A Method of Accurately Identifying and Locating Abnormal Variables
A positioning method and variable technology, applied in character and pattern recognition, instruments, testing/monitoring control systems, etc.
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Embodiment 1
[0109] Please also refer to Figure 5-Figure 10 .
[0110] The embodiment of the present invention provides numerical simulation for verifying the effectiveness and feasibility of the invention. Firstly, through a seven-variable numerical simulation, the accuracy of reconstructed variables using the mean k-NN, k-1NN, weighted k-NN and CNN methods is compared.
[0111] In the embodiment of the present invention, the numerical simulation consists of two latent variables s a and s b The constructed seven variables are composed, as shown in formula (25):
[0112]
[0113] In the formula, e 1 ~e 7 is noise with mean zero and standard deviation 0.01, s a is a random number s from -10 to -7 b Obey normal distribution and N(-15,1). According to formula (25), a total of 500 training samples and 500 samples to be verified are generated. In order to compare the accuracy of the four reconstruction algorithms, the simulation assumes that the sample set to be verified is from ti...
Embodiment 2
[0126] Please also refer to Figure 11-Figure 15 .
[0127] In the embodiment of the present invention, the effectiveness of the proposed method for accurate identification of abnormal variables is verified by a Continuous Stirred Tank Reactor (CSTR) system.
[0128] CSTR is a reactor widely used in polymerization chemical reactions, in which the reaction raw materials enter the reactor at a steady flow rate, and the reactants flow out at the same steady rate. Due to the effect of strong stirring, the fresh material just entering the reactor and the material remaining in the reactor are completely mixed instantly, the concentration and temperature of the material inside the reactor are equal everywhere, and the reaction rate in the continuous stirred tank reactor is determined by The temperature and concentration of the material in the kettle are determined. The principle of the system is as follows: Figure 11 shown. The liquid level and temperature of the reactor are cont...
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