The design and implementation of reheating furnace computer control system based on the dynamic mathematical model and the heuristic optimization strategy is discussed in this paper.
本文阐述了一个基于动态数学模型及启发式优化策略的连续加热炉计算机控制系统的设计与实施。
The strategy is successfully applied to structural static and dynamic collaborative optimization of hydraulic excavator working equipment.
提出的策略成功地应用于液压挖掘机工作装置的结构静动态协同优化设计中。
With the allowable maximum ground settlement as target value, a dynamic optimization model is designed to draw up the strategy(technical measures) controlling the effect of tunnelling on environment.
以地表最大允许沉降值作为目标控制值,设计了一个用于制定隧道工程环境影响控制策略(施工技术措施)的动态优化模型。
For electrical heating furnace a simple and feasible computer control strategy with PID algorithm has been set forth to achieve dynamic optimization and production stability.
针对铸件热处理用电加热炉,提出了一种简单易行的计算机控制方案,采用PID系统控制算法,以达到优化并稳定工艺参数及提高产品质量的目的。
For electrical heating furnace a simple and feasible computer control strategy with PID algorithm has been set forth to achieve dynamic optimization and production stability.
针对铸件热处理用电加热炉,提出了一种简单易行的计算机控制方案,采用PID系统控制算法,以达到优化并稳定工艺参数及提高产品质量的目的。
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