs.针对工程领域中常见的一类不匹配不确定系统 ,即不确定性不是发生在控制通道中的系统 ,如工程中具有执行器的控制系统 ,提出了一种建立鲁棒切换函数的方法 ,进而设计滑模变结构鲁棒控制策略 ,该策略可确保整个闭环系统的轨迹是一致最终有界并具有一致稳定性 。
3)Multivariable robust control多变量鲁棒控制
4)robust variable structure control鲁棒变结构控制
5)RMPCT鲁棒多变量控制
6)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。
延伸阅读

鲁棒控制分子式:CAS号:性质:许多被控对象很难被精确描述,在其数学模型中不可避免地存在各种形式的不确定性。鲁棒控制就是指为分析和综合存在不确定性时系统的行为而提出的各种方法,使得当一定范围的参数不确定性及一定限度的未建模动态存在时,闭环系统仍能保持稳定并保证一定的动态性能品质,例如:灵敏度分析、摄动分析、同时镇定、扰动补偿、对策论的应用等。鲁棒控制实质上体现了控制理论向更实用化的深层次的发展。目前研究鲁棒控制的方法大致可分为两类。一类是以分析系统性能特别是稳定性为基础的系统鲁棒性分析和设计,例如:Hurwitz多项式四端点定理、结构奇异值分析方法、V.M.Popov稳定性判据等。另一类是以某种性能指标的优化作为设计依据的控制理论,例如:H∞控制。