1) furnace and turbine control

炉机控制
2) turbine-boiler coordinated control

机炉协调控制
1.
The automatic generation control (AGC)system in Yangluo Power Plant has been presented,emphatically analysing the features of turbine-boiler coordinated control system,and giving the experience of debugging the AGC system.
介绍阳逻电厂自动发电控制(AGC)系统,重点分析了机炉协调控制系统的特点,并给出AGC系统的调试经验。
3) Microcomputer control boiler

微机控制锅炉
4) boiler-turbine coordinated control

机炉协调控制
1.
The design and adjusting of boiler-turbine coordinated control system for big capability are integrative technology work.
大容量单元机组机炉协调控制系统的设计与调试是一项综合性很强的技术工作,基于IFO-KΔx的状态反馈可以预测汽压的变化趋势,有效克服汽压过调或振荡现象,对锅炉汽压的稳定起到关键性作用。
2.
It is applied to a boiler-turbine coordinated control system of 600 MW generator unit.

在一台600 MW机组机炉协调控制的工程实践中取得实际效果表明,在协调方式累计降负荷375 MW,机前压力从16。
5) boiler turbine coordinated control

机炉协调控制
1.
The controller can solve the full route control and de couple control problems about boiler turbine coordinated control system.
针对1台500MW单元机组的仿真模型,设计了基于T-S模糊模型和鲁棒控制方法的多模型控制器,解决了单元机组机炉协调控制中的全程控制和解耦控制问题,并对多模型控制系统的全局稳定性进行了证明。
2.
A kind of PID type fuzzy controller [1] has been used for the nonlinear、time variable and pure lag characteristics of the boiler turbine coordinated control system in the fossil fired power station.
针对火电站机炉协调控制对象的非线性、时变和纯迟延的特性 ,采用了一种 PID型模糊控制器[1 ] 。
6) furnace temperature control

炉温控制
1.
The furnace temperature control and the after-burning control widely-used for continuous annealer in late years are mainly described.
主要介绍了炉温控制和近年来在连续退火炉中广泛应用的二次燃烧控制。
2.
Finally, Smith estimating and cascaded temperature control technology are applied to the furnace temperature control system.
分析用煤气作为燃料、同一煤气总管道给多台加热炉加热引起炉温变化的原因,传统PID控制普遍存在的时间滞后问题,介绍史密斯(Smith)预估控制原理,介绍串级控制与史密斯(Smith)预估控制相结合的自动控制技术在炉温控制系统的应用及实现。
3.
An intelligent controlling system used in furnace temperature control is designed by means of combining the capability of self-studying and selfadapting of single nerve cell with the traditional PID control so that the problems of large inertia and pure lag in furnace temperature control are solved.
将单神经元的自学习和自适应能力与传统的 PID控制相结合 ,构成一种智能调节器 ,解决炉温控制中的大惯性和纯滞后问题 ,最后对所设计的控制器进行数字仿真 ,证明该控制方法的可实现性和有效
补充资料:CJ-2计算机控制陶瓷材料高温蠕变试验机
CJ-2计算机控制陶瓷材料高温蠕变试验机
鲡 C」一2计算机控制陶瓷材料高温蠕变试验机 中国科学院上海硅酸生研完所供稿
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