期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
大型立式淬火炉温度分布参数系统动态解耦控制算法 被引量:4
1
作者 周璇 喻寿益 +3 位作者 贺建军 曹悦彬 桂卫华 梁列全 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2007年第3期533-539,共7页
针对大型立式淬火炉体积庞大,工况复杂,炉内温度分布呈本征非均匀性,具有多输入/多输出、非线性、强耦合等特性,难以实现炉内温度高精度高均匀性控制目标等问题,提出一种温度分布参数系统动态解耦控制算法,其原理是:采用有限维逼近方法... 针对大型立式淬火炉体积庞大,工况复杂,炉内温度分布呈本征非均匀性,具有多输入/多输出、非线性、强耦合等特性,难以实现炉内温度高精度高均匀性控制目标等问题,提出一种温度分布参数系统动态解耦控制算法,其原理是:采用有限维逼近方法将对象解耦为多个独立的子系统,简化控制器的实现过程;通过分析有限维逼近方法的收敛性,获得保证收敛性的空间和时间步长应满足的条件;解耦后的子系统采用自学习PID控制算法,实现炉内温度高精度和高均匀性控制以及升温过程的快速性和小超调。研究结果表明:温度均匀性由原来的-6~6℃提高到-2~2℃,升温时间由原来的40 min缩短到25 min,超调量由大于15℃减少到小于7℃。 展开更多
关键词 大型立式淬火炉 分布参数系统 动态解耦控制算法 有限维逼近方法
在线阅读 下载PDF
Temperature control for thermal treatment of aluminum alloy in a large-scale vertical quench furnace 被引量:3
2
作者 沈玲 贺建军 +1 位作者 喻寿益 桂卫华 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第7期1719-1728,共10页
The temperature control of the large-scale vertical quench furnace is very difficult due to its huge volume and complex thermal exchanges. To meet the technical requirement of the quenching process, a temperature cont... The temperature control of the large-scale vertical quench furnace is very difficult due to its huge volume and complex thermal exchanges. To meet the technical requirement of the quenching process, a temperature control system which integrates temperature calibration and temperature uniformity control is developed for the thermal treatment of aluminum alloy workpieces in the large-scale vertical quench furnace. To obtain the aluminum alloy workpiece temperature, an air heat transfer model is newly established to describe the temperature gradient distribution so that the immeasurable workpiece temperature can be calibrated from the available thermocouple temperature. To satisfy the uniformity control of the furnace temperature, a second order partial differential equation(PDE) is derived to describe the thermal dynamics inside the vertical quench furnace. Based on the PDE, a decoupling matrix is constructed to solve the coupling issue and decouple the heating process into multiple independent heating subsystems. Then, using the expert control rule to find a compromise of temperature rising time and overshoot during the quenching process. The developed temperature control system has been successfully applied to a 31 m large-scale vertical quench furnace, and the industrial running results show the significant improvement of the temperature uniformity, lower overshoot and shortened processing time. 展开更多
关键词 large-scale vertical quench furnace temperature calibration thermal dynamic model decoupling control
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部