CN112051811A - Automatic packaging paper tube production line control system - Google Patents

Automatic packaging paper tube production line control system Download PDF

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CN112051811A
CN112051811A CN202010803903.9A CN202010803903A CN112051811A CN 112051811 A CN112051811 A CN 112051811A CN 202010803903 A CN202010803903 A CN 202010803903A CN 112051811 A CN112051811 A CN 112051811A
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CN112051811B (en
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旷儒丽
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Yibin Dongyi Paper Products Co ltd
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Yibin Dongyi Paper Products Co ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • G05B19/41875Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM] characterised by quality surveillance of production
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/30Nc systems
    • G05B2219/32Operator till task planning
    • G05B2219/32368Quality control
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Quality & Reliability (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • General Factory Administration (AREA)

Abstract

The invention discloses an automatic packaging paper tube production line control system which comprises a production workshop detection terminal, a remote monitoring center and a mobile terminal. The invention provides a safety monitoring system for a paper tube printing production workshop; in addition, the acquisition module in the scheme has comprehensive acquisition elements, small limitation and practicability; and moreover, an abnormity alarm part matched with each abnormal condition is set, so that the working personnel can quickly respond.

Description

Automatic packaging paper tube production line control system
Technical Field
The invention belongs to the technical field of monitoring of production workshops, and particularly relates to an automatic packaging paper tube production line control system.
Background
With the rapid development of economic level and scientific technology, the industrial enterprises as the main body of social and economic operation have higher and higher requirements on safety precaution, and the monitoring system plays an increasingly important role. The scale of factory areas of the factory is large, production and management departments are complex, and the requirement on safety factor is high. The operation conditions of production facilities can not be timely and comprehensively mastered in a plurality of production workshops, special outdoor places and functional departments, and the intelligent management level of a factory is reduced to a great extent. If any flash is happened, the enterprise and staff are under great pressure, even serious consequences are brought.
Present utility model patent of authorizing (application number is CN201921293037.2, name is a factory production equipment monitored control system), relate to the control technology field, factory production equipment monitored control system includes: collection module, transmission module, safety in production surveillance center, video module of talkbacking, collection module includes image acquisition unit, sound acquisition unit, the video module of talkbacking with safety in production surveillance center connects, safety in production surveillance center is equipped with storage module, storage module is used for the storage of image, data, factory production equipment monitored control system still include with the pc control end that safety in production surveillance center connects, the utility model discloses a real-time video is to factory production equipment integrated monitoring, and the administrator can real time monitoring at any time, can know every production link of production line, makes whole production flow transparency, communicates with production operating worker author, send instruction through the video module of talkbacking, has effectively guaranteed the accuracy and the real-time of manufacturing.
However, the prior art lacks a safety monitoring system for a paper tube printing production workshop; in addition, the acquisition module in the scheme has fewer acquisition elements and larger limitation; also, an abnormality warning section matching each abnormal condition is not set.
Disclosure of Invention
The invention aims to provide an automatic packaging paper tube production line control system, which is used for solving one of the technical problems in the prior art, such as: in the prior art, a safety monitoring system of a paper tube printing production workshop is lacked; in addition, the acquisition module in the scheme has fewer acquisition elements and larger limitation; and, the corresponding abnormality warning portion is not set.
In order to achieve the purpose, the technical scheme of the invention is as follows:
the automatic packaging paper tube production line control system comprises a production workshop detection terminal, a remote monitoring center and a mobile terminal;
the production workshop detection terminal comprises an energy consumption information collector, a production field information collector, a video information collector, a first control module, a first wireless communication module, a first abnormity alarm module, a first data storage module, a first data display module and a positioning device; the first control module is respectively connected with the energy consumption information collector, the production site information collector, the video information collector, the first wireless communication module, the first abnormity alarm module, the first data storage module, the first data display module and the positioning device;
the remote monitoring center comprises a second wireless communication module, a second control module, a second data display module and a second abnormal alarm device; the second control module is respectively connected with the second wireless communication module, the second data display module and the second abnormity alarm device;
the first wireless communication device is respectively connected with the second wireless communication device and the mobile terminal network;
the energy consumption information collector comprises a production equipment energy consumption monitor, an air compressor energy consumption monitor, a water supply and drainage energy consumption monitor, a ventilation equipment energy consumption monitor, an illumination energy consumption monitor and a central air conditioner energy consumption monitor; the first control module is respectively connected with the production equipment energy consumption monitor, the air compressor energy consumption monitor, the water supply and drainage energy consumption monitor, the ventilation equipment energy consumption monitor, the illumination energy consumption monitor and the central air conditioner energy consumption monitor;
the production site information collector comprises a paper tube yield sensor, an air pressure sensor, a water supply pressure sensor, a harmful gas sensor, a photosensitive sensor, a temperature sensor, a smoke sensor, a sound collection unit and an air quantity sensor; the first control module is respectively connected with the paper tube yield sensor, the air pressure sensor, the water supply pressure sensor, the harmful gas sensor, the photosensitive sensor, the temperature sensor, the smoke sensor, the sound acquisition unit and the air volume sensor;
the video information collector adopts a panoramic camera array.
Further, the first wireless communication module adopts 5G communication.
Furthermore, the first abnormity alarm module adopts an acousto-optic alarm circuit.
Further, the first data storage module adopts a mobile hard disk.
Furthermore, the first data display module adopts an LCD.
Further, the positioning device adopts a GPS positioning system.
Further, the mobile terminal is a smart phone.
Further, the step of the first control module determining the abnormality is as follows:
the energy consumption information acquisition unit acquires real-time energy consumption information according to the constant time interval break point and sends the real-time energy consumption information to the first control module;
the first control module compares and judges the real-time energy consumption information of a certain section of point with standard energy consumption information, and if the real-time energy consumption information of the breakpoint is not matched with the standard energy consumption information, the judgment result is temporarily stored; and comparing and judging the real-time energy consumption information of the next section point with standard energy consumption information, if the real-time energy consumption information of the next section point is still not matched with the standard energy consumption information, judging that the energy consumption information is abnormal, and if the real-time energy consumption information of the next section point is matched with the standard energy consumption information, judging that the energy consumption information is normal.
Furthermore, the production workshop detection terminal also comprises an energy consumption information output detection module and an energy consumption information input detection module;
the energy consumption information output detection module is used for detecting whether the output end of the energy consumption information collector outputs real-time energy consumption information or not;
the energy consumption information input detection module is used for detecting whether the input end of the first control module inputs real-time energy consumption information;
when the first control module judges that the energy consumption information is abnormal, the energy consumption information is input into the detection module to act;
if the input end of the first control module is detected to have real-time energy consumption information input, maintaining and judging that the energy consumption information is abnormal;
if the input end of the first control module is detected to have no real-time energy consumption information input, the energy consumption information output detection module acts;
if the real-time energy consumption information output at the output end of the energy consumption information collector is detected, whether the energy consumption information is abnormal is cancelled and the input end of the first control module is judged to be in fault;
and if the output end of the energy consumption information collector is detected not to have real-time energy consumption information output, canceling to judge that the energy consumption information is abnormal, and judging that the output end of the energy consumption information collector has a fault.
Further, the step of the first control module determining the abnormality is as follows:
the production site information acquisition device acquires real-time production site information according to a constant time interval breakpoint and sends the real-time production site information to the first control module;
the first control module compares and judges the real-time production site information of a certain section of point with standard production site information, and if the real-time production site information of the breakpoint is not matched with the standard production site information, the judgment result is temporarily stored; and comparing and judging the real-time production field information of the next section with standard production field information, if the real-time production field information of the next section is still not matched with the standard production field information, judging that the production field information is abnormal, and if the real-time production field information of the next section is matched with the standard production field information, judging that the production field information is normal.
Furthermore, the production workshop detection terminal also comprises a production site information output detection module and a production site information input detection module;
the production site information output detection module is used for detecting whether the output end of the production site information collector outputs real-time production site information or not;
the production site information input detection module is used for detecting whether the input end of the first control module inputs real-time production site information;
when the first control module judges that the production site information is abnormal, the production site information is input into the detection module to act;
if the input end of the first control module is detected to have real-time production site information input, maintaining and judging that the production site information is abnormal;
if the fact that no real-time production site information is input at the input end of the first control module is detected, the production site information output detection module acts;
if the output end of the production field information collector is detected to have real-time production field information output, the judgment that the production field information is abnormal is cancelled, and the judgment that the input end of the first control module has a fault is changed;
and if the fact that the output end of the production field information collector does not output the real-time production field information is detected, whether the production field information is abnormal is determined, and the output end of the production field information collector is determined to be in fault.
Further, the step of the first control module determining the abnormality is as follows:
the video information collector collects real-time video information according to the constant time interval break point and sends the real-time video information to the first control module;
the first control module compares and judges the real-time video information of a certain section of point with standard video information, and if the real-time video information of the breakpoint is not matched with the standard video information, the judgment result is temporarily stored; and comparing and judging the real-time video information of the next section of point with standard video information, if the real-time video information of the next section of point is still not matched with the standard video information, judging that the video information is abnormal, and if the real-time video information of the next section of point is matched with the standard video information, judging that the video information is normal.
Furthermore, the production workshop detection terminal also comprises a video information output detection module and a video information input detection module;
the video information output detection module is used for detecting whether the output end of the video information collector outputs real-time video information or not;
the video information input detection module is used for detecting whether real-time video information is input at the input end of the first control module;
when the first control module judges that the video information is abnormal, the video information input detection module acts;
if the input end of the first control module is detected to have real-time video information input, the video information abnormity is maintained and judged;
if the input end of the first control module is detected to have no real-time video information input, the video information output detection module acts;
if the output end of the video information collector is detected to have real-time video information output, the judgment of video information abnormity is cancelled, and the input end of the first control module is judged to be in fault;
and if the output end of the video information collector is detected not to have real-time video information output, the video information abnormity is determined by cancellation, and the output end of the video information collector is determined to have a fault.
Compared with the prior art, the invention has the beneficial effects that:
one innovation point of the scheme is that a safety monitoring system of a paper tube printing production workshop is provided; in addition, the acquisition module in the scheme has comprehensive acquisition elements, small limitation and practicability; and moreover, an abnormity alarm part matched with each abnormal condition is set, so that the working personnel can quickly respond.
Drawings
Fig. 1 is a schematic structural diagram of a detection terminal according to an embodiment of the present invention.
Fig. 2 is a schematic structural diagram of a handheld terminal according to an embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention are clearly and completely described below with reference to fig. 1-2 of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example (b):
the prior art lacks a safety monitoring system of a paper tube printing production workshop; in addition, the acquisition module in the scheme has fewer acquisition elements and larger limitation; also, an abnormality warning section matching each abnormal condition is not set.
Accordingly, as shown in fig. 1 and 2, an automated packaging paper tube production line control system is provided, which comprises a production workshop detection terminal, a remote monitoring center and a mobile terminal;
the production workshop detection terminal comprises an energy consumption information collector, a production field information collector, a video information collector, a first control module, a first wireless communication module, a first abnormity alarm module, a first data storage module, a first data display module and a positioning device; the first control module is respectively connected with the energy consumption information collector, the production site information collector, the video information collector, the first wireless communication module, the first abnormity alarm module, the first data storage module, the first data display module and the positioning device;
the energy consumption information collector is used for collecting energy consumption information of the paper tube printing workshop;
the production field information collector is used for collecting the production field information of the paper tube printing workshop;
the video information collector is used for collecting video information of the paper tube printing workshop;
the first control module is used as a control core of the production workshop detection terminal;
the first wireless communication module is used for the first control module to carry out network communication with the external environment;
the first abnormity alarm module is used for sending out a timely abnormity alarm when the energy consumption information, the production site information and the video information of the paper tube printing workshop are abnormal; the first abnormal alarm module is respectively provided with three different alarms corresponding to different abnormalities of energy consumption information, production site information and video information; such as: when the energy consumption information is abnormal, the abnormal energy consumption information is broadcasted through voice, and a red flash lamp warns; when the production site information is abnormal, the abnormal production site information is broadcasted through voice, and a yellow flash lamp warns; when the video information is abnormal, the video information is broadcasted to be abnormal through voice, and a green flash lamp is used for warning;
the first data storage module is used for storing energy consumption information, production site information and video information of the paper tube printing workshop;
the first data display module is used for displaying energy consumption information, production site information and video information of the paper tube printing workshop;
the positioning device is used for acquiring the geographical position information of the paper tube printing workshop;
the remote monitoring center comprises a second wireless communication module, a second control module, a second data display module and a second abnormal alarm device; the second control module is respectively connected with the second wireless communication module, the second data display module and the second abnormity alarm device;
the second wireless communication module is used for network connection with the first wireless communication module;
the second control module is used as a control core of the remote monitoring center;
the second data display module is used for displaying energy consumption information, production site information and video information of the paper tube printing workshop;
the second abnormity alarm device is used for alarming abnormity in a remote monitoring room;
the first wireless communication device is respectively connected with the second wireless communication device and the mobile terminal network;
the energy consumption information collector comprises a production equipment energy consumption monitor, an air compressor energy consumption monitor, a water supply and drainage energy consumption monitor, a ventilation equipment energy consumption monitor, an illumination energy consumption monitor and a central air conditioner energy consumption monitor; the first control module is respectively connected with the production equipment energy consumption monitor, the air compressor energy consumption monitor, the water supply and drainage energy consumption monitor, the ventilation equipment energy consumption monitor, the illumination energy consumption monitor and the central air conditioner energy consumption monitor;
the production equipment energy consumption monitor is used for monitoring the production equipment energy consumption of the paper tube printing workshop;
the air compressor energy consumption monitor is used for monitoring the air compressor energy consumption of the paper tube printing workshop;
the water supply and drainage energy consumption monitor is used for monitoring water supply and drainage energy consumption of the paper tube printing workshop;
the ventilation equipment energy consumption monitor is used for monitoring the ventilation equipment energy consumption of the paper tube printing workshop;
the illumination energy consumption monitor is used for monitoring illumination energy consumption of the paper tube printing workshop;
the central air-conditioning energy consumption monitor is used for monitoring the central air-conditioning energy consumption of the paper tube printing workshop;
the production site information collector comprises a paper tube yield sensor, an air pressure sensor, a water supply pressure sensor, a harmful gas sensor, a photosensitive sensor, a temperature sensor, a smoke sensor, a sound collection unit and an air quantity sensor; the first control module is respectively connected with the paper tube yield sensor, the air pressure sensor, the water supply pressure sensor, the harmful gas sensor, the photosensitive sensor, the temperature sensor, the smoke sensor, the sound acquisition unit and the air volume sensor;
a paper tube yield sensor monitors the paper tube yield of the paper tube printing workshop;
the air pressure sensor monitors the air pressure of the paper tube printing workshop;
the water supply pressure sensor monitors the water supply pressure of the paper tube printing workshop;
a harmful gas sensor monitors harmful gas in a paper tube printing workshop;
the photosensitive sensor monitors the light intensity of the paper tube printing workshop;
the temperature sensor monitors the temperature of the paper tube printing workshop;
the smoke sensor monitors smoke of the paper tube printing workshop;
the sound collection unit monitors the sound of the paper tube printing workshop;
the air quantity sensor monitors the air quantity of the paper tube printing workshop;
the video information collector adopts a panoramic camera array and is used for collecting video image information of a paper tube printing workshop in a covering mode.
Further, the first wireless communication module adopts 5G communication.
Furthermore, the first abnormity alarm module adopts an acousto-optic alarm circuit.
Further, the first data storage module adopts a mobile hard disk.
Furthermore, the first data display module adopts an LCD.
Further, the positioning device adopts a GPS positioning system.
Further, the mobile terminal is a smart phone.
Further, the step of the first control module determining the abnormality is as follows:
the energy consumption information acquisition unit acquires real-time energy consumption information according to the constant time interval break point and sends the real-time energy consumption information to the first control module;
the first control module compares and judges the real-time energy consumption information of a certain section of point with standard energy consumption information, and if the real-time energy consumption information of the breakpoint is not matched with the standard energy consumption information, the judgment result is temporarily stored; and comparing and judging the real-time energy consumption information of the next section point with standard energy consumption information, if the real-time energy consumption information of the next section point is still not matched with the standard energy consumption information, judging that the energy consumption information is abnormal, and if the real-time energy consumption information of the next section point is matched with the standard energy consumption information, judging that the energy consumption information is normal.
Furthermore, the production workshop detection terminal also comprises an energy consumption information output detection module and an energy consumption information input detection module;
the energy consumption information output detection module is used for detecting whether the output end of the energy consumption information collector outputs real-time energy consumption information or not;
the energy consumption information input detection module is used for detecting whether the input end of the first control module inputs real-time energy consumption information;
when the first control module judges that the energy consumption information is abnormal, the energy consumption information is input into the detection module to act;
if the input end of the first control module is detected to have real-time energy consumption information input, maintaining and judging that the energy consumption information is abnormal;
if the input end of the first control module is detected to have no real-time energy consumption information input, the energy consumption information output detection module acts;
if the real-time energy consumption information output at the output end of the energy consumption information collector is detected, whether the energy consumption information is abnormal is cancelled and the input end of the first control module is judged to be in fault;
and if the output end of the energy consumption information collector is detected not to have real-time energy consumption information output, canceling to judge that the energy consumption information is abnormal, and judging that the output end of the energy consumption information collector has a fault.
Further, the step of the first control module determining the abnormality is as follows:
the production site information acquisition device acquires real-time production site information according to a constant time interval breakpoint and sends the real-time production site information to the first control module;
the first control module compares and judges the real-time production site information of a certain section of point with standard production site information, and if the real-time production site information of the breakpoint is not matched with the standard production site information, the judgment result is temporarily stored; and comparing and judging the real-time production field information of the next section with standard production field information, if the real-time production field information of the next section is still not matched with the standard production field information, judging that the production field information is abnormal, and if the real-time production field information of the next section is matched with the standard production field information, judging that the production field information is normal.
Furthermore, the production workshop detection terminal also comprises a production site information output detection module and a production site information input detection module;
the production site information output detection module is used for detecting whether the output end of the production site information collector outputs real-time production site information or not;
the production site information input detection module is used for detecting whether the input end of the first control module inputs real-time production site information;
when the first control module judges that the production site information is abnormal, the production site information is input into the detection module to act;
if the input end of the first control module is detected to have real-time production site information input, maintaining and judging that the production site information is abnormal;
if the fact that no real-time production site information is input at the input end of the first control module is detected, the production site information output detection module acts;
if the output end of the production field information collector is detected to have real-time production field information output, the judgment that the production field information is abnormal is cancelled, and the judgment that the input end of the first control module has a fault is changed;
and if the fact that the output end of the production field information collector does not output the real-time production field information is detected, whether the production field information is abnormal is determined, and the output end of the production field information collector is determined to be in fault.
Further, the step of the first control module determining the abnormality is as follows:
the video information collector collects real-time video information according to the constant time interval break point and sends the real-time video information to the first control module;
the first control module compares and judges the real-time video information of a certain section of point with standard video information, and if the real-time video information of the breakpoint is not matched with the standard video information, the judgment result is temporarily stored; and comparing and judging the real-time video information of the next section of point with standard video information, if the real-time video information of the next section of point is still not matched with the standard video information, judging that the video information is abnormal, and if the real-time video information of the next section of point is matched with the standard video information, judging that the video information is normal.
Furthermore, the production workshop detection terminal also comprises a video information output detection module and a video information input detection module;
the video information output detection module is used for detecting whether the output end of the video information collector outputs real-time video information or not;
the video information input detection module is used for detecting whether real-time video information is input at the input end of the first control module;
when the first control module judges that the video information is abnormal, the video information input detection module acts;
if the input end of the first control module is detected to have real-time video information input, the video information abnormity is maintained and judged;
if the input end of the first control module is detected to have no real-time video information input, the video information output detection module acts;
if the output end of the video information collector is detected to have real-time video information output, the judgment of video information abnormity is cancelled, and the input end of the first control module is judged to be in fault;
and if the output end of the video information collector is detected not to have real-time video information output, the video information abnormity is determined by cancellation, and the output end of the video information collector is determined to have a fault.
Through the scheme, the influence of accidental data errors on the whole abnormal judgment process can be reduced to a great extent, so that the judgment result is more accurate. Moreover, the abnormal conditions can be traced back to the input and the output of the hardware equipment, and the reaction time of workers to the abnormal conditions is further reduced.
The above are preferred embodiments of the present invention, and all changes made according to the technical scheme of the present invention that produce functional effects do not exceed the scope of the technical scheme of the present invention belong to the protection scope of the present invention.

Claims (7)

1. The automatic packaging paper tube production line control system is characterized by comprising a production workshop detection terminal, a remote monitoring center and a mobile terminal;
the production workshop detection terminal comprises an energy consumption information collector, a production field information collector, a video information collector, a first control module, a first wireless communication module, a first abnormity alarm module, a first data storage module, a first data display module and a positioning device; the first control module is respectively connected with the energy consumption information collector, the production site information collector, the video information collector, the first wireless communication module, the first abnormity alarm module, the first data storage module, the first data display module and the positioning device;
the remote monitoring center comprises a second wireless communication module, a second control module, a second data display module and a second abnormal alarm device; the second control module is respectively connected with the second wireless communication module, the second data display module and the second abnormity alarm device;
the first wireless communication device is respectively connected with the second wireless communication device and the mobile terminal network.
2. An automated wrapper roll line control system according to claim 1, wherein said first control module determines an anomaly by:
the energy consumption information acquisition unit acquires real-time energy consumption information according to the constant time interval break point and sends the real-time energy consumption information to the first control module;
the first control module compares and judges the real-time energy consumption information of a certain section of point with standard energy consumption information, and if the real-time energy consumption information of the breakpoint is not matched with the standard energy consumption information, the judgment result is temporarily stored; and comparing and judging the real-time energy consumption information of the next section point with standard energy consumption information, if the real-time energy consumption information of the next section point is still not matched with the standard energy consumption information, judging that the energy consumption information is abnormal, and if the real-time energy consumption information of the next section point is matched with the standard energy consumption information, judging that the energy consumption information is normal.
3. An automated packaging can line control system as claimed in claim 2, wherein said production shop test terminal further comprises an energy consumption information output test module and an energy consumption information input test module;
the energy consumption information output detection module is used for detecting whether the output end of the energy consumption information collector outputs real-time energy consumption information or not;
the energy consumption information input detection module is used for detecting whether the input end of the first control module inputs real-time energy consumption information;
when the first control module judges that the energy consumption information is abnormal, the energy consumption information is input into the detection module to act;
if the input end of the first control module is detected to have real-time energy consumption information input, maintaining and judging that the energy consumption information is abnormal;
if the input end of the first control module is detected to have no real-time energy consumption information input, the energy consumption information output detection module acts;
if the real-time energy consumption information output at the output end of the energy consumption information collector is detected, whether the energy consumption information is abnormal is cancelled and the input end of the first control module is judged to be in fault;
and if the output end of the energy consumption information collector is detected not to have real-time energy consumption information output, canceling to judge that the energy consumption information is abnormal, and judging that the output end of the energy consumption information collector has a fault.
4. An automated wrapper roll line control system according to claim 1, wherein said first control module determines an anomaly by:
the production site information acquisition device acquires real-time production site information according to a constant time interval breakpoint and sends the real-time production site information to the first control module;
the first control module compares and judges the real-time production site information of a certain section of point with standard production site information, and if the real-time production site information of the breakpoint is not matched with the standard production site information, the judgment result is temporarily stored; and comparing and judging the real-time production field information of the next section with standard production field information, if the real-time production field information of the next section is still not matched with the standard production field information, judging that the production field information is abnormal, and if the real-time production field information of the next section is matched with the standard production field information, judging that the production field information is normal.
5. An automated packaging can line control system as claimed in claim 4, wherein said factory test terminals further comprise a factory site information output test module and a factory site information input test module;
the production site information output detection module is used for detecting whether the output end of the production site information collector outputs real-time production site information or not;
the production site information input detection module is used for detecting whether the input end of the first control module inputs real-time production site information;
when the first control module judges that the production site information is abnormal, the production site information is input into the detection module to act;
if the input end of the first control module is detected to have real-time production site information input, maintaining and judging that the production site information is abnormal;
if the fact that no real-time production site information is input at the input end of the first control module is detected, the production site information output detection module acts;
if the output end of the production field information collector is detected to have real-time production field information output, the judgment that the production field information is abnormal is cancelled, and the judgment that the input end of the first control module has a fault is changed;
and if the fact that the output end of the production field information collector does not output the real-time production field information is detected, whether the production field information is abnormal is determined, and the output end of the production field information collector is determined to be in fault.
6. An automated wrapper roll line control system according to claim 1, wherein said first control module determines an anomaly by:
the video information collector collects real-time video information according to the constant time interval break point and sends the real-time video information to the first control module;
the first control module compares and judges the real-time video information of a certain section of point with standard video information, and if the real-time video information of the breakpoint is not matched with the standard video information, the judgment result is temporarily stored; and comparing and judging the real-time video information of the next section of point with standard video information, if the real-time video information of the next section of point is still not matched with the standard video information, judging that the video information is abnormal, and if the real-time video information of the next section of point is matched with the standard video information, judging that the video information is normal.
7. An automated packaging can line control system as claimed in claim 6, wherein said production shop test terminal further comprises a video information output test module and a video information input test module;
the video information output detection module is used for detecting whether the output end of the video information collector outputs real-time video information or not;
the video information input detection module is used for detecting whether real-time video information is input at the input end of the first control module;
when the first control module judges that the video information is abnormal, the video information input detection module acts;
if the input end of the first control module is detected to have real-time video information input, the video information abnormity is maintained and judged;
if the input end of the first control module is detected to have no real-time video information input, the video information output detection module acts;
if the output end of the video information collector is detected to have real-time video information output, the judgment of video information abnormity is cancelled, and the input end of the first control module is judged to be in fault;
and if the output end of the video information collector is detected not to have real-time video information output, the video information abnormity is determined by cancellation, and the output end of the video information collector is determined to have a fault.
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