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AI0T-based steam jet pump parameter transmission system and method

A technology of transmission system and ejector pump, which is applied in the field of data communication, can solve the problems of affecting parameter reference value, adjustment, and low synchronization of receiving parameters, so as to achieve the effect of improving reference value, improving timeliness and reducing workload

Active Publication Date: 2022-07-29
常州艾肯智造科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, parameters need to be collected and transmitted before the parameters are optimized. The steam ejector pump currently lacks a suitable fault diagnosis method to collect and transmit data. The existing data collection and data transmission methods have the following problems: First, the steam ejector pump There are various types. For different types of steam ejector pumps, the parameter optimization methods are different. Before parameter optimization, it is necessary to obtain a large number of operating parameter data of the same type of steam ejector pumps, and compare and analyze each other, which has a certain reference value. Now In some data transmission methods, the data transmission time is fixed, and it is impossible to adjust the data transmission time in a targeted manner, resulting in low synchronization of receiving parameters and affecting the reference value between parameters; secondly, a steam ejector pump often sets Multiple measuring points are used for testing, and the randomness of the order of collecting test data leads to the lack of timeliness of some important data, which cannot improve the accuracy of fault diagnosis

Method used

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Examples

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Embodiment 1

[0072] Example 1: Collecting historical data: When the parameters of the same type of steam ejection pump are transmitted at the same time, the transmission time collected is T=12:00, and the time set when the terminal receives the parameters is t={t1, t2, t3} ={12:10, 12:20, 12:05}, use the least squares method to fit the data points {(1, 10), (2, 20), (3, 5)} with a straight line to get the fitting function is: F(x)=E1*x+E2, according to the formula and Calculate E1 and E2 separately: E1=-2.5, E2=17, according to the formula Calculate the synchronization degree W=2.5 of the parameters of the same type of steam ejection pump received by the terminal, and set the synchronization degree threshold to W 阈 =1, compare W and W 阈 : W>W 阈 , indicating that the degree of synchronization is low, and the transmission time needs to be planned: compare ti-T and : , , the parameter transmission time of the steam ejection pump corresponding to t1 and t3 is delayed, and the dela...

Embodiment 2

[0073] Embodiment 2: The number of measurement points collected by a random steam ejector pump is n=3, the measurement point obtains parameters through sensor testing, and the set of times that the parameters tested at the measurement point are called due to fault diagnosis is A={A1, A2, A3}={5, 2, 8}, the set of times after the measuring point is called and processed is B={B1, B2, B3}={3, 2, 6}, the first measuring point obtained is The set of durations for post-call processing is t ’ ={t1 ’ , t2 ’ , t3 ’ }={20, 10, 30}, the unit is: minutes, according to the formula Calculate the importance of the first measuring point to the overall fault diagnosis of the steam ejector pump G1=1.8, and obtain the importance of all the measuring points for the overall fault diagnosis of the steam ejection pump through the same calculation method. G={G1, G2, G3 }={1.8, 2.3, 0.6}, arrange the importance in order from small to large: collect the parameters tested by the second, first, and ...

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Abstract

The invention discloses an AI0T-based steam jet pump parameter transmission system and method, and the system comprises a data collection module, a data management center, a measurement point data analysis module, a parameter transmission management module, and a jet pump monitoring module. Measurement point data required for fault diagnosis of the steam jet pump and transmission data of parameters of the steam jet pump are acquired through the data acquisition module, all the acquired data are stored through the data management center, and synchronism of the received parameters and importance of measurement points are analyzed through the measurement point data analysis module. The parameter transmission management module is used for planning parameter transmission time and a collection sequence of parameters tested by the measuring points, the jet pump monitoring module is used for monitoring operation of the steam jet pump in real time, the parameters are collected according to the planned sequence, and the parameters are transmitted to the terminal according to the planned time. After the parameters are received, the parameters are analyzed and optimized through the AIOT technology, the synchronism and timeliness of parameter transmission are improved, and the accuracy of parameter optimization is improved.

Description

technical field [0001] The invention relates to the technical field of data communication, in particular to an AIOT-based steam ejection pump parameter transmission system and method. Background technique [0002] The steam ejector pump uses steam as the working medium. After being accelerated by the nozzle, a high-speed airflow is formed to carry the pumped gas, so as to achieve the purpose of pumping. In industrial production at home and abroad, the steam ejection pump is widely used in all walks of life. , Especially in the fields of steelmaking, chemical industry, etc., most of them use larger steam ejection pump vacuum systems. The parameters of the steam ejection pump need to be continuously optimized to improve performance. AIOT technology refers to the generation and collection of data from different Dimensional massive data, and then through big data analysis and higher forms of artificial intelligence to realize the digitization of everything and the intelligent co...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04L7/00H04L67/12F04F5/16F04F5/44
CPCH04L7/00H04L67/12F04F5/16F04F5/44
Inventor 陈震翔刘梦祥周志远
Owner 常州艾肯智造科技有限公司
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