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1)  whole hydroelectric machine system
水轮机整机系统
1.
A model for dynamic analysis on a whole hydroelectric machine system was studied by multiple step mode synthesis technique, which consists of rotary and fixed components.
采用多级模态综合技术并利用结构旋转对称的特点,建立包括转动部件和固定部件在内的水轮机整机系统动力特性分析模型。
2)  whole hydroelectric generator system
水轮发电机组整机系统
1.
Direct spectrum analysis for random vibration on whole hydroelectric generator system;
水轮发电机组整机系统随机振动的直接谱分析
3)  hydro-turbine regulating system
水轮机调节系统
1.
Research on the Advanced Control Strategy of Hydro-turbine Regulating System;
水轮机调节系统先进控制策略的研究
2.
A hydro-turbine regulating system is a typical non-minimum phase system,for eliminating the undershoot caused by zeros in the right-half plane.
水轮机调节系统是一类典型的非最小相位系统,为抑制其右半复平面零点所造成的负调,提出一种二自由度内模控制(IMC)—比例—积分—微分(PID)控制和模糊逻辑设定值加权的混合控制策略。
3.
Hydro-turbine regulating system plays important roles in the operation stability of hydropower generating unit.
水轮机调节系统是保证水电机组稳定运行的重要组成部分。
4)  hydraulic turbine governing system
水轮机调节系统
1.
Hopf bifurcation analysis of hydraulic turbine governing systems with elastic water hammer effect;
考虑弹性水击效应时水轮机调节系统的Hopf分岔分析
2.
Recognition of Hydraulic Turbine Governing System Based On RBF Neural Network;
基于RBF神经网络的水轮机调节系统辨识
3.
Based on the control principles and the hydraulic relations between each part of the hydraulic turbine governing system , the mathematical model of the controlling system for the run-off river plant with the function of regulating water level of the frontal pool was set up considering the effect of elastic, water hammer.
根据引水式电站恒前池水位控制系统的控制原理和相应的水力联系,建立了弹性水击情况下的水轮机调节系统的数学模型,对该调节系统进行了稳定分析,求出了连续系统和离散系统的稳定边界方程,分析比较了连续系统和离散系统的稳定域以及调节对象主要参数对调节系统稳定域的影响。
5)  hydro-turbine governing system
水轮机调节系统
1.
Bifurcation analysis of hydro-turbine governing system with saturation nonlinearity;
考虑饱和非线性环节的水轮机调节系统的分叉分析
2.
Optimization design of fuzzy controller with robust stability for hydro-turbine governing system;
水轮机调节系统鲁棒稳定模糊控制器的优化设计
3.
Hydro-turbine Governing System Optimization Based on MATLAB/SIMULINK;
基于MATLAB/SIMULINK的水轮机调节系统寻优
6)  hydro turbine governing system
水轮机调节系统
1.
For better control of the hydro turbine generating units,it is desirable to identify the model of the subject of the hydro turbine governing system before optimizing its control parameters.
建立了水轮机调节系统被控对象的非线性模型,用递推最小二乘法(RLS)对被控对象进行参数辨识。
2.
The mathematical models of the hydro turbine governing systems are established by preliminary PID algorithm and improved PID algorithm respectively.
本文提出一种改进的水轮机微机调速器PID控制算法,并建立了采用原始PID算法和改进PID算法的水轮机调节系统的离散数学模型,给出了调节系统的稳定域边界控制方程,并对两种PID算法的调节系统稳定域进行了分析比较。
补充资料:计算机输入/输出控制系统(见计算机输入/输出系统)


计算机输入/输出控制系统(见计算机输入/输出系统)
computer input/output control system

  iisuanii shuru/shuehu kongzhi xitong计算机输入/输出控制系统(com-puter inPut/ou中ut eontrol system)见计算机输入/输出系统。
  
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