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白酒地缸固态发酵出醅双缸同步控制系统研究

Research on the Fermented Grains Double Cylinder Synchronous Control System for the Spirit Solid Fermentation
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摘要 为提高白酒地缸固态发酵出醅效率、减小出缸过程易污染等问题,提出一种白酒地缸固态发酵出醅双缸同步控制系统,给出了其出醅双缸同步控制系统工作原理,搭建了出醅双缸同步控制系统数学模型,采用蚁群算法对PID控制器三个参数进行了迭代寻优,基于Matlab/Simulink中进行了仿真研究,最后通过试验验证了白酒地缸固态发酵出醅双缸同步控制特性,为白酒地缸固态高效发酵参考和指导。研究结果表明:出醅双缸同步控制系统阶跃响应最大同步误差可控制在0.089 m以内,稳态同步误差可控制在0.02 m以内,试验数据和仿真数据误差可控制在0.004mm以内。 In order to improve the efficiency of spirit solid fermentation fermented grains and reduce the problems of easy pollution during cylinder discharge,a double cylinder synchronous control system for solid fermentation fermented grains is presented in this paper.The working principle of double cylinder synchronous control system for fermented grains is given;and the mathematical model of double cylinder synchronous control system for fermented grains is established.The ant colony algorithm is used to iteratively optimize the three parameters of PID controller;and then the simulation research is carried out based on Matlab/Simulink.Finally,the characteristics of synchronous control of solid fermentation fermented grains in liquor cylinder are tested.It is a reference and guidance for the solid state high efficiency fermentation of spirit ground cylinder.The results show that the maximum synchronization error of step response of the double cylinder synchronous control system for fermented grains can be controlled within 0.089 m,while the steady-state synchronization error can be controlled within 0.02m;the error between test data and simulation data can be controlled within 0.004 m.
作者 张浩强 罗相巧 黄鸿滨 韦美良 蔡柳 卢森幸 ZHANG Hao-qiang;LUO Xiang-qiao;HUANG Hong-bin;WEI Mei-liang;CAI Liu;LU Sen-xing(Hechi University,Yizhou Guangxi 546300,China)
机构地区 河池学院
出处 《机械研究与应用》 2022年第3期37-39,42,共4页 Mechanical Research & Application
基金 广西重点研发计划:复合米香型白酒自动化工艺技术的研究(编号:桂科AB20297022)。
关键词 白酒地缸 固态发酵 出醅双缸 PID控制器 蚁群算法 同步误差 spirit ground cylinder solid state fermentation fermented grains double cylinder PID controller ant colony synchronization error
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