WO2020164059A1 - 一种动环设备巡检方法、动环平台及动环设备巡检系统 - Google Patents

一种动环设备巡检方法、动环平台及动环设备巡检系统 Download PDF

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Publication number
WO2020164059A1
WO2020164059A1 PCT/CN2019/075099 CN2019075099W WO2020164059A1 WO 2020164059 A1 WO2020164059 A1 WO 2020164059A1 CN 2019075099 W CN2019075099 W CN 2019075099W WO 2020164059 A1 WO2020164059 A1 WO 2020164059A1
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WO
WIPO (PCT)
Prior art keywords
data
dynamic
mobile terminal
loop
moving
Prior art date
Application number
PCT/CN2019/075099
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English (en)
French (fr)
Inventor
蔡舵
Original Assignee
深圳市中联创新自控系统有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市中联创新自控系统有限公司 filed Critical 深圳市中联创新自控系统有限公司
Priority to PCT/CN2019/075099 priority Critical patent/WO2020164059A1/zh
Priority to CN201980004488.6A priority patent/CN111133480B/zh
Publication of WO2020164059A1 publication Critical patent/WO2020164059A1/zh

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Classifications

    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C1/00Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people
    • G07C1/20Checking timed patrols, e.g. of watchman

Definitions

  • the invention relates to the technical field of dynamic loop applications, and more specifically, to a dynamic loop equipment inspection method, a dynamic loop platform and a dynamic loop equipment inspection system.
  • the equipment patrol in the dynamic environment room requires a paper equipment patrol form to manually record the patrol results, and then enter the system.
  • the timeliness of inspection data cannot be guaranteed, and it is difficult to find problems in equipment data in time; manual inspection results are filled in, work efficiency is very low, and large amounts of data are prone to handwriting errors; inspection personnel Whether the equipment is inspected one by one on time and according to the requirements, it is difficult to supervise the situation that the inspection is missed or the inspection personnel are not on the spot, and there is a lack of information technology to ensure the normal inspection work.
  • the technical problem to be solved by the present invention is to provide a moving-loop equipment inspection method, a moving-loop platform, and a moving-loop equipment inspection system in view of the above-mentioned defects of the prior art that cannot guarantee data timeliness and low work efficiency.
  • the technical solution adopted by the present invention to solve its technical problems is: constructing a method for patrol inspection of moving ring equipment, including the following steps:
  • the moving loop platform obtains the original moving loop data of the moving loop equipment to obtain the moving loop data to be checked and send it to the mobile terminal;
  • the moving loop platform receives the inspection result data sent by the mobile terminal; the inspection result data is based on the comparison between the moving loop data to be inspected received by the mobile terminal and the field data of the moving loop equipment The result is obtained.
  • the mobile terminal uses the data of the dynamic ring to be detected as the inspection result data send;
  • the mobile terminal sends the field data of the dynamic loop equipment as the inspection result data.
  • step S2 it further includes S3.
  • the dynamic loop platform determines whether the inspection result data sent by the mobile terminal is abnormal; the step S3 includes:
  • the dynamic loop platform compares the inspection result data sent by the mobile terminal with the original dynamic loop data to find a data difference
  • the moving ring platform sends out the abnormal result and notifies the inspection personnel.
  • the dynamic loop data to be inspected is data obtained by randomly modifying the original dynamic loop data by the dynamic loop platform, and the method for patrolling moving loop equipment further includes:
  • the dynamic loop platform compares the inspection result data with the original dynamic loop data corresponding to the to-be-detected dynamic loop data
  • the inspection incompleteness flag is output.
  • the method for patrolling moving-loop equipment further includes: the moving-loop platform obtains address information of the mobile terminal and locates the mobile terminal, the address information includes GPRS coordinate information and the IP of the computer room public network Address information.
  • the method for patrol inspection of moving-loop equipment further includes: the moving-loop platform sends a shooting instruction to a monitoring device, and the monitoring device receives and photographs the patrol operation of the inspector according to the shooting instruction, and uploads it
  • the shooting data is sent to the moving ring platform, and the shooting data includes images and videos.
  • the present invention also provides another patrol inspection method for moving ring equipment, including the following steps:
  • the dynamic loop platform obtains the original dynamic loop data of the dynamic loop equipment to obtain the dynamic loop data to be checked;
  • the mobile terminal obtains the data of the moving ring to be checked from the moving ring platform;
  • the step P2 includes manually refreshing the data of the to-be-checked moving ring, which includes the following steps:
  • the mobile terminal receives a refresh instruction, and requests the dynamic ring platform to obtain the latest dynamic ring data to be checked;
  • the dynamic ring platform sends the latest dynamic ring data to be checked to the mobile terminal according to the request;
  • the mobile terminal receives and updates the data of the dynamic ring to be detected as the latest data of the dynamic ring to be detected.
  • the step P2 it further includes automatically refreshing the data of the moving ring to be checked, and the method includes: the refresh instruction includes an automatic refresh instruction, the mobile terminal presets an automatic refresh time, and the interval time when the meter reading action is stopped When the preset automatic refresh time is reached, the mobile terminal automatically acquires and sends an automatic refresh instruction to the dynamic loop platform to obtain the latest dynamic loop data to be checked;
  • the dynamic loop platform presets an automatic refresh time, and when the interval time for the mobile terminal to stop meter reading reaches the preset automatic refresh time, the dynamic loop platform automatically acquires and sends the latest dynamic loop data to be checked To the mobile terminal.
  • the mobile terminal sets the data of the moving ring to be checked as the inspection result data send;
  • the mobile terminal sets the field data of the dynamic loop equipment as the inspection result data transmission.
  • the dynamic ring data to be inspected is data obtained by randomly modifying the original dynamic ring data by the dynamic ring platform
  • the method for inspecting the dynamic ring equipment further includes: the dynamic ring platform inspecting the Comparing the result data with the original dynamic ring data corresponding to the to-be-checked dynamic ring data;
  • the inspection incompleteness flag is output.
  • the method for patrol inspection of moving-loop equipment further includes: the moving-loop platform sends a shooting instruction to a monitoring device, and the monitoring device receives and photographs the patrol operation of the inspector according to the shooting instruction, and uploads it
  • the shooting data is sent to the moving ring platform, and the shooting data includes images and videos.
  • the present invention also provides a moving ring platform, including:
  • the core server including a data storage unit, is used to obtain the original dynamic ring data of the dynamic ring equipment to obtain the dynamic ring data to be checked;
  • the mobile terminal server is connected to the core server and is used to connect and communicate with the mobile terminal, send the to-be-checked dynamic loop data to the mobile terminal, and receive the inspection result data sent by the mobile terminal;
  • the inspection result data is obtained according to the comparison result of the moving loop data to be inspected received by the mobile terminal and the field data of the moving loop equipment.
  • the core server further includes: a status information analysis unit connected to the data storage unit and used to determine whether the inspection result data sent by the mobile terminal is abnormal;
  • the information notification unit is connected to the data storage unit and the status information analysis unit, and is used to issue the abnormal result and notify the inspection personnel.
  • the dynamic ring data to be checked is data obtained by randomly modifying the original dynamic ring data by the data storage unit,
  • the status information analysis unit is further configured to compare the inspection result data with the original dynamic ring data corresponding to the dynamic ring data to be inspected;
  • the status information analysis unit If the inspection result data is consistent with the data of the moving ring to be inspected, the status information analysis unit outputs an incomplete inspection indicator.
  • the mobile terminal server is also used to obtain address information of the mobile terminal to locate the mobile terminal, and the address information includes GPRS coordinate information and IP address information of the computer room public network.
  • the dynamic ring platform further includes: a video capture server, connected to the core server, for sending a shooting instruction to the monitoring device;
  • the monitoring device is connected to the video capture server, and is used to receive and photograph the inspection operations of the inspectors according to the shooting instructions, and upload the shooting data to the moving ring platform.
  • the shooting data includes images and video.
  • the present invention also provides a patrol inspection system for moving loop equipment, including:
  • the dynamic loop platform is used to obtain the original dynamic loop data of the dynamic loop equipment to obtain the dynamic loop data to be checked;
  • the mobile terminal is used to obtain the data of the moving ring to be checked from the moving ring platform, and input the result of the comparison between the moving ring data to be checked and the field data of the moving ring equipment obtained by the mobile terminal.
  • the inspection result data is uploaded to the dynamic platform.
  • the dynamic loop platform includes: a core server, including a data storage unit, used to obtain the original dynamic loop data of the dynamic loop equipment to obtain the dynamic loop data to be checked;
  • the mobile terminal server is connected to the core server, and is configured to communicate with a mobile terminal, send the data of the moving loop to be inspected to the mobile terminal, and receive the inspection result data sent by the mobile terminal.
  • the mobile terminal is further configured to receive a manual refresh instruction and request the data storage unit to obtain the latest dynamic ring data to be checked;
  • the data storage unit is also used to receive the request, and send the latest data of the moving ring to be checked to the mobile terminal according to the request;
  • the mobile terminal receives and updates the data of the dynamic ring to be detected as the latest data of the dynamic ring to be detected.
  • the mobile terminal is further configured to preset an automatic refresh time, and when the interval time of stopping meter reading action reaches the preset automatic refresh time, the mobile terminal automatically acquires and sends an automatic refresh instruction to the dynamic ring Platform to obtain the latest data of the ring to be checked;
  • the data storage unit is further configured to preset an automatic refresh time, and when the interval time for the mobile terminal to stop the meter reading action reaches the preset automatic refresh time, the data storage unit automatically obtains and sends the latest pending check Moving ring data to the mobile terminal.
  • the to-be-checked dynamic loop data is data obtained by randomly modifying the original dynamic loop data by the data storage unit
  • the core server further includes: a status information analysis unit configured to combine the inspection result data Comparing with the original dynamic ring data corresponding to the to-be-checked dynamic ring data;
  • the status analysis unit If the inspection result data is consistent with the data of the moving ring to be inspected, the status analysis unit outputs an incomplete inspection indicator.
  • the moving loop equipment inspection system further includes: a video capture server connected to the core server and configured to send a shooting instruction to the monitoring device;
  • the monitoring device is connected to the video capture server, and is used to receive and photograph the inspection operations of the inspectors according to the shooting instructions, and upload the shooting data to the moving ring platform.
  • the shooting data includes images and video.
  • the implementation of the moving-loop equipment inspection method, moving-loop platform and moving-loop equipment inspection system of the present invention has the following beneficial effects:
  • the mobile terminal obtains and displays the device point data value uploaded by the inspection equipment from the dynamic ring platform. According to the comparison result of the data displayed by the mobile terminal and the data of the field device, fill in and upload the inspection result on the mobile terminal to ensure the inspection result. Timeliness and improved inspection efficiency.
  • the inspector can manually refresh at any time or automatically obtain the latest unread meter data from the dynamic loop platform through the mobile terminal at regular intervals to ensure that the unread meter data obtained by the mobile terminal is the latest data. And use the dynamic environment platform to judge the inspection result data, which can detect and deal with the abnormal situation of the equipment in time.
  • Figure 1 is a flow chart of the inspection steps of the first embodiment of the inspection method for moving loop equipment of the present invention
  • FIG. 2 is a flow chart of the steps of the first embodiment and the second embodiment of the method for patrol inspection of moving loop equipment of the present invention to determine whether the data uploaded by the equipment is abnormal;
  • 3 is a flow chart of the steps of the first embodiment and the second embodiment of the patrol inspection method for moving ring equipment of the present invention to determine whether the patrol inspector is responsible for the inspection;
  • FIG. 5 is a flowchart of manual refresh steps of the second embodiment of the patrol inspection method for moving loop equipment of the present invention.
  • Fig. 6 is a block diagram of the principle structure of the dynamic loop platform of the present invention.
  • FIG. 7 is a schematic diagram of the structure of the core server of the dynamic loop platform of the present invention.
  • Figure 8 is a block diagram of the principle structure of the patrol inspection system for moving loop equipment of the present invention.
  • FIG. 9 is a schematic diagram of the structure of the mobile terminal of the moving loop equipment inspection system of the present invention.
  • Fig. 10 is a schematic diagram of the structure of the core server of the patrol inspection system for moving-loop equipment of the present invention.
  • Fig. 1 shows the first embodiment of the patrol inspection method for moving loop equipment of the present invention, including the following steps:
  • the moving loop platform obtains the original moving loop data of the moving loop equipment to obtain the moving loop data to be checked and send it to the mobile terminal.
  • the dynamic loop platform sends a control command to the dynamic loop device to obtain the original dynamic loop data of the dynamic loop device, and sends the original dynamic loop data as the dynamic loop data to be detected to the mobile terminal;
  • the original dynamic loop data is the dynamic loop device Based on the data collected from the dynamic environment of the computer room according to the control command;
  • the mobile terminal can be a mobile phone, a tablet computer, a personal computer, etc. that support GPRS, WIFI and other communication methods.
  • the inspection management personnel configure the inspection plan in the background according to the group of inspectors, the scope of the inspection equipment, the equipment points and the inspection time, and generate the inspection list and inspection route;
  • the task list includes Inspection equipment and equipment points;
  • the inspection route is a route designed according to the equipment and equipment points to be inspected.
  • the mobile terminal obtains the inspection list, the inspection route and the data of the dynamic ring to be inspected by logging in to the dynamic ring platform.
  • the login method includes logging in through the WEB, or downloading the inspection application program used to perform inspection tasks to log in to the dynamic platform.
  • the login information includes the personnel number and password; the mobile platform receives and determines whether the login information is the same as the pre-stored personnel information. If it matches, login is allowed, and if it does not match, login is refused. The administrator can log in again after resetting the password through the management background.
  • the mobile terminal is connected to the dynamic ring platform through a wired connection to obtain the inspection list, the inspection route, and the dynamic ring data to be inspected.
  • the dynamic loop platform receives the inspection result data sent by the mobile terminal; the inspection result data is obtained based on the comparison between the dynamic loop data to be inspected received by the mobile terminal and the field data of the dynamic loop equipment.
  • the inspection personnel can conduct inspections according to the inspection route; they can also define the inspection order according to the on-site situation, and do not choose to perform the inspection according to the inspection route before the inspection.
  • the inspectors compare the data point values of the moving ring to be inspected with the data point values of the corresponding on-site moving ring equipment. If the data is consistent, copy the data of the moving ring to be inspected as the inspection result; if the data is inconsistent, then The data input displayed by the on-site dynamic loop equipment is the inspection result data. Then, the inspection result data is sent to the dynamic ring platform, which is received by the dynamic ring platform for subsequent processing.
  • the dynamic ring platform can preset the automatic refresh time. If the inspector only performs the meter reading inspection of part of the data during the inspection of a dynamic ring device, the calculation will start from the last meter reading data operation time. When the interval of stopping meter reading reaches the set automatic refresh time, the dynamic platform automatically obtains the inspection result data that the mobile terminal has filled in, and then judges that the meter reading has not been performed based on the equipment points submitted by the mobile terminal. Dynamic loop equipment and corresponding equipment points, and send the acquisition instruction of this part of the unread meter data to the dynamic loop equipment; receive and update the previously obtained original dynamic loop data, and send the corresponding dynamic loop data to be checked to the mobile terminal.
  • the mobile terminal After completing the inspection, the mobile terminal uploads the inspection result data to the dynamic platform. Specifically, after inspecting a device, upload the inspection result data, and then inspect the next device; you can also upload all the inspection result data to the dynamic environment platform after all the devices are inspected. Here, when refreshing, you can submit the completed meter reading data in a device.
  • the method further includes: the dynamic loop platform judges the inspection result data sent by the mobile terminal, and judges whether the inspection result data is abnormal.
  • the parameter fluctuation range during normal operation of each device is set as the normal fluctuation range of the data difference.
  • the dynamic loop platform receives the inspection result data sent by the mobile terminal, it compares the inspection result data with the original dynamic loop data obtained by the driven loop device, and performs difference processing to obtain the data difference value. If the data difference value is within the normal fluctuation range , It is determined that the data uploaded by the moving-loop equipment is normal; otherwise, it is determined that the data uploaded by the moving-loop equipment is abnormal.
  • the dynamic ring platform pushes the above information determined to be abnormal in the data uploaded by the dynamic ring equipment to the mobile terminal through the APP, or sends a short message to the mobile phone of the inspector according to the contact information stored in the dynamic ring platform.
  • the dynamic ring platform provides a horizontal comparison table for inspection management personnel to view.
  • the horizontal comparison table displays the horizontal comparison of the abnormal data within a certain time range.
  • the inspection management personnel can judge the cause of the abnormal data uploaded by the moving ring equipment based on the data in the horizontal comparison table, and then notify the inspection personnel to repair the abnormal cause.
  • the display mode of the horizontal comparison table can be a table, a dot graph, a curve graph, a histogram, and so on.
  • the inspector After receiving the notification, the inspector will conduct another inspection on the moving and loop equipment with abnormal uploaded data, and upload the inspection result again. If the moving and loop platform judges that the data uploaded again is normal, it will notify the inspector of the normal result as described above. The inspection personnel complete the inspection work. If the dynamic loop equipment with abnormal data upload remains in the abnormal state of data upload, the inspection personnel should find the cause of the abnormal dynamic loop equipment on the spot and repair it, or repair according to the instructions of the inspection management personnel, and record the abnormality of the dynamic loop equipment The situation is uploaded to the dynamic environment platform; the dynamic environment platform manages and records the inspection situation, and generates reports.
  • the method further includes: the dynamic platform judges the due diligence of the inspection personnel according to the inspection result data.
  • the dynamic platform judges the due diligence of the inspection personnel according to the inspection result data.
  • some device point values of the original dynamic loop data are randomly modified to obtain the dynamic loop data to be detected and sent to the mobile terminal.
  • the moving ring platform receives the inspection result data uploaded by the mobile terminal, it will automatically compare the inspection result data corresponding to the randomly modified device point value with the corresponding original moving ring data. If the inspection result data is compared with the moving ring to be inspected If the data is consistent, it means that the inspector just copied the value of the moving ring data to be inspected, and did not carefully check the device point value displayed on the device.
  • the moving ring platform records the inspection incomplete indicator for the inspector; if it is to be inspected
  • the dynamic loop data has been corrected, and it has been corrected here, including that the inspection result is equal to the original dynamic loop data or the data difference with the original dynamic loop data is within the normal fluctuation range, then the dynamic loop platform determines that the inspector carefully conducts the inspection. And record the inspection due diligence identification; inspection management personnel can understand the inspection status of each inspection group and inspection personnel by viewing the inspection personnel due diligence report.
  • the background of the dynamic loop platform judges the operating conditions of the dynamic loop equipment, and identifies the dynamic loop equipment that is operating abnormally.
  • the slave dynamic ring platform records the data backstage to search out whether the device has a value consistent with the value of the dynamic ring device to be inspected at the time corresponding to the inspection time. If so, then Still output the due diligence mark for the inspector.
  • the dynamic platform can also obtain the location information of the mobile terminal to locate the inspection personnel. Specifically, the dynamic loop platform pre-stores each computer room and its corresponding GPRS location and IP address information. According to the location information uploaded by the mobile terminal and the stored information, the location of the inspector can be determined and the location result can be determined. Generate inspection report for inspection management personnel.
  • the calculation starts when the mobile terminal inputs the first inspection result data.
  • the mobile terminal automatically sends the location information to the dynamic platform.
  • the inspection manager can set different timing upload time in the background.
  • the patrol manager checks the location information of the person being patrolled, he sends a positioning instruction to the mobile terminal, the mobile terminal receives the information, and sends GPRS location information to obtain IP address information according to the aforementioned conditions in the computer room.
  • the information sent by the mobile terminal can be manually confirmed upload or the mobile terminal automatically uploads.
  • the method further includes positioning and operating inspection of the inspectors through monitoring.
  • the dynamic ring platform presets the association relationship between the servers in the dynamic ring platform and the monitoring device.
  • This association relationship can be that one server corresponds to one monitoring device, one server corresponds to multiple monitoring devices, multiple servers correspond to one monitoring device, and multiple Each server corresponds to multiple monitoring devices, where the monitoring devices include DVR, NVR or cameras.
  • the moving ring platform will link the monitoring equipment associated with the inspection device to capture images or record a video of the inspector's inspection operation.
  • the inspection management personnel can check whether the inspection personnel are patrolling the equipment according to the regulations and whether the inspection operation is correct by viewing the image or video.
  • the above multiple patrol personnel positioning methods can be used in combination or alone according to the on-site environment and conditions of the machine room.
  • Fig. 4 shows the second embodiment of the patrol inspection method for moving loop equipment of the present invention, which includes the following steps:
  • Step P1 The moving loop platform obtains the original moving loop data of the moving loop equipment to obtain the moving loop data to be checked.
  • the dynamic environment equipment collects the engine room dynamic environment data according to the instructions of the dynamic environment platform, and uploads the engine room dynamic environment data to the dynamic environment platform.
  • the data collected by the dynamic environment equipment from the engine room dynamic environment data is referred to as the original dynamic environment data.
  • the dynamic ring platform will obtain the original dynamic ring data as the to-be-checked dynamic ring data and save it.
  • Step P2 The mobile terminal obtains the data of the moving ring to be checked from the moving ring platform. Specifically, the mobile terminal logs in to the dynamic platform through WEB; or logs in to the dynamic platform by downloading the inspection application program used to perform inspection tasks; the dynamic platform receives and determines whether the login information matches the pre-stored information If it matches, login is allowed; if it does not match, login is refused; login information includes personnel number and password; managers can reset their passwords through the management background and log in again; mobile terminals can be mobile phones or tablets that support GPRS, WIFI and other communication methods Computers, laptops, etc.
  • the inspection management personnel configure the inspection plan in the background according to the group of inspectors, the scope of the inspection equipment, the equipment points and the inspection time, and generate the inspection list and inspection route;
  • the task list includes Inspection equipment and equipment points;
  • the inspection route is a route designed according to the equipment and equipment points to be inspected.
  • the mobile terminal logs in successfully, it obtains the inspection list and submits the equipment and equipment points to be inspected to the ring platform, requesting instructions for obtaining the corresponding dynamic ring data to be inspected.
  • the dynamic loop platform sends the data acquisition instruction to the dynamic loop equipment.
  • the mobile terminal is connected to the dynamic ring platform through a wired connection to obtain the inspection list and the dynamic ring data to be inspected.
  • Step P3 According to the comparison result of the moving loop data to be checked obtained by the mobile terminal and the field data of the moving loop equipment, input the inspection result data on the mobile terminal and upload it to the moving loop platform. Specifically, the mobile terminal receives the data of the moving ring to be inspected and displays it in the inspection interface. The inspectors can perform inspections according to the inspection route; they can also define the inspection order according to the on-site situation. Do not choose to follow the inspection before the inspection. The inspection route can be inspected. The inspectors compare the data point values of the moving loop to be inspected with the data point values of the corresponding on-site moving loop equipment.
  • the mobile terminal can be connected to the dynamic loop device through a wired connection, and the field data of the dynamic loop device is moved and copied to the inspection interface of the current mobile terminal, and then the two sets of data can be visually compared on the mobile terminal whether they are consistent , When the data is inconsistent, copy the data on the dynamic ring equipment to the inspection result. Then, the inspection result data is sent to the dynamic ring platform, which is received by the dynamic ring platform for subsequent processing.
  • the latest data of the moving loop equipment that has not been reading the meter can be obtained through manual refresh.
  • the inspector clicks the unread meter data refresh button on the meter reading interface of the mobile terminal.
  • the mobile terminal receives the manual refresh instruction and automatically uploads the completed inspection result data to the dynamic platform.
  • the dynamic ring platform receives the instruction and judges the dynamic ring equipment and the corresponding equipment points that have not performed meter reading based on the equipment and equipment points submitted by the previous mobile terminal, and sends the acquisition instruction of this part of the unread meter data to the dynamic ring equipment.
  • the mobile terminal can automatically refresh the unread meter data.
  • the automatic refresh method of the mobile terminal is similar to the manual refresh method described above. The difference is that the mobile terminal presets the automatic refresh time. In the process of patrolling a moving ring equipment, only part of the meter reading inspection is performed, and the calculation starts from the last meter reading data operation time. When the interval time to stop the meter reading action reaches the set automatic refresh time, the mobile terminal Automatically acquire and send an automatic refresh instruction to the dynamic ring platform to obtain the latest dynamic ring data to be checked.
  • the automatic refresh time can also be set on the dynamic loop platform, which is similar to the automatic refresh method of the mobile terminal described above.
  • the dynamic loop platform presets the automatic refresh time, such as the interval time for the mobile terminal to stop meter reading.
  • the dynamic loop platform automatically acquires and sends the latest dynamic loop data to be checked to the mobile terminal, and then completes the update of the unread metered dynamic loop data on the mobile terminal as described above.
  • This refreshing method can effectively ensure that the mobile terminal obtains the latest data to be inspected.
  • the automatic refreshing method also prevents inspectors from forgetting to refresh the data and causing the mobile terminal to display old data.
  • the mobile terminal After completing the inspection, the mobile terminal uploads the inspection result data to the dynamic platform. Specifically, after inspecting a device, upload the inspection result data, and then inspect the next device; you can also upload all the inspection result data to the dynamic environment platform after all the devices are inspected. Here, when refreshing, you can submit the completed meter reading data in a device.
  • the device point that has uploaded the inspection result displays a submitted identifier in the corresponding column of the inspection list, and has an editable wording, and can be repeatedly inspected and submitted.
  • a submitted identifier in the corresponding column of the inspection list, and has an editable wording, and can be repeatedly inspected and submitted.
  • click the submit button click the submit button and there will be a "save and submit” prompt. You can choose to submit or abandon the saving process.
  • the prompt "Incomplete inspection" will appear when you click Submit.
  • the method further includes: the dynamic loop platform judges the inspection result data sent by the mobile terminal, and judges whether the inspection result data is abnormal.
  • the parameter fluctuation range during normal operation of each device is set as the normal fluctuation range of the data difference.
  • the dynamic loop platform receives the inspection result data sent by the mobile terminal, it compares the inspection result data with the original dynamic loop data obtained by the driven loop device, and performs difference processing to obtain the data difference value. If the data difference value is within the normal fluctuation range , It is determined that the data uploaded by the moving-loop equipment is normal; otherwise, it is determined that the data uploaded by the moving-loop equipment is abnormal.
  • the dynamic ring platform pushes the above information determined to be abnormal in the data uploaded by the dynamic ring equipment to the mobile terminal through the APP, or sends a short message to the mobile phone of the inspector according to the contact information stored in the dynamic ring platform.
  • the dynamic ring platform provides a horizontal comparison table for inspection management personnel to view.
  • the horizontal comparison table displays the horizontal comparison of the abnormal data within a certain time range.
  • the inspection management personnel can judge the cause of the abnormal data uploaded by the moving ring equipment based on the data in the horizontal comparison table, and then notify the inspection personnel to repair the abnormal cause.
  • the display mode of the horizontal comparison table can be a table, a dot graph, a curve graph, a histogram, and so on.
  • the inspector After receiving the notification, the inspector will conduct another inspection on the moving and loop equipment with abnormal uploaded data, and upload the inspection result again. If the moving and loop platform judges that the data uploaded again is normal, it will notify the inspector of the normal result as described above. The inspection personnel complete the inspection work. If the dynamic loop equipment with abnormal data upload remains in the abnormal state of data upload, the inspection personnel should find the cause of the abnormal dynamic loop equipment on the spot and repair it, or repair according to the instructions of the inspection management personnel, and record the abnormality of the dynamic loop equipment The situation is uploaded to the dynamic environment platform; the dynamic environment platform manages and records the inspection situation, and generates reports.
  • the method further includes: the dynamic platform judges the due diligence of the inspection personnel according to the inspection result data.
  • the dynamic platform judges the due diligence of the inspection personnel according to the inspection result data.
  • some device point values of the original dynamic loop data are randomly modified to obtain the dynamic loop data to be detected and sent to the mobile terminal.
  • the dynamic ring platform receives the inspection result data uploaded by the inspector, it will automatically compare whether the inspection result data corresponding to the randomly modified equipment point value is with the corresponding original dynamic ring data. If the moving ring data is consistent, it means that the inspector just copied the value of the moving ring data to be inspected, and did not carefully check the device point value displayed on the device.
  • the moving ring platform records the inspector’s insufficient inspection mark; if The dynamic loop data to be inspected has been corrected.
  • the dynamic loop platform determines that the inspector carefully conducts the inspection Inspection, and record the inspection due diligence identification; inspection management personnel can understand the inspection status of each inspection group and inspection personnel by viewing the inspection personnel due diligence report.
  • the background of the dynamic loop platform judges the operating conditions of the dynamic loop equipment, and identifies abnormally operating equipment.
  • the slave dynamic ring platform records the data backstage to search out whether the device has a value consistent with the value of the dynamic ring device to be inspected at the time corresponding to the inspection time. If so, then Still output the due diligence mark for the inspector.
  • the dynamic platform can also obtain the location information of the mobile terminal to locate the inspection personnel. Specifically, the dynamic loop platform pre-stores each computer room and its corresponding GPRS location and IP address information. According to the location information uploaded by the mobile terminal and the stored information, the location of the inspector can be determined and the location result can be determined. Generate inspection report for inspection management personnel.
  • the calculation starts when the mobile terminal inputs the first inspection result data.
  • the mobile terminal automatically sends the location information to the dynamic platform.
  • the inspection manager can set different timing upload time in the background.
  • the patrol manager checks the location information of the person being patrolled, he sends a positioning instruction to the mobile terminal, the mobile terminal receives the information, and sends GPRS location information to obtain IP address information according to the above-mentioned situation in the computer room.
  • the information sent by the mobile terminal can be manually confirmed upload or the mobile terminal automatically uploads.
  • the method further includes positioning and operating inspection of the inspectors through monitoring.
  • the dynamic ring platform presets the association relationship between the servers in the dynamic ring platform and the monitoring device.
  • This association relationship can be that one server corresponds to one monitoring device, one server corresponds to multiple monitoring devices, multiple servers correspond to one monitoring device, and multiple Each server corresponds to multiple monitoring devices, where the monitoring devices include DVR, NVR or cameras.
  • the moving ring platform will link the monitoring equipment associated with the inspection device to capture images or record a video of the inspector's inspection operation.
  • the inspection management personnel can check whether the inspection personnel are patrolling the equipment according to the regulations and whether the inspection operation is correct by viewing the image or video.
  • the above multiple patrol personnel positioning methods can be used in combination or alone according to the on-site environment and conditions of the machine room.
  • Figure 6 shows a block diagram of the principle structure of the dynamic loop platform, which includes:
  • the inspection configuration workstation 1 is used to configure the equipment and equipment points to be inspected by the inspector group to form an inspection list and inspection route.
  • the inspection list is used to provide the mobile terminal to obtain the data of the moving ring to be inspected.
  • the mobile terminal server 2 receives the login information from the mobile terminal, obtains the patrol list instruction, and obtains the request instruction for obtaining the dynamic ring data to be inspected, and transmits the inspection list, the inspection route and the data of the dynamic ring to be inspected to via wired data transmission or network In the mobile terminal; and receive the inspection result data, equipment maintenance records, and the current geographic location information of the mobile terminal from the mobile terminal; in this embodiment, the inspection manager pre-configures the inspection of the inspector through the inspection configuration workstation 1.
  • the inspection task is formed and a patrol list is sent to the mobile terminal, and the mobile terminal sends a request command for obtaining data of the moving ring to be inspected according to the patrol list.
  • the core server 3 includes a data storage unit 31, a status information analysis unit 32 and an information notification unit 33.
  • the data storage unit 31 is used to store the inspection list, the inspection route, the original moving ring data and the corresponding moving ring data to be inspected, and pre-store the geographic location information corresponding to each computer room; the original moving ring data is based on the data storage unit 31
  • the command sent by the mobile terminal to obtain the data of the moving loop to be checked obtains the original moving loop data from the moving loop device.
  • the data storage unit 31 corresponds to one moving loop device or one data storage unit 31 corresponds to multiple moving loop devices;
  • the ring data is the original dynamic ring data; in some embodiments, the to-be-detected dynamic ring data may be the original dynamic ring data or the to-be-detected dynamic ring data obtained by randomly modifying the original dynamic ring data.
  • the data storage unit 31 also stores the inspection result data, equipment maintenance records and the current geographic location information of the mobile terminal sent by the mobile terminal; in this embodiment, the data storage unit 31 pre-stores the number and password of the inspector for communication with The received login information of the mobile terminal is compared to determine whether the login identity is reasonable; and the contact information of the inspector is stored to notify the inspector when the device is abnormal. In some embodiments, the data storage unit 31 is also used to set an automatic refresh time, automatically obtain the original dynamic ring data of the non-meter-reading device, and obtain the corresponding dynamic ring data to be checked.
  • the status information analysis unit 32 is connected to the data storage unit 31 and is used to determine whether the login information of the mobile terminal is reasonable; compare the received current geographic location information of the mobile terminal with the geographic location information corresponding to the pre-stored device to monitor Whether the inspector has arrived at the equipment specified in the inspection task; it is also used to set the normal fluctuation range of the data difference according to the fluctuation range of the equipment during normal operation, and compare the inspection result data sent by the mobile terminal with the original data in the data storage unit.
  • the dynamic ring data is compared to determine whether the data uploaded by the equipment is abnormal, and the abnormal data is generated into a horizontal comparison table for inspection by inspection personnel.
  • the data of the dynamic ring to be inspected includes data obtained by randomly modifying the original dynamic ring data through the data storage unit, and the state analysis unit compares the inspection result data with the corresponding data of the dynamic ring to be inspected obtained by the modification. Consistent, if yes, it is judged that this inspector is not doing his duty inspection.
  • the information notification unit 33 is connected to the data storage unit 31 and the status information analysis unit 32, and is used to notify the inspectors of abnormal equipment information through the contact information stored in the data storage unit; or send the abnormal equipment information to the mobile terminal through the mobile server 2 terminal.
  • the platform also includes a video capture server, which is connected to the core server 3.
  • a video capture device can correspond to one or more monitoring devices, not shown in the figure; the video capture server is used to obtain the settings in the core server 3.
  • the data is sent to the monitoring equipment, and the data uploaded by the monitoring equipment is saved. Including image or video information.
  • Figure 8 shows a block diagram of the principle structure of a moving loop equipment inspection system, which includes:
  • the mobile terminal 10 can be a mobile phone, a tablet computer, or a notebook computer that supports GPRS, WIFI and other communication methods; as shown in Figure 9, the mobile terminal 10 includes an information input unit 101, a positioning unit 102, and a first communication unit 103; the inspector can Download the inspection application program to the mobile terminal 10 to perform inspection tasks configured by the dynamic environment platform 20; the dynamic environment platform 20 includes a inspection configuration workstation 202, a mobile terminal server 201, and a core server 200.
  • the information input unit 101 is used to input login information, instructions, and inspection result information; in this embodiment, the login information includes a personnel number and a password; instructions include instructions for requesting to obtain a list of inspections, inspection routes, and data of the moving ring to be inspected ; The inspection result information includes inspection result data and equipment maintenance records.
  • the instruction also includes a refresh instruction, and the refresh instruction includes a manual refresh instruction and an automatic refresh instruction.
  • the positioning unit 102 is used to obtain the current geographic location information of the mobile terminal 10; in this embodiment, by obtaining the current geographic location information and the relationship between the pre-stored inspection equipment and geographic location information, it is determined whether the inspector is in the required position.
  • the patrol inspection is carried out in the location of the patrol equipment, and the geographic location information includes GPRS location information and IP address information; through the patrol inspection personnel positioning inspection can effectively prevent the patrol personnel from forging inspection data.
  • the first communication unit 103 is used to send login information, instructions, and inspection result information to the mobile platform 20.
  • the mobile terminal 10 has preset the server address of the mobile server 201 and transmits it to the mobile server 201 via the wireless network Data, wireless networks include GPRS, WIFI, etc.
  • the mobile terminal 1 is connected to the mobile terminal server 201 via GPRS or WIFI, and the personnel number and password, the request to obtain the inspection list, the inspection route, the data instructions of the terminal to be inspected, and the inspection result data, equipment maintenance
  • the record and the current geographic location information of the mobile terminal are sent to the mobile terminal server 201.
  • the mobile terminal 10 sends a refresh instruction to the dynamic loop platform 20 through the first communication unit 103 to obtain the latest unread meter device and the corresponding dynamic loop data of the device point.
  • the refresh includes a manual refresh instruction.
  • automatic refresh instructions are included in the mobile terminal 10 .
  • the patrol configuration workstation 202 is used to configure the equipment and equipment points to be patrolled by the patrol inspector group to form a patrol list and a patrol route, and the patrol list is provided to the mobile terminal 10 to obtain the moving ring data to be inspected.
  • the mobile terminal server 201 receives the log-in information from the mobile terminal 10, obtains the inspection list, the data command request of the dynamic ring to be inspected; transmits the inspection list, the inspection route and the data of the dynamic ring to be inspected to via wired data transmission or the network In the mobile terminal; and receive inspection result data, equipment maintenance records, and current geographic location information of the mobile terminal 10 from the mobile terminal 10; in this embodiment, the inspection manager configures the inspection tasks of the inspectors in advance, A patrol list is formed and sent to the mobile terminal, and the mobile terminal sends a request instruction for moving ring data to be inspected according to the patrol list.
  • the mobile terminal server 201 is also used to receive the refresh instruction sent by the mobile terminal, and send the terminal data to be checked corresponding to the latest unread meter data to the mobile terminal 10; the refresh includes a manual refresh instruction and an automatic refresh instruction.
  • the core server 200 includes a data storage unit 2001, a status information analysis unit 2002, and an information notification unit 2003.
  • the data storage unit 2001 is used to store the inspection list, the inspection route, the original moving ring data and the corresponding moving ring data to be inspected, and pre-store the geographic location information corresponding to each computer room; the original moving ring data is based on the data storage unit 2001
  • the command sent by the mobile terminal to obtain the data of the moving loop to be checked, the original moving loop data is obtained from the moving loop device.
  • the data storage unit 2001 corresponds to one moving loop device or one data storage unit 2001 corresponds to multiple moving loop devices;
  • the ring data is the original dynamic ring data; in some embodiments, the to-be-detected dynamic ring data may be the original dynamic ring data or the to-be-detected dynamic ring data obtained by randomly modifying the original dynamic ring data.
  • the data storage unit 2001 also stores the inspection result data, equipment maintenance records and the current geographic location information of the mobile terminal sent by the mobile terminal; in this embodiment, the data storage unit 2001 pre-stores the number and password of the inspector for communication with The received login information of the mobile terminal is compared to determine whether the login identity is reasonable; and the contact information of the inspector is stored to notify the inspector when the device is abnormal.
  • the data storage unit 2001 is also used to obtain the latest original dynamic loop data corresponding to the non-read meter device and the device point according to the refresh instruction sent by the mobile terminal 10, and to obtain the corresponding latest dynamic loop data to be checked;
  • the refresh instruction includes Manual refresh instruction and automatic refresh instruction.
  • the data storage unit 2001 is also used to set an automatic refresh time, and automatically acquire and send the latest dynamic ring data to be checked to the mobile terminal.
  • the status information analysis unit 2002 connected to the data storage unit 2001, is used to determine whether the login information of the mobile terminal is reasonable; compare the received current geographic location information of the mobile terminal with the geographic location information corresponding to the pre-stored device to monitor Whether the inspector has arrived at the equipment specified in the inspection task; it is also used to set the normal fluctuation range of the data difference according to the fluctuation range of the equipment during normal operation, and compare the inspection result data sent by the mobile terminal with the original data in the data storage unit.
  • the dynamic ring data is compared to determine whether the data uploaded by the equipment is abnormal, and the abnormal data is generated into a horizontal comparison table for inspection by inspection personnel.
  • the data of the dynamic ring to be inspected includes data obtained by randomly modifying the original dynamic ring data through the data storage unit, and the state analysis unit compares the inspection result data with the corresponding data of the dynamic ring to be inspected obtained by the modification. Consistent, if yes, it is judged that this inspector is not doing his duty inspection.
  • the information notification unit 2003 is connected to the data storage unit 2001 and the status information unit 2002, and is used to notify the inspectors of abnormal equipment information through the contact information stored in the data storage unit; or send the abnormal equipment information to the mobile terminal through the mobile terminal server 201 .
  • the platform also includes a video capture server 203, which is connected to the core server 200, and is used to obtain the setting data in the core server 200 and send it to the monitoring device to save the data uploaded by the monitoring device. Including image or video information.
  • the system also includes monitoring equipment, which is connected to the video capture server 203.
  • a video capture device can correspond to one or more monitoring devices, not shown in the figure, for receiving setting data and instructions, recording or capturing according to the instructions, and recording The image and video information are uploaded to the video capture server 203.
  • Monitoring equipment includes DVR and camera or NVR and camera.
  • the result of the inspection is filled in and uploaded on the mobile terminal to ensure It improves the timeliness of inspection results and improves inspection efficiency.
  • the platform to judge the inspection results abnormal conditions of the equipment can be found and dealt with in time, and the inspection operations of the inspectors can be monitored and inspected. The accuracy of the results is guaranteed.

Abstract

本发明公开了一种动环设备巡检方法、动环平台及动环设备巡检系统。方法包括下列步骤:S1、动环平台获取动环设备的原始动环数据,以得到待检动环数据并发送至移动终端;S2、所述动环平台接收所述移动终端发送的巡检结果数据。通过根据移动终端显示的数据与现场设备的数据的对比结果,在移动终端填写及上传巡检结果,保证了巡检结果的时效性及提高了巡检效率,利用平台对巡检结果进行判断,可及时发现并处理设备的异常情况。

Description

一种动环设备巡检方法、动环平台及动环设备巡检系统 技术领域
本发明涉及动环应用技术领域,更具体地说,涉及一种动环设备巡检方法、动环平台及动环设备巡检系统。
背景技术
目前动环机房设备巡检,需要用纸质的设备巡检表单,人工记录巡检结果,然后再录入系统。采用这样的方式进行巡检,巡检数据的时效性无法保障,设备数据出现问题很难及时发现;人工填写巡检结果,工作效率很低,数据量大也容易产生书写手误;巡检人员是否按时、按要求对设备进行了逐一巡检,出现漏检、或者巡检人员未到现场的情况,很难进行监管,缺少信息化的手段保证巡检工作的正常进行。巡检人员在巡检时,如果一个设备要巡检的数据比较多,或者在巡检过程中需要处理设备异常或者其他事务,从平台获取的动环设备上传数据会发生变化,而移动终端上显示的还是旧的数据,会导致平台获取动环设备上传的数据与移动终端上显示的数据不一致,从而影响了对设备运行情况的判断。
技术问题
本发明要解决的技术问题在于,针对现有技术的上述无法保障数据的时效性、工作效率低的缺陷,提供一种动环设备巡检方法、动环平台及动环设备巡检系统。
技术解决方案
本发明解决其技术问题所采用的技术方案是:构造一种动环设备巡检方法,包括以下步骤:
S1、动环平台获取动环设备的原始动环数据,以得到待检动环数据并发送至移动终端;
S2、所述动环平台接收所述移动终端发送的巡检结果数据;所述巡检结果数据根据所述移动终端接收的所述待检动环数据与所述动环设备的现场数据的对比结果得到。
优选的,在所述步骤S2中,包括若所述待检动环数据与所述动环设备的现场数据一致,则所述移动终端将所述待检动环数据作为所述巡检结果数据发送;
若所述待检动环数据与所述动环设备的现场数据不一致,则所述移动终端将所述动环设备的现场数据作为所述巡检结果数据发送。
优选的,在所述步骤S2之后进一步包括S3、所述动环平台判断所述移动终端发送的巡检结果数据是否异常;所述步骤S3包括:
S3-1、设置数据差异的正常波动范围;
S3-2、所述动环平台根据所述移动终端发送的所述巡检结果数据与所述原始动环数据进行对比,求出数据差异;
S3-3、若所述数据差异在正常波动范围内,则判定为正常;反之,判定为异常;
S3-4、所述动环平台将所述异常结果发出,并通知巡检人员。
优选的,所述待检动环数据为所述动环平台随机修改所述原始动环数据所得到的数据,所述动环设备巡检方法还包括:
所述动环平台将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
若所述巡检结果数据与所述待检动环数据一致,则输出巡检不尽职标识。
优选的,所述动环设备巡检方法还包括:所述动环平台获取所述移动终端的地址信息,对所述移动终端进行定位,所述地址信息包括GPRS坐标信息以及机房公网的IP地址信息。
优选的,所述动环设备巡检方法还包括:所述动环平台发送拍摄指令至监控设备,所述监控设备接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
本发明还提供另一种动环设备巡检方法,包括以下步骤:
P1、动环平台获取动环设备的原始动环数据,以得到待检动环数据;
P2、移动终端从所述动环平台获取所述待检动环数据;
P3、根据所述移动终端获取的所述待检动环数据与所述动环设备的现场数据的对比结果,在所述移动终端上输入巡检结果数据,并上传至所述动环平台。
优选的,在所述步骤P2中,包括手动刷新待检动环数据,包括以下步骤:
P2-1、所述移动终端接收刷新指令,并向所述动环平台请求获取最新的待检动环数据;
P2-2、所述动环平台根据所述请求向所述移动终端发送所述最新的待检动环数据;
P2-3、所述移动终端接收并更新所述待检动环数据为所述最新的待检动环数据。
优选的,在所述步骤P2中,还包括自动刷新待检动环数据,方法包括:所述刷新指令包括自动刷新指令,所述移动终端预先设置自动刷新时间,当停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述移动终端自动获取并发送自动刷新指令至所述动环平台,以获取最新的待检动环数据;
或者所述动环平台预先设置自动刷新时间,当所述移动终端停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述动环平台自动获取并发送最新的待检动环数据至所述移动终端。
优选的,在所述步骤P3中,若所述待检动环数据与所述动环设备的现场数据一致,则所述移动终端将所述待检动环数据设置为所述巡检结果数据发送;
若所述待检动环数据与所述动环设备的现场数据不一致,则所述移动终端将所述动环设备的现场数据设置为所述巡检结果数据发送。
优选的,所述待检动环数据为所述动环平台随机修改所述原始动环数据所得到的数据,所述动环设备巡检方法还包括:所述动环平台将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
若所述巡检结果数据与所述待检动环数据一致,则输出巡检不尽职标识。
优选的,所述动环设备巡检方法还包括:所述动环平台发送拍摄指令至监控设备,所述监控设备接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
本发明还提供一种动环平台,包括:
核心服务器,包括资料存储单元,用于获取动环设备的原始动环数据,以得到待检动环数据;
移动端服务器,与所述核心服务器连接,用于与移动终端连接通讯,将所述待检动环数据发送至所述移动终端,并接收所述移动终端发送的巡检结果数据;
所述巡检结果数据根据所述移动终端接收的所述待检动环数据与所述动环设备的现场数据的对比结果得到。
优选的,所述核心服务器还包括:状态信息分析单元,与所述资料存储单元连接,用于判断所述移动终端发送的巡检结果数据是否异常;
信息通知单元,与所述资料存储单元、状态信息分析单元连接,用于将所述异常结果发出,并通知巡检人员。
优选的,所述待检动环数据为所述资料存储单元随机修改所述原始动环数据所得到的数据,
所述状态信息分析单元还用于将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
若所述巡检结果数据与所述待检动环数据一致,所述状态信息分析单元则输出巡检不尽职标识。
优选的,所述移动端服务器还用于获取所述移动终端的地址信息,对所述移动终端进行定位,所述地址信息包括GPRS坐标信息以及机房公网的IP地址信息。
优选的,所述动环平台还包括:视频抓拍服务器,与所述核心服务器连接,用于发送拍摄指令至监控设备;
所述监控设备与所述视频抓拍服务器连接,用于接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
本发明还提供一种动环设备巡检系统,包括:
动环平台,用于获取动环设备的原始动环数据,以得到待检动环数据;
移动终端,用于从所述动环平台获取所述待检动环数据,以及根据所述移动终端获取的所述待检动环数据与所述动环设备的现场数据的对比结果,输入巡检结果数据,并上传至所述动环平台。
优选的,所述动环平台包括:核心服务器,包括资料存储单元,用于获取动环设备的原始动环数据,以得到待检动环数据;
所述移动端服务器,与所述核心服务器连接,用于与移动终端连接通讯,将所述待检动环数据发送至所述移动终端,并接收所述移动终端发送的巡检结果数据。
优选的,所述移动终端还用于接收手动刷新指令,并向所述资料存储单元请求获取最新的待检动环数据;
所述资料存储单元还用于接收所述请求,并根据所述请求向所述移动终端发送最新的待检动环数据;
所述移动终端接收并更新所述待检动环数据为所述最新的待检动环数据。
优选的,所述移动终端还用于预先设置自动刷新时间,当停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述移动终端自动获取并发送自动刷新指令至所述动环平台,以获取最新的待检动环数据;
或者所述资料存储单元还用于预先设置自动刷新时间,当所述移动终端停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述资料存储单元自动获取并发送最新的待检动环数据至所述移动终端。
优选的,所述待检动环数据为所述资料存储单元随机修改所述原始动环数据所得到的数据,所述核心服务器还包括:状态信息分析单元,用于将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
若所述巡检结果数据与所述待检动环数据一致,所述状态分析单元输出巡检不尽职标识。
优选的,所述动环设备巡检系统还包括:视频抓拍服务器,与所述核心服务器连接,用于发送拍摄指令至监控设备;
所述监控设备与所述视频抓拍服务器连接,用于接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
有益效果
实施本发明的动环设备巡检方法、动环平台及动环设备巡检系统,具有以下有益效果:
移动终端从动环平台获取并显示巡检设备上传的设备点数据值,根据移动终端显示的数据与现场设备的数据的对比结果,在移动终端填写及上传巡检结果,保证了巡检结果的时效性及提高了巡检效率。
进一步的,巡检人员可以随时手动刷新或者通过移动终端每隔一段时间自动向动环平台获取最新的未抄表数据,确保移动终端获得的未抄表数据为最新数据。并且利用动环平台对巡检结果数据进行判断,可及时发现并处理设备的异常情况。
并且,在巡检过程中通过对巡检人员定位,以及对所提交的数据进行尽职判断等方式检查巡检人员是否认真工作,起到对巡检人员管理及监督的作用。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明动环设备巡检方法第一实施例的巡检步骤流程图;
图2是本发明动环设备巡检方法第一实施例及第二实施例判断设备上传数据是否异常的步骤流程图;
图3是本发明动环设备巡检方法第一实施例及第二实施例判断巡检人员是否尽职巡检的步骤流程图;
图4是本发明动环设备巡检方法第二实施例的巡检步骤流程图;
图5是本发明动环设备巡检方法第二实施例的手动刷新步骤流程图;
图6是本发明动环平台原理结构框图;
图7是本发明动环平台的核心服务器的结构示意图;
图8是本发明动环设备巡检系统原理结构框图;
图9是本发明动环设备巡检系统的移动终端的结构示意图;
图10是本发明动环设备巡检系统核心服务器的结构示意图。
本发明的实施方式
为了彻底理解本发明,将在下列的描述中提出详细的步骤以及详细的结构,以便阐释本发明的技术方案。本发明的较佳实施例详细描述如下,然而除了这些详细描述外,本发明还可以具有其他实施方式。
图1示出的本发明的动环设备巡检方法第一实施例中,包括以下步骤:
S1、动环平台获取动环设备的原始动环数据,以得到待检动环数据并发送至移动终端。具体地,动环平台发送控制命令至动环设备,以获取动环设备的原始动环数据,并将原始动环数据作为待检动环数据发送至移动终端;原始动环数据为动环设备根据控制命令所采集机房动力环境数据所得;移动终端可以为支持GPRS、WIFI等通讯方式的手机,平板电脑,个人电脑等。
可以理解的,在巡检前,巡检管理人员根据巡检人员分组、巡检设备范围、设备点及巡检时间,在后台配置巡检计划,生成巡检列表及巡检路线;任务列表包括巡检设备及设备点;巡检路线为根据所需巡检的设备及设备点所设计的路线。
移动终端通过登录至动环平台,获取巡检列表、巡检路线以及待检动环数据。登录方式包括通过WEB登录,或者下载用于执行巡检任务的巡检应用程序登录到动环平台,登录信息包括人员编号及密码;移动平台收到并判断登录信息是否与预先存储的人员信息相匹配,匹配则允许登录,不匹配则拒绝登录,管理人员可通过管理后台重新设置密码后再次登录。有些实施例中,移动终端通过有线连接的方式连接到动环平台,获取巡检列表、巡检路线和待检动环数据。
S2 、动环平台接收移动终端发送的巡检结果数据;巡检结果数据根据移动终端接收的待检动环数据与动环设备的现场数据的对比得到。具体地,巡检人员可以根据巡检路线进行巡检;也可按照现场情况自行定义巡检顺序,在巡检前不选择按照巡检路线方式进行巡检即可。巡检人员根据待检动环数据点值与对应的现场动环设备的数据点值进行一一对比,如果数据一致,则将待检动环数据复制为巡检结果;如果数据不一致,则将现场动环设备显示的数据输入为巡检结果数据。然后,将巡检结果数据发送至动环平台,由动环平台接收并进行后续处理。
进一步的,动环平台可预先设置自动刷新时间,如果巡检人员在巡检一个动环设备过程中,只进行了部分数据的抄表巡检,则从最后一个抄表数据操作时间开始计算,停止抄表动作的间隔时间达到了设置的自动刷新时间时,动环平台自动获取移动终端已填写的巡检结果数据,再根据先前移动终端所提交的涉及设备点,判断出未进行抄表的动环设备及对应的设备点,并将此部分未抄表数据的获取指令发送至动环设备;接收并更新先前已获取的原始动环数据,并将对应的待检动环数据发送到移动终端。
完成巡检后,移动终端将巡检结果数据上传至动环平台。具体地,可以巡检完一个设备后,把巡检结果数据上传,再巡检下一个设备;还可以巡检完所有设备后,再上传所有巡检结果数据至动环平台。此处当刷新时可以提交一个设备中已完成抄表的数据。
在本发明的实施例中,该方法还包括:动环平台对移动终端发送的巡检结果数据进行判断,判断巡检结果数据是否异常。如图2所示,具体地,将每台设备正常运行时的参数波动范围设置为数据差异的正常波动范围。动环平台接收移动终端发送的巡检结果数据后,将巡检结果数据与从动环设备获取的原始动环数据进行对比,作差处理得出数据差异值,若数据差异值在正常波动范围内,则判定动环设备上传数据正常;反之,判定动环设备上传数据异常。
动环平台将上述被判定为动环设备上传数据异常的信息通过APP推送给移动终端,或者根据动环平台预先存储的联系方式发送短信至巡检人员的手机。同时,动环平台提供横向对比表供巡检管理人员查看,该横向对比表展示该异常数据的一定时间范围内的横向对比。巡检管理人员可以结合横向对比表的数据对动环设备上传数据异常的原因进行判断,再通知巡检人员针对异常原因进行维修。上述横向对比表的显示方式可以是表格、点状图、曲线图、柱状图等。
巡检人员收到通知后,对上传数据异常的动环设备进行再次巡检,重新上传巡检结果,如果动环平台判断再次上传的数据正常,则将正常结果按上述方式通知巡检人员,巡检人员即完成巡检工作。如果上传数据异常的动环设备仍然保持在数据上传异常状态,巡检人员应在现场找到动环设备异常的原因并进行维修,或者根据巡检管理人员的指示进行维修,并且记录动环设备异常情况并上传到动环平台;动环平台对此次巡检情况进行管理及记录,并生成报表。
进一步的,该方法还包括:动环平台根据巡检结果数据判断巡检人员的尽职情况。如图3所示,具体地,动环平台获取到原始动环数据后随机修改原始动环数据的一些设备点值,得到待检动环数据并发送到移动终端。当动环平台收到移动终端上传的巡检结果数据,则自动对比经随机修改的设备点值所对应的巡检结果数据与对应的原始动环数据,若巡检结果数据与待检动环数据一致,则说明巡检人员只是把待检动环数据的数值复制过来,没有认真去核对设备上显示的设备点值,动环平台对该巡检人员记录巡检不尽职标识;若待检动环数据已被修正,此处已被修正包括巡检结果等于原始动环数据或者与原始动环数据的数据差异值在正常波动范围内,则动环平台判定该巡检人员认真巡检,并记录巡检尽职标识;巡检管理人员可通过查看巡检人员尽职情况报表,了解各巡检组及巡检人员的巡检情况。
进一步的,动环平台后台对动环设备运行情况进行判断,标识异常运行的动环设备。动环平台检测到有巡检不尽职的数据时,则从动环平台记录数据后台搜索出此设备在与巡检时间对应时间是否有跟待检动环设备数值一致的值,如果有,则仍对该巡检人员输出尽职标识。
在巡检过程中,动环平台还可以获取移动终端的位置信息,对巡检人员进行定位。具体地,动环平台预先存储每个机房及其对应的GPRS位置以及IP地址信息,根据移动终端上传的位置信息与所存储的信息匹配,即可判断出巡检人员所在位置,并将定位结果生成巡检情况报表,供巡检管理人员查看。可以理解的,在GPRS信号足够的机房,巡检人员需要在不同地点的多个机房进行巡检,则通过获取移动终端GPRS的地址信息进行定位;如果巡检人员需要巡检的机房位置集中在同一栋机房大楼,机房大楼的GPRS信号不足,则在有WIFI的机房,根据巡检人员的移动终端连接机房WIFI,通过与WIFI连接的局域网的公网出口连接动环平台的服务器,服务器通过机房的公网的IP地址,判断巡检人员是否在机房。有些实施例中,在移动终端上预先设置定时上传位置信息的时间,当移动终端输入第一个巡检结果数据的时间开始计算,当离上次上传定位信息的时间到达预先设置的时间时,移动终端自动将位置信息至动环平台。巡检管理人员可在后台设置不同的定时上传时间。有些实施例中,当巡检管理人员查看正在巡检的人员的位置信息时,发送定位指令至移动终端,移动终端接收信息,并按上述机房内情况发送GPRS位置信息获取IP地址信息。此处移动终端发送信息可以为人工确认上传或者移动终端自动上传。
在本发明的实施例中,该方法还包括通过监控对巡检人员进行定位及操作检查。具体地,动环平台预先设置动环平台中的服务器与监控设备的关联关系,此关联关系可以是一个服务器对应一个监控设备、一个服务器对应多个监控设备、多个服务器对应一个监控设备以及多个服务器对应多个监控设备,此处监控设备包括DVR、NVR或者摄像头。当巡检人员在提交请求获取对应的待检动环数据的指令时,动环平台联动与该巡检设备关联的监控设备,对巡检人员的巡检操作进行图像抓拍或者录制一段视频。如可以通过动环平台发送指令至监控设备,监控设备接收指令后再进行拍摄或录制;或者在动环平台设置定时或长期的拍摄和录制,监控设备将拍摄的图像及视频发送至动环平台存储。巡检管理人员查看巡检情况时,可通过查看图像或者视频检查巡检人员是否按规定对设备进行巡检及巡检操作是否正确的。以上多种巡检人员定位方法,可以根据机房现场环境及条件,组合使用或者单独使用。
图4示出本发明动环设备巡检方法的第二实施例中,包括如下步骤:
步骤P1、动环平台获取动环设备的原始动环数据,以得到待检动环数据。具体地,动环设备根据动环平台的指令采集机房动力环境数据,并将机房动力环境数据上传到动环平台,以下把动环设备采集机房动力环境数据的数据简称为原始动环数据。动环平台将获取到的原始动环数据,作为待检动环数据并保存。
步骤P2、移动终端从动环平台获取待检动环数据。具体地,移动终端通过WEB登录到动环平台;或者通过下载用于执行巡检任务的巡检应用程序,登录到动环平台;动环平台接收并判断登录信息是否与预先存储的信息相匹配,匹配,则允许登录,不匹配,则拒绝登录;登录信息包括人员编号及密码;管理人员可通过管理后台重新设置密码后再次登录;移动终端可以为支持GPRS、WIFI等通讯方式的手机,平板电脑,笔记本电脑等。
可以理解的,在巡检前,巡检管理人员根据巡检人员分组、巡检设备范围、设备点及巡检时间,在后台配置巡检计划,生成巡检列表及巡检路线;任务列表包括巡检设备及设备点;巡检路线为根据所需巡检的设备及设备点所设计的路线。移动终端登录成功后,获取巡检列表并将所需巡检的设备及设备点提交到至环平台,请求获取相应的待检动环数据的指令。动环平台则将该数据获取指令发送至动环设备。有些实施例中,移动终端通过有线连接的方式连接到动环平台,获取巡检列表和待检动环数据。
步骤P3、根据移动终端获取的待检动环数据与动环设备的现场数据的对比结果,在移动终端上输入巡检结果数据,并上传至动环平台。具体地,移动终端接收待检动环数据并显示在巡检界面中,巡检人员可按照巡检路线进行巡检;也可按照现场情况自行定义巡检顺序,在巡检前不选择按照巡检路线方式进行巡检即可。巡检人员根据待检动环数据点值与对应的现场动环设备的数据点值进行一一对比,如果数据一致,则将待检动环数据复制为巡检结果;如果数据不一致,则将现场动环设备显示的数据输入为巡检结果数据。有些实施例中,移动终端可通过有线连接方式连接到动环设备,将动环设备的现场数据移动复制到当前移动终端的巡检界面,即可在移动终端上直观地对比两组数据是否一致,数据不一致时,将动环设备上的数据复制到巡检结果。然后,将巡检结果数据发送至动环平台,由动环平台接收并进行后续处理。
如图5所示,在本实施例中,可通过手动刷新获取未进行抄表的动环设备的最新数据。具体地,在巡检过程中,巡检人员点击移动终端抄表界面上的未抄表数据刷新按钮,移动终端接收手动刷新指令,自动将已完成输入的巡检结果数据上传至动环平台,并向动环平台发送获取未抄表设备点的最新待检动环数据的指令。动环平台接收该指令并根据先前移动终端所提交的设备及设备点,判断出未进行抄表的动环设备及对应的设备点,并将此部分未抄表数据的获取指令发送至动环设备。接收并更新先前已获取的原始动环数据,并将对应的待检动环数据发送到移动终端,移动终端接收并更新为最新的待检动环数据。
进一步的,在本实施例的方法中,移动终端可自动刷新未抄表数据,移动终端自动刷新方式与上述手动刷新方式类似,区别点在于,移动终端预先设置自动刷新时间,如果巡检人员在巡检一个动环设备过程中,只进行了部分数据的抄表巡检,则从最后一个抄表数据操作时间开始计算,停止抄表动作的间隔时间达到了设置的自动刷新时间时,移动终端自动获取并发送自动刷新指令至所述动环平台,以获取最新的待检动环数据。本实施例中,还可以在动环平台设置自动刷新时间,与上述移动终端自动刷新的方式类似,其区别点在于,动环平台预先设置自动刷新时间,如移动终端停止抄表动作的间隔时间达到了设置的自动刷新时间,动环平台自动获取并发送最新的待检动环数据至所述移动终端,再如上述方式完成移动终端上未抄表待检动环数据的更新。此刷新方法可有效保障移动终端获取到的为最新的待检动环数据,自动刷新方法也防止了巡检人员忘记刷新数据导致移动终端上显示的是老的数据的情况。
完成巡检后,移动终端将巡检结果数据上传至动环平台。具体地,可以巡检完一个设备后,把巡检结果数据上传,再巡检下一个设备;还可以巡检完所有设备后,再上传所有巡检结果数据至动环平台。此处当刷新时可以提交一个设备中已完成抄表的数据。
优选地,已上传巡检结果的设备点在巡检列表对应栏中显示已提交标识,并且有可编辑字样,可进行重复巡检及提交。提交未保存数据时,点击提交按钮会有“是否保存并提交”提示,可选择提交或者放弃保存处理。当提交一台设备巡检结果数据或提交全部设备数据时,若有漏检的设备点数据或者漏检的设备,则在点击提交时出现 “未完成巡检”提示字样。
在本发明的实施例中,该方法还包括:动环平台对移动终端发送的巡检结果数据进行判断,判断巡检结果数据是否异常。如图2所示,具体地,将每台设备正常运行时的参数波动范围设置为数据差异的正常波动范围。动环平台接收移动终端发送的巡检结果数据后,将巡检结果数据与从动环设备获取的原始动环数据进行对比,作差处理得出数据差异值,若数据差异值在正常波动范围内,则判定动环设备上传数据正常;反之,判定动环设备上传数据异常。
动环平台将上述被判定为动环设备上传数据异常的信息通过APP推送给移动终端,或者根据动环平台预先存储的联系方式发送短信至巡检人员的手机。同时,动环平台提供横向对比表供巡检管理人员查看,该横向对比表展示该异常数据的一定时间范围内的横向对比。巡检管理人员可以结合横向对比表的数据对动环设备上传数据异常的原因进行判断,再通知巡检人员针对异常原因进行维修。上述横向对比表的显示方式可以是表格、点状图、曲线图、柱状图等。
巡检人员收到通知后,对上传数据异常的动环设备进行再次巡检,重新上传巡检结果,如果动环平台判断再次上传的数据正常,则将正常结果按上述方式通知巡检人员,巡检人员即完成巡检工作。如果上传数据异常的动环设备仍然保持在数据上传异常状态,巡检人员应在现场找到动环设备异常的原因并进行维修,或者根据巡检管理人员的指示进行维修,并且记录动环设备异常情况并上传到动环平台;动环平台对此次巡检情况进行管理及记录,并生成报表。
进一步的,该方法还包括:动环平台根据巡检结果数据判断巡检人员的尽职情况。如图3所示,具体地,动环平台获取到原始动环数据后随机修改原始动环数据的一些设备点值,得到待检动环数据并发送到移动终端。当动环平台收到巡检人员上传的巡检结果数据,则自动对比经随机修改的设备点值所对应的巡检结果数据是否与对应的原始动环数据,若巡检结果数据与待检动环数据一致,则说明巡检人员只是把待检动环数据的数值复制过来,没有认真去核对设备上显示的设备点值,动环平台对该巡检人员记录巡检不尽职标识;若待检动环数据已被修正,此处已被修正包括巡检结果等于原始动环数据或者与原始动环数据的数据差异值在正常波动范围内,则动环平台判定该巡检人员认真巡检,并记录巡检尽职标识;巡检管理人员可通过查看巡检人员尽职情况报表,了解各巡检组及巡检人员的巡检情况。
进一步的,动环平台后台对动环设备运行情况进行判断,标识异常运行的设备。动环平台检测到有巡检不尽职的数据时,则从动环平台记录数据后台搜索出此设备在与巡检时间对应时间是否有跟待检动环设备数值一致的值,如果有,则仍对该巡检人员输出尽职标识。
在巡检过程中,动环平台还可以获取移动终端的位置信息,对巡检人员进行定位。具体地,动环平台预先存储每个机房及其对应的GPRS位置以及IP地址信息,根据移动终端上传的位置信息与所存储的信息匹配,即可判断出巡检人员所在位置,并将定位结果生成巡检情况报表,供巡检管理人员查看。可以理解的,在GPRS信号足够的机房,巡检人员需要在不同地点的多个机房进行巡检,则通过获取移动终端GPRS的地址信息进行定位;如果巡检人员需要巡检的机房位置集中在同一栋机房大楼,机房大楼的GPRS信号不足,则在有WIFI的机房,根据巡检人员的移动终端连接机房WIFI,通过与WIFI连接的局域网的公网出口连接动环平台的服务器,服务器通过机房的公网的IP地址,判断巡检人员是否在机房。有些实施例中,在移动终端上预先设置定时上传位置信息的时间,当移动终端输入第一个巡检结果数据的时间开始计算,当离上次上传定位信息的时间到达预先设置的时间时,移动终端自动将位置信息至动环平台。巡检管理人员可在后台设置不同的定时上传时间。有些实施例中,当巡检管理人员查看正在巡检的人员的位置信息时,发送定位指令至移动终端,移动终端接收信息,并按上述机房内情况发送GPRS位置信息获取IP地址信息。此处移动终端发送信息可以为人工确认上传或者移动终端自动上传。
在本发明的实施例中,该方法还包括通过监控对巡检人员进行定位及操作检查。具体地,动环平台预先设置动环平台中的服务器与监控设备的关联关系,此关联关系可以是一个服务器对应一个监控设备、一个服务器对应多个监控设备、多个服务器对应一个监控设备以及多个服务器对应多个监控设备,此处监控设备包括DVR、NVR或者摄像头。当巡检人员在提交请求获取对应的待检动环数据的指令时,动环平台联动与该巡检设备关联的监控设备,对巡检人员的巡检操作进行图像抓拍或者录制一段视频。如可以通过动环平台发送指令至监控设备,监控设备接收指令后再进行拍摄或录制;或者在动环平台设置定时或长期的拍摄和录制,监控设备将拍摄的图像及视频发送至动环平台存储。巡检管理人员查看巡检情况时,可通过查看图像或者视频检查巡检人员是否按规定对设备进行巡检及巡检操作是否正确的。以上多种巡检人员定位方法,可以根据机房现场环境及条件,组合使用或者单独使用。
图6出示动环平台的原理结构框图,该平台包括:
巡检配置工作站1、与巡检配置工作站1连接的移动端服务器2和与巡检配置工作站1、移动端服务器2连接的核心服务器3。
巡检配置工作站1,用于配置巡检人员组要巡检的设备及设备点,形成巡检列表及巡检路线,巡检列表用以提供给移动终端获取待检动环数据。
移动端服务器2,接收来自移动终端的登录信息、获取巡检列表指令、获取待检动环数据请求指令,通过有线数据传输或者网络把巡检列表、巡检路线以及待检动环数据传至移动终端内;并接收来自移动终端的巡检结果数据、设备维修记录、以及移动终端当前的地理位置信息;本实施例中,巡检管理人员通过巡检配置工作站1预先配置巡检员的巡检任务,并形成巡检列表发送至移动终端,移动终端根据巡检列表发送获取待检动环数据请求指令。
如图7所示,核心服务器3包括资料存储单元31、状态信息分析单元32和信息通知单元33。
资料存储单元31,用于存储巡检列表、巡检路线、原始动环数据与对应的待检动环数据、以及预先存储各机房对应的地理位置信息;原始动环数据为资料存储单元31根据移动终端发送的获取待检动环数据的指令,从动环设备中获取原始动环数据,资料存储单元31对应一台动环设备或者一个资料存储单元31对应多台动环设备;待检动环数据为原始动环数据;在有些实施例中,待检动环数据可以为原始动环数据或者经过随意修改原始动环数据所得到的待检动环数据。资料存储单元31还存储移动终端发送的、巡检结果数据、设备维修记录以及移动终端当前的地理位置信息;本实施例中,资料存储单元31预先存储巡检员的编号及密码,用于与接收到的移动终端的登录信息对比,判断登录身份是否合理;以及存储巡检人员的联系方式,以用于设备异常时通知巡检人员。在有些实施例中,资料存储单元31还用于设置自动刷新时间,自动获取未抄表设备的原始动环数据,并得到相应的待检动环数据。
状态信息分析单元32,与资料存储单元31连接,用于判断移动终端的登录信息是否合理;将接收到的移动终端的当前地理位置信息与预先存储设备所对应的地理位置信息进行对比,以监察巡检员是否到达过巡检任务中指定的设备;还用于预先根据设备正常运行时的波动范围设置数据差异的正常波动范围,对移动终端发送的巡检结果数据与数据存储单元中的原始动环数据进行对比,判断设备上传数据是否异常,并将异常数据生成横向对比表供巡检人员查看。优化地,本实施例中,待检动环数据包括经过数据存储单元随机修改原始动环数据所得到的,状态分析单元通过对比巡检结果数据与对应的由修改所得的待检动环数据是否一致,是则判断此巡检员不尽职巡检。
信息通知单元33,与资料存储单元31、状态信息分析单元32连接,用于通过数据存储单元存储的联系方式将异常设备信息通知巡检人员;或者通过移动端服务器2将异常设备信息发送至移动终端。
该平台还包括视频抓拍服务器,与核心服务器3连接,本实施例中,一个视频抓拍器可对应一个或多个监控设备,图中未示出;视频抓拍服务器用于获取核心服务器3中的设置数据,并发送至监控设备,保存监控设备上传的数据。包括图像或者视频信息。
图8出示动环设备巡检系统的原理结构框图,该系统包括:
移动终端10和动环平台20,移动终端10通过第一通信单元与动环平台20实现通信。移动终端10可以为支持GPRS、WIFI等通讯方式的手机、平板电脑、笔记本电脑;如图9所示,移动终端10包括信息输入单元101、定位单元102和第一通信单元103;巡检员可以下载巡检应用程序到移动终端10里面,以执行动环平台20配置的巡检任务;动环平台20包括巡检配置工作站202、移动端服务器201和核心服务器200。
信息输入单元101,用于输入登录信息、指令以及巡检结果信息;在本实施例中,登录信息包括人员编号及密码;指令包括请求获取巡检列表、巡检路线、待检动环数据指令;巡检结果信息包括巡检结果数据和设备维修记录。优化地,指令还包括刷新指令,刷新指令包括手动刷新指令和自动刷新指令。
定位单元102,用于获取移动终端10当前的地理位置信息;本实施例中,通过获取当前的地理位置信息与预先存储的巡检设备与地理位置信息的关系,判断巡检人员是否在所需巡检的设备位置中进行巡检,地理位置信息包括GPRS位置信息及IP地址信息;通过对巡检人员定位检查可有效防止巡检人员伪造巡检数据。
第一通信单元103,用于把登录信息、指令以及巡检结果信息发送到动环平台20,移动终端10已经预先设置好移动端服务器201的服务器地址,并通过无线网络向移动端服务器201传输数据,无线网络包括GPRS、WIFI等。本实施例中,移动终端1通过GPRS或者WIFI与移动端服务器201连接,并把人员编号及密码、请求获取巡检列表、巡检路线、待检终端数据指令,以及巡检结果数据、设备维修记录和移动终端当前地理位置信息发送到移动端服务器201。
优化地,本实施例中,移动终端10通过第一通信单元103发送刷新指令至动环平台20,以获取最新的未抄表设备及设备点对应的待检动环数据,刷新包括手动刷新指令和自动刷新指令。
巡检配置工作站202,用于配置巡检员组要巡检的设备及设备点,形成巡检列表及巡检路线,巡检列表用以提供给移动终端10获取待检动环数据。
移动端服务器201,接收来自移动终端10的登录信息、获取巡检列表、待检动环数据指令指令请求;通过有线数据传输或者网络把巡检列表、巡检路线以及待检动环数据传至移动终端内;并接收来自移动终端10的巡检结果数据、设备维修记录,以及移动终端10当前的地理位置信息;本实施例中,巡检管理人员通过预先配置巡检员的巡检任务,并形成巡检列表发送至移动终端,移动终端根据巡检列表发送待检动环数据请求指令。
优化地,移动端服务器201还用于接收移动终端发送的刷新指令,并将最新的未抄表数据对应的待检终端数据发送至移动终端10;刷新包括手动刷新指令和自动刷新指令。
核心服务器200包括资料存储单元2001、状态信息分析单元2002、信息通知单元2003。
资料存储单元2001,用于存储巡检列表、巡检路线、原始动环数据与对应的待检动环数据、以及预先存储各机房对应的地理位置信息;原始动环数据为资料存储单元2001根据移动终端发送的获取待检动环数据的指令,从动环设备中获取原始动环数据,资料存储单元2001对应一台动环设备或者一个资料存储单元2001对应多台动环设备;待检动环数据为原始动环数据;在有些实施例中,待检动环数据可以为原始动环数据或者经过随意修改原始动环数据所得到的待检动环数据。资料存储单元2001还存储移动终端发送的、巡检结果数据、设备维修记录以及移动终端当前的地理位置信息;本实施例中,资料存储单元2001预先存储巡检员的编号及密码,用于与接收到的移动终端的登录信息对比,判断登录身份是否合理;以及存储巡检人员的联系方式,以用于设备异常时通知巡检人员。
优化地,资料存储单元2001还用于根据移动终端10发送的刷新指令获取未抄表设备及设备点对应的最新的原始动环数据、及得到对应的最新的待检动环数据;刷新指令包括手动刷新指令和自动刷新指令。本实施例中,资料存储单元2001还用于设置自动刷新时间,自动获取并发送最新的待检动环数据至所述移动终端。
状态信息分析单元2002,与资料存储单元2001连接,用于判断移动终端的登录信息是否合理;将接收到的移动终端的当前地理位置信息与预先存储设备所对应的地理位置信息进行对比,以监察巡检员是否到达过巡检任务中指定的设备;还用于预先根据设备正常运行时的波动范围设置数据差异的正常波动范围,对移动终端发送的巡检结果数据与数据存储单元中的原始动环数据进行对比,判断设备上传数据是否异常,并将异常数据生成横向对比表供巡检人员查看。优化地,本实施例中,待检动环数据包括经过数据存储单元随机修改原始动环数据所得到的,状态分析单元通过对比巡检结果数据与对应的由修改所得的待检动环数据是否一致,是则判断此巡检员不尽职巡检。
信息通知单元2003,与资料存储单元2001、状态信息单元2002连接,用于通过数据存储单元存储的联系方式将异常设备信息通知巡检人员;或者通过移动端服务器201将异常设备信息发送至移动终端。
该平台还包括视频抓拍服务器203,与核心服务器200连接,用于获取核心服务器200中的设置数据,并发送至监控设备,保存监控设备上传的数据。包括图像或者视频信息。
该系统还包括监控设备,与视频抓拍服务器203连接,一个视频抓拍器可对应一个或多个监控设备,图中未示出,用于接收设置数据及指令,根据指令进行录制或抓拍,并把图像及视频信息上传至视频抓拍服务器203。监控设备包括DVR和摄像头或者NVR和摄像头。
工业实用性
本发明实施例提供的动环平台、动环设备巡检系统及动环设备巡检方法,根据移动终端显示的数据与现场设备的数据的对比结果,在移动终端填写及上传巡检结果,保证了巡检结果的时效性及提高了巡检效率,通过利用平台对巡检结果进行判断,可及时发现并处理设备的异常情况,以及对巡检人员的巡检操作进行监控检查,对巡检结果的准确性提高保障。
序列表自由内容
需要说明的是,在本发明中,上述所提到的“设备”、“动环设备”、“现场设备”、“现场动环设备”同义,皆表示在机房中所需巡检的设备;为了更好地描述该动环平台以及巡检系统,可称该平台或系统中所需巡检的所有设备为动环设备。
可以理解的,以上实施例仅表达了本发明的优选实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制;应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,可以对上述技术特点进行自由组合,还可以做出若干变形和改进,这些都属于本发明的保护范围;因此,凡跟本发明权利要求范围所做的等同变换与修饰,均应属于本发明权利要求的涵盖范围。

Claims (23)

  1. 一种动环设备巡检方法,其特征在于,包括以下步骤:
    S1、动环平台获取动环设备的原始动环数据,以得到待检动环数据并发送至移动终端;
    S2、所述动环平台接收所述移动终端发送的巡检结果数据;所述巡检结果数据根据所述移动终端接收的所述待检动环数据与所述动环设备的现场数据的对比结果得到。
  2. 根据权利要求1所述的动环设备巡检方法,其特征在于,在所述步骤S2中,包括:
    若所述待检动环数据与所述动环设备的现场数据一致,则所述移动终端将所述待检动环数据作为所述巡检结果数据发送;
    若所述待检动环数据与所述动环设备的现场数据不一致,则所述移动终端将所述动环设备的现场数据作为所述巡检结果数据发送。
  3. 根据权利要求1所述的动环设备巡检方法,其特征在于,所述步骤S2之后进一步包括S3、所述动环平台判断所述移动终端发送的巡检结果数据是否异常;所述步骤S3包括:
    S3-1、设置数据差异的正常波动范围;
    S3-2、所述动环平台根据所述移动终端发送的所述巡检结果数据与所述原始动环数据进行对比,求出数据差异;
    S3-3、若所述数据差异在正常波动范围内,则判定为正常;反之,判定为异常;
    S3-4、所述动环平台将所述异常结果发出,并通知巡检人员。
  4. 根据所述权利要求1所述的动环设备巡检方法,其特征在于,所述待检动环数据为所述动环平台随机修改所述原始动环数据所得到的数据,所述方法还包括:
    所述动环平台将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
    若所述巡检结果数据与所述待检动环数据一致,则输出巡检不尽职标识。
  5. 根据权利要求1所述的动环设备巡检方法,其特征在于,所述方法还包括:
    所述动环平台获取所述移动终端的地址信息,对所述移动终端进行定位,所述地址信息包括GPRS坐标信息以及机房公网的IP地址信息。
  6. 根据权利要求1-5任一项所述的动环设备巡检方法,其特征在于,所述方法还包括:
    所述动环平台发送拍摄指令至监控设备,所述监控设备接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
  7. 一种动环设备巡检方法,其特征在于,包括以下步骤:
    P1、动环平台获取动环设备的原始动环数据,以得到待检动环数据;
    P2、移动终端从所述动环平台获取所述待检动环数据;
    P3、根据所述移动终端获取的所述待检动环数据与所述动环设备的现场数据的对比结果,在所述移动终端上输入巡检结果数据,并上传至所述动环平台。
  8. 根据权利要求7所述的动环设备巡检方法,其特征在于,在所述步骤P2中,包括手动刷新待检动环数据,包括以下步骤:
    P2-1、所述移动终端接收手动刷新指令,并向所述动环平台请求获取最新的待检动环数据;
    P2-2、所述动环平台根据所述请求向所述移动终端发送所述最新的待检动环数据;
    P2-3、所述移动终端接收并更新所述待检动环数据为所述最新的待检动环数据。
  9. 根据权利要求7所述的动环设备巡检方法,其特征在于,在所述步骤P2中,还包括自动刷新待检动环数据,方法包括:
    所述移动终端预先设置自动刷新时间,当停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述移动终端自动获取并发送自动刷新指令至所述动环平台,以获取最新的待检动环数据;
    或者所述动环平台预先设置自动刷新时间,当所述移动终端停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述动环平台自动获取并发送最新的待检动环数据至所述移动终端。
  10. 根据权利要求7所述的动环设备巡检方法,其特征在于,在所述步骤P3中,包括:
    若所述待检动环数据与所述动环设备的现场数据一致,则所述移动终端将所述待检动环数据设置为所述巡检结果数据发送;
    若所述待检动环数据与所述动环设备的现场数据不一致,则所述移动终端将所述动环设备的现场数据设置为所述巡检结果数据发送。
  11. 根据所述权利要求7所述的动环设备巡检方法,其特征在于,所述待检动环数据为所述动环平台随机修改所述原始动环数据所得到的数据,所述方法还包括:
    所述动环平台将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
    若所述巡检结果数据与所述待检动环数据一致,则输出巡检不尽职标识。
  12. 根据权利要求7-11任一项所述的动环设备巡检方法,其特征在于,所述方法还包括:
    所述动环平台发送拍摄指令至监控设备,所述监控设备接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
  13. 一种动环平台,其特征在于,包括:
    核心服务器,包括资料存储单元,用于获取动环设备的原始动环数据,以得到待检动环数据;
    移动端服务器,与所述核心服务器连接,用于与移动终端连接通讯,将所述待检动环数据发送至所述移动终端,并接收所述移动终端发送的巡检结果数据;
    所述巡检结果数据根据所述移动终端接收的所述待检动环数据与所述动环设备的现场数据的对比结果得到。
  14. 根据权利要求13所述的动环平台,其特征在于,所述核心服务器还包括:
    状态信息分析单元,与所述资料存储单元连接,用于判断所述移动终端发送的巡检结果数据是否异常;
    信息通知单元,与所述资料存储单元、状态信息分析单元连接,用于将所述异常结果发出,并通知巡检人员。
  15. 根据权利要求14所述的动环平台,其特征在于,所述待检动环数据为所述资料存储单元随机修改所述原始动环数据所得到的数据,
    所述状态信息分析单元还用于将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
    若所述巡检结果数据与所述待检动环数据一致,所述状态信息分析单元则输出巡检不尽职标识。
  16. 根据权利要求13所述的动环平台,其特征在于,
    所述移动端服务器还用于获取所述移动终端的地址信息,对所述移动终端进行定位,所述地址信息包括GPRS坐标信息以及机房公网的IP地址信息。
  17. 根据权利要求13-16任一项所述的动环平台,其特征在于,所述动环平台还包括:
    视频抓拍服务器,与所述核心服务器连接,用于发送拍摄指令至监控设备;
    所述监控设备与所述视频抓拍服务器连接,用于接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
  18. 一种动环设备巡检系统,其特征在于,包括:
    动环平台,用于获取动环设备的原始动环数据,以得到待检动环数据;
    移动终端,用于从所述动环平台获取所述待检动环数据,以及根据所述移动终端获取的所述待检动环数据与所述动环设备的现场数据的对比结果,输入巡检结果数据,并上传至所述动环平台。
  19. 根据权利要求18所述的动环设备巡检系统,其特征在于,所述动环平台包括:
    核心服务器,包括资料存储单元,用于获取动环设备的原始动环数据,以得到待检动环数据;
    移动端服务器,与所述核心服务器连接,用于与移动终端连接通讯,将所述待检动环数据发送至所述移动终端,并接收所述移动终端发送的巡检结果数据。
  20. 根据权利要求19所述的动环设备巡检系统,动环设备巡检方法,其特征在于,
    所述移动终端还用于接收手动刷新指令,并向所述资料存储单元请求获取最新的待检动环数据;
    所述资料存储单元还用于接收所述请求,并根据所述请求向所述移动终端发送最新的待检动环数据;
    所述移动终端接收并更新所述待检动环数据为所述最新的待检动环数据。
  21. 根据权利要求19所述的动环设备巡检系统,其特征在于,
    所述移动终端还用于预先设置自动刷新时间,当停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述移动终端自动获取并发送自动刷新指令至所述动环平台,以获取最新的待检动环数据;
    或者所述资料存储单元还用于预先设置自动刷新时间,当所述移动终端停止抄表动作的间隔时间达到所述预先设置的自动刷新时间,所述资料存储单元自动获取并发送最新的待检动环数据至所述移动终端。
  22. 根据权利要求19所述的动环设备巡检系统,其特征在于,所述待检动环数据为所述资料存储单元随机修改所述原始动环数据所得到的数据,所述核心服务器还包括:
    状态信息分析单元,用于将所述巡检结果数据与所述待检动环数据对应的所述原始动环数据进行对比;
    若所述巡检结果数据与所述待检动环数据一致,所述状态信息分析单元输出巡检不尽职标识。
  23. 根据权利要求18-22任一项所述的动环设备巡检系统,其特征在于,所述系统还包括:
    视频抓拍服务器,与所述核心服务器连接,用于发送拍摄指令至监控设备;
    所述监控设备与所述视频抓拍服务器连接,用于接收并根据所述拍摄指令对巡检人员的巡检操作进行拍摄,并上传拍摄数据至所述动环平台,所述拍摄数据包括图像及视频。
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