Measurement system and measurement method

TWI937885BActive Publication Date: 2026-09-01CHINA STEEL
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Patent Information

Application Number
TW114121669
Authority / Receiving Office
TW · TW
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2026-09-01
Estimated Expiration
2045-06-09

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    Figure TWG2TB001908873_002
  • Figure TWG2TB001908873_003
    Figure TWG2TB001908873_003
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Abstract

A measurement system is disclosed for measuring the shape of the charge surface in a blast furnace. The system includes a shape measuring device, a programmable logic controller (PLC), a control processor, and a data processor. The shape measuring device is installed at an opening in the furnace wall at the top of the blast furnace and configured to scan the charge to acquire shape information. The PLC is configured to receive and transmit measurement commands from an operator. The control processor is configured to receive the measurement commands to trigger a servo drive controller to drive the shape measuring device, and then transmit the shape information after the shape measuring device acquires it. The data processor is configured to receive the shape information and process it through coordinate transformation to generate the charge surface shape.
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Claims

1. A measurement system for measuring the shape of a charge surface in a blast furnace, the measurement system comprising: a shape measuring device disposed at a furnace wall opening at the top of the blast furnace and configured to scan the charge to obtain shape information; a programmable logic controller configured to receive and transmit a measurement command from an operator; a control processor configured to receive the measurement command to trigger a servo drive controller to drive the shape measuring device, and then transmit the shape information after the shape measuring device obtains the shape information; and a data processor configured to receive the shape information and process the shape information through a coordinate conversion operation to generate the charge surface shape.

2. The measurement system as claimed in claim 1, wherein the shape measurement device further comprises: a mounting flange configured to connect the shape measurement device to the furnace wall opening; a laser scanner configured to scan the stockpile to obtain the shape information; a rotation mechanism configured to rotate the laser scanner about a rotation center; a rotation positioning element configured to provide rotation positioning for the rotation mechanism; and a servo drive configured to drive the rotation mechanism to rotate the laser scanner about the rotation center, wherein one scanning center of the laser scanner is aligned with the rotation center.

3. The measurement system as described in claim 2, wherein the servo drive controller drives the rotating mechanism by controlling the servo drive to cause the laser scanner to rotate and scan the stockpile to obtain the shape information.

4. The measurement system as described in claim 1, wherein the measurement system further includes a first signal input / output module and a second signal input / output module, the programmable logic controller transmits the measurement command to the data processor through the first signal input / output module, and the shape measurement device transmits the measured shape information back to the control processor through the second signal input / output module.

5. The measurement system as claimed in claim 1, wherein the measurement system further includes a data acquisition unit, and the control processor stores the shape information in the data acquisition unit.

6. The measurement system as described in claim 1, wherein the measurement system further includes a first optical communication module and a second optical communication module, the data processor transmits the measurement command to the control processor through the first optical communication module, and the control processor transmits the shape information back to the data processor through the second optical communication module.

7. The measurement system as described in claim 1, wherein the measurement system further includes a database, and the data processor, after generating the material surface shape, then stores the material surface shape in the database.

8. The measurement system as described in claim 1, wherein the measurement system further includes a human-machine interface, and the data processor, after generating the material surface shape, then displays the material surface shape on the human-machine interface.

9. The measurement system as described in claim 1, wherein the shape information includes at least one shape data point.

10. A measurement method for measuring the shape of a surface of a charge in a blast furnace, the measurement method comprising: receiving and transmitting a measurement command from an operator using a programmable logic controller (PLC); transmitting the measurement command to a data processor using a first signal input / output module; transmitting the measurement command to a control processor using a first optical communication module; triggering a servo drive controller using the control processor to drive a shape measuring device to rotate and scan the charge to obtain shape information; transmitting the shape measuring device back to the control processor via a second signal input / output module; storing the shape information in a data acquisition unit using the control processor; transmitting the shape information back to the data processor via a second optical communication module using the control processor; receiving the shape information using the data processor and processing the shape information through a coordinate conversion operation to generate the surface shape; storing the surface shape in a database using the data processor; and displaying the surface shape on a human-machine interface using the data processor.

Citation Information

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