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作 者:陈先中[1,2] 尹怡欣[1,2] 侯庆文[1,2] 李晓理[1,2] 马健[1,2] 王猛[1,2]
机构地区:[1]北京科技大学信息工程学院,北京100083 [2]北京科技大学钢铁流程先进控制教育部重点实验室,北京100083
出 处:《北京科技大学学报》2011年第2期215-220,共6页Journal of University of Science and Technology Beijing
基 金:国家高技术研究发展计划目标导向资助项目(No.2009AA04Z156);东南大学毫米波国家重点实验室资助项目(No.K200801);北京市教委重点学科资助项目(No.XK100080537)
摘 要:研制用于高温恶劣生产环境下新型冶金专用雷达.采用改进的调频连续波测量原理,提高了固体雷达料面测量的实时性.提出一种新的智能时变阈值信号处理方法,解决了因高炉内料面反射系数变化影响雷达测距精确性问题.实验室模拟仿真固粉态料面测量表明,该冶金雷达测量料面的跟踪延时在0.2 s以内,最大跟踪测量平均误差控制在0.05%.现场测试结果表明,测量平均误差0.95%,能够实时稳定地跟踪料面变化,满足高炉监控需求.Metallurgical radar was developed which can be used in high temperature and hash production environments. It adopted an improved frequency-modulated continuous wave principle and enhanced the real-time performance of solid material level measurement. An intelligent time-varying threshold signal processing method was proposed to solve the radar ranging accuracy problem caused by the change of solid material surface reflection coefficient in a blast furnace. Measurement results in a solid-powder state material surface simulation environment in the laboratory shows that the measurement tracking delay of the metallurgical radar is within 0.2 s, and the maximum average tracking error is less than 0.05%. Field test results show that the average measurement error is 0.95%, indicating that the metallurgical radar is capable of stable material surface tracking in real-time and can meet the requirements of BF monitoring.
分 类 号:TM931[电气工程—电力电子与电力传动]
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