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Dynamics of On-Line Ash Monitors in Monitoring and Control Systems

机译:监控系统中在线灰分监测器的动力学

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On-line ash monitors have been in use for many years in coal industry. Their operation is usually based on the scattering or the absorption of incident gamma radiation, and the derived ash value is the result of a time-averaged measurement. The natural radiation method is also used in on-line ash content measurements. A review of the ash monitors applied in Polish coal preparation plants is presented in this paper. Most of monitor installations are designed to monitor trends of ash content in coals, rather than to react to rapid changes of ash content. These data averaged over the period of tens of seconds (or several minutes) are often used by an operator to adjust the operation of a plant manually. In the case of closed loop control systems with on-line ash monitors, the dynamic properties of these instruments are important. The concept of an ash monitor with a time constant (or a time of measurement) adapting to variations of an input signal (ash content) have been analyzed. The fuzzy logic has been applied to establish the structure of the adaptive filter. Such a system allows us to speed-up the reaction of the instrument to rapid variations of ash content and at the same time to achieve better statistical accuracy over a longer period of time. This is particularly important in closed loop control systems or in splitting of a coal stream to different products. Simulation analysis of the coal blending control system applied in the "Sosnica" plant is presented in this article. Application of an on-line ash monitor with an adaptive time constant is discussed and some results of practical experiments are presented.
机译:在线灰分监测器已经在煤炭工业中使用了很多年。它们的操作通常基于入射伽马射线的散射或吸收,得出的灰分值是时间平均测量的结果。自然辐射法还用于在线灰分含量的测量。本文介绍了用于波兰选煤厂的灰分监测器。大多数监控器安装旨在监控煤中灰分含量的趋势,而不是对灰分的快速变化做出反应。在数十秒(或几分钟)的时间内取平均的这些数据通常被操作员用来手动调整工厂的运行。对于带有在线灰分监测器的闭环控制系统,这些仪器的动态特性很重要。分析了具有时间常数(或测量时间)以适应输入信号(灰分含量)变化的灰分监测器的概念。模糊逻辑已被用于建立自适应滤波器的结构。这样的系统使我们能够加快仪器对灰分快速变化的反应,同时在更长的时间内达到更好的统计精度。这对于闭环控制系统或将煤流分离成不同的产品尤为重要。本文介绍了在“ Sosnica”工厂中应用的煤掺混控制系统的仿真分析。讨论了具有自适应时间常数的在线灰分监测器的应用,并给出了一些实际实验结果。

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