WO2019174009A1 - Machine room management method and dynamic environment system - Google Patents

Machine room management method and dynamic environment system Download PDF

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Publication number
WO2019174009A1
WO2019174009A1 PCT/CN2018/079189 CN2018079189W WO2019174009A1 WO 2019174009 A1 WO2019174009 A1 WO 2019174009A1 CN 2018079189 W CN2018079189 W CN 2018079189W WO 2019174009 A1 WO2019174009 A1 WO 2019174009A1
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WO
WIPO (PCT)
Prior art keywords
data
collection device
mobile terminal
server
target device
Prior art date
Application number
PCT/CN2018/079189
Other languages
French (fr)
Chinese (zh)
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/CN2018/079189 priority Critical patent/WO2019174009A1/en
Priority to CN201880002916.7A priority patent/CN109690570B/en
Publication of WO2019174009A1 publication Critical patent/WO2019174009A1/en

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/20Scenes; Scene-specific elements in augmented reality scenes
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/60Type of objects
    • G06V20/62Text, e.g. of license plates, overlay texts or captions on TV images
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • G06V30/14Image acquisition
    • G06V30/142Image acquisition using hand-held instruments; Constructional details of the instruments
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • 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]

Definitions

  • the present invention relates to the field of power environment monitoring application technologies, and more particularly to a computer room management method and a moving ring system.
  • the traditional power environment monitoring equipment room inspection you need to use the paper equipment inspection form, manually record the inspection results, and then manually enter the system. In this way, the timeliness of the inspection data cannot be guaranteed, and it is difficult to find out the problems of the equipment data in time; manually filling in the inspection results, the work efficiency is very low, and the data volume is also very easy to produce writing errors;
  • the advanced technology is to use the mobile device to input on-site. It is necessary to perform the operation on the device one by one to query the device point value. If the device point value is more, it needs to page through multiple times, and then fill in the device number and device point value one by one to the mobile device. On the form, then submit it to the server backend. Due to the large number of equipment in the equipment room, the staff should also remember which equipment has submitted the equipment point value, which is inefficient.
  • the device or transmission line may be subject to external interference, or other factors may cause data errors.
  • the current technical means cannot timely determine where the data error occurs.
  • manual data comparison has the following defects: the labor intensity of the staff is large, which is not conducive to vision health; the staff may not carefully check whether the data is consistent due to visual fatigue or responsible reasons, resulting in abnormal data not being discovered.
  • the device When the device is running abnormally, it may emit a sound different from the normal operation. If the sound is judged by the staff's hearing, it is necessary to remember the sound of each device during normal operation to determine whether the device is abnormal. For the staff, It is not easy to find anomalies.
  • the technical problem to be solved by the present invention is to provide a computer room management method and a dynamic ring system for the defects of the prior art that the above-mentioned data cannot be judged to be in error during transmission and processing.
  • the technical solution adopted by the present invention to solve the technical problem thereof is: constructing a computer room management method, comprising the following steps:
  • the mobile terminal acquires the first data of the collection device from the server; S2, the mobile terminal acquires the second data of the collection device from the site; S3, the mobile terminal acquires the target device corresponding to the collection device from the site The fourth data; S4, comparing the first data, the second data, and the fourth data, determining a link in which the data is erroneous.
  • the step S1 includes the following steps: S1-1, the mobile terminal collects the identifier or location information of the collection device and/or the target device, and sends the identifier to the server; S1-2, the mobile terminal The server acquires first data of the collection device corresponding to the identifier or location sent to the server.
  • the method includes: the collecting device continuously collects data information of the target device, and sends the data information to the server; and the mobile terminal acquires the first data of the collecting device from the server.
  • the method further includes: acquiring spatial information of the equipment room, the collection device, and the target device, sending the information to the server to establish an AR space model, modeling the collection device and the target device, and establishing a relationship between the collection device and the target device. connection relation.
  • the method further includes: the mobile terminal acquiring the identifier or location information of the collection device and/or the target device corresponding to the collection device, and sending the identifier to the server; the mobile terminal receiving the server back Transmitting the AR space model and association relationship corresponding to the collection device and/or the corresponding target device; the mobile terminal receiving the AR space model and the association relationship, and calculating the collection device corresponding to the association relationship And the target device needs to be displayed on the 3D augmented reality or mixed reality interface and displayed on the augmented reality or mixed reality interface.
  • step S2 the mobile terminal and the collecting device perform a communication connection by using a radio frequency identification technology to acquire second data of the collecting device;
  • the mobile terminal further performs OCR identification on the screen information on the collection device, and acquires the third data of the collection device displayed on the screen; if the second data is The third data is that the processing device itself has an error in processing.
  • the target device that includes the mobile terminal and the collection device establishes a communication connection by using a radio frequency identification technology, and acquires fourth data of the target device corresponding to the collection device.
  • step S4 if the first data includes the second data, the transmission or processing link between the collection device and the server is in error; if the second data is In the case of four data, the transmission or processing link between the target device corresponding to the collection device and the collection device is in error.
  • the method further includes: continuously collecting sound data of the target device in a normal running state, and sending the data to a server to establish a sound database; in the step S3, the fourth data includes a sound of the target device running Data; the mobile terminal determines whether the sound data of the target device in the fourth data is abnormal according to the comparison with the target device sound in the sound database, and displays device information determined to be a sound abnormal state.
  • the present invention also provides a dynamic ring system, including a mobile terminal, the mobile terminal includes: a first communication unit, configured to acquire device data information; and a data processing unit configured to compare the device data information to determine that the device data is in error
  • the device data information includes first data of the collection device acquired from the server, second data of the collection device acquired from the site, and fourth data of the target device corresponding to the collection device acquired from the site.
  • the mobile terminal further includes an identifier collection unit, configured to collect the identifier of the collection device and/or the target device, and a positioning unit, configured to collect location information of the collection device and/or the target device;
  • a communication unit transmits the identification or location information of the collection device and/or the target device to the server.
  • the first communication unit is further configured to acquire spatial information of the equipment room, the collection device, and the target device, and send the information to the server; the system further includes the server, where the server includes a second communication unit, configured to receive from the server. a spatial information of the first communication unit; a modeling unit, configured to establish an AR space model according to the spatial information, and configured to model the collection device and the target device, and establish an association between the collection device and the target device a second storage unit for storing the AR space model and an association relationship.
  • the data processing unit is further configured to calculate a location that the collection device and the target device corresponding to the association relationship need to display on a 3D augmented reality or a mixed reality interface;
  • the mobile terminal further includes a display unit, configured to The collection device and the target device corresponding to the association relationship are displayed on an augmented reality or mixed reality interface.
  • the second communication unit receives the sound data of the target device in a normal running state, and establishes a sound database by using the modeling unit, and stores the sound database in the second storage unit; the fourth data The sound processing data of the target device is further included; the data processing unit is further configured to determine, according to a comparison with the target device sound in the sound database, whether the sound of the target device in the fourth data is abnormal, and is displayed by the display unit Device information that is judged to be in an abnormal state of sound.
  • the patrol mode of obtaining the first data of the collecting device from the server by the mobile terminal, the second data of the collecting device from the field, and the fourth data of the target device corresponding to the collecting device are obtained from the site, thereby ensuring the aging of the patrol data.
  • the device that has completed the inspection can be marked, and the inspection personnel are not required to manually record, thereby improving work efficiency and effectively preventing leakage detection.
  • the abnormal situation of the device can be found in time.
  • FIG. 1 is a flow chart of a patrol inspection step of a first embodiment of a computer room management method according to the present invention
  • FIG. 2 is a schematic structural diagram of a mobile terminal system mobile terminal of the present invention.
  • FIG. 3 is a schematic structural diagram of a dynamic ring system server of the present invention.
  • the first embodiment of the computer room management method of the present invention as shown in FIG. 1 includes the following steps:
  • the mobile terminal acquires the first data of the collection device from the server; specifically, the mobile terminal logs in to the server through the WEB login or downloads the patrol application for performing the patrol task, and acquires the first data of the collection device from the server;
  • the mobile terminal may be a mobile device or a wearable device that supports communication.
  • the mobile terminal has pre-configured the server address of the server and interacts with the server through wireless communication.
  • the communication server serves as a communication bridge between the mobile terminal and the server, and communicates with the mobile terminal. When the communication server is not used, the mobile terminal directly communicates with the server.
  • the step S1 includes the following steps: S1-1: The mobile terminal collects the identifier or location information of the collection device and/or the target device, and sends the identifier to the server; specifically, before the inspection, the collection device and The target device performs the marking, and the marking method includes: setting the image, setting the two-dimensional code, or marking the edge of the device with the device sensitive manner as the device frame identifier, and the identifier may be a barcode, a two-dimensional code or an RFID electronic label; The information such as the name, number, identifier, and location information of the collection device and the target device are stored in the server in advance; when the worker performs the inspection, the mobile terminal collects the identifier into the inspection application, including through the mobile terminal.
  • the camera extracts the image by the image, and the inspection application obtains the identification information by decoding the image; or the positioning device of the mobile terminal locates the collection device and/or the target device, and acquires the location information of the current inspection device, and The obtained identifier or positioning information is sent to the server; wherein The mobile terminal may pre-store the identification and location information corresponding to the collection device and the target device in the equipment room. When scanning or identifying by the camera, the mobile terminal determines whether the scanned logo or location information is related to the pre-stored identification or location information.
  • Matching is sent to the server, if it is not matched, it is re-scanned, and the scanning or positioning is accurate, and then sent to the server; in some embodiments, the mobile terminal only scans or locates the device identifier, and sends it to the server, and the server matches it by itself. .
  • Step S1-2 The mobile terminal acquires, from the server, first data of the collection device corresponding to the identifier or location information sent to the server; specifically, the staff pre-sets the field collection device and the target device and correspondingly
  • the name, the number and the identifier, the location information, and the like are stored in the server in advance; and all the data of the collection device is pre-stored, and when the identifier or the location information sent by the mobile terminal is received, the collection device corresponding to the identifier or the location information is matched.
  • Data the mobile terminal acquires the data of the collection device that is matched by the server, and serves as the first data of the collection device.
  • the server receives and collects according to the identifier or location information of the collection device and/or the target device sent by the mobile terminal.
  • the data information of the device is stored and acquired by the mobile terminal as the first data of the collection device.
  • the management personnel pre-sets the association relationship or the correspondence relationship between the collection device and the target device and stores it in the server, when the mobile terminal
  • the sent identifier or location information is correct
  • the device is the target device, the server itself matched the corresponding acquisition device, and supplies the mobile terminal acquires information corresponding to the data acquisition device.
  • the method further includes: modeling the collection device and the target device, and establishing an association relationship between the collection device and the target device; specifically, the management personnel sets the association information of the collection device and the target device on the server; wherein, according to the target device Setting the associated information in the manner of running characteristics, type, layout in the equipment room, and management mode of the management personnel; the associated information may be one or more target devices corresponding to one collection device, that is, one acquisition device is responsible for collecting one Or data information of multiple target devices; the server performs modeling according to the above-mentioned associated information, and obtains an association relationship between the collection device and the target device and stores it in a model database of the server for use in the inspection.
  • the method further includes: the collecting device continuously collects the data information of the target device, and sends the data information to the server; the mobile terminal acquires the first data of the collecting device from the server; specifically, the collecting device is configured according to the foregoing The association relationship acquires the data information of the collection device.
  • the collection device can obtain the data information of one or more parameters of the corresponding target device, and the collection device sends the acquired data information to the server, the server. It is also possible to set one or more parameter data information corresponding to the data information sent by the receiving device; it should be noted that the server pre-establishes the data information library, receives and stores the data information in the corresponding data information database.
  • the mobile terminal can obtain one or more parameter data information corresponding to one or more target devices corresponding to the collection device in the server by setting or manually inputting the corresponding acquisition instruction; in this embodiment, the work is performed. Personnel can obtain multiple units of the same type in the collection device.
  • the same parameter item of the device checks the running condition of the target device and the fluctuation of the operating parameters.
  • the server compares the data information of the target device of the same type to the data sent by the collecting device, and stores the data in comparison. In the database, it can be used to supply the staff to refer to the fluctuation range and operation of the target device data.
  • the data information is abnormal, it can also be used to trace and analyze the abnormal cause; wherein the above data information includes the historical point value and history of the target device. Status and history alarms.
  • the method further includes acquiring the space information of the equipment room, the collection device, and the target device, and sending the information to the server to establish an AR space model.
  • the mobile terminal uses the camera to access the equipment room and the collection device.
  • the spatial layout of the target device is imaged, and the obtained image information is sent to the server; in some embodiments, the plane relationship between the equipment room, the collection device, and the target device is manually drawn, or the plane relationship between the equipment room, the collection device, and the target device is drawn through a computer.
  • a three-dimensional relationship to obtain a layout model in the machine room in some embodiments, by modeling the space of the equipment room, using a functional relationship to represent the spatial information of the equipment room, the collection device, and the target device, and transmitting the information to the server; the server receives and according to the above
  • the space information of the equipment room, the collection device, and the target device establishes the AR space model of the equipment room and is stored in the model database of the server for the mobile terminal to obtain for use during the inspection.
  • the patrol can be performed on the 3D augmented reality or mixed reality interface of the mobile terminal;
  • augmented reality Augmented
  • AR also known as hybrid reality
  • AR applies virtual information to the real world through computer technology.
  • the real environment and virtual objects are superimposed in the same picture or space in real time;
  • mixed reality Mix Reality (MR), which includes both augmented reality and enhanced virtual, refers to a new visual environment created by the combination of real and virtual worlds. In the new visual environment, physical and digital objects coexist and interact in real time.
  • the method includes: the mobile terminal acquiring the identifier or location information of the target device corresponding to the collection device and/or the collection device, and sending the identifier to the server; specifically, the manner in which the method sends the identifier or the location information to the server.
  • the method for the mobile terminal to send the identifier or the location information to the server to obtain the first data of the collection device is similar.
  • the identifier and the location information are sent to the server, in order to obtain the AR space model corresponding to the identifier or the location information in the server. connection relation.
  • the mobile terminal receives an AR space model and an association relationship corresponding to the collection device and/or the corresponding target device that is returned by the server; specifically, the server stores a name, a number, and a location corresponding to the collection device and the target device.
  • the mobile terminal needs to obtain data, it needs to indicate which data needs to be obtained.
  • the staff uses the mobile terminal to perform the inspection, the first time to send and only send the flag and the location information to the server, and the specified acquisition is not performed.
  • the server matches the AR space model and the association relationship corresponding to the received identifier or location information, and the patrol is performed by displaying the 3D enhanced display or the mixed display interface on the mobile terminal by default; Is the identity or location information of the target device, the server first The collection device corresponding to the target device, and the association relationship between the target device and the collection device, and the location information of the device AR space model corresponding to the association relationship in the AR model of the equipment room are obtained by the mobile terminal, and the mobile terminal receives and The display is prepared on the interface; wherein the association includes all the target devices corresponding to the collection and the corresponding device.
  • the mobile terminal receives the AR space model and the association relationship, and calculates a location that the collection device and the target device corresponding to the association relationship need to display on a 3D augmented reality or a mixed reality interface, and displays the image in an augmented reality or mixed reality interface.
  • the mobile terminal receives the AR model and the association relationship corresponding to the identifier or the location information that is matched by the server, and the mobile terminal superimposes the model in the camera with the received AR space model, and calculates the collection corresponding to the obtained association relationship.
  • the model of the device and the target device needs to be displayed on the 3D augmented reality or mixed reality interface of the mobile terminal, and displayed on the corresponding interface of the 3D augmented reality or mixed reality interface, and the staff in the inspection can pass through the mobile terminal and the machine room.
  • the device and the server interact; wherein the model in the camera can be obtained by the mobile terminal calculating the position and angle of the camera in real time; it should be noted that the mobile terminal highlights the device to be inspected in the AR space model of the equipment room, so that Display devices with associated relationships in the interface
  • the display of the on-site device on the interface is different, and when the inspection of the current inspection device is completed, the display of the corresponding device in the 3D interface is marked with a patrol flag to prevent a missed detection;
  • the mode and completed patrol identification include common distinctions such as color distinction, brightness discrimination, and size distinction.
  • the staff enhances the display or the interface of the mixed reality on the mobile terminal 3D through the AR model constructed above, and completes interaction with the field device and the server; specifically, the collection device that the worker recognizes the mobile terminal.
  • the identifier of the target device is sent to the server, and the server receives and sends the data information of the matched collection device to the mobile terminal; where, when the worker sends the identifier of the target device, the server matches the association according to the association relationship.
  • the corresponding collecting device sends the data information of the collecting device to the mobile terminal, and the mobile terminal obtains the first data of the collecting device from the server.
  • the 3D augmented reality or the mixed reality mode is used. During the inspection, the way the staff interacts with the server can be through other common interaction methods such as 3D gesture interaction, voice interaction, traditional mouse and keyboard interaction, and touch screen interaction.
  • the mobile terminal acquires second data of the collection device from the site.
  • the mobile terminal establishes a communication connection with the collection device through the radio frequency identification technology, and acquires the second data of the collection device.
  • the mobile terminal acquires fourth data of the target device corresponding to the field collection device from the site. Specifically, the target device corresponding to the collection device of the mobile terminal establishes a communication connection by using a radio frequency identification technology, and acquires the collection device. The fourth data of the corresponding target device.
  • the RFID device is installed on the collection device and the target device at the inspection site to complete the tag of the device;
  • RFID is the abbreviation of Radio Frequency Identification, that is, radio frequency identification, which is a mature non-contact automatic identification technology, which passes The radio frequency signal automatically recognizes the target object and acquires relevant data, and the identification work does not require manual intervention.
  • the radio frequency (RFID) technology has the waterproof, antimagnetic, high temperature, and large read distance that the conventional label such as the barcode does not have.
  • the data on the label can be encrypted, the storage data capacity is larger, and the storage information can be changed freely.
  • the radio frequency (RFID) tag can record various related information about the target device; when the staff conducts inspection, carry the mobile terminal to If the collection device or target that needs to be inspected is scanned, the RFID electronic tag on the collection device or the target device can be communicated to obtain the data information of the corresponding collection device and/or the target device; in this embodiment, at the site RFID electronic tag installed through the mobile terminal and the acquisition device The communication is performed to obtain the second data of the collection device; the mobile terminal communicates with the RFID electronic tag installed on the target device to obtain the second data of the collection device; in some embodiments, the device may have some common devices in the equipment room.
  • RFID radio frequency
  • the mobile terminal acquires The data information of these devices that are bound to the same RFID electronic tag; the efficiency of the inspection is improved.
  • the radio frequency identification technologies used by the mobile terminal to acquire the second data and the fourth data include short-range communication (NFC), wireless local area network (WIFI), Bluetooth, ZigBee, and ultra-wideband; in some embodiments, the above-mentioned electronic
  • the radio frequency tag card can be an NFC card, and multiple NFC cards are bound to the device to be inspected.
  • the staff needs to communicate with each NFC card through the mobile terminal, so that the check-in statistics of the inspecting personnel can be performed in this manner. Click the NFC card to confirm on-site, and also remind the inspection personnel to avoid the missed inspection; this is because the characteristics of NFC must go to the place where the NFC card is placed to be brushed.
  • NFC is the existing technology, not done here. More description.
  • the method for acquiring data information of the collection device further includes: the mobile terminal performing OCR identification on the screen information on the collection device, and acquiring third data of the collection device displayed on the screen.
  • OCR technology is an abbreviation for optical character recognition (Optical Character Recognition) converts the text of various bills, newspapers, books, manuscripts and other printed materials into image information through optical input such as scanning, and then uses image recognition technology to convert image information into computer input technology that can be used;
  • the mobile terminal scans the screen information on the collection device through the camera, and acquires the third data of the collection device displayed on the screen through OCR recognition.
  • the mobile terminal acquires data of the collection device from the server, and obtains data information of the collection device and the target device in the field, Comparing the data information, judging whether the data information is inconsistent through the comparison of the two data information, and determining the data error link by the result of being judged as the data inconsistency; in this embodiment, when only the data is used
  • the mobile terminal determines whether the transmission between the collection device and the server is determined when the first data, the second data, or the first data and the third data are The processing link is faulty; when the second data is the fourth data, it is determined that the transmission or processing link between the target device and the collection device is in error; optimally, the data information of the collection device acquired by the two methods is also optimized in this embodiment.
  • Data or second data third data At this time, it is possible to check whether the collection device is detected abnormally by the background; judge in the same manner as above; in some embodiments, To find the error data more accurately, that is, to improve the efficiency of the comparison data, first check the collection device itself, compare the data information obtained by the two methods, and if the data information is inconsistent, the staff immediately collects the data.
  • the device performs maintenance processing; if it is determined that the data information is consistent, it continues to compare with the data information of the server and the target device to check whether there is an error condition in the transmission link; in this embodiment, the data of the collection device acquired by the mobile terminal from the server, the site The comparison between the acquired collection device data and the data of the target device acquired in the field can timely discover the error link of the data and correct the data in time; wherein, when the mobile terminal acquires the data using the OCR recognition technology and compares the data Since only the data of the current page can be obtained, if the data information item of the collection device needs to be displayed on the screen for more than one page, the staff can send the page turning command and the current collection device identifier to the server, The server passes the page turning command For the corresponding collection device, the page turning action is completed; wherein the manner in which the staff sends the page turning command and the identifier includes 3D gesture interaction, voice interaction, traditional mouse-and-mouse interaction, touch screen interaction, etc., wherein the command form of the page
  • the mobile terminal After the mobile terminal completes the comparison of the data of the collection device acquired from the server, the data collected from the field, and the data information of the target device, the result of the comparison is displayed on the 3D augmented reality or mixed reality interface, and the staff will The comparison result is sent to the server for storage and is for inspection by the inspection management personnel; when it is judged that the data is inconsistent, the staff can judge and find out the data occurrence according to the result of the comparison, and correct the data of the problem.
  • the method further includes: continuously collecting sound information of the target device in a normal running state, and sending the sound information to a server to establish a sound database; in the step S3, the fourth data includes a target device running a sound data; the mobile terminal determines whether the sound of the target device in the fourth data is abnormal according to a comparison with a target device sound in the sound library, and displays device information determined to be a sound abnormal state; specifically The target device continuously collects the running sound of the target device through the collecting device under normal operating conditions, and obtains the sound information in the normal fluctuation range under the normal running state of the target device; here, the sound in the normal state running state is continuously collected.
  • the continuously collected sound data includes the sound that fluctuates within the normal range and is sent to the server; the server pre-establishes the sound database, receives and stores the sound information in the sound database.
  • the inspection the demand for inspection is used;
  • the mobile terminal obtains the fourth data of the target device corresponding to the collection device, the mobile terminal acquires the sound information while acquiring the data information, and obtains the data information of the collection device from the server, and acquires the data remotely from the server.
  • the sound is compared, because the sound obtained from the server includes a fluctuating sound, so if there is a significant difference in the sound information acquired by the comparison field, the mobile terminal determines that the target device has an abnormality; in this embodiment, the target The sound information of the device is acquired by the collecting device. Therefore, when the sound is obviously abnormal, the model of the collecting device corresponding to the sound abnormality in the 3D model on the screen of the mobile terminal displays an abnormal flag, wherein the abnormal state can be displayed. Displayed by color, such as red, or by identification, such as cross-display.
  • FIGS. 2 and 3 respectively show a schematic structural block diagram of a mobile terminal and a server of a dynamic ring system, the system includes a mobile terminal 10 and a server 20, and the mobile terminal 10 logs in through the WEB or downloads a patrol application for performing a patrol task. Go to the server 20 and complete the inspection.
  • the mobile terminal 10 includes an identification acquisition unit 101, a positioning unit 102, a first communication unit 103, a first storage unit 104, an information input unit 105, a data processing unit 106, and a display unit 107.
  • the identifier collection unit 101 is configured to collect the identifier of the collection device or the target device in the field.
  • the method for identifying the collection device or the target device includes: setting an image, setting a two-dimensional code, or marking the device edge with a device sensitive manner.
  • the identifier may be a barcode, a two-dimensional code or an RFID electronic label; at the inspection device or the site, the identifier is collected by the mobile terminal 10 into the inspection application, including the camera through the mobile terminal 10.
  • the function performs image extraction on the identifier, and the patrol application program obtains the identification information by decoding the image.
  • the method further includes scanning the screen information of the collection device by using a camera, and performing OCR recognition (Optical Character Recognition). Obtain the third data.
  • the positioning unit 102 is configured to collect location information of the collection device or the target device in the field by using a positioning function of the mobile terminal.
  • the first communication unit 103 is configured to perform communication interaction with the server.
  • the mobile terminal may be a mobile device or a wearable device that supports communication.
  • the mobile terminal has pre-configured the server address of the server and interacts with the server through wireless communication.
  • the communication server serves as a communication bridge between the mobile terminal and the server, and communicates with the mobile terminal.
  • the mobile terminal directly communicates with the server; in this embodiment, The first communication unit sends the identification or location information of the collection device and/or the target device, the spatial layout of the equipment room, the collection device, and the target device to the server by capturing the obtained image, that is, the spatial information, and receiving the identifier sent by the server.
  • Fourth data It includes information data and sound information at runtime, and compares the sounds of the corresponding target devices in the sound database from the server.
  • the first storage unit 104 is configured to store the name and number of the collection device and the target device, and corresponding identifier and location information; store the first data of the acquisition device from the server, the second data obtained from the field collection device, and the third
  • the data and the fourth data of the target device corresponding to the collection device obtained from the site in this embodiment, the first storage unit 104 may also not store the first data, the second data, the third data, and the fourth data.
  • the processing is performed by the first communication unit 103 and directly compared by the data processing unit.
  • the information input unit 105 is configured to correct the data through the information input unit 105 when the corresponding acquisition instruction is set or manually input; when the comparison result appears to be determined as a data transmission error.
  • the data processing unit 106 is configured to superimpose the model in the camera with the received AR space model, and calculate that the model of the collection device and the target device corresponding to the obtained association relationship needs to be displayed on the 3D augmented reality or mixed reality interface of the mobile terminal. Position; compare the first data, the second data, the third data, and the fourth data, determine the output error link, and display the comparison result on the interface; and compare the scene to obtain the sound information of the target device operation and the slave sound database The sound of the corresponding target device obtained in the medium is determined whether the target device is in an abnormal state.
  • the display unit 107 is configured to display a 3D augmented reality or a mixed reality interface, display a comparison result of the device data information, and highlight a model of the collection device corresponding to the target device that is determined to be in an abnormal state in the sound comparison; in this embodiment,
  • the displayed modes include common distinctions such as color discrimination, brightness discrimination, and size discrimination.
  • the mobile terminal may also include RFID (Radio Frequency
  • RFID Radio Frequency
  • the abbreviation of the identification, that is, the radio frequency identification, the reading and writing module 108 is configured to communicate with the RFID tag installed on the collecting device or the target device, read and write data information on the corresponding device, and obtain data information through the first communication module;
  • Radio frequency technology (RFID) used includes short-range communication (NFC), wireless local area network (WIFI), Bluetooth, ZigBee, and ultra-wideband.
  • the server 20 includes a second communication unit 201, a modeling unit 202, and a second storage unit 203.
  • the second communication unit 201 is configured to perform communication interaction with the mobile terminal, receive the identifier and location information sent by the first communication unit 103 of the mobile terminal, and obtain a spatial image of the equipment room, the collection device, and the target device by capturing the image, that is, the space.
  • the method further includes receiving and collecting Sound information under normal operating state of the transmission apparatus, when a receiving mobile terminal information acquired voice instruction, the normal operation of the sound information is about the target device corresponding to the command to the mobile terminal.
  • the modeling unit 202 is configured to establish a database according to the association information between the collection device and the target device, obtain an association relationship between the collection device and the target device, and store the data information of the target device through the collection device, where the data information includes the target device.
  • the AR space model is stored and stored in some embodiments.
  • the space in the equipment room is obtained by manually drawing the plane relationship between the equipment room, the collection device, and the target device, or by drawing a plane relationship or a three-dimensional relationship between the equipment room, the collection device, and the target device.
  • Model build an AR space model.
  • the second storage unit 203 is configured to pre-store the name, number, and corresponding identifier and location information of the collection device and the target device in the equipment room, and store the data information of the collection device continuously, and the data information includes the historical point value of the target device. , historical state, historical alarm; storage association between the collection device and the target device, the AR space model of the equipment room, the collection device, and the target device, the data comparison library, and the sound database, which are acquired by the mobile terminal during the inspection; and the comparison sent by the mobile terminal is saved. Results and data records.
  • the computer room management method obtaineds the first data of the collection device from the server, acquires the second data of the collection device from the site, and acquires the fourth data of the target device corresponding to the collection device from the site.
  • the method ensures the timeliness of the inspection data and improves the work efficiency of the inspection; by comparing the data obtained from different methods, the data error problem can be found in time and the error occurs in the data transmission and processing.
  • the present invention discloses a computer room management method and a dynamic ring system, which acquires first data of a collection device from a server by using a mobile terminal, acquires second data of the collection device from the site, and acquires corresponding to the collection device from the site.
  • the inspection method of the fourth data of the target device ensures the timeliness of the inspection data and improves the efficiency of the inspection work; by comparing the data obtained from different methods, the data error problem is detected in time and the data transmission is judged. The wrong part of the process;
  • the device that has completed the inspection is marked, and the inspection personnel are not required to manually record, thereby improving the work efficiency and effectively preventing the occurrence of the leak detection; and obtaining the on-site target device through the mobile terminal.
  • the running sound is compared with the sound in the normal running state, and the abnormal condition of the equipment can be found in time; the comprehensive inspection of the equipment room condition is realized, the operation condition of the equipment is timely judged, and the abnormal processing is performed to improve the efficiency and guarantee of the inspection of the equipment room.
  • the timeliness of the inspection data is compared with the sound in the normal running state, and the abnormal condition of the equipment can be found in time; the comprehensive inspection of the equipment room condition is realized, the operation condition of the equipment is timely judged, and the abnormal processing is performed to improve the efficiency and guarantee of the inspection of the equipment room.

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Abstract

Disclosed are a machine room management and a dynamic environment system. The method comprises the following steps: S1, a mobile terminal acquiring first data of an acquisition device from a server; S2, the mobile terminal acquiring second data of the acquisition device from a site; S3, the mobile terminal acquiring fourth data of a target device corresponding to the acquisition device from the site; and S4, comparing the first data, the second data and the fourth data to determine a link where a data error occurs. Using a mobile terminal to acquire data of a patrol device ensures the timeliness of patrol data and improves the operating efficiency of the patrol. By comparing the data, a data error problem is found in a timely manner, and a link where a data error occurs is timely determined.

Description

一种机房管理方法及动环系统Computer room management method and moving ring system 技术领域Technical field
本发明涉及动力环境监控应用技术领域,更具体地说,涉及一种机房管理方法及动环系统。The present invention relates to the field of power environment monitoring application technologies, and more particularly to a computer room management method and a moving ring system.
背景技术Background technique
传统的动力环境监控机房设备巡检,需要用纸质的设备巡检表单,人工记录巡检结果,然后再人工录入系统。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,数据量大也很容易产生书写手误;目前比较先进的技术,是使用移动设备现场输入,需要逐个在设备上进行操作查询设备点值,如果设备点值比较多还要多次进行翻页,然后把设备编号及设备点值逐个填写到移动设备的表单上,然后提交到服务器后台。由于机房设备比较多,工作人员还要记住哪些设备已经提交过设备点值,这种方式效率很低。The traditional power environment monitoring equipment room inspection, you need to use the paper equipment inspection form, manually record the inspection results, and then manually enter the system. In this way, the timeliness of the inspection data cannot be guaranteed, and it is difficult to find out the problems of the equipment data in time; manually filling in the inspection results, the work efficiency is very low, and the data volume is also very easy to produce writing errors; The advanced technology is to use the mobile device to input on-site. It is necessary to perform the operation on the device one by one to query the device point value. If the device point value is more, it needs to page through multiple times, and then fill in the device number and device point value one by one to the mobile device. On the form, then submit it to the server backend. Due to the large number of equipment in the equipment room, the staff should also remember which equipment has submitted the equipment point value, which is inefficient.
数据在传输和处理过程中,有可能因为设备或者传输线路受到外界干扰,或者其他因素导致数据错误,目前的技术手段无法及时判断数据错误出现在什么环节。During the transmission and processing of data, the device or transmission line may be subject to external interference, or other factors may cause data errors. The current technical means cannot timely determine where the data error occurs.
另外,人工进行数据比对有以下缺陷:工作人员眼部劳动强度大,不利于视力健康;工作人员可能因为视力疲劳或者责任心原因未认真核对数据是否一致,导致异常数据未被发现。In addition, manual data comparison has the following defects: the labor intensity of the staff is large, which is not conducive to vision health; the staff may not carefully check whether the data is consistent due to visual fatigue or responsible reasons, resulting in abnormal data not being discovered.
设备在运行异常时,有可能发出与正常运行时不一样的声音,如果依靠工作人员的听力来判断声音,需要记住各个设备正常运行时的声音去判断设备是否异常,对于工作人员来说,不容易发现异常情况。When the device is running abnormally, it may emit a sound different from the normal operation. If the sound is judged by the staff's hearing, it is necessary to remember the sound of each device during normal operation to determine whether the device is abnormal. For the staff, It is not easy to find anomalies.
技术问题technical problem
本发明要解决的技术问题在于,针对现有技术的上述无法判断数据在传输和处理过程中出现错误的环节的缺陷,提供一种机房管理方法及动环系统。The technical problem to be solved by the present invention is to provide a computer room management method and a dynamic ring system for the defects of the prior art that the above-mentioned data cannot be judged to be in error during transmission and processing.
技术解决方案Technical solution
本发明解决其技术问题所采用的技术方案是:构造一种机房管理方法,包括以下步骤:The technical solution adopted by the present invention to solve the technical problem thereof is: constructing a computer room management method, comprising the following steps:
S1、移动终端从服务器获取采集设备的第一数据;S2、所述移动终端从现场获取所述采集设备的第二数据;S3、所述移动终端从现场获取与所述采集设备对应的目标设备的第四数据;S4、对比所述第一数据、第二数据和第四数据,判断数据出错的环节。S1: The mobile terminal acquires the first data of the collection device from the server; S2, the mobile terminal acquires the second data of the collection device from the site; S3, the mobile terminal acquires the target device corresponding to the collection device from the site The fourth data; S4, comparing the first data, the second data, and the fourth data, determining a link in which the data is erroneous.
优选的,所述步骤S1包括以下步骤:S1-1、所述移动终采集所述采集设备和/或目标设备的标识或者位置信息,发送至所述服务器;S1-2、所述移动终端从所述服务器中获取与所述发送至服务器的标识或者位置所对应的采集设备的第一数据。Preferably, the step S1 includes the following steps: S1-1, the mobile terminal collects the identifier or location information of the collection device and/or the target device, and sends the identifier to the server; S1-2, the mobile terminal The server acquires first data of the collection device corresponding to the identifier or location sent to the server.
优选的,方法包括采集设备持续采集目标设备的数据信息,发送至所述服务器;所述移动终端从所述服务器获取所述采集设备的第一数据。Preferably, the method includes: the collecting device continuously collects data information of the target device, and sends the data information to the server; and the mobile terminal acquires the first data of the collecting device from the server.
优选的,该方法还包括:获取机房、采集设备及目标设备的空间信息,发送至服务器,以建立AR空间模型;对采集设备和目标设备进行建模,并建立采集设备和目标设备之间的关联关系。Preferably, the method further includes: acquiring spatial information of the equipment room, the collection device, and the target device, sending the information to the server to establish an AR space model, modeling the collection device and the target device, and establishing a relationship between the collection device and the target device. connection relation.
优选的,所述方法还包括:所述移动终端获取所述采集设备和/或与所述采集设备对应的目标设备的标识或者位置信息,并发送至所述服务器;所述移动终端接收服务器回传的与所述采集设备和/或对应的目标设备所对应的所述AR空间模型和关联关系;所述移动终端接收所述AR空间模型和关联关系,计算所述关联关系所对应的采集设备和目标设备需要在3D增强现实或者混合现实界面上显示的位置,并显示在增强现实或混合现实界面上。Preferably, the method further includes: the mobile terminal acquiring the identifier or location information of the collection device and/or the target device corresponding to the collection device, and sending the identifier to the server; the mobile terminal receiving the server back Transmitting the AR space model and association relationship corresponding to the collection device and/or the corresponding target device; the mobile terminal receiving the AR space model and the association relationship, and calculating the collection device corresponding to the association relationship And the target device needs to be displayed on the 3D augmented reality or mixed reality interface and displayed on the augmented reality or mixed reality interface.
优选的,在步骤S2中,还包括所述移动终端与所述采集设备通过无线射频识别技术进行通讯连接,获取所述采集设备的第二数据;Preferably, in step S2, the mobile terminal and the collecting device perform a communication connection by using a radio frequency identification technology to acquire second data of the collecting device;
优选的,在步骤S2中,还包括:所述移动终端对所述采集设备上的屏幕信息做OCR识别,获取屏幕上显示的所述采集设备第三数据;若所述第二数据≠所述第三数据,则所述采集设备本身处理环节出错。Preferably, in step S2, the mobile terminal further performs OCR identification on the screen information on the collection device, and acquires the third data of the collection device displayed on the screen; if the second data is The third data is that the processing device itself has an error in processing.
优选的,在步骤S3中,包括所述移动终端与所述采集设备对应的目标设备通过无线射频识别技术建立通讯连接,获取所述采集设备对应的目标设备的第四数据。Preferably, in step S3, the target device that includes the mobile terminal and the collection device establishes a communication connection by using a radio frequency identification technology, and acquires fourth data of the target device corresponding to the collection device.
优选的,在步骤S4中,包括若所述第一数据≠所述第二数据,则所述采集设备与所述服务器之间的传输或者处理环节出错;若所述第二数据≠所述第四数据,则所述采集设备对应的目标设备与所述采集设备之间的传输或者处理环节出错。Preferably, in step S4, if the first data includes the second data, the transmission or processing link between the collection device and the server is in error; if the second data is In the case of four data, the transmission or processing link between the target device corresponding to the collection device and the collection device is in error.
优选的,方法还包括:持续采集所述目标设备在正常运行状态下的声音数据,并发送至服务器,以建立声音数据库;在所述步骤S3中,所述第四数据包括目标设备运行的声音数据;所述移动终端根据与所述声音数据库中对应的目标设备声音对比,判断所述第四数据中的目标设备的声音数据是否异常,并显示被判断为声音异常状态的设备信息。Preferably, the method further includes: continuously collecting sound data of the target device in a normal running state, and sending the data to a server to establish a sound database; in the step S3, the fourth data includes a sound of the target device running Data; the mobile terminal determines whether the sound data of the target device in the fourth data is abnormal according to the comparison with the target device sound in the sound database, and displays device information determined to be a sound abnormal state.
本发明还提供一种动环系统,包括移动终端,所述移动终端包括:第一通信单元,用于获取设备数据信息;数据处理单元,用于对比所述设备数据信息,判断设备数据出错的环节;所述设备数据信息包括从服务器获取的采集设备的第一数据、从现场获取的采集设备的第二数据以及从现场获取的与所述采集设备对应的目标设备的第四数据。The present invention also provides a dynamic ring system, including a mobile terminal, the mobile terminal includes: a first communication unit, configured to acquire device data information; and a data processing unit configured to compare the device data information to determine that the device data is in error The device data information includes first data of the collection device acquired from the server, second data of the collection device acquired from the site, and fourth data of the target device corresponding to the collection device acquired from the site.
优选的,所述移动终端还包括标识采集单元,用于采集所述采集设备和/或目标设备的标识;定位单元,用于采集所述采集设备和/或目标设备的位置信息;所述第一通信单元将所述采集设备和/或目标设备的标识或者位置信息发送至服务器。Preferably, the mobile terminal further includes an identifier collection unit, configured to collect the identifier of the collection device and/or the target device, and a positioning unit, configured to collect location information of the collection device and/or the target device; A communication unit transmits the identification or location information of the collection device and/or the target device to the server.
优选的,所述第一通信单元还用于获取机房、采集设备及目标设备的空间信息,发送至服务器;所述系统还包括所述服务器,所述服务器包括第二通信单元,用于接收来自所述第一通信单元的空间信息;建模单元,用于根据空间信息建立AR空间模型,还用于对所述采集设备和目标设备进行建模,并建立采集设备和目标设备之间的关联关系;第二存储单元,用于存储所述AR空间模型和关联关系。Preferably, the first communication unit is further configured to acquire spatial information of the equipment room, the collection device, and the target device, and send the information to the server; the system further includes the server, where the server includes a second communication unit, configured to receive from the server. a spatial information of the first communication unit; a modeling unit, configured to establish an AR space model according to the spatial information, and configured to model the collection device and the target device, and establish an association between the collection device and the target device a second storage unit for storing the AR space model and an association relationship.
优选的,所述数据处理单元还用于计算所述关联关系所对应的采集设备和目标设备需要在3D增强现实或者混合现实界面上显示的位置;所述移动终端还包括显示单元,用于将所述关联关系对应的采集设备和目标设备显示在增强现实或者混合现实界面上。Preferably, the data processing unit is further configured to calculate a location that the collection device and the target device corresponding to the association relationship need to display on a 3D augmented reality or a mixed reality interface; the mobile terminal further includes a display unit, configured to The collection device and the target device corresponding to the association relationship are displayed on an augmented reality or mixed reality interface.
优选的,所述第二通信单元接收所述采集设备持续采集所述目标设备在正常运行状态下的声音数据,通过建模单元建立声音数据库,存储于第二存储单元中;所述第四数据包括目标设备运行的声音数据;所述数据处理单元还用于根据与所述声音数据库中对应的目标设备声音对比,判断所述第四数据中的目标设备的声音是否异常,通过显示单元显示被判断为声音异常状态的设备信息。Preferably, the second communication unit receives the sound data of the target device in a normal running state, and establishes a sound database by using the modeling unit, and stores the sound database in the second storage unit; the fourth data The sound processing data of the target device is further included; the data processing unit is further configured to determine, according to a comparison with the target device sound in the sound database, whether the sound of the target device in the fourth data is abnormal, and is displayed by the display unit Device information that is judged to be in an abnormal state of sound.
有益效果Beneficial effect
采用通过移动终端从服务器获取采集设备的第一数据、从现场获取采集设备的第二数据以及从现场获取与采集设备对应的目标设备的第四数据的巡检方式,确保了巡检数据的时效性以及提高了巡检工作的效率;通过对比上述从不同方式获取的数据,可及时发现数据出错问题以及判断出数据传输和处理过程中出现错误的环节。The patrol mode of obtaining the first data of the collecting device from the server by the mobile terminal, the second data of the collecting device from the field, and the fourth data of the target device corresponding to the collecting device are obtained from the site, thereby ensuring the aging of the patrol data. Sexuality and the efficiency of the inspection work; by comparing the data obtained from different methods, the data error problem can be found in time and the error in the data transmission and processing can be judged.
进一步的,通过在移动终端显示增强现实或混合现实界面,可标记已完成巡检的设备,不需要巡检人员手动记录,提高工作效率及有效预防出现检漏情况。Further, by displaying an augmented reality or mixed reality interface on the mobile terminal, the device that has completed the inspection can be marked, and the inspection personnel are not required to manually record, thereby improving work efficiency and effectively preventing leakage detection.
并且,通过移动终端获取现场目标设备的运行声音与正常运行状态下的声音对比,可及时发现设备的异常情况。Moreover, by comparing the running sound of the on-site target device with the sound in the normal running state by the mobile terminal, the abnormal situation of the device can be found in time.
附图说明DRAWINGS
下面将结合附图及实施例对本发明作进一步说明,附图中:The present invention will be further described below in conjunction with the accompanying drawings and embodiments, in which:
图1是本发明机房管理方法第一实施例的巡检步骤流程图;1 is a flow chart of a patrol inspection step of a first embodiment of a computer room management method according to the present invention;
图2是本发明动环系统移动终端的原理结构图;2 is a schematic structural diagram of a mobile terminal system mobile terminal of the present invention;
图3是本发明动环系统服务器的原理结构图。3 is a schematic structural diagram of a dynamic ring system server of the present invention.
本发明的最佳实施方式BEST MODE FOR CARRYING OUT THE INVENTION
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。In order to fully understand the present invention, detailed steps and detailed structures are set forth in the following description in order to explain the invention. The preferred embodiments of the present invention are described in detail below, but the present invention may have other embodiments in addition to the detailed description.
如图1示出的本发明的机房管理方法第一实施例中,包括以下步骤:   The first embodiment of the computer room management method of the present invention as shown in FIG. 1 includes the following steps:
S1、移动终端从服务器获取采集设备的第一数据;具体地,移动终端通过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服务器,从服务器中获取采集设备的第一数据;本实施例中,移动终端可以是支持通信的移动设备或者可穿戴设备,移动终端已经预先设置好服务器端的服务器地址,并通过无线通信与服务器进行交互;有些实施例中,为了分担服务器的压力,由通讯服务器作为移动终端与服务器之间的通讯桥梁,与移动终端进行通信,不采用通讯服务器时移动终端与服务器直接进行通讯。S1: The mobile terminal acquires the first data of the collection device from the server; specifically, the mobile terminal logs in to the server through the WEB login or downloads the patrol application for performing the patrol task, and acquires the first data of the collection device from the server; In this embodiment, the mobile terminal may be a mobile device or a wearable device that supports communication. The mobile terminal has pre-configured the server address of the server and interacts with the server through wireless communication. In some embodiments, in order to share the pressure on the server, The communication server serves as a communication bridge between the mobile terminal and the server, and communicates with the mobile terminal. When the communication server is not used, the mobile terminal directly communicates with the server.
其中,步骤S1包括以下步骤:S1-1、所述移动终端采集所述采集设备和/或目标设备的标识或者位置信息,发送至所述服务器;具体地,在巡检之前,对采集设备和目标设备进行标志,标志方法包括通过设置图像、设置二维码或者把设备边缘用设备敏感方式标志出来,作为设备框架标志,所述标识可以为为条码、二维码或RFID电子标签;并将现场的采集设备和目标设备对应的名称、编号、标识、位置信息等信息预先存储到服务器中;当工作人员进行巡检时,通过移动终端采集标识到巡检应用程序中,包括通过移动终端的摄像头对标识进行图像提取,巡检应用程序通过对图像进行解码从而得到标识信息;或者利用移动终端的定位装置对采集设备和/或目标设备进行定位,获取当前巡检设备的位置信息,并将所获取的标识或者定位信息发送到服务器;其中,移动终端可预先存储机房里采集设备和目标设备所对应的标识及位置信息,当通过摄像头扫描标识或者定位时,移动终端后台判断所扫描的标志或者位置信息是否与预先存储的标识或位置信息相匹配,匹配则发送至服务器,不匹配则重新扫描,扫描或者定位准确后再发送至服务器;有些实施例中,移动终端只对设备标识进行扫描或者定位,并发送至服务器,由服务器自行匹配判断。The step S1 includes the following steps: S1-1: The mobile terminal collects the identifier or location information of the collection device and/or the target device, and sends the identifier to the server; specifically, before the inspection, the collection device and The target device performs the marking, and the marking method includes: setting the image, setting the two-dimensional code, or marking the edge of the device with the device sensitive manner as the device frame identifier, and the identifier may be a barcode, a two-dimensional code or an RFID electronic label; The information such as the name, number, identifier, and location information of the collection device and the target device are stored in the server in advance; when the worker performs the inspection, the mobile terminal collects the identifier into the inspection application, including through the mobile terminal. The camera extracts the image by the image, and the inspection application obtains the identification information by decoding the image; or the positioning device of the mobile terminal locates the collection device and/or the target device, and acquires the location information of the current inspection device, and The obtained identifier or positioning information is sent to the server; wherein The mobile terminal may pre-store the identification and location information corresponding to the collection device and the target device in the equipment room. When scanning or identifying by the camera, the mobile terminal determines whether the scanned logo or location information is related to the pre-stored identification or location information. Matching, matching is sent to the server, if it is not matched, it is re-scanned, and the scanning or positioning is accurate, and then sent to the server; in some embodiments, the mobile terminal only scans or locates the device identifier, and sends it to the server, and the server matches it by itself. .
步骤S1-2、所述移动终端从所述服务器中获取与所述发送至服务器的标识或者位置信息对应的采集设备的第一数据;具体地,工作人员预先把现场采集设备和目标设备及对应的名称、编号与标识、位置信息等预先存储到服务器中;并预先存储采集设备的所有数据,当接收移动终端发送的标识或者定位信息时,匹配出与标识或者定位信息所对应的采集设备的数据,移动终端获取服务器匹配出的采集设备的数据,作为采集设备的第一数据;有些实施例中,服务器接收并根据移动终端发送的采集设备和/目标设备的标识或者位置信息所对应的采集设备的数据信息进行存储,并供移动终端获取,作为采集设备的第一数据;需要说明的是,管理人员预先设置采集设备和目标设备的关联关系或对应关系并存储与服务器中,当移动终端发送的标识或者定位信息所对应的设备是目标设备时,服务器自行匹配出所对应的采集设备,并将对应的采集设备的数据信息供给移动终端获取。Step S1-2: The mobile terminal acquires, from the server, first data of the collection device corresponding to the identifier or location information sent to the server; specifically, the staff pre-sets the field collection device and the target device and correspondingly The name, the number and the identifier, the location information, and the like are stored in the server in advance; and all the data of the collection device is pre-stored, and when the identifier or the location information sent by the mobile terminal is received, the collection device corresponding to the identifier or the location information is matched. Data, the mobile terminal acquires the data of the collection device that is matched by the server, and serves as the first data of the collection device. In some embodiments, the server receives and collects according to the identifier or location information of the collection device and/or the target device sent by the mobile terminal. The data information of the device is stored and acquired by the mobile terminal as the first data of the collection device. It should be noted that the management personnel pre-sets the association relationship or the correspondence relationship between the collection device and the target device and stores it in the server, when the mobile terminal The sent identifier or location information is correct The device is the target device, the server itself matched the corresponding acquisition device, and supplies the mobile terminal acquires information corresponding to the data acquisition device.
方法还包括:对采集设备和目标设备进行建模,并建立采集设备与目标设备之间的关联关系;具体地,管理人员在服务器设置采集设备和目标设备的关联信息;其中,可以根据目标设备的运行特性、类型、在机房中的布局以及管理人员的管理方式等方式进行设置关联信息;关联信息可以为一台采集设备对应一台或多台目标设备,即一台采集设备负责采集一台或多台目标设备的数据信息;服务器根据上述关联信息进行建模,得到采集设备和目标设备之间的关联关系并存储在服务器的模型数据库中,以供巡检时使用。The method further includes: modeling the collection device and the target device, and establishing an association relationship between the collection device and the target device; specifically, the management personnel sets the association information of the collection device and the target device on the server; wherein, according to the target device Setting the associated information in the manner of running characteristics, type, layout in the equipment room, and management mode of the management personnel; the associated information may be one or more target devices corresponding to one collection device, that is, one acquisition device is responsible for collecting one Or data information of multiple target devices; the server performs modeling according to the above-mentioned associated information, and obtains an association relationship between the collection device and the target device and stores it in a model database of the server for use in the inspection.
在本实施例中,方法还包括采集设备持续采集目标设备的数据信息,发送至所述服务器;所述移动终端从所述服务器获取所述采集设备的第一数据;具体地,采集设备根据上述关联关系,获取采集设备的数据信息;在本实施例中,采集设备通过设置可以获取所对应的目标设备的一项或多项参数的数据信息,采集设备将获取的数据信息发送至服务器,服务器也可以通过设置接收采集设备所发送的数据信息中所对应的一项或多项参数数据信息;需要说明的是,服务器预先建立数据信息库,接收并将数据信息存储到相应的数据信息库中,供移动终端获取;移动终端可以通过设置或者人工输入对应的获取指令,获取服务器中采集设备对应的一台或多台目标设备对应的一项或多项参数数据信息;本实施例中,工作人员可以通过获取采集设备中同类型的多台目标设备的同一项参数项目,检查目标设备的运行情况及运行参数的波动情况;有些实施例中,服务器对采集设备所发送的数据中,对同类的目标设备的数据信息进行对比,并存储到对比数据库中,可用于供给工作人员参考目标设备数据的波动范围及运行情况,当数据信息发生异常时,也可用于追溯及分析异常原因;其中,上述的数据信息包括目标设备的历史点值、历史状态和历史报警。In this embodiment, the method further includes: the collecting device continuously collects the data information of the target device, and sends the data information to the server; the mobile terminal acquires the first data of the collecting device from the server; specifically, the collecting device is configured according to the foregoing The association relationship acquires the data information of the collection device. In this embodiment, the collection device can obtain the data information of one or more parameters of the corresponding target device, and the collection device sends the acquired data information to the server, the server. It is also possible to set one or more parameter data information corresponding to the data information sent by the receiving device; it should be noted that the server pre-establishes the data information library, receives and stores the data information in the corresponding data information database. For obtaining by the mobile terminal, the mobile terminal can obtain one or more parameter data information corresponding to one or more target devices corresponding to the collection device in the server by setting or manually inputting the corresponding acquisition instruction; in this embodiment, the work is performed. Personnel can obtain multiple units of the same type in the collection device. The same parameter item of the device checks the running condition of the target device and the fluctuation of the operating parameters. In some embodiments, the server compares the data information of the target device of the same type to the data sent by the collecting device, and stores the data in comparison. In the database, it can be used to supply the staff to refer to the fluctuation range and operation of the target device data. When the data information is abnormal, it can also be used to trace and analyze the abnormal cause; wherein the above data information includes the historical point value and history of the target device. Status and history alarms.
本实施例中,方法还包括获取机房、采集设备以及目标设备的空间信息,发送至所述服务器,以建立AR空间模型;具体地,本实施例中,移动终端通过摄像头对机房、采集设备及目标设备的空间布局进行摄像,将所得到的图像信息发送至服务器;有些实施例中,通过人工绘制机房、采集设备及目标设备的平面关系或者通过电脑绘制机房、采集设备及目标设备的平面关系或者三维空间关系来得到机房里的布局模型;有些实施例中,通过对机房空间进行建模,用函数关系表示机房、采集设备和目标设备的空间信息,并发送至服务器;服务器接收并根据上述机房、采集设备及目标设备的空间信息建立机房的AR空间模型,并存储在服务器的模型数据库中,以供巡检时移动终端获取使用。In this embodiment, the method further includes acquiring the space information of the equipment room, the collection device, and the target device, and sending the information to the server to establish an AR space model. Specifically, in this embodiment, the mobile terminal uses the camera to access the equipment room and the collection device. The spatial layout of the target device is imaged, and the obtained image information is sent to the server; in some embodiments, the plane relationship between the equipment room, the collection device, and the target device is manually drawn, or the plane relationship between the equipment room, the collection device, and the target device is drawn through a computer. Or a three-dimensional relationship to obtain a layout model in the machine room; in some embodiments, by modeling the space of the equipment room, using a functional relationship to represent the spatial information of the equipment room, the collection device, and the target device, and transmitting the information to the server; the server receives and according to the above The space information of the equipment room, the collection device, and the target device establishes the AR space model of the equipment room and is stored in the model database of the server for the mobile terminal to obtain for use during the inspection.
在本实施例中,可在移动终端的3D增强现实或者混合现实界面上进行巡检;增强现实(Augmented Reality,简称AR),也被称之为混合现实,它通过电脑技术,将虚拟的信息应用到真实世界,真实的环境和虚拟的物体实时地叠加到了同一个画面或空间同时存在;混合现实(Mix Reality,简称MR),既包括增强现实和增强虚拟,指的是合并现实和虚拟世界而产生的新的可视化环境,在新的可视化环境里物理和数字对象共存,并实时交互。In this embodiment, the patrol can be performed on the 3D augmented reality or mixed reality interface of the mobile terminal; augmented reality (Augmented) Reality (AR), also known as hybrid reality, applies virtual information to the real world through computer technology. The real environment and virtual objects are superimposed in the same picture or space in real time; mixed reality ( Mix Reality (MR), which includes both augmented reality and enhanced virtual, refers to a new visual environment created by the combination of real and virtual worlds. In the new visual environment, physical and digital objects coexist and interact in real time.
方法包括:所述移动终端获取所述采集设备和/或采集设备对应的目标设备的标识或者位置信息,并发送至所述服务器;具体地,此方法将标识或者位置信息发送至服务器的方式与上述移动终端发送标识或者位置信息至服务器,获取采集设备的第一数据的方法相似,此方法中发送标识和位置信息至服务器,目的为了获取服务器中与标识或者位置信息所对应的AR空间模型和关联关系。The method includes: the mobile terminal acquiring the identifier or location information of the target device corresponding to the collection device and/or the collection device, and sending the identifier to the server; specifically, the manner in which the method sends the identifier or the location information to the server The method for the mobile terminal to send the identifier or the location information to the server to obtain the first data of the collection device is similar. In this method, the identifier and the location information are sent to the server, in order to obtain the AR space model corresponding to the identifier or the location information in the server. connection relation.
所述移动终端接收服务器回传的与所述采集设备和/或对应的目标设备所对应的AR空间模型和关联关系;具体地,服务器存储着与采集设备和目标设备对应的名称、编号、位置信息、数据信息、AR空间模型以及关联关系;其中,服务器接收标识或者位置信息,匹配出对应的AR空间模型及关联关系,供移动终端获取;需要说明的是,服务器中有多个数据库,在移动终端需要获取数据时,需要指出需要获取哪种数据;在本实施例中,当工作人员使用移动终端进行巡检时,第一次发送并只发送标志和位置信息至服务器,没有指定获取的数据类型时,服务器匹配出与所接收的标识或者位置信息所对应的AR空间模型和关联关系,默认通过在移动终端显示3D增强显示或者混合显示界面进行巡检;需要说明的是,如果发送的是目标设备的标识或位置信息,服务器先匹配出与此目标设备对应的采集设备,以及目标设备和采集设备的关联关系,以及此关联关系所对应的设备AR空间模型在机房的AR模型中的位置信息供给移动终端获取,移动终端接收并为显示在界面上做准备工作;其中,此关联关系包括此采集设与及所对应的所有目标设备。The mobile terminal receives an AR space model and an association relationship corresponding to the collection device and/or the corresponding target device that is returned by the server; specifically, the server stores a name, a number, and a location corresponding to the collection device and the target device. The information, the data information, the AR space model, and the association relationship; wherein the server receives the identifier or the location information, and matches the corresponding AR space model and the association relationship for the mobile terminal to obtain; it should be noted that there are multiple databases in the server. When the mobile terminal needs to obtain data, it needs to indicate which data needs to be obtained. In this embodiment, when the staff uses the mobile terminal to perform the inspection, the first time to send and only send the flag and the location information to the server, and the specified acquisition is not performed. In the data type, the server matches the AR space model and the association relationship corresponding to the received identifier or location information, and the patrol is performed by displaying the 3D enhanced display or the mixed display interface on the mobile terminal by default; Is the identity or location information of the target device, the server first The collection device corresponding to the target device, and the association relationship between the target device and the collection device, and the location information of the device AR space model corresponding to the association relationship in the AR model of the equipment room are obtained by the mobile terminal, and the mobile terminal receives and The display is prepared on the interface; wherein the association includes all the target devices corresponding to the collection and the corresponding device.
所述移动终端接收所述AR空间模型和关联关系,计算所述关联关系所对应的采集设备和目标设备需要在3D增强现实或者混合现实界面上显示的位置,并显示在增强现实或者混合现实界面上;具体地,移动终端接收服务器匹配出的与标识或者位置信息对应的AR模型和关联关系,移动终端将摄像头中的模型与接收的AR空间模型叠加,计算出所得到的关联关系所对应的采集设备和目标设备的模型需要在移动终端的3D增强现实或者混合现实界面上显示的位置,并显示在3D增强现实或者混合现实界面相应的界面上,巡检中工作人员可通过移动终端与机房里的设备、服务器进行交互;其中,摄像头中的模型可由移动终端实时地计算摄像头的位置及角度得到;需要说明的是,移动终端将待巡检的设备在机房的AR空间模型中突出显示,使显示界面中有关联关系的设备与其他现场设备在界面上的显示有所区别,并且,在完成当前巡检设备的巡检时,则相应设备在3D界面中的显示标记有已巡检标志,以防出现漏检情况;突出显示方式和已完成巡检标识包括颜色区分、亮度区分和大小区分等常用的区分方式。The mobile terminal receives the AR space model and the association relationship, and calculates a location that the collection device and the target device corresponding to the association relationship need to display on a 3D augmented reality or a mixed reality interface, and displays the image in an augmented reality or mixed reality interface. Specifically, the mobile terminal receives the AR model and the association relationship corresponding to the identifier or the location information that is matched by the server, and the mobile terminal superimposes the model in the camera with the received AR space model, and calculates the collection corresponding to the obtained association relationship. The model of the device and the target device needs to be displayed on the 3D augmented reality or mixed reality interface of the mobile terminal, and displayed on the corresponding interface of the 3D augmented reality or mixed reality interface, and the staff in the inspection can pass through the mobile terminal and the machine room. The device and the server interact; wherein the model in the camera can be obtained by the mobile terminal calculating the position and angle of the camera in real time; it should be noted that the mobile terminal highlights the device to be inspected in the AR space model of the equipment room, so that Display devices with associated relationships in the interface The display of the on-site device on the interface is different, and when the inspection of the current inspection device is completed, the display of the corresponding device in the 3D interface is marked with a patrol flag to prevent a missed detection; The mode and completed patrol identification include common distinctions such as color distinction, brightness discrimination, and size distinction.
进一步地,本实施例中,工作人员通过上述构造的AR模型在移动终端3D增强显示或者混合现实的界面,与现场设备和服务器完成交互;具体地,工作人员将上述移动终端识别出的采集设备和 /或目标设备的标识发送到服务器,服务器接收并将匹配出的采集设备的数据信息发送到移动终端中;此处,当工作人员发送的是目标设备的标识时,服务器根据关联关系匹配出对应的采集设备,再将采集设备的数据信息发送到移动终端中,因而,移动终端从服务器中获取到采集设备的第一数据;其中,本实施例中,使用3D增强现实或者混合现实方式进行巡检时,工作人员与服务器交互的方式可通过3D手势交互、语音交互、传统键鼠交互、触屏交互等其他常用的交互方式。Further, in this embodiment, the staff enhances the display or the interface of the mixed reality on the mobile terminal 3D through the AR model constructed above, and completes interaction with the field device and the server; specifically, the collection device that the worker recognizes the mobile terminal. And the identifier of the target device is sent to the server, and the server receives and sends the data information of the matched collection device to the mobile terminal; where, when the worker sends the identifier of the target device, the server matches the association according to the association relationship. The corresponding collecting device sends the data information of the collecting device to the mobile terminal, and the mobile terminal obtains the first data of the collecting device from the server. In this embodiment, the 3D augmented reality or the mixed reality mode is used. During the inspection, the way the staff interacts with the server can be through other common interaction methods such as 3D gesture interaction, voice interaction, traditional mouse and keyboard interaction, and touch screen interaction.
S2、所述移动终端从现场获取所述采集设备的第二数据。本实施例中,移动终端与采集设备通过无线射频识别技术建立通讯连接,获取采集设备的第二数据。S3、所述移动终端从现场获取与现场采集设备对应的目标设备的第四数据,具体地,移动终端与所述采集设备对应的目标设备通过无线射频识别技术建立通讯连接,获取所述采集设备对应的目标设备的第四数据。S2. The mobile terminal acquires second data of the collection device from the site. In this embodiment, the mobile terminal establishes a communication connection with the collection device through the radio frequency identification technology, and acquires the second data of the collection device. S3. The mobile terminal acquires fourth data of the target device corresponding to the field collection device from the site. Specifically, the target device corresponding to the collection device of the mobile terminal establishes a communication connection by using a radio frequency identification technology, and acquires the collection device. The fourth data of the corresponding target device.
具体地,在巡检现场的采集设备和目标设备安装RFID电子标签,完成设备的标记;RFID是Radio Frequency Identification的缩写,即射频识别,是一种成熟的非接触式的自动识别技术,它通过射频信号自动识别目标对象并获取相关数据,识别工作无需人工干预,作为条形码的无线版本,无线射频(RFID)技术具有条形码等传统标签所不具备的防水、防磁、耐高温、读取距离大、标签上数据可以加密、存储数据容量更大、存储信息更改自如等特点,同时无线射频(RFID)标签中可以记载有关于目标设备各类相关信息;在工作人员进行巡检时,携带移动终端到所需进行巡检的采集设备或目标进行扫描,即可与采集设备或目标设备上的RFID电子标签通讯,获取对应的采集设备和/或目标设备的数据信息;在本实施例中,在现场中,通过移动终端与采集设备安装的RFID电子标签进行通讯,获取采集设备的第二数据;通过移动终端与目标设备上安装的RFID电子标签进行通讯,获取采集设备的第二数据;有些实施例中,可在机房内具有某些共性的设备,如对同类型的采集设备或者目标设备,或者对有关联关系的采集设备和目标设备,组织成巡检点,并与RFID电子标签绑定,在移动终端上刷电子标签时,移动终端获取这些绑定同一RFID电子标签的设备的数据信息;起到提高巡检的效率。 Specifically, the RFID device is installed on the collection device and the target device at the inspection site to complete the tag of the device; RFID is the abbreviation of Radio Frequency Identification, that is, radio frequency identification, which is a mature non-contact automatic identification technology, which passes The radio frequency signal automatically recognizes the target object and acquires relevant data, and the identification work does not require manual intervention. As a wireless version of the barcode, the radio frequency (RFID) technology has the waterproof, antimagnetic, high temperature, and large read distance that the conventional label such as the barcode does not have. The data on the label can be encrypted, the storage data capacity is larger, and the storage information can be changed freely. At the same time, the radio frequency (RFID) tag can record various related information about the target device; when the staff conducts inspection, carry the mobile terminal to If the collection device or target that needs to be inspected is scanned, the RFID electronic tag on the collection device or the target device can be communicated to obtain the data information of the corresponding collection device and/or the target device; in this embodiment, at the site RFID electronic tag installed through the mobile terminal and the acquisition device The communication is performed to obtain the second data of the collection device; the mobile terminal communicates with the RFID electronic tag installed on the target device to obtain the second data of the collection device; in some embodiments, the device may have some common devices in the equipment room. For example, if the same type of collection device or target device, or the associated collection device and target device are organized into a patrol point and bound with the RFID electronic tag, when the electronic tag is swiped on the mobile terminal, the mobile terminal acquires The data information of these devices that are bound to the same RFID electronic tag; the efficiency of the inspection is improved.
本实施例中,移动终端获取第二数据和第四数据所使用的无线射频识别技术包括短距通信(NFC)、无线局域网(WIFI)、蓝牙、ZigBee和超宽频;有些实施例中,上述电子射频标签卡可为NFC卡,多个被巡检设备上绑定一NFC卡 ,工作人员需要通过移动终端与各个NFC卡进行通讯,这样可通过该方式进行巡检人员的签到统计,在巡检点刷NFC卡做到现场确认,还可以提醒巡检人员避免漏检;这是因为NFC的特性,必须走到放NFC卡的地方才能刷到,NFC乃为现有技术,此处不做过多描述。In this embodiment, the radio frequency identification technologies used by the mobile terminal to acquire the second data and the fourth data include short-range communication (NFC), wireless local area network (WIFI), Bluetooth, ZigBee, and ultra-wideband; in some embodiments, the above-mentioned electronic The radio frequency tag card can be an NFC card, and multiple NFC cards are bound to the device to be inspected. The staff needs to communicate with each NFC card through the mobile terminal, so that the check-in statistics of the inspecting personnel can be performed in this manner. Click the NFC card to confirm on-site, and also remind the inspection personnel to avoid the missed inspection; this is because the characteristics of NFC must go to the place where the NFC card is placed to be brushed. NFC is the existing technology, not done here. More description.
在本实施例中,步骤S2中,获取采集设备数据信息的方法还包括:所述移动终端对所述采集设备上的屏幕信息做OCR识别,获取屏幕上显示的所述采集设备的第三数据;OCR技术是光学字符识别的缩写(Optical Character Recognition),是通过扫描等光学输入方式将各种票据、报刊、书籍、文稿及其他印刷品的文字转化为图像信息,再利用文字识别技术将图像信息转化为可以使用的计算机输入技术;具体地,在巡检现场中,移动终端通过摄像头对采集设备上的屏幕信息进行扫描,通过OCR识别获取屏幕上显示的采集设备的第三数据。In this embodiment, in step S2, the method for acquiring data information of the collection device further includes: the mobile terminal performing OCR identification on the screen information on the collection device, and acquiring third data of the collection device displayed on the screen. ; OCR technology is an abbreviation for optical character recognition (Optical Character Recognition) converts the text of various bills, newspapers, books, manuscripts and other printed materials into image information through optical input such as scanning, and then uses image recognition technology to convert image information into computer input technology that can be used; In the inspection site, the mobile terminal scans the screen information on the collection device through the camera, and acquires the third data of the collection device displayed on the screen through OCR recognition.
S4、对比所述第一数据、第二数据和第四数据,判断数据出错的环节;具体地,移动终端从服务器获取采集设备的数据、在现场获取采集设备及目标设备的数据信息后,对数据信息进行对比,通过两两数据信息对比的方式,判断数据信息是否出现不一致的情况,并通过被判断为数据不一致的结果,判断出数据出错的环节;在本实施例中,当只采用其中一种方式从现场获取采集设备的数据信息时,移动终端按照以下方法进行判断:当第一数据≠第二数据或者第一数据≠第三数据时,判断出采集设备与服务器之间的传输或者处理环节出错;当第二数据≠第四数据时,判断出目标设备与采集设备之间的传输或者处理环节出错;优化地,本实施例还对通过两种方式所获取的采集设备的数据信息进行判断,当第二数据≠第三数据时,则判断出采集设备本身处理数据出错;若在采集设备本身发生处理数据错误的情况下,仍对数据进行判断,则有以下两种判断方式:当使用两种方式获取到的采集设备的第二数据和第三数据中只有一组数据出现错误时,即第二数据≠第三数据,则有第一数据≠第二数据且第一数据=第三数据;或者第一数据=第二数据且第一数据≠第三数据,则说明采集设备到服务器之间的传输或者处理环节出错;同样的,此时第二数据=第四数据且第三数据≠第四数据;或者第二数据≠第四数据且第三数据=第四数据;则说明目标设备到采集设备之间的传输或者处理环节出错;当使用两种方式获取到的采集设备的第二数据和第三数据都出现错误时,即第二数据≠第三数据或者第二数据第三数据;此时可通过后台检查采集设备是否被检测出异常情况;以上述同样的方式进行判断;有些实施例中,为了更精确地查找数据出错的环节,即提高对比数据的效率,先对采集设备自身进行检查,通过两种方式获取的数据信息进行对比,若判断出数据信息出现不一致情况,工作人员立刻对采集设备进行维修处理;若判断出数据信息一致,则继续与服务器和目标设备的数据信息进行比较,查看传输环节是否有出错情况;本实施例通过移动终端对从服务器中获取的采集设备数据、现场获取的采集设备数据以及现场获取的目标设备的数据的对比,可及时发现数据出现错误的环节,并及时进行数据的纠正;其中,当移动终端对采集设备采用OCR识别技术获取并进行数据对比时,由于只能获取当前页面的数据,若采集设备需要对比的数据信息项目显示在屏幕上的页数不止一页时,工作人员可把翻页命令和当前的采集设备的标识发送至服务器,由服务器把翻页命令传给相应的采集设备,完成翻页动作;其中,工作人员发送翻页命令及标识的方式包括3D手势交互、语音交互、传统键鼠交互、触屏交互等方式;其中,翻页命令的命令形式可通过在服务器预先设置手势动作、具体的语音句子、点击位置,即可通过做出预先存储在服务器的手势动作、语音句子、用鼠标或者手指点击指定的位置,即可将翻页命令传达至服务器。S4. Comparing the first data, the second data, and the fourth data, determining a link of data error; specifically, the mobile terminal acquires data of the collection device from the server, and obtains data information of the collection device and the target device in the field, Comparing the data information, judging whether the data information is inconsistent through the comparison of the two data information, and determining the data error link by the result of being judged as the data inconsistency; in this embodiment, when only the data is used When the data information of the collection device is obtained from the site, the mobile terminal determines whether the transmission between the collection device and the server is determined when the first data, the second data, or the first data and the third data are The processing link is faulty; when the second data is the fourth data, it is determined that the transmission or processing link between the target device and the collection device is in error; optimally, the data information of the collection device acquired by the two methods is also optimized in this embodiment. Judging, when the second data is the third data, it is determined that the collection device itself The data is in error; if the data is judged in the case where the data is incorrectly processed by the collection device itself, there are two ways of judging: when the second data and the third data of the acquisition device acquired by the two methods are used, only When a set of data has an error, that is, the second data ≠ the third data, there is the first data ≠ the second data and the first data = the third data; or the first data = the second data and the first data ≠ the third data , indicating that the transmission between the collection device and the server or the processing link is wrong; similarly, the second data=the fourth data and the third data≠the fourth data; or the second data≠the fourth data and the third data= The fourth data indicates that the transmission or processing link between the target device and the collection device is in error; when the second data and the third data of the acquisition device acquired by the two methods are both in error, that is, the second data is third. Data or second data third data; at this time, it is possible to check whether the collection device is detected abnormally by the background; judge in the same manner as above; in some embodiments, To find the error data more accurately, that is, to improve the efficiency of the comparison data, first check the collection device itself, compare the data information obtained by the two methods, and if the data information is inconsistent, the staff immediately collects the data. The device performs maintenance processing; if it is determined that the data information is consistent, it continues to compare with the data information of the server and the target device to check whether there is an error condition in the transmission link; in this embodiment, the data of the collection device acquired by the mobile terminal from the server, the site The comparison between the acquired collection device data and the data of the target device acquired in the field can timely discover the error link of the data and correct the data in time; wherein, when the mobile terminal acquires the data using the OCR recognition technology and compares the data Since only the data of the current page can be obtained, if the data information item of the collection device needs to be displayed on the screen for more than one page, the staff can send the page turning command and the current collection device identifier to the server, The server passes the page turning command For the corresponding collection device, the page turning action is completed; wherein the manner in which the staff sends the page turning command and the identifier includes 3D gesture interaction, voice interaction, traditional mouse-and-mouse interaction, touch screen interaction, etc., wherein the command form of the page turning command By setting a gesture action, a specific voice sentence, and a click position in the server, the page turning command can be transmitted to the specified position by making a gesture action pre-stored in the server, a voice sentence, and clicking with a mouse or a finger. server.
当移动终端完成上述对从服务器中获取的采集设备的数据、从现场获取的采集设备和目标设备的数据信息的对比后,在3D增强现实或者混合现实界面上显示比对的结果,工作人员将比对结果发送至服务器保存,供巡检管理人员查看;当出现判断出数据不一致的情况,工作人员可以根据两两对比的结果判断、找出数据出现的环节,并将出现问题的数据进行更正,再上传至服务器;当不能判断出正确的数据时,直接将比对结果上传至服务器保存即可;其中,本实施例中使用3D增强现实或者混合现实方式进行巡检时,工作人员与服务器交互的方式可通过发送标识的方式包括3D手势交互、语音交互、传统键鼠交互、触屏交互等其他常用的交互方式。After the mobile terminal completes the comparison of the data of the collection device acquired from the server, the data collected from the field, and the data information of the target device, the result of the comparison is displayed on the 3D augmented reality or mixed reality interface, and the staff will The comparison result is sent to the server for storage and is for inspection by the inspection management personnel; when it is judged that the data is inconsistent, the staff can judge and find out the data occurrence according to the result of the comparison, and correct the data of the problem. And uploading to the server; when the correct data cannot be judged, the comparison result is directly uploaded to the server for saving; wherein, in this embodiment, when the 3D augmented reality or the mixed reality mode is used for the inspection, the staff and the server The way of the interaction can be through other common interaction modes such as 3D gesture interaction, voice interaction, traditional mouse and keyboard interaction, and touch screen interaction.
进一步的,该方法还包括:持续采集所述目标设备在正常运行状态下的声音信息,并发送至服务器,以建立声音数据库;在所述步骤S3中,所述第四数据包括目标设备运行的声音数据;所述移动终端根据与所述声音库中对应的目标设备声音对比,判断所述第四数据中的目标设备的声音是否异常,并显示被判断为声音异常状态的设备信息;具体地,目标设备在正常运行状态下,通过采集设备持续采集目标设备的运行声音,得到目标设备正常运行状态下在正常波动范围内的声音信息;此处,持续对正常状态运行状态下的声音进行采集,因为正常状态下声音也会发生波动,持续采集到的声音数据中就包括了在正常范围内发生波动的声音,并发送至服务器;服务器预先建立声音数据库,接收并将声音信息存储到声音数据库中,供巡检需求获取使用;在巡检过程中,移动终端从现场获取的与采集设备对应的目标设备的第四数据时,获取数据信息的同时也获取了声音信息,并通过从服务器获取采集设备的数据信息的方式从服务器远程获取的声音进行对比,因为从服务器中获取到的声音包括波动的声音,所以如果对比出现场获取的声音信息中有明显差异的,移动终端则判断出此目标设备有异常;在本实施例中,目标设备的声音信息是通过采集设备获取的,因此判断出声音有明显异常时,移动终端屏幕上3D模型中的声音异常所对应的采集设备的模型显示出异常标志,其中,异常状态的显示方式可以通过颜色,例如红色显示,或者通过标识,例如交叉显示。Further, the method further includes: continuously collecting sound information of the target device in a normal running state, and sending the sound information to a server to establish a sound database; in the step S3, the fourth data includes a target device running a sound data; the mobile terminal determines whether the sound of the target device in the fourth data is abnormal according to a comparison with a target device sound in the sound library, and displays device information determined to be a sound abnormal state; specifically The target device continuously collects the running sound of the target device through the collecting device under normal operating conditions, and obtains the sound information in the normal fluctuation range under the normal running state of the target device; here, the sound in the normal state running state is continuously collected. Because the sound will fluctuate under normal conditions, the continuously collected sound data includes the sound that fluctuates within the normal range and is sent to the server; the server pre-establishes the sound database, receives and stores the sound information in the sound database. In the inspection, the demand for inspection is used; In the process, when the mobile terminal obtains the fourth data of the target device corresponding to the collection device, the mobile terminal acquires the sound information while acquiring the data information, and obtains the data information of the collection device from the server, and acquires the data remotely from the server. The sound is compared, because the sound obtained from the server includes a fluctuating sound, so if there is a significant difference in the sound information acquired by the comparison field, the mobile terminal determines that the target device has an abnormality; in this embodiment, the target The sound information of the device is acquired by the collecting device. Therefore, when the sound is obviously abnormal, the model of the collecting device corresponding to the sound abnormality in the 3D model on the screen of the mobile terminal displays an abnormal flag, wherein the abnormal state can be displayed. Displayed by color, such as red, or by identification, such as cross-display.
图2和图3分别出示动环系统的移动终端和服务器的原理结构框图,该系统包括移动终端10和服务器20,移动终端10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服务器20,完成巡检。2 and 3 respectively show a schematic structural block diagram of a mobile terminal and a server of a dynamic ring system, the system includes a mobile terminal 10 and a server 20, and the mobile terminal 10 logs in through the WEB or downloads a patrol application for performing a patrol task. Go to the server 20 and complete the inspection.
移动终端10包括标识采集单元101、定位单元102、第一通信单元103、第一存储单元104、信息输入单元105、数据处理单元106和显示单元107。The mobile terminal 10 includes an identification acquisition unit 101, a positioning unit 102, a first communication unit 103, a first storage unit 104, an information input unit 105, a data processing unit 106, and a display unit 107.
标识采集单元101,用于采集现场中采集设备或者目标设备的标识,本实施例中,标识采集设备或者目标设备的方法包括通过设置图像、设置二维码或者把设备边缘用设备敏感方式标志出来,作为设备框架标志;所述标识可以为为条码、二维码或RFID电子标签;在巡检设备或者场地处,通过移动终端10采集标识到巡检应用程序中,包括通过移动终端10的摄像功能对标识进行图像提取,巡检应用程序通过对图像进行解码从而得到标识信息;本实施例中,还包括通过摄像头对采集设备屏幕信息进行扫描,通过OCR识别(Optical Character Recognition,光学字符识别)获得第三数据。The identifier collection unit 101 is configured to collect the identifier of the collection device or the target device in the field. In this embodiment, the method for identifying the collection device or the target device includes: setting an image, setting a two-dimensional code, or marking the device edge with a device sensitive manner. As the device frame identifier; the identifier may be a barcode, a two-dimensional code or an RFID electronic label; at the inspection device or the site, the identifier is collected by the mobile terminal 10 into the inspection application, including the camera through the mobile terminal 10. The function performs image extraction on the identifier, and the patrol application program obtains the identification information by decoding the image. In this embodiment, the method further includes scanning the screen information of the collection device by using a camera, and performing OCR recognition (Optical Character Recognition). Obtain the third data.
定位单元102,用于通过移动终端的定位功能,采集现场中采集设备或者目标设备的位置信息。The positioning unit 102 is configured to collect location information of the collection device or the target device in the field by using a positioning function of the mobile terminal.
第一通信单元103,用于与服务器进行通讯交互,移动终端可以是支持通信的移动设备或者可穿戴设备,移动终端已经预先设置好服务器端的服务器地址,并通过无线通信与服务器进行交互;有些实施例中,为了分担服务器的压力,由通讯服务器作为移动终端与服务器之间的通讯桥梁,与移动终端进行通信,不采用通讯服务器时移动终端与服务器直接之间进行通讯;在本实施例中,第一通信单元将采集设备和/或目标设备的标识或者位置信息、对机房、采集设备及目标设备的空间布局通过拍摄所得到的图像,即空间信息发送至服务器,并接收服务器发送的与标识或者位置信息对应的关联关系、AR空间模型以及采集设备的第一数据;还用于从现场获取采集设备的第二数据和第三数据,以及从现场获取的与所述采集设备对应的目标设备的第四数据;第四数据包括信息数据以及运行时的声音信息,并从服务器获取声音数据库中对应的目标设备的声音进行对比。The first communication unit 103 is configured to perform communication interaction with the server. The mobile terminal may be a mobile device or a wearable device that supports communication. The mobile terminal has pre-configured the server address of the server and interacts with the server through wireless communication. In the example, in order to share the pressure of the server, the communication server serves as a communication bridge between the mobile terminal and the server, and communicates with the mobile terminal. When the communication server is not used, the mobile terminal directly communicates with the server; in this embodiment, The first communication unit sends the identification or location information of the collection device and/or the target device, the spatial layout of the equipment room, the collection device, and the target device to the server by capturing the obtained image, that is, the spatial information, and receiving the identifier sent by the server. Or the association information corresponding to the location information, the AR space model, and the first data of the collection device; and the second data and the third data of the collection device, and the target device corresponding to the collection device acquired from the site. Fourth data; fourth data It includes information data and sound information at runtime, and compares the sounds of the corresponding target devices in the sound database from the server.
第一存储单元104,用于存储采集设备和目标设备的名称、编号以及对应的标识及位置信息;存储从服务器获取采集设备的第一数据、从现场采集设备获取的的第二数据和第三数据以及从现场获取的与所述采集设备对应的目标设备的第四数据,本实施例中,第一存储单元104也可对第一数据、第二数据、第三数据和第四数据不作存储处理,通过第一通信单元103获取后直接通过数据处理单元进行对比判断。The first storage unit 104 is configured to store the name and number of the collection device and the target device, and corresponding identifier and location information; store the first data of the acquisition device from the server, the second data obtained from the field collection device, and the third The data and the fourth data of the target device corresponding to the collection device obtained from the site, in this embodiment, the first storage unit 104 may also not store the first data, the second data, the third data, and the fourth data. The processing is performed by the first communication unit 103 and directly compared by the data processing unit.
信息输入单元105,用于通过设置或者人工输入对应的获取指令;对比结果出现被判断为数据传输错误的情况时,可通过信息输入单元105对数据进行纠正。The information input unit 105 is configured to correct the data through the information input unit 105 when the corresponding acquisition instruction is set or manually input; when the comparison result appears to be determined as a data transmission error.
数据处理单元106,用于将摄像头中的模型与接收的AR空间模型叠加,计算出所得到的关联关系所对应的采集设备和目标设备的模型需要在移动终端的3D增强现实或者混合现实界面上显示的位置;对比第一数据、第二数据、第三数据和第四数据,判断输出出错的环节,并将比对结果显示在界面上;以及对比现场获取目标设备运行的声音信息与从声音数据库中获取到的对应的目标设备的声音,判断目标设备是否在异常状态。The data processing unit 106 is configured to superimpose the model in the camera with the received AR space model, and calculate that the model of the collection device and the target device corresponding to the obtained association relationship needs to be displayed on the 3D augmented reality or mixed reality interface of the mobile terminal. Position; compare the first data, the second data, the third data, and the fourth data, determine the output error link, and display the comparison result on the interface; and compare the scene to obtain the sound information of the target device operation and the slave sound database The sound of the corresponding target device obtained in the medium is determined whether the target device is in an abnormal state.
显示单元107,用于显示3D增强现实或者混合现实界面,显示设备数据信息的比对结果、突出显示声音对比中被判断出异常状态的目标设备对应的采集设备的模型;本实施例中,突出显示的方式包括颜色区分、亮度区分和大小区分等常用的区分方式。The display unit 107 is configured to display a 3D augmented reality or a mixed reality interface, display a comparison result of the device data information, and highlight a model of the collection device corresponding to the target device that is determined to be in an abnormal state in the sound comparison; in this embodiment, The displayed modes include common distinctions such as color discrimination, brightness discrimination, and size discrimination.
移动终端还可包括RFID(Radio Frequency Identification的缩写,即射频识别)读写模块108,用于与采集设备或目标设备上安装的RFID标签进行通讯,读写对应设备上的数据信息,通过第一通信模块获取数据信息;本实施例使用的无线射频技术(RFID)包括短距通信(NFC)、无线局域网(WIFI)、蓝牙、ZigBee和超宽频。The mobile terminal may also include RFID (Radio Frequency The abbreviation of the identification, that is, the radio frequency identification, the reading and writing module 108 is configured to communicate with the RFID tag installed on the collecting device or the target device, read and write data information on the corresponding device, and obtain data information through the first communication module; Radio frequency technology (RFID) used includes short-range communication (NFC), wireless local area network (WIFI), Bluetooth, ZigBee, and ultra-wideband.
服务器20包括第二通信单元201、建模单元202和第二存储单元203。The server 20 includes a second communication unit 201, a modeling unit 202, and a second storage unit 203.
第二通信单元201,用于与移动终端进行通讯交互,接收移动终端第一通信单元103发送的标识和位置信息、对机房、采集设备及目标设备的空间布局通过拍摄所得到的图像,即空间信息,接收并将服务器中匹配出的与所接收的标识和位置信息对应的采集设备的数据信息、关联关系及AR空间模型发送至移动终端;有些实施例中,通过人工绘制机房、采集设备及目标设备的平面关系或者通过电脑绘制机房、采集设备及目标设备的平面关系或者三维空间关系来得到机房里的空间模型;有些实施例中,通过对机房空间进行建模,用函数关系表示机房、采集设备和目标设备的空间信息,并发送至服务器;还用于接收工作人员发送的翻页命令,并将翻页命令发送至现场采集设备,完成翻页;接收移动终端发送的比对结果及数据记录;本实施例中,还包括接收采集设备发送的在正常运行状态下的声音信息,当接收移动终端获取声音信息的指令,即将与指令对应的目标设备的正常运行的声音信息发送至移动终端。 The second communication unit 201 is configured to perform communication interaction with the mobile terminal, receive the identifier and location information sent by the first communication unit 103 of the mobile terminal, and obtain a spatial image of the equipment room, the collection device, and the target device by capturing the image, that is, the space. Receiving, and receiving, by the server, the data information, the association relationship, and the AR space model of the collection device corresponding to the received identifier and location information in the server to the mobile terminal; in some embodiments, manually drawing the equipment room, the collection device, and The plane relationship of the target device or the computer model, the plane relationship of the acquisition device and the target device, or the three-dimensional relationship to obtain the space model in the equipment room; in some embodiments, the space of the equipment room is modeled, and the function room is used to represent the equipment room. Collecting spatial information of the device and the target device, and sending the information to the server; and receiving the page turning command sent by the staff member, and sending the page turning command to the field collecting device to complete the page turning; receiving the comparison result sent by the mobile terminal and Data recording; in this embodiment, the method further includes receiving and collecting Sound information under normal operating state of the transmission apparatus, when a receiving mobile terminal information acquired voice instruction, the normal operation of the sound information is about the target device corresponding to the command to the mobile terminal.
建模单元202,用于根据采集设备与目标设备的关联信息进行建库,得到采集设备与目标设备之间的关联关系并存储;通过采集设备持续采集目标设备的数据信息,数据信息包括目标设备的历史点值、历史状态、历史报警,对同类目标设备的数据信息进行比较,建立数据对比库;根据采集设备发送的在正常运行状态下的声音信息建立声音数据库;根据移动终端发送的图像建立AR空间模型,并存储;有些实施例中,通过根据人工绘制机房、采集设备及目标设备的平面关系或者通过电脑绘制机房、采集设备及目标设备的平面关系或者三维空间关系所得到机房里的空间模型,建立AR空间模型。The modeling unit 202 is configured to establish a database according to the association information between the collection device and the target device, obtain an association relationship between the collection device and the target device, and store the data information of the target device through the collection device, where the data information includes the target device. Historical point value, historical state, historical alarm, compare data information of similar target devices, establish a data comparison library; establish a sound database according to the sound information sent by the collecting device in a normal running state; establish according to the image sent by the mobile terminal The AR space model is stored and stored in some embodiments. The space in the equipment room is obtained by manually drawing the plane relationship between the equipment room, the collection device, and the target device, or by drawing a plane relationship or a three-dimensional relationship between the equipment room, the collection device, and the target device. Model, build an AR space model.
第二存储单元203,用于预先存储机房中采集设备和目标设备的名称、编号以及对应的标识及位置信息,以及存储采集设备持续采集目标设备的数据信息,数据信息包括目标设备的历史点值、历史状态、历史报警;存储采集设备和目标设备的关联关系、机房、采集设备和目标设备的AR空间模型、数据对比库和声音数据库,供巡检中移动终端获取;保存移动终端发送的比对结果及数据记录。本发明实施例提供的机房管理方法,通过移动终端从服务器获取采集设备的第一数据、从现场获取采集设备的第二数据以及从现场获取与采集设备对应的目标设备的第四数据的巡检方式,确保了巡检数据的时效性及提高巡检的工作效率;通过对比从不同方式获取的数据,可及时发现数据出错问题以及判断出数据传输和处理过程中出现错误的环节。The second storage unit 203 is configured to pre-store the name, number, and corresponding identifier and location information of the collection device and the target device in the equipment room, and store the data information of the collection device continuously, and the data information includes the historical point value of the target device. , historical state, historical alarm; storage association between the collection device and the target device, the AR space model of the equipment room, the collection device, and the target device, the data comparison library, and the sound database, which are acquired by the mobile terminal during the inspection; and the comparison sent by the mobile terminal is saved. Results and data records. The computer room management method provided by the embodiment of the present invention obtains the first data of the collection device from the server, acquires the second data of the collection device from the site, and acquires the fourth data of the target device corresponding to the collection device from the site. The method ensures the timeliness of the inspection data and improves the work efficiency of the inspection; by comparing the data obtained from different methods, the data error problem can be found in time and the error occurs in the data transmission and processing.
本发明的实施方式Embodiments of the invention
在此处键入本发明的实施方式描述段落。The description paragraphs of the embodiments of the present invention are entered here.
工业实用性Industrial applicability
综上所述,本发明公开了一种机房管理方法及动环系统,通过采用移动终端从服务器获取采集设备的第一数据、从现场获取采集设备的第二数据以及从现场获取与采集设备对应的目标设备的第四数据的巡检方式,确保了巡检数据的时效性以及提高了巡检工作的效率;通过对比上述从不同方式获取的数据,及时发现数据出错问题以及判断出数据传输和处理过程中出现错误的环节;In summary, the present invention discloses a computer room management method and a dynamic ring system, which acquires first data of a collection device from a server by using a mobile terminal, acquires second data of the collection device from the site, and acquires corresponding to the collection device from the site. The inspection method of the fourth data of the target device ensures the timeliness of the inspection data and improves the efficiency of the inspection work; by comparing the data obtained from different methods, the data error problem is detected in time and the data transmission is judged. The wrong part of the process;
同时,通过在移动终端显示增强现实或混合现实界面,标记已完成巡检的设备,不需要巡检人员手动记录,提高工作效率及有效预防出现检漏情况;并且,通过移动终端获取现场目标设备的运行声音与正常运行状态下的声音对比,可及时发现设备的异常情况;实现了对机房设备情况的全面巡检,及时判断设备的运行情况及进行异常处理,提高机房巡检的效率及保障了巡检数据的时效性。At the same time, by displaying the augmented reality or mixed reality interface on the mobile terminal, the device that has completed the inspection is marked, and the inspection personnel are not required to manually record, thereby improving the work efficiency and effectively preventing the occurrence of the leak detection; and obtaining the on-site target device through the mobile terminal. The running sound is compared with the sound in the normal running state, and the abnormal condition of the equipment can be found in time; the comprehensive inspection of the equipment room condition is realized, the operation condition of the equipment is timely judged, and the abnormal processing is performed to improve the efficiency and guarantee of the inspection of the equipment room. The timeliness of the inspection data.
序列表自由内容Sequence table free content
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。It is to be understood that the above-described embodiments are merely illustrative of the preferred embodiments of the present invention, and are not to be construed as limiting the scope of the invention; The above technical features may be freely combined, and various modifications and improvements may be made without departing from the spirit and scope of the invention; therefore, the scope of the claims of the present invention is Equivalent transformations and modifications are intended to be included within the scope of the appended claims.

Claims (15)

  1. 一种机房管理方法,其特征在于,包括以下步骤: A computer room management method, characterized in that the method comprises the following steps:
    S1、移动终端从服务器获取采集设备的第一数据;S1. The mobile terminal acquires first data of the collection device from the server.
    S2、所述移动终端从现场获取所述采集设备的第二数据;S2. The mobile terminal acquires second data of the collection device from the site;
    S3、所述移动终端从现场获取与所述采集设备对应的目标设备的第四数据;S3. The mobile terminal acquires fourth data of the target device corresponding to the collection device from the site;
    S4、对比所述第一数据、第二数据和第四数据,判断数据出错的环节。S4. Compare the first data, the second data, and the fourth data to determine a link in which the data is erroneous.
  2. 根据权利要求1所述的机房管理方法,其特征在于,所述步骤S1包括以下步骤:The equipment room management method according to claim 1, wherein the step S1 comprises the following steps:
    S1-1、所述移动终端采集所述采集设备和/或目标设备的标识或者位置信息,发送至所述服务器;S1-1, the mobile terminal collects the identifier or location information of the collection device and/or the target device, and sends the identifier to the server.
    S1-2、所述移动终端从所述服务器中获取与所述发送至服务器的标识或者位置信息所对应的采集设备的第一数据。S1-2. The mobile terminal acquires, from the server, first data of the collection device corresponding to the identifier or location information sent to the server.
  3. 根据权利要求1或2所述的机房管理方法,其特征在于,包括采集设备持续采集目标设备的数据信息,发送至所述服务器;所述移动终端从所述服务器获取所述采集设备的第一数据。The equipment room management method according to claim 1 or 2, wherein the collecting device continuously collects data information of the target device and sends the data information to the server; the mobile terminal acquires the first of the collecting device from the server. data.
  4. 根据权利要求1所述的机房管理方法,其特征在于,该方法还包括The equipment room management method according to claim 1, wherein the method further comprises
    获取机房、采集设备及目标设备的空间信息,发送至服务器,以建立AR空间模型;对采集设备和目标设备进行建模,并建立采集设备和目标设备之间的关联关系。The spatial information of the equipment room, the collection device, and the target device is obtained and sent to the server to establish an AR space model; the collection device and the target device are modeled, and an association relationship between the collection device and the target device is established.
  5. 根据权利要求4所述的机房管理方法,其特征在于,所述方法还包括所述移动终端获取所述采集设备和/或与所述采集设备对应的目标设备的标识或者位置信息,并发送至所述服务器;The equipment room management method according to claim 4, wherein the method further comprises the mobile terminal acquiring the identification or location information of the collection device and/or the target device corresponding to the collection device, and sending the The server;
    所述移动终端接收服务器回传的与所述采集设备和/或对应的目标设备所对应的AR空间模型和关联关系; Receiving, by the mobile terminal, an AR space model and an association relationship corresponding to the collection device and/or the corresponding target device returned by the server;
    所述移动终端接收所述AR空间模型和关联关系,计算所述关联关系所对应的采集设备和目标设备需要在3D增强现实或者混合现实界面上显示的位置,并显示在增强现实或者混合现实界面上。The mobile terminal receives the AR space model and the association relationship, and calculates a location that the collection device and the target device corresponding to the association relationship need to display on a 3D augmented reality or a mixed reality interface, and displays the image in an augmented reality or mixed reality interface. on.
  6. 根据权利要求1所述的机房管理方法,其特征在于,在步骤S2中,包括The equipment room management method according to claim 1, wherein in step S2,
    所述移动终端与所述采集设备通过无线射频识别技术建立通讯连接,获取所述采集设备的第二数据。The mobile terminal establishes a communication connection with the collection device by using a radio frequency identification technology, and acquires second data of the collection device.
  7. 根据权利要求6所述的机房管理方法,其特征在于,在步骤S2中,还包括The equipment room management method according to claim 6, wherein in step S2, the method further includes
    所述移动终端对所述采集设备上的屏幕信息做OCR识别,获取屏幕上显示的所述采集设备的第三数据;The mobile terminal performs OCR identification on the screen information on the collection device, and acquires third data of the collection device displayed on the screen;
    若所述第二数据≠所述第三数据,则所述采集设备本身处理环节出错。If the second data is the third data, the processing device itself has an error in processing.
  8. 根据权利要求1所述的机房管理方法,其特征在于,在步骤S3中,包括The equipment room management method according to claim 1, wherein in step S3,
    所述移动终端与所述采集设备对应的目标设备通过无线射频识别技术建立通讯连接,获取所述采集设备对应的目标设备的第四数据。The target device corresponding to the collection device of the mobile terminal establishes a communication connection by using a radio frequency identification technology, and acquires fourth data of the target device corresponding to the collection device.
  9. 根据权利要求1所述的机房管理方法,其特征在于,在步骤S4中,包括The equipment room management method according to claim 1, wherein in step S4,
    若所述第一数据≠所述第二数据,则所述采集设备与所述服务器之间的传输或者处理环节出错;If the first data is the second data, the transmission or processing link between the collection device and the server is in error;
    若所述第二数据≠所述第四数据,则所述采集设备对应的目标设备与所述采集设备之间的传输或者处理环节出错。If the second data is the fourth data, the transmission or processing link between the target device and the collection device corresponding to the collection device is in error.
  10. 根据权利要求1所述的机房管理方法,其特征在于,方法还包括The equipment room management method according to claim 1, wherein the method further comprises
    持续采集所述目标设备在正常运行状态下的声音数据,并发送至服务器,以建立声音数据库;Continuously collecting sound data of the target device in a normal running state, and sending the data to a server to establish a sound database;
    在所述步骤S3中,所述第四数据包括目标设备运行的声音数据;In the step S3, the fourth data includes sound data that is operated by the target device;
    所述移动终端根据与所述声音数据库中对应的目标设备声音对比,判断所述第四数据中的目标设备的声音数据是否异常,并显示被判断为声音异常状态的设备信息。The mobile terminal determines whether the sound data of the target device in the fourth data is abnormal according to the comparison with the target device sound in the sound database, and displays device information determined to be a sound abnormal state.
  11. 一种动环系统,其特征在于,包括移动终端,所述移动终端包括A moving ring system, comprising: a mobile terminal, wherein the mobile terminal comprises
    第一通信单元,用于获取设备数据信息;a first communication unit, configured to acquire device data information;
    数据处理单元,用于对比所述设备数据信息,判断设备数据出错的环节;a data processing unit, configured to compare the device data information, and determine a link of the device data error;
    所述设备数据信息包括从服务器获取的采集设备的第一数据、从现场获取的采集设备的第二数据以及从现场获取的与所述采集设备对应的目标设备的第四数据。The device data information includes first data of the collection device acquired from the server, second data of the collection device acquired from the site, and fourth data of the target device corresponding to the collection device acquired from the site.
  12. 根据权利要求11所述的动环系统,其特征在于,所述移动终端还包括The moving ring system according to claim 11, wherein said mobile terminal further comprises
    标识采集单元,用于采集所述采集设备和/或目标设备的标识;An identifier collection unit, configured to collect an identifier of the collection device and/or the target device;
    定位单元,用于采集所述采集设备和/或目标设备的位置信息;a positioning unit, configured to collect location information of the collection device and/or the target device;
    所述第一通信单元将所述采集设备和/或目标设备的标识或者位置信息发送至服务器。The first communication unit transmits the identification or location information of the collection device and/or the target device to the server.
  13. 根据权利要求11所述的动环系统,其特征在于,The moving ring system according to claim 11, wherein
    所述第一通信单元还用于获取机房、采集设备及目标设备的空间信息,发送至服务器;The first communication unit is further configured to acquire spatial information of the equipment room, the collection device, and the target device, and send the information to the server;
    所述系统还包括所述服务器,所述服务器包括The system also includes the server, the server including
    第二通信单元,用于接收来自所述第一通信单元的空间信息;a second communication unit, configured to receive spatial information from the first communication unit;
    建模单元,用于根据空间信息建立AR空间模型,还用于对所述采集设备和目标设备进行建模,并建立采集设备和目标设备之间的关联关系;a modeling unit, configured to establish an AR space model according to the spatial information, and configured to model the collection device and the target device, and establish an association relationship between the collection device and the target device;
    第二存储单元,用于存储所述AR空间模型和关联关系。 And a second storage unit, configured to store the AR space model and an association relationship.
  14. 根据权利要求13所述的动环系统,其特征在于, The moving ring system according to claim 13, wherein
    所述数据处理单元还用于计算所述关联关系所对应的采集设备和目标设备需要在3D增强现实或者混合现实界面上显示的位置;The data processing unit is further configured to calculate a location that the collection device and the target device corresponding to the association relationship need to display on a 3D augmented reality or a mixed reality interface;
    所述移动终端还包括显示单元,用于将所述关联关系对应的采集设备和目标设备显示在增强现实或者混合现实界面上。The mobile terminal further includes a display unit, configured to display the collection device and the target device corresponding to the association relationship on an augmented reality or mixed reality interface.
  15. 根据权利要求13所述的动环系统,其特征在于, The moving ring system according to claim 13, wherein
    所述第二通信单元接收所述采集设备持续采集所述目标设备在正常运行状态下的声音数据,通过建模单元建立声音数据库,存储于第二存储单元中;The second communication unit receives the sound data of the target device in a normal running state, and establishes a sound database through the modeling unit, and stores the sound database in the second storage unit;
    所述第四数据包括目标设备运行的声音数据;The fourth data includes sound data of a target device operation;
    所述数据处理单元还用于根据与所述声音数据库中对应的目标设备声音对比,判断所述第四数据中的目标设备的声音是否异常,通过显示单元显示被判断为声音异常状态的设备信息。The data processing unit is further configured to determine, according to a comparison with a target device sound in the sound database, whether the sound of the target device in the fourth data is abnormal, and display, by the display unit, device information that is determined to be a sound abnormal state. .
     
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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111723880A (en) * 2020-06-08 2020-09-29 中国工商银行股份有限公司 Detection method and device for equipment inspection operation
CN112907110A (en) * 2021-03-17 2021-06-04 广东电网有限责任公司 Computer room data management system, method and computer storage medium
CN113284271A (en) * 2021-04-28 2021-08-20 中国工商银行股份有限公司 Machine room inspection method and device, electronic equipment and computer readable storage medium
CN113393523A (en) * 2021-06-04 2021-09-14 上海蓝色帛缔智能工程有限公司 Method and device for automatically monitoring computer room image and electronic equipment
CN113537420A (en) * 2021-06-10 2021-10-22 西安图迹信息科技有限公司 Two-dimensional code inspection method based on big data
CN114356442A (en) * 2021-12-22 2022-04-15 中核武汉核电运行技术股份有限公司 Inspection system and method for distributed system of nuclear power plant software operation and maintenance
CN114510027A (en) * 2021-12-22 2022-05-17 中煤科工开采研究院有限公司 Underground coal mine equipment inspection method and device based on AR technology
CN115062738A (en) * 2022-06-02 2022-09-16 东风汽车集团股份有限公司 Wireless acquisition and approval system for bar codes of parts

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111914789A (en) * 2020-08-13 2020-11-10 杭州云笔智能科技有限公司 Method and system for determining running state of target equipment
CN112530045A (en) * 2020-11-26 2021-03-19 重庆电子工程职业学院 Intelligent inspection system of factory
CN112565015B (en) * 2020-12-03 2021-08-17 深圳华制智能制造技术有限公司 Internet of things communication method and device, computer equipment and storage medium
CN113989951A (en) * 2021-10-08 2022-01-28 中通服和信科技有限公司 Electronic patrol system based on mobile internet and NFC
CN116980866A (en) * 2022-04-22 2023-10-31 青岛海尔科技有限公司 Binding method and device of data tag, storage medium and electronic device
CN116071844A (en) * 2023-01-31 2023-05-05 广东长盈科技股份有限公司 Park management and control method and system based on virtual reality processing technology

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102880889A (en) * 2012-08-31 2013-01-16 武汉日电光通信工业有限公司 RFID-based machine room monitoring device, system and method
JP2014235674A (en) * 2013-06-05 2014-12-15 株式会社日立製作所 Maintenance management system, and maintenance management method of maintenance management system
CN105425762A (en) * 2016-01-12 2016-03-23 国网山东省电力公司经济技术研究院 Machine room power environment centralized monitoring system
CN105447539A (en) * 2015-11-16 2016-03-30 中博信息技术研究院有限公司 RFID-based MODF construction method and network management system thereof
CN206775516U (en) * 2017-03-31 2017-12-19 北京神州泰岳软件股份有限公司 Computer room management system based on RFID label tag

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104244300B (en) * 2013-06-17 2018-05-15 中国移动通信集团浙江有限公司 A kind of method and system for realizing base station power & environment supervision
CN103901866A (en) * 2014-04-16 2014-07-02 左浩俊 Wind power plant operation and maintenance supporting system
JP2016126440A (en) * 2014-12-26 2016-07-11 大日本印刷株式会社 Server, information management method, information management system, and program
CN206132124U (en) * 2016-10-20 2017-04-26 贵州电网有限责任公司贵阳供电局 Machine room power environment monitoring system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102880889A (en) * 2012-08-31 2013-01-16 武汉日电光通信工业有限公司 RFID-based machine room monitoring device, system and method
JP2014235674A (en) * 2013-06-05 2014-12-15 株式会社日立製作所 Maintenance management system, and maintenance management method of maintenance management system
CN105447539A (en) * 2015-11-16 2016-03-30 中博信息技术研究院有限公司 RFID-based MODF construction method and network management system thereof
CN105425762A (en) * 2016-01-12 2016-03-23 国网山东省电力公司经济技术研究院 Machine room power environment centralized monitoring system
CN206775516U (en) * 2017-03-31 2017-12-19 北京神州泰岳软件股份有限公司 Computer room management system based on RFID label tag

Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111723880A (en) * 2020-06-08 2020-09-29 中国工商银行股份有限公司 Detection method and device for equipment inspection operation
CN111723880B (en) * 2020-06-08 2023-09-08 中国工商银行股份有限公司 Detection method and device for equipment inspection operation
CN112907110A (en) * 2021-03-17 2021-06-04 广东电网有限责任公司 Computer room data management system, method and computer storage medium
CN112907110B (en) * 2021-03-17 2023-09-29 广东电网有限责任公司 Computer room data management system, computer room data management method and computer storage medium
CN113284271A (en) * 2021-04-28 2021-08-20 中国工商银行股份有限公司 Machine room inspection method and device, electronic equipment and computer readable storage medium
CN113284271B (en) * 2021-04-28 2023-06-20 中国工商银行股份有限公司 Machine room inspection method, device, electronic equipment and computer readable storage medium
CN113393523B (en) * 2021-06-04 2023-03-14 上海蓝色帛缔智能工程有限公司 Method and device for automatically monitoring computer room image and electronic equipment
CN113393523A (en) * 2021-06-04 2021-09-14 上海蓝色帛缔智能工程有限公司 Method and device for automatically monitoring computer room image and electronic equipment
CN113537420B (en) * 2021-06-10 2022-12-13 西安图迹信息科技有限公司 Two-dimensional code inspection method based on big data
CN113537420A (en) * 2021-06-10 2021-10-22 西安图迹信息科技有限公司 Two-dimensional code inspection method based on big data
CN114510027A (en) * 2021-12-22 2022-05-17 中煤科工开采研究院有限公司 Underground coal mine equipment inspection method and device based on AR technology
CN114356442A (en) * 2021-12-22 2022-04-15 中核武汉核电运行技术股份有限公司 Inspection system and method for distributed system of nuclear power plant software operation and maintenance
CN114356442B (en) * 2021-12-22 2024-02-13 中核武汉核电运行技术股份有限公司 Distributed system inspection system and method for nuclear power plant software operation and maintenance
CN115062738A (en) * 2022-06-02 2022-09-16 东风汽车集团股份有限公司 Wireless acquisition and approval system for bar codes of parts
CN115062738B (en) * 2022-06-02 2024-05-03 东风汽车集团股份有限公司 Wireless acquisition and approval system for bar codes of parts

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