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A method and system for environmental control of glass melting furnace based on causal reasoning

A glass melting furnace and causal technology, which is applied in the field of controlling the glass melting furnace environment based on causal reasoning, can solve problems such as the imperfect simulation of the melting furnace environment, the lack of convincing production decisions, and the inability of machine learning algorithms to explain causality, etc., to achieve practical application Inconvenience, significant market value, simple and convenient implementation

Active Publication Date: 2022-07-05
WUHAN UNIV OF TECH
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Problems solved by technology

[0004] Although these improved algorithms perform well under experimental simulation conditions, they cannot achieve good performance in practical applications.
One is that the complex furnace environment cannot be perfectly simulated; the other is that the neural network-based machine learning algorithm cannot explain causality and is not convincing for actual production decisions

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  • A method and system for environmental control of glass melting furnace based on causal reasoning
  • A method and system for environmental control of glass melting furnace based on causal reasoning
  • A method and system for environmental control of glass melting furnace based on causal reasoning

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Embodiment Construction

[0046] The technical solutions of the present invention will be specifically described below with reference to the accompanying drawings and embodiments.

[0047]The invention provides a method for controlling the environment of a glass melting furnace based on causal reasoning, which is used for an all-oxygen glass furnace melting furnace with natural gas and oxygen as fuel. The method is based on the time series data sets of temperature, pressure, natural gas and oxygen flow rate, valve opening, glass melt height, furnace dust concentration, sulfur dioxide concentration, nitrogen oxide concentration, etc. measured at key points in the glass melting furnace. The conditional selection algorithm deletes nodes that are conditionally independent of each other in the time series to obtain a sparse causal model. Using the obtained sparse causal model as the input of the instantaneous conditional independence test, the false positive causal associations in the sparse causal model ca...

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Abstract

The invention provides a method and a system for controlling the environment of a glass melting furnace based on causal reasoning, which is used for an all-oxygen glass furnace melting furnace using natural gas and oxygen as fuel, and the time series data of glass melting furnace related parameters and glass quality time series data collected by sensors The sparse causal model is obtained through the conditional selection algorithm; the sparse causal model is used as the input, and the sparse causal model with the false positive causal association removed is obtained through the instantaneous conditional independence test; based on information theory, the concept of source entropy is used to measure the causal strength , and give corresponding control decisions according to the causal strength. For the glass melting furnace environment with high-dimensional, nonlinear time series and time lag characteristics, the invention can reason about the time-lag causal relationship; and can quantify the strength of the causal relationship, and provide decision support suggestions for the environmental control of the glass melting furnace.

Description

technical field [0001] The invention relates to the technical field of glass melting furnace environment control, in particular to a method and system for glass melting furnace environment control based on causal reasoning. Background technique [0002] Glass melting furnace is a complex system accompanied by various physical and chemical reactions. During the clarification and homogenization process in the melting pool or forehearth, the glass liquid needs to be kept in a specific temperature range stably for a long time. In order to obtain good glass in industry Quality requires some control of the environment inside the furnace. At present, the traditional PID control technology is mainly used in related fields in my country. This technology is relatively inexpensive and easy to design, but for a system with high dimensions, nonlinearity and time lag, such as a furnace, the control effect is not ideal, making it difficult to produce high-quality glass. In addition, many...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06N5/04C03B5/16C03B5/24
CPCG06N5/041C03B5/16C03B5/24
Inventor 夏喆谢天雄邹承明
Owner WUHAN UNIV OF TECH
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