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A Calibration Method for Intelligent Monitoring Terminal of Pumping Station Information Based on Current Detection

A technology of intelligent monitoring and current detection, applied in the direction of measuring current/voltage, liquid/fluid solid measurement, measuring devices, etc. Changeability and scalability, comprehensive monitoring information, and the effect of improving the degree of integration

Active Publication Date: 2019-08-06
HOHAI UNIV CHANGZHOU
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0005] The traditional method of flow meter flow measurement: the partial flow rate is obtained by multiplying the partial average flow velocity perpendicular to the water-passing section of several partial areas by the partial water-passing area, and then calculates its algebra and obtains the cross-sectional flow rate, and the flow measurement accuracy is not high.
[0006] Ultrasonic flowmeter flow measurement method: has high requirements for the measured fluid, can only be used for clean liquid and gas flow, has low precision, poor stability, and is easily affected by pipelines, which have a great impact on the accuracy of flowmeters , when the actual homogeneous fluid is required for external calibration of the instrument, the application occasions are limited, and the traditional flow measurement method is used for comparative measurement and calibration, and the measurement accuracy is not high
[0007] Electromagnetic flowmeter flow measurement method: high environmental requirements, pipeline corrosion and attachments will have a great impact on the flow measurement accuracy of the instrument. In the actual rate timing, the local position flow velocity is used instead of the cross-sectional average flow velocity, and the measurement accuracy is not high.
[0008] Orifice plate flowmeter flow measurement method: when performing coefficient rate timing, there are many and intricate influencing factors, and the accuracy is difficult to improve. The flow coefficient is related to the Reynolds number, and the measurement range is narrow; when the orifice plate is worn, the calibration coefficient will be invalid. Difficult to guarantee
[0009] Turbine flowmeter flow measurement method: the average flow velocity of the fluid is sensed by the multi-blade rotor, and the flow or total amount is derived, but the calibration characteristics cannot be maintained for a long time. When recalibrating, the sensor needs to be replaced, and the calibration parameters cannot be simply modified. achieve recalibration

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  • A Calibration Method for Intelligent Monitoring Terminal of Pumping Station Information Based on Current Detection
  • A Calibration Method for Intelligent Monitoring Terminal of Pumping Station Information Based on Current Detection
  • A Calibration Method for Intelligent Monitoring Terminal of Pumping Station Information Based on Current Detection

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Embodiment Construction

[0066] Below in conjunction with accompanying drawing of description, the present invention will be further described.

[0067] Such as figure 1 and figure 2 As shown, the present invention provides a method for calibrating a pumping station information intelligent monitoring terminal based on current detection, including the following steps:

[0068] 1) Check the status of the pumping station unit and make sure that the pumping station unit is in a shutdown state;

[0069] 2) Power on the pumping station information intelligent monitoring terminal, start the pumping station information intelligent monitoring terminal, and complete the initialization;

[0070] 3) Perform information configuration on the pumping station information intelligent monitoring terminal;

[0071] 4) The intelligent monitoring terminal of the pumping station information performs zero point detection to determine whether there is leakage current in the pumping station unit in the shutdown state, and...

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Abstract

The invention discloses a method for calibrating a pumping station information intelligent monitoring terminal based on current detection, which comprises the following steps: checking the state of the pumping station unit to determine that the pumping station unit is in a shutdown state; starting the pumping station information intelligent monitoring terminal and completing initialization; Perform information configuration; perform zero point detection; after powering on the pumping station unit and confirming that the pumping station unit is in a fully loaded state, the pumping station information intelligent monitoring terminal obtains the current and flow detection data of several detection points at intervals, and runs the current detection based Parameter calibration algorithm to extract calibration parameters; power off the pump station unit to stop state, and perform zero drift detection; store, upload and completeness check the configuration information and determined calibration parameters. Realize comprehensive and effective real-time dynamic monitoring, and extract reasonable calibration parameters, which can ensure the accuracy of the measurement process, efficient calculation, reliable accuracy, and contribute to more accurate monitoring of pumping station information.

Description

technical field [0001] The invention relates to a calibration method, in particular to a calibration method for an intelligent monitoring terminal of pumping station information based on current detection, and belongs to the technical field of data collection and monitoring. Background technique [0002] As an important part of water conservancy projects, pumping stations play an important role in people's daily production and life, undertaking important tasks such as water diversion, water supply, irrigation, flood control, etc. In areas where large-scale pumping stations are relatively concentrated in my country, an engineering system of water transfer, water supply, irrigation, and drainage has been initially formed, with large-scale pumping stations as the mainstay and small-scale pumping stations as the supplement. Most regions are still in the initial stage of transformation from traditional manual methods to automated methods. [0003] With the rapid development of c...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01F25/00G01R19/00
CPCG01R19/00G01F25/10
Inventor 沈金荣王孟达唐启阳萧海辉梁方徐绪堪
Owner HOHAI UNIV CHANGZHOU
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