An intelligent identification system for diene extraction water division
The intelligent identification system automatically identifies and records the solution density and images during the diene extraction process, solving the difficulties of manual observation and recording, and achieving the effects of reducing labor burden and improving efficiency.
Patent Information
- Application Number
- CN202011510784.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-18
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2040-12-18
AI Technical Summary
In the current diene extraction process, manually observing the separation process is labor-intensive and cannot record the final image.
An intelligent identification system is adopted, which uses components such as monitoring cameras, densitometers, controllers and signal transceivers to realize the automatic identification and recording of solution density and images, control the automatic operation of solenoid valves, and reduce manual intervention.
It reduces the burden of manual labor, automatically records the formed image, and improves the intelligence level of the extraction process.
Smart Images

Figure CN112633135B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of diene extraction water distribution, in particular to an intelligent recognition system for diene extraction water distribution. BACKGROUND
[0002] Diene, belonging to unsaturated hydrocarbons, is a hydrocarbon compound containing two carbon-carbon double bonds. It is extracted by solvent treatment, distillation, dehydration and pressure or centrifugal force, or by other chemical or mechanical processes to produce useful ingredients from substances.
[0003] The diene recovery process includes mother liquor concentration, solvent extraction, chromatography impurity removal, chromatography liquid concentration, refining, crystallization, centrifugation and drying. For example, CN 103554208 A discloses a method for recovering diene from diene alcohol ketone acetate mother liquor, which has the advantage of high purity. However, in the extraction process, manual observation is generally used to separate the situation, and when the extraction is completed, the valve needs to be opened manually, which is labor-intensive and cannot record the final shaped image. Therefore, an intelligent recognition system for diene extraction water distribution is proposed to solve the above problems. SUMMARY
[0004] (I) Technical problems solved
[0005] In view of the deficiencies of the prior art, the present application provides an intelligent recognition system for diene extraction water distribution, which can reduce the labor burden and record the shaped image, solving the problem of labor-intensive manual observation during the extraction process, manual opening of the valve after the extraction is completed, and the inability to record the final shaped image.
[0006] (II) Technical solutions
[0007] In order to achieve the above-mentioned purpose of reducing the labor burden and recording the formed image, the present application provides the following technical scheme: an intelligent identification system for diene extraction water division, comprising a monitoring camera and a densimeter, the monitoring camera is electrically connected with a first controller, the first controller is electrically connected with a first signal transceiver, the first signal transceiver is signal connected with a second signal transceiver, the second signal transceiver is electrically connected with an image recognition module, the second signal transceiver is electrically connected with a numerical value recognition module, the second signal transceiver is electrically connected with a second controller, the second controller is electrically connected with a display screen, the first controller is electrically connected with a solenoid valve, the second controller is electrically connected with an image backup module, the bottom of the monitoring camera is fixedly connected with a stand, the bottom of the stand is fixedly connected with a fixed plate, the top of the fixed plate is fixedly connected with an electric telescopic push rod on the left and right sides, the top of the electric telescopic push rod is fixedly connected with a receiving block, the top of the receiving block on the left side is fixedly connected with a servo motor, the output shaft of the servo motor is fixedly connected with a rotating column, and the outer side of the rotating column is fixedly connected with a cleaning roller.
[0008] Preferably, the top of the receiving block on the right side is fixedly connected with a receiving plate, and the receiving plate is rotatably connected with the rotating column.
[0009] Preferably, the cleaning roller is located in front of the monitoring camera, and the back of the cleaning roller and the front of the monitoring camera are mutually attached.
[0010] Preferably, the model of the servo motor is HC-KFE73.
[0011] Preferably, the first controller is located on the top of the fixed plate, and the fixed plate is fixedly connected with the first controller.
[0012] Preferably, the model of the electric telescopic push rod is DTZ300.
[0013] Preferably, the first signal transceiver is located on the top of the fixed plate, and the fixed plate is fixedly connected with the first signal transceiver.
[0014] Preferably, the electric telescopic push rod, the densimeter and the servo motor are electrically connected with the first controller.
[0015] Preferably, the models of the first signal transceiver and the second signal transceiver are both LTX-55XX.
[0016] (Three) beneficial effects
[0017] Compared with the prior art, the present application provides an intelligent identification system for diene extraction water division, which has the following beneficial effects:
[0018] 1. The intelligent identification system for diene extraction water separation, by setting a monitoring camera, and setting a densitometer according to the principle that different concentrations of solutions have different densities, the monitoring camera transmits the monitoring picture to the first controller, the densitometer transmits the measured solution density data to the first controller, under the signal transceiving action of the first signal transceiver and the second signal transceiver, the solution density data and the monitoring picture are respectively transmitted to the numerical value identification module and the image identification module, the numerical value identification module and the image identification module are identified, after the identification of the numerical value identification module and the image identification module, the signal is transmitted to the second controller, the second controller controls the image backup module to backup the image, that is, effectively achieves the purpose of recording the formed image.
[0019] 2. The intelligent identification system for diene extraction water separation, when the numerical value identification module and the image identification module identify and transmit the signal to the second controller, under the signal transceiving action of the first signal transceiver and the second signal transceiver, the second controller transmits the control signal to the first controller through the first signal transceiver and the second signal transceiver, the first controller controls the electromagnetic valve to open, without manual operation, effectively reducing the labor burden. BRIEF DESCRIPTION OF DRAWINGS
[0020] Fig. 1 A schematic diagram of an intelligent identification system for diene extraction water separation is proposed for the present application.
[0021] Fig. 2 A front view of the monitoring camera connection structure in the intelligent identification system for diene extraction water separation is proposed for the present application.
[0022] In the figure: 1 monitoring camera, 2 densitometer, 3 first controller, 4 first signal transceiver, 5 second signal transceiver, 6 image identification module, 7 numerical value identification module, 8 second controller, 9 display screen, 10 stand column, 11 fixed plate, 12 electric telescopic push rod, 13 bearing block, 14 servo motor, 15 rotating column, 16 cleaning drum, 17 electromagnetic valve, 18 image backup module. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0024] Please refer to Figs. 1-2The utility model provides an intelligent identification system for diene extraction water division, including monitoring camera 1 and densimeter 2, monitoring camera 1 is electrically connected with first controller 3, first controller 3 is electrically connected with first signal transceiver 4, first signal transceiver 4 is signal connected with second signal transceiver 5, the model of first signal transceiver 4 and second signal transceiver 5 is LTX-55XX, second signal transceiver 5 is electrically connected with image recognition module 6, second signal transceiver 5 is electrically connected with numerical value recognition module 7, second signal transceiver 5 is electrically connected with second controller 8, the model of second controller 8 and first controller 3 can be FX2N, second controller 8 is electrically connected with display screen 9, first controller 3 is electrically connected with electromagnetic valve 17, the model of electromagnetic valve 17 can be k23d-2, second controller 8 is electrically connected with image backup module 18, the bottom of monitoring camera 1 is fixedly connected with stand 10, the bottom of stand 10 is fixedly connected with fixed plate 11, first controller 3 is located at the top of fixed plate 11, and fixed plate 11 is fixedly connected with first controller 3, first signal transceiver 4 is located at the top of fixed plate 11, and fixed plate 11 is fixedly connected with first signal transceiver 4, both sides of the top of fixed plate 11 are fixedly connected with electric telescopic push rod 12, the model of electric telescopic push rod 12 is DTZ300, the top of electric telescopic push rod 12 is fixedly connected with receiving block 13, the top of left receiving block 13 is fixedly connected with servo motor 14, the model of servo motor 14 can be HC-KFE73, electric telescopic push rod 12, densimeter 2 and servo motor 14 are electrically connected with first controller 3, the output shaft of servo motor 14 is fixedly connected with rotating column 15, the top of right receiving block 13 is fixedly connected with receiving plate, and receiving plate is rotatably connected with rotating column 15, the outer side of rotating column 15 is fixedly connected with cleaning cylinder 16, cleaning cylinder 16 is located at the front of monitoring camera 1, and the back of cleaning cylinder 16 and the front of monitoring camera 1 are mutually pasted, through setting monitoring camera 1, and setting densimeter 2 under the principle that solution density is different according to concentration difference, monitoring camera 1 transmits monitoring picture to first controller 3, densimeter 2 transmits measured solution density data to first controller 3, under the signal transceiving of first signal transceiver 4 and second signal transceiver 5, solution density data and monitoring picture will be respectively transmitted to numerical value recognition module 7 and image recognition module 6, and numerical value recognition module 7 and image recognition module 6 then identify, after the identification of numerical value recognition module 7 and image recognition module 6, signal is transmitted to second controller 8, and second controller 8 controls image backup module 18 to back up image, that is, effectively reaches the purpose that can record the image of forming, when numerical value recognition module 7 and image recognition module 6 identify and transmit signal to second controller 8, under the signal transceiving of first signal transceiver 4 and second signal transceiver 5, second controller 8 transmits control signal to first controller 3 through first signal transceiver 4 and second signal transceiver 5,The first controller 3 controls the electromagnetic valve 17 to open, without manual operation, effectively reducing the labor burden.
[0025] In use, by setting the monitoring camera 1 and the densitometer 2 according to the principle that the density of the solution is different for different concentrations, the monitoring camera 1 transmits the monitoring picture to the first controller 3, and the densitometer 2 transmits the measured solution density data to the first controller 3. Under the signal transceiving action of the first signal transceiver 4 and the second signal transceiver 5, the solution density data and the monitoring picture are transmitted to the numerical value recognition module 7 and the image recognition module 6, respectively. The numerical value recognition module 7 and the image recognition module 6 are then identified. After the identification of the numerical value recognition module 7 and the image recognition module 6, the signal is transmitted to the second controller 8. The second controller 8 controls the image backup module 18 to back up the image, effectively achieving the purpose of recording the formed image.
[0026] In use, by setting the monitoring camera 1 and the densitometer 2 according to the principle that the density of the solution is different for different concentrations, the monitoring camera 1 transmits the monitoring picture to the first controller 3, and the densitometer 2 transmits the measured solution density data to the first controller 3. Under the signal transceiving action of the first signal transceiver 4 and the second signal transceiver 5, the solution density data and the monitoring picture are transmitted to the numerical value recognition module 7 and the image recognition module 6, respectively. The numerical value recognition module 7 and the image recognition module 6 are then identified. After the identification of the numerical value recognition module 7 and the image recognition module 6, the signal is transmitted to the second controller 8. The second controller 8 controls the image backup module 18 to back up the image, effectively achieving the purpose of recording the formed image.
[0027] In use, by setting the monitoring camera 1 and the densitometer 2 according to the principle that the density of the solution is different for different concentrations, the monitoring camera 1 transmits the monitoring picture to the first controller 3, and the densitometer 2 transmits the measured solution density data to the first controller 3. Under the signal transceiving action of the first signal transceiver 4 and the second signal transceiver 5, the solution density data and the monitoring picture are transmitted to the numerical value recognition module 7 and the image recognition module 6, respectively. The numerical value recognition module 7 and the image recognition module 6 are then identified. After the identification of the numerical value recognition module 7 and the image recognition module 6, the signal is transmitted to the second controller 8. The second controller 8 controls the image backup module 18 to back up the image, effectively achieving the purpose of recording the formed image.
[0028] It has to be noted that, in the present document, the terms "first", "second", etc. merely serve to identify a subject or action, without necessarily requiring or implying any such actual relationship or order between such subjects or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element.
[0029] While embodiments of the application have been shown and described, it is to be understood that the application is not limited to the details of the embodiments described, since numerous further modifications and changes can be apparent to one skilled in the art without departing from the spirit and scope of the application as defined by the appended claims and their equivalents.
Claims
1. An intelligent identification system for diene extraction water division, comprising a monitoring camera (1) and a densimeter (2), characterized in that: The monitoring camera (1) is electrically connected with a first controller (3), the first controller (3) is electrically connected with a first signal transceiver (4), the first signal transceiver (4) is signal connected with a second signal transceiver (5), the second signal transceiver (5) is electrically connected with an image recognition module (6), the second signal transceiver (5) is electrically connected with a numerical value recognition module (7), the second signal transceiver (5) is electrically connected with a second controller (8), the second controller (8) is electrically connected with a display screen (9), the first controller (3) is electrically connected with a solenoid valve (17), the second controller (8) is electrically connected with an image backup module (18), the bottom of the monitoring camera (1) is fixedly connected with a stand column (10), the bottom of the stand column (10) is fixedly connected with a fixed plate (11), the top of the left and right sides of the fixed plate (11) is fixedly connected with an electric telescopic push rod (12), the top of the electric telescopic push rod (12) is fixedly connected with a bearing block (13), the top of the left bearing block (13) is fixedly connected with a servo motor (14), the output shaft of the servo motor (14) is fixedly connected with a rotating column (15), the outer side of the rotating column (15) is fixedly connected with a cleaning roller (16), the top of the right bearing block (13) is fixedly connected with a bearing plate, and the bearing plate is rotatably connected with the rotating column (15), the cleaning roller (16) is located in the front of the monitoring camera (1), and the back of the cleaning roller (16) and the front of the monitoring camera (1) are mutually attached; The image recognition module (6) and the numerical value recognition module (7) are electrically connected with the second controller (8), in use, the monitoring camera (1) is set, and the densitometer (2) is set according to the principle that the density of the solution is different according to the concentration, the monitoring camera (1) transmits the monitoring picture to the first controller (3), the densitometer (2) transmits the measured solution density data to the first controller (3), under the signal transceiving action of the first signal transceiver (4) and the second signal transceiver (5), the solution density data and the monitoring picture are respectively transmitted to the numerical value recognition module (7) and the image recognition module (6), the numerical value recognition module (7) and the image recognition module (6) are identified, after the identification of the numerical value recognition module (7) and the image recognition module (6), the signal is transmitted to the second controller (8), under the signal transceiving action of the first signal transceiver (4) and the second signal transceiver (5), the second controller (8) transmits the control signal to the first controller (3) through the first signal transceiver (4) and the second signal transceiver (5), and the first controller (3) controls the solenoid valve (17) to open.
2. The intelligent identification system for diene extraction water division according to claim 1, characterized in that: The model of the servo motor (14) is HC-KFE73.
3. The intelligent identification system for dual olefin extraction water division according to claim 1, characterized in that: The first controller (3) is located on the top of the fixed plate (11), and the fixed plate (11) is fixedly connected with the first controller (3).
4. The intelligent identification system for diene extraction water according to claim 1, characterized in that: The model of the electric telescopic push rod (12) is DTZ300.
5. The intelligent identification system for diene extraction water according to claim 1, characterized in that: The first signal transceiver (4) is located on the top of the fixed plate (11), and the fixed plate (11) is fixedly connected with the first signal transceiver (4).
6. The intelligent identification system for dual olefin extraction water division of claim 1, wherein: The electric telescopic push rod (12), the densitometer (2) and the servo motor (14) are electrically connected with the first controller (3).
Citation Information
Patent Citations
Method for recovering 16-dehydropregnenolone acetate from 16-dehydropregnenolone acetate mother liquor
CN103554208A