WO2019062254A1 - 一种设备管理系统及方法 - Google Patents

一种设备管理系统及方法 Download PDF

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Publication number
WO2019062254A1
WO2019062254A1 PCT/CN2018/094357 CN2018094357W WO2019062254A1 WO 2019062254 A1 WO2019062254 A1 WO 2019062254A1 CN 2018094357 W CN2018094357 W CN 2018094357W WO 2019062254 A1 WO2019062254 A1 WO 2019062254A1
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WO
WIPO (PCT)
Prior art keywords
mobile terminal
radio frequency
management application
related information
frequency identification
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Application number
PCT/CN2018/094357
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English (en)
French (fr)
Inventor
戴立先
夏林印
王剑涛
刘为飞
张臣友
魏振峰
高明亮
赵森
Original Assignee
中建钢构有限公司
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.)
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Publication date
Application filed by 中建钢构有限公司 filed Critical 中建钢构有限公司
Priority to DE212018000332.7U priority Critical patent/DE212018000332U1/de
Priority to JP2019600171U priority patent/JP3235743U/ja
Publication of WO2019062254A1 publication Critical patent/WO2019062254A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/20Administration of product repair or maintenance
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/0008General problems related to the reading of electronic memory record carriers, independent of its reading method, e.g. power transfer

Definitions

  • the present application relates to the field of management, and in particular, to a device management system and method.
  • the equipment management of the workshop is mainly realized by recording and preserving the scheduling, inspection and maintenance information of the equipment on the paper materials.
  • the process of collecting, sorting and inquiring the equipment files is cumbersome, and the paper consumption is cumbersome.
  • paper materials also have real-time and poor sharing, easy to lose, easy to get wet and easy to corrode.
  • the present application provides a device management system and method, and the main purpose thereof includes solving the scheduling, inspection and maintenance information of the device for recording and storing on the paper material in the prior art, and collecting, sorting and querying the device file later.
  • the process is cumbersome, and the paper consumption is large, and at the same time, a large amount of space is required to store the paper material.
  • the paper material also has the technical problems of poor real-time and poor sharing, easy to lose, easy to get wet, and easy to corrode.
  • a first aspect of the embodiments of the present application provides a device management system, including:
  • a radio frequency identification tag a radio frequency identification tag, a first mobile terminal, a second mobile terminal, and a server
  • the radio frequency identification tag is installed on a device to be managed, and the radio frequency identification tag is configured to store and send related information of the device;
  • the first mobile terminal and the second mobile terminal each have a wireless communication module, and the first mobile terminal is wirelessly connected to the second mobile terminal;
  • the first mobile terminal has a built-in radio frequency read/write module, and the first mobile terminal reads and modifies the stored in the radio frequency identification tag by using the radio frequency read/write module under the control of the second mobile terminal Information about the device, and transmitting related information of the device to the second mobile terminal;
  • a device management application is installed in the second mobile terminal, and the permission task of the current user is obtained by the device management application, and displayed to the current user, and when the execution task instruction of the current user is detected Processing related information of the device according to the instruction;
  • the server is wirelessly connected to the second mobile terminal, and configured to acquire information about the device sent by the second mobile terminal, processing result information of the instruction, and related information about the device.
  • a second aspect of the embodiments of the present application provides a device management method, including:
  • the device management application in the second mobile terminal that is wirelessly connected to the first mobile terminal acquires the privilege task of the current user and displays the privilege task to the current user;
  • the device management application When detecting the execution task instruction of the current user, the device management application controls the first mobile terminal to scan the radio frequency identification tag according to the instruction, and acquire related information of the device returned by the radio frequency identification tag, and Sending the related information of the device to the device management application, where the device management application acquires the processing result information of the device to be processed according to the related information of the returned device;
  • the device management application sends the processing result information to a server.
  • the device management system and method provided by the present application can store the current state of the recording device in time by using the radio frequency identification tag, thereby avoiding missing device information, and checking, repairing, and inventorying the device.
  • the position of the recording device can be better tracked, the current situation of the device can be grasped in real time, and the actual execution of the task can be effectively guaranteed, thereby maintaining and improving the device work.
  • Performance to ensure normal production, and on the other hand, use the server, storage device all relevant information to ensure the integrity of the information, at the same time, install the device management application in the second mobile terminal, implement systematic management, not only improve the work Efficiency and management efficiency also provide visual data for staff assessment, accountability and rewards.
  • FIG. 1 is a structural block diagram of a device management system according to a first embodiment of the present application
  • FIG. 2 is a schematic flowchart of a device management method according to a third embodiment of the present application.
  • FIG. 3 is a schematic flowchart of a device inventory task in a device management method according to a fourth embodiment of the present disclosure
  • FIG. 4 is a schematic flowchart of a device check task in a device management method according to a fourth embodiment of the present disclosure
  • FIG. 5 is a schematic flowchart of a device maintenance task in a device management method according to a fourth embodiment of the present disclosure.
  • the device management system and method provided by the embodiments of the present application are applicable to workshop device management, and the system includes a radio frequency identification tag, a first mobile terminal, a second mobile terminal, and a server, and information interaction between devices in the system, and Second, the device management application in the mobile terminal to improve the management efficiency of the workshop equipment.
  • FIG. 1 is a structural block diagram of a device management system according to a first embodiment of the present application, where the system includes:
  • Radio frequency identification tag 10 first mobile terminal 20, second mobile terminal 30 and server 40;
  • the radio frequency identification tag 10 is configured to be installed on a device to be managed, and configured to store and send related information of the device.
  • the related information stored by the radio frequency identification tag 10 includes a manufacturer, a production date, a price, a device number, and a device of the device. Model, equipment ownership and equipment location;
  • the first mobile terminal 20 and the second mobile terminal 30 respectively have a wireless communication module 22 and a wireless communication module 32.
  • the wireless communication module 22 and the wireless communication module 32 may be Bluetooth modules, and the first mobile terminal 20 and the first The mobile terminal 30 is connected to the wireless communication module 32.
  • the first mobile terminal 20 is configured to be read by the radio frequency reading and writing module 21 built in the first mobile terminal 20 under the control of the second mobile terminal 30. And modifying related information of the device stored in the radio frequency identification tag 10, and transmitting related information of the device to the second mobile terminal 30;
  • the device management application 31 is installed in the second mobile terminal 30, and the device management application 31 acquires the permission task of the current user and displays it to the user, and when the execution task instruction of the user is detected, according to the The instruction processes relevant information of the device;
  • the server 40 is wirelessly connected to the second mobile terminal 30, and configured to acquire related information of the device sent by the second mobile terminal 30, processing result information of the instruction, and related information of the preset device.
  • the current state of the recording device can be stored in time, the device information is omitted, and the device is provided for the inspection, maintenance, and inventory work.
  • the first mobile terminal is used.
  • the second mobile terminal can better track the location of the recording device, know the current situation of the device in real time, and effectively ensure the actual execution of the task, thereby maintaining and improving the working performance of the device, ensuring normal production, and on the other hand, using the server. All relevant information of the storage device ensures the integrity of the information.
  • installing the device management application in the second mobile terminal and implementing systematic management not only improves the work efficiency and management efficiency, but also improves the staff's assessment.
  • Responsibility and rewards provide visual data.
  • a device management system provided by the second embodiment of the present application includes:
  • the RFID tag 10 is composed of a coupling component and a chip, is mounted on the device, and stores related information of the device in the chip.
  • the UHF passive anti-metal tag has an operating frequency of 902-928 MHz (megahertz, all of which are in MHz).
  • the main configuration of the memory is 128 bits (bits, all of which are represented by bits) and 512 bits of the User area in the EPC (Engineering Procurement Construction) area of the RFID tag 10.
  • the maximum readable distance is 10 m (meters, and the following are expressed by m)
  • the first mobile terminal 20 has a built-in radio frequency reading and writing module 21 and a wireless communication module 22, communicates with the second mobile terminal 30 through the built-in wireless communication module 22, and uses the radio frequency reading and writing module 21 to identify the radio frequency identification tag 10, and reads or Modifying the relevant data information in the radio frequency identification tag 10, the device management application 31 in the second mobile terminal 30 can control the first mobile terminal 20, which can be held by a worker.
  • the second mobile terminal 30 communicates with the first mobile terminal 20 through the built-in wireless communication module 32, connects to the server 40 through the wireless network, is held by the worker or is clamped on the first mobile terminal 20 for operation.
  • the device management application 31 in the second mobile terminal 30 can query the device maintenance task, query the device location, control the first mobile terminal 20 to read and write the radio frequency identification tag 10, and check the result of the editing device.
  • the equipment maintenance personnel perform the "snap" operation on the repair equipment and the "assignment" operation by the equipment administrator.
  • the device management application 31 in the second mobile terminal 30 can obtain different rights by logging in different users, wherein the logged-in users have the right to query device information, and the device administrator has the authority to assign tasks, device inventory and Check the task changes and release permissions; the device inspector has the authority to query the inventory and check tasks, upload the inventory and check the results; the equipment maintenance personnel have the authority to query the repair order, grab the repair order and upload the repair result, in the second mobile terminal
  • the installation of the equipment management application 31 in 30, systematic management not only improves work efficiency and management efficiency, but also provides a visual and data basis for staff assessment, accountability and reward.
  • the server 40 stores device inspection tasks, basic information of the equipment and maintenance history, equipment workshop location code table, equipment inspection personnel and equipment maintenance personnel, and the equipment administrator can update and release the equipment inspection tasks.
  • the shop location code information can be changed, the equipment maintenance cost can be counted, the workload of the equipment inspectors and equipment maintenance personnel, the work efficiency and the work completion status can be counted, and the information integrity is ensured by storing relevant information of all the devices.
  • the radio frequency identification tag 10 is installed on the device, and under the control of the second mobile terminal 30, the first mobile terminal 20 writes related information of the device in the radio frequency identification tag 10, including the device location and price of the device.
  • the first mobile terminal 20 is used to modify related information of the device in the radio frequency identification tag 10, and the related information is sent.
  • the server 40 and the server 40 are archived to better track and record the location of the device, and to know the current status of the device in real time.
  • the device administrator performs the device inventory and the device check task modification and release in the device management application 31; the device check personnel performs the device inventory and check tasks; the device maintenance personnel perform the device maintenance task; the device administrator can perform the maintenance The personnel assigned maintenance tasks.
  • the device inspector logs in to the device management application 31 on the second mobile terminal 30 to view the latest inventory task
  • the first mobile terminal 20 is used for scanning, and the radio frequency identification tag 10 on the device is activated.
  • the radio frequency identification tag 10 transmits the device number information to the first mobile terminal 20, and the first mobile terminal 20 passes the wireless communication module 21 again.
  • the device number information is sent to the second mobile terminal 30 to complete the inventory task;
  • the device inspector After the inventory task is completed, the device inspector records the inventory result information in the second mobile terminal 30, and uploads the inventory result to the server 40 through the device management application 31.
  • the device inspector uses the personal account to log in through the device management application 31 on the second mobile terminal 30. After the login is successful, the device management application 31 checks the latest check task.
  • the first mobile terminal 20 is controlled to perform scanning, the radio frequency identification tag 10 on the device is activated, and the radio frequency identification tag 10 transmits the device number information to the first mobile terminal 20,
  • the first mobile terminal 20 transmits the device number information to the second mobile terminal 30 through the wireless communication module 21, and the second mobile terminal 30 matches the device number in the inspection task. If the matching is successful, the device management application 31
  • the maintenance record and inspection method of the device are displayed, and the equipment inspector starts the equipment inspection task;
  • the device inspector After the inspection task is completed, the device inspector records the inspection result information in the second mobile terminal 30, and uploads the inspection result information to the server 40 through the device management application 31.
  • the device maintenance personnel use the personal account to log in through the device management application 31 on the second mobile terminal 30. After the login is successful, the device management application 31 can view the device to be repaired;
  • the equipment maintenance personnel grabs the repair order on the equipment management application 31, and after the successful connection, the equipment location is inquired according to the equipment number, and arrives at the corresponding workshop location according to the location information;
  • the first mobile terminal 20 is controlled to perform scanning, the radio frequency identification tag 10 on the device is activated, and the device number information is transmitted to the first mobile terminal 20, and the first mobile terminal 20
  • the device number information is sent to the second mobile terminal 30 by the wireless communication module 21, and the second mobile terminal 30 matches the device number in the inspection task. If the matching is successful, the device is diagnosed and the cause of the failure of the device is confirmed.
  • the equipment maintenance personnel After the equipment maintenance is completed, the equipment maintenance personnel records the maintenance result information in the second mobile terminal 30, and the maintenance result information is uploaded to the server 40 through the device management application 31;
  • the equipment manager assigns a maintenance task to the designated equipment maintenance personnel in the equipment management application 31.
  • the current state of the recording device can be stored in time, the device information is omitted, and the device is provided for the inspection, maintenance, and inventory work.
  • the first mobile terminal is used.
  • the second mobile terminal can better track the location of the recording device, know the current situation of the device in real time, and effectively ensure the actual execution of the task, thereby maintaining and improving the working performance of the device, ensuring normal production, and on the other hand, using the server. All relevant information of the storage device ensures the integrity of the information.
  • installing the device management application in the second mobile terminal and implementing systematic management not only improves the work efficiency and management efficiency, but also improves the staff's assessment.
  • Responsibility and rewards provide visual data.
  • FIG. 2 is a schematic flowchart of an implementation process of a device management method according to a third embodiment of the present disclosure, where the method includes:
  • the device management application in the second mobile terminal that is wirelessly connected to the first mobile terminal acquires the permission task of the current user and displays the task to the current user.
  • the device management application 31 in the second mobile terminal 30 can query the device maintenance task, query the device location, control the first mobile terminal 20 to read and write the radio frequency identification tag 10, and check the editing device, and can also be used by the device.
  • the maintenance personnel perform the "snap" operation on the repair equipment and the "assignment" operation by the equipment administrator.
  • the device management application 31 in the second mobile terminal 30 can obtain different rights by logging in different users, wherein the logged-in users have the right to query the device information, and the device administrator has the authority to assign tasks, device inventory, and inspection tasks. Change and release authority; the device inspector has the authority to query the inventory and check tasks, upload the inventory and check the results; the equipment maintenance personnel have the authority to query the repair order, grab the repair order and upload the repair result, and install in the second mobile terminal 30.
  • the device management application 31 performs systematic management, which not only improves work efficiency and management efficiency, but also provides a visual and data basis for staff assessment, accountability and reward.
  • the device management application controls the first mobile terminal to scan the radio frequency identification tag according to the instruction, acquires related information of the device returned by the radio frequency identification tag, and sends the device.
  • the related information is sent to the device management application, and the device management application acquires processing result information of the device to be processed according to the related information of the returned device;
  • the device management application 31 in the second mobile terminal 30 controls the first mobile terminal 20 to scan the device to be counted according to the execution content of the obtained and displayed inventory task.
  • Radio frequency identification tag 10 for obtaining information about the device to be inspected returned by the radio frequency identification tag 10 for example, location information, inspection information, and maintenance information
  • related information such as location information, inspection information, and maintenance information
  • the device management application 31 in the second mobile terminal 30 controls the first mobile terminal 20 to scan the radio frequency identification tag 10 on the device according to the execution content of the acquired and displayed inspection task. Obtaining related information (such as number information) of the scanning device, the checking task includes related information (such as numbering information) of the device to be inspected, and the device management application 31 matches related information (such as number information) of the device to be inspected.
  • the information related to the returned device (for example, the number information), if the matching is successful, the device management application 31 displays the maintenance record and the inspection method of the device to be inspected; the device management application 31 according to the inspection record and the inspection method of the device to be inspected The processing result information of the device to be inspected, that is, the inspection result information of the scanning device is obtained;
  • the device management application 31 in the second mobile terminal 30 controls the execution content according to the acquired and displayed maintenance task.
  • the first mobile terminal 20 scans the radio frequency identification tag 10 on the device to acquire related information (such as number information) of the device returned by the radio frequency identification tag 10, and the maintenance task includes related information (such as number information) of the device to be repaired, the device
  • the management application 31 matches related information (for example, number information) of the device to be repaired with related information (for example, number information) of the returned device. If the matching is successful, the device management application 31 acquires processing result information of the device to be repaired, that is, Maintenance result information of the scanning device.
  • the standby maintenance task is displayed to the current user; and the device management application in the second mobile terminal is executed according to the acquired maintenance task. Controlling the first mobile terminal to scan the radio frequency identification tag, and obtaining the number information of the device returned by the radio frequency identification tag, wherein the maintenance task instruction includes the number information of the device to be repaired; the device management application matches the number information of the device to be repaired and the returned device Number information; if the match is successful, the device management application obtains the processing result information of the device to be repaired.
  • the device management application 31 acquires an instruction to assign a maintenance task, and assigns the unexecuted maintenance task instruction to the designated user.
  • the device management application sends the processing result information to the server.
  • the device inspector When performing the device inventory task instruction, the device inspector sends the inventory result information to the server 40 through the device management application 31 in the second mobile terminal 30;
  • the device checker When the device check task instruction is executed, the device checker sends the check result information to the server 40 through the device management application 31 in the second mobile terminal 30;
  • the device inspector when the device check result is a failure, the device inspector generates and issues a corresponding maintenance order of the device in the device management application 31.
  • the equipment maintenance personnel transmits the repair result information to the server 40 through the equipment management application 31 in the second mobile terminal 30.
  • the current state of the recording device can be stored in time, the device information is omitted, and the device is provided for the inspection, maintenance, and inventory work.
  • the first mobile terminal is used.
  • the second mobile terminal can better track the location of the recording device, know the current situation of the device in real time, and effectively ensure the actual execution of the task, thereby maintaining and improving the working performance of the device, ensuring normal production, and on the other hand, using the server. All relevant information of the storage device ensures the integrity of the information.
  • installing the device management application in the second mobile terminal and implementing systematic management not only improves the work efficiency and management efficiency, but also improves the staff's assessment.
  • Responsibility and rewards provide visual data.
  • a device management method provided by the fourth embodiment of the present application includes:
  • FIG. 3 is a schematic flowchart of a device inventory task in a device management method according to a fourth embodiment of the present disclosure.
  • the device inspector logs in to the device management application 31 on the second mobile terminal 30 to view the latest inventory task
  • the radio frequency identification tag 10 on the device is activated, the radio frequency identification tag 10 transmits the device number information to the first mobile terminal 20, and the first mobile terminal 20 sends the device number information to the first Second, the mobile terminal 30 completes the inventory task;
  • the device inspector After the inventory task is completed, the device inspector records the inventory result information in the second mobile terminal 30, and uploads the inventory result to the server 40 through the device management application 31.
  • FIG. 4 is a schematic flowchart of a device check task in a device management method according to a fourth embodiment of the present disclosure.
  • the device inspector uses the personal account to log in through the device management application 31 on the second mobile terminal 30. After the login is successful, the device management application 31 checks the latest check task.
  • the first mobile terminal 20 is controlled to perform scanning, the radio frequency identification tag 10 on the device is activated, and the radio frequency identification tag 10 transmits the device number information to the first mobile terminal 20,
  • the first mobile terminal 20 sends the device number information to the second mobile terminal 30, and the second mobile terminal 30 matches it with the device number in the inspection task. If the matching is successful, the device management application 31 displays the device maintenance. Recording and inspection methods, equipment inspectors begin equipment inspection tasks.
  • the equipment inspector checks the equipment and completes the equipment inspection task.
  • the device inspector takes a picture in the second mobile terminal 30, describes the inspection result information, and uploads the inspection result information to the server 40 through the device management application 31.
  • FIG. 5 is a schematic flowchart of a device maintenance task in a device management method according to a fourth embodiment of the present application.
  • the device maintenance personnel use the personal account to log in through the device management application 31 on the second mobile terminal 30. After the login is successful, the device to be repaired can be viewed in the device management application 31.
  • step S404 is performed; if there is no assigned task, step S405 is performed.
  • the equipment maintenance personnel grabs the repair order on the equipment management application 31. After the successful repair, the equipment location is queried according to the equipment number, and the corresponding workshop location is reached according to the location information.
  • step S406 is performed; if there is no standby repair order, step S402 is performed.
  • step S404 is performed; if there is no standby repair order, step S402 is performed.
  • the first mobile terminal 20 is controlled to perform scanning, the radio frequency identification tag 10 on the device is activated, and the device number information is transmitted to the first mobile terminal 20, and the first mobile terminal 20
  • the device number information is sent to the second mobile terminal 30, and the second mobile terminal 30 matches the device number in the inspection task. If the matching is successful, the device is checked again to confirm the cause of the failure of the device.
  • the equipment maintenance personnel After confirming the cause of the equipment failure, the equipment maintenance personnel begin the maintenance task.
  • the equipment maintenance personnel photographs and records the maintenance result information in the second mobile terminal 30, and uploads the maintenance result information to the server 40 through the equipment management application 31.
  • the equipment manager assigns a maintenance task to the designated equipment maintenance personnel in the equipment management application 31.
  • the current state of the recording device can be stored in time, the device information is omitted, and the device is provided for the inspection, maintenance, and inventory work.
  • the first mobile terminal is used.
  • the second mobile terminal can better track the location of the recording device, know the current situation of the device in real time, and effectively ensure the actual execution of the task, thereby maintaining and improving the working performance of the device, ensuring normal production, and on the other hand, using the server. All relevant information of the storage device ensures the integrity of the information.
  • installing the device management application in the second mobile terminal and implementing systematic management not only improves the work efficiency and management efficiency, but also improves the staff's assessment.
  • Responsibility and rewards provide visual data.
  • each functional module in each embodiment of the present application may be integrated to form a separate part, or each module may exist separately, or two or more modules may be integrated to form a separate part.
  • the device management system and method provided by the present application can store the current state of the recording device in time by using the radio frequency identification tag, avoiding the omission of the device information, and providing a basis for the inspection, maintenance and inventory work of the device, on the other hand, using
  • the first mobile terminal and the second mobile terminal can better track the location of the recording device, know the current status of the device in real time, and effectively ensure the effective execution of the task, thereby maintaining and improving the working performance of the device and ensuring normal production.
  • the integrity of the information is ensured.
  • installing the device management application in the second mobile terminal and implementing systematic management not only improves work efficiency and management efficiency, but also works for Visual assessments are provided by personnel assessments, accountability and rewards.

Abstract

本申请公开了一种设备管理系统,应用于管理领域,该系统包括:射频识别标签、第一移动终端、第二移动终端和服务器,该射频识别标签安装在待管理设备上,该第一移动终端配置成在该第二移动终端的控制下,读取和修改该射频识别标签中存储的该设备的相关信息,并将该设备的相关信息发送给该第二移动终端,该第二移动终端中安装有设备管理应用程序,该服务器配置成获取该第二移动终端发送的该设备的相关信息、该指令的处理结果信息,以及预置的该设备的相关信息,本申请还提供一种设备管理方法,可提高设备管理效率。

Description

一种设备管理系统及方法
本申请要求于2017年9月30日提交中国专利局的申请号为201710940307.3,名称为“一种设备管理系统及方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及管理领域,尤其涉及一种设备管理系统及方法。
背景技术
随着社会经济科技水平的快速发展,众多生产制造企业中的车间规模也逐渐变大,一家企业的车间中可能配置有上千台的设备,因为设备多、车间大,容易出现设备调度后难追踪、设备闲置、设备检修记录工作繁琐、设备漏检、设备检修任务无法按期完成等问题,降低了企业的生产效率和经济效益。
目前车间设备管理主要通过在纸质材料上记录和保存设备的调度、检查和维修信息这种方式来实现,但采用这种方法,设备档案后期的收集、整理和查询过程繁琐,且纸张耗费量大,同时还需占用大量空间存放纸张材料,纸质材料还具有实时性和共享性差,易丢失、易受潮和易腐蚀等缺点。
发明内容
有鉴于此,本申请提供一种设备管理系统及方法,主要目的包括解决现有技术中采用在纸质材料上记录和保存设备的调度、检查和维修信息,设备档案后期的收集、整理和查询过程繁琐,且纸张耗费量大,同时还需占用大量空间存放纸张材料,纸质材料还具有实时性和共享性差、易丢失、易受潮、易腐蚀 的技术问题。
本申请实施例第一方面提供一种设备管理系统,包括:
射频识别标签、第一移动终端、第二移动终端和服务器;
所述射频识别标签安装在待管理设备上,所述射频识别标签配置成存储和发送所述设备的相关信息;
所述第一移动终端与所述第二移动终端均内置无线通信模块,所述第一移动终端与所述第二移动终端无线连接;
所述第一移动终端内置射频读写模块,在所述第二移动终端的控制下,所述第一移动终端利用所述射频读写模块读取和修改所述射频识别标签中存储的所述设备的相关信息,并将所述设备的相关信息发送给所述第二移动终端;
所述第二移动终端中安装有设备管理应用程序,通过所述设备管理应用程序获取当前用户的权限任务,并显示给所述当前用户,以及,当检测到所述当前用户的执行任务指令时,根据所述指令处理所述设备的相关信息;
所述服务器与所述第二移动终端无线连接,配置成获取所述第二移动终端发送的所述设备的相关信息、所述指令的处理结果信息,以及预置的所述设备的相关信息。
本申请实施例第二方面提供了一种设备管理方法,包括:
当检测到权限任务获取操作时,与第一移动终端无线连接的第二移动终端中的设备管理应用程序,获取当前用户的权限任务,并显示给所述当前用户;
当检测到所述当前用户的执行任务指令时,所述设备管理应用程序根据所述指令控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,并发送所述设备的相关信息给所述设备管理应用程序,所述设备管理应用程序根据所述返回的设备的相关信息,获取待处理设备的处 理结果信息;
所述设备管理应用程序发送所述处理结果信息给服务器。
从上述本申请实施例可知,本申请提供的设备管理系统及方法,一方面,通过使用射频识别标签,能够及时存储记录设备的当前状况,避免设备信息遗漏,为设备的检查、维修和盘点工作提供依据,另一方面,使用第一移动终端和第二移动终端,能更好的跟踪记录设备的位置,实时了解掌握设备当前状况,以及,有效保障任务的切实执行,从而维持和改善设备工作性能,保证正常生产,再一方面,使用服务器,存储设备所有相关信息,保障了信息的完整性,同时,在第二移动终端中安装设备管理应用程序,实施系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化的数据。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,应当理解,以下附图仅示出了本申请的某些实施例,因此不应被看作是对范围的限定,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他相关的附图。
图1为本申请第一实施例提供的设备管理系统的结构框图;
图2为本申请第三实施例提供的设备管理方法的流程示意图;
图3为本申请第四实施例提供的设备管理方法中设备盘点任务的流程示意图;
图4为本申请第四实施例提供的设备管理方法中设备检查任务的流程示意图;
图5为本申请第四实施例提供的设备管理方法中设备维修任务的流程示意图。
具体实施方式
为使得本申请的发明目的、特征、优点能够更加的明显和易懂,下面将结合本申请实施例中附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。通常在此处附图中描述和示出的本申请实施例的组件可以以各种不同的配置来布置和设计。因此,以下对在附图中提供的本申请的实施例的详细描述并非旨在限制要求保护的本申请的范围,而是仅仅表示本申请的选定实施例。基于本申请的实施例,本领域技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都属于本申请保护的范围。
应注意到:相似的标号和字母在下面的附图中表示类似项,因此,一旦某一项在一个附图中被定义,则在随后的附图中不需要对其进行进一步定义和解释。同时,在本申请的描述中,术语“第一”、“第二”等仅用于区分描述,而不能理解为指示或暗示相对重要性。
本申请实施例提供的设备管理系统及方法,适用于车间设备管理,系统包括射频识别标签、第一移动终端、第二移动终端和服务器,通过系统各设备之间的信息交互,以及,使用第二移动终端内的设备管理应用程序,来提高车间设备的管理效率。
请参阅图1,为本申请第一实施例提供的设备管理系统的结构框图,该系统包括:
射频识别标签10、第一移动终端20、第二移动终端30和服务器40;
该射频识别标签10用于安装在待管理设备上,配置成存储和发送该设备的相关信息,该射频识别标签10存储的相关信息包括该设备的生产厂家、生产日期、价格、设备编号、设备型号、设备拥有部门和设备位置;
该第一移动终端20与该第二移动终端30分别内置有无线通信模块22和无线通信模块32,该无线通信模块22和无线通信模块32可以是蓝牙模块,该第一移动终端20与该第二移动终端30通过无线通信模块22和无线通信模块32连接,该第一移动终端20配置成在该第二移动终端30的控制下,利用第一移动终端20内置的射频读写模块21读取和修改该射频识别标签10中存储的该设备的相关信息,并将该设备的相关信息发送给该第二移动终端30;
该第二移动终端30中安装有设备管理应用程序31,通过该设备管理应用程序31获取当前用户的权限任务,并显示给该用户,以及,当检测到该用户的执行任务指令时,根据该指令处理该设备的相关信息;
该服务器40与该第二移动终端30无线连接,配置成获取该第二移动终端30发送的该设备的相关信息、该指令的处理结果信息,以及预置的该设备的相关信息。
本申请实施例中,一方面,通过使用射频识别标签,能够及时存储记录设备的当前状况,避免设备信息遗漏,为设备的检查、维修和盘点工作提供依据,另一方面,使用第一移动终端和第二移动终端,能更好的跟踪记录设备的位置,实时了解掌握设备当前状况,以及,有效保障任务的切实执行,从而维持和改善设备工作性能,保证正常生产,再一方面,使用服务器,存储设备所有相关信息,保障了信息的完整性,同时,在第二移动终端中安装设备管理应用程序,实施系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化的数据。
本申请第二实施例提供的设备管理系统,该系统包括:
射频识别标签10,由耦合元件及芯片组成,安装在设备上,芯片内存储该设备的相关信息,为超高频无源抗金属标签,工作频率为902~928MHz(兆赫兹,以下均以MHz表示),内存的主要配置为射频识别标签10内的EPC(Engineering Procurement Construction)区128bit(比特,以下均以bit表示)和User区512bit,最远可读距离10m(米,以下均以m表示),当射频识别标签10进 入磁场后,接收第一移动终端20发出的射频信号,凭借感应电流所获得的能量发送出存储在芯片中的设备相关信息。
第一移动终端20,内置有射频读写模块21和无线通信模块22,通过内置的无线通信模块22与第二移动终端30通信,利用射频读写模块21识别射频识别标签10,并读取或修改该射频识别标签10内的相关数据信息,第二移动终端30中的设备管理应用程序31可控制第一移动终端20,该第一移动终端20可由工作人员手持。
第二移动终端30,通过内置的无线通信模块32与第一移动终端20通信,通过无线网络连接服务器40,由工作人员手持或者装夹在第一移动终端20上以便操作。
更多的,第二移动终端30内的设备管理应用程序31可查询设备检修任务、查询设备位置、控制第一移动终端20对射频识别标签10的读写、编辑设备的检查结果,还可以由设备维修人员对待维修设备进行“抢单”操作、由设备管理员进行“指派”操作。
具体的,第二移动终端30内的设备管理应用程序31,不同用户登录可获得不同权限,其中,可登录的用户均具有设备信息查询的权限,设备管理员具有指派任务的权限、设备盘点与检查任务的更改和下达权限;设备检查人员具有查询盘点与检查任务、上传盘点和检查结果的权限;设备维修人员具有查询维修单、抢接维修单和上传维修结果的权限,在第二移动终端30中安装设备管理应用程序31,进行系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化和数据化的依据。
服务器40,存储有设备检查任务,设备的基本信息和检修历史记录,设备车间位置编码表,设备检查人员和设备维修人员的工作情况,此外,设备管理员可对设备检查任务进行更新和下达操作,可更改车间位置编码信息,可统计设备维修成本,可统计设备检查人员和设备维修人员的工作量、工作效率和工作完成情况,通过存储所有设备的相关信息,保障了信息的完整性。
进一步的,在设备上安装射频识别标签10,在第二移动终端30的控制下,第一移动终端20在该射频识别标签10内写入该设备的相关信息,包括设备的设备位置、价格、设备编号、设备型号、生产厂家、生产日期和设备拥有部门,并发送该相关信息给服务器40,服务器40进行存档。
更多的,当设备借出或在各车间之间转移时,在第二移动终端30的控制下,使用第一移动终端20修改该射频识别标签10内该设备的相关信息,发送该相关信息给服务器40,服务器40进行存档,更好的跟踪记录了设备的位置,实时了解掌握设备当前状况。
进一步的,设备管理员在设备管理应用程序31中进行设备盘点、设备检查任务的修改和下达;设备检查人员执行设备的盘点和检查任务;设备维修人员执行设备维修任务;设备管理员可对维修人员指派维修任务。
具体的,进行设备盘点任务时,步骤如下:
设备检查人员在第二移动终端30上的设备管理应用程序31进行登录,查看最新的盘点任务;
根据盘点任务中待盘点设备的位置信息到达对应的车间位置;
使用第一移动终端20进行扫描,设备上的射频识别标签10被激活,该射频识别标签10向第一移动终端20发送该设备编号信息,第一移动终端20再通过无线通信模块21,将该设备编号信息发送给第二移动终端30,完成盘点任务;
盘点任务完成后,设备检查人员在第二移动终端30内记录盘点结果信息,通过设备管理应用程序31将盘点结果上传到服务器40。
进行设备检查任务时,步骤如下:
设备检查人员使用个人账号,通过第二移动终端30上的设备管理应用程序31进行登录,登录成功后,在设备管理应用程序31中查看最新的检查任务;
根据该检查任务中需要检查的设备编号查询设备的位置,并根据位置信息到达对应的车间;
使用第二移动终端30中的设备管理应用程序31,控制第一移动终端20进行扫描,设备上的射频识别标签10被激活,该射频识别标签10向第一移动终端20发送该设备编号信息,第一移动终端20再通过无线通信模块21,将该设备编号信息发送给第二移动终端30,第二移动终端30将其与检查任务中的设备编号匹配,若匹配成功,设备管理应用程序31中显示该设备的检修记录和检查方法,设备检查人员开始进行设备检查任务;
完成检查任务后,设备检查人员在第二移动终端30内记录检查结果信息,通过设备管理应用程序31把检查结果信息上传到服务器40。
进行设备维修任务时,步骤如下:
设备维修人员使用个人账号,通过第二移动终端30上的设备管理应用程序31进行登录,登录成功后,在设备管理应用程序31中可以查看待维修的设备;
设备维修人员在设备管理应用程序31上抢接维修单,抢接成功后,根据设备编号查询该设备位置,并根据位置信息到达对应的车间位置;
使用第二移动终端30中的设备管理应用程序31,控制第一移动终端20进行扫描,设备上的射频识别标签10被激活,向第一移动终端20发送设备编号信息,第一移动终端20再通过无线通信模块21,将该设备编号信息发送给第二移动终端30,第二移动终端30将其与检查任务中的设备编号匹配,若匹配成功,诊断该设备,确认该设备的故障原因;
确认设备故障原因后,设备维修人员开始进行维修任务;
设备维修完成后,设备维修人员在第二移动终端30内记录维修结果信息,通过设备管理应用程序31把维修结果信息上传到服务器40;
更多的,若维修任务超过预设期限无设备维修人员抢接,则由设备管理员在设备管理应用程序31中指派维修任务给指定设备维修人员。
本申请实施例中,一方面,通过使用射频识别标签,能够及时存储记录设备的当前状况,避免设备信息遗漏,为设备的检查、维修和盘点工作提供依据, 另一方面,使用第一移动终端和第二移动终端,能更好的跟踪记录设备的位置,实时了解掌握设备当前状况,以及,有效保障任务的切实执行,从而维持和改善设备工作性能,保证正常生产,再一方面,使用服务器,存储设备所有相关信息,保障了信息的完整性,同时,在第二移动终端中安装设备管理应用程序,实施系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化的数据。
请参阅图2,为本申请第三实施例提供的设备管理方法的实现流程示意图,该方法包括:
S101、当检测到权限任务获取操作时,与第一移动终端无线连接的第二移动终端中的设备管理应用程序,获取当前用户的权限任务,并显示给当前用户;
具体的,第二移动终端30内的设备管理应用程序31可查询设备检修任务、查询设备位置、控制第一移动终端20对射频识别标签10的读写、编辑设备的检查结果,还可以由设备维修人员对待维修设备进行“抢单”操作、由设备管理员进行“指派”操作。
第二移动终端30内的设备管理应用程序31,不同用户登录可获得不同权限,其中,可登录的用户均具有设备信息查询的权限,设备管理员具有指派任务的权限、设备盘点与检查任务的更改和下达权限;设备检查人员具有查询盘点与检查任务、上传盘点和检查结果的权限;设备维修人员具有查询维修单、抢接维修单和上传维修结果的权限,在第二移动终端30中安装设备管理应用程序31,进行系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化和数据化的依据。
S102、当检测到该当前用户的执行任务指令时,该设备管理应用程序根据该指令控制该第一移动终端扫描射频识别标签,并获取该射频识别标签返回的设备的相关信息,并发送该设备的相关信息给该设备管理应用程序,该设备管理应用程序根据该返回的设备的相关信息,获取待处理设备的处理结果信息;
具体的,当执行任务的指令为设备盘点任务指令时,第二移动终端30中 的设备管理应用程序31根据获取并显示的盘点任务的执行内容,控制该第一移动终端20扫描待盘点设备上的射频识别标签10,以获取射频识别标签10返回的待盘点设备的相关信息(例如位置信息、检查信息和维修信息);根据待盘点设备的相关信息(例如位置信息、检查信息和维修信息),设备管理应用程序31获取待盘点设备的盘点任务的处理结果信息。
当执行任务的指令为设备检查任务指令时,第二移动终端30中的设备管理应用程序31根据获取并显示的检查任务的执行内容,控制该第一移动终端20扫描设备上的射频识别标签10,以获取该扫描设备的相关信息(例如编号信息),该检查任务包括待检查设备的相关信息(例如编号信息),该设备管理应用程序31匹配该待检查设备的相关信息(例如编号信息)与返回的设备的相关信息(例如编号信息),若匹配成功,该设备管理应用程序31显示待检查设备的检修记录和检查方法;根据待检查设备的检修记录和检查方法,设备管理应用程序31待检查设备的处理结果信息,即获取该扫描设备的检查结果信息;
当执行任务的指令为设备维修任务指令,且检测到所述当前用户的执行维修任务指令时,第二移动终端30中的设备管理应用程序31根据获取并显示的维修任务的执行内容,控制该第一移动终端20扫描设备上的射频识别标签10,以获取射频识别标签10返回的设备的相关信息(例如编号信息),该维修任务包括待维修设备的相关信息(例如编号信息),该设备管理应用程序31匹配该待维修设备的相关信息(例如编号信息)与返回的设备的相关信息(例如编号信息),若匹配成功,该设备管理应用程序31获取待维修设备的处理结果信息,即该扫描设备的维修结果信息。
在当前用户的权限任务为维修任务,但未检测到当前用户的执行维修任务指令时,显示待接维修任务给当前用户;第二移动终端中的设备管理应用程序根据获取的维修任务的执行内容,控制第一移动终端扫描射频识别标签,并获取射频识别标签返回的设备的编号信息,维修任务指令中包含待维修设备的编 号信息;设备管理应用程序匹配待维修设备的编号信息与返回的设备的编号信息;若匹配成功,设备管理应用程序获取待维修设备的处理结果信息。
更多的,当存在超过预设期限未被执行的维修任务指令时,该设备管理应用程序31获取指派维修任务的指令,指派该未被执行的维修任务指令给指定用户。
S103、该设备管理应用程序发送该处理结果信息给服务器。
当执行设备盘点任务指令时,设备检查人员通过第二移动终端30内的设备管理应用程序31发送盘点结果信息给该服务器40;
当执行设备检查任务指令时,设备检查人员通过第二移动终端30内的设备管理应用程序31发送检查结果信息给该服务器40;
更多的,当设备检查结果为出现故障时,设备检查人员在设备管理应用程序31内生成并发布该设备相应的维修单。
当执行设备维修任务指令时,设备维修人员通过第二移动终端30内的设备管理应用程序31发送维修结果信息给该服务器40。
本实施例未尽之细节,请参阅前述图1所示实施例的描述,此处不再赘述。
本申请实施例中,一方面,通过使用射频识别标签,能够及时存储记录设备的当前状况,避免设备信息遗漏,为设备的检查、维修和盘点工作提供依据,另一方面,使用第一移动终端和第二移动终端,能更好的跟踪记录设备的位置,实时了解掌握设备当前状况,以及,有效保障任务的切实执行,从而维持和改善设备工作性能,保证正常生产,再一方面,使用服务器,存储设备所有相关信息,保障了信息的完整性,同时,在第二移动终端中安装设备管理应用程序,实施系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化的数据。
本申请第四实施例提供的设备管理方法,该方法包括:
进行设备盘点任务时:
请参阅图3,为本申请第四实施例提供的设备管理方法中设备盘点任务的 流程示意图。
S201、设备检查人员登录;
设备检查人员在第二移动终端30上的设备管理应用程序31进行登录,查看最新的盘点任务;
S202、根据盘点任务,到达指定位置;
根据盘点任务中待盘点设备的位置信息到达对应的车间位置;
S203、扫描设备上的射频识别标签;
使用第一移动终端20进行扫描,设备上的射频识别标签10被激活,该射频识别标签10向第一移动终端20发送该设备编号信息,第一移动终端20再将该设备编号信息发送给第二移动终端30,完成盘点任务;
S204、上传盘点结果信息给服务器。
盘点任务完成后,设备检查人员在第二移动终端30内记录盘点结果信息,通过设备管理应用程序31将盘点结果上传到服务器40。
进行设备检查任务时:
请参阅图4,为本申请第四实施例提供的设备管理方法中设备检查任务的流程示意图。
S301、设备检查人员登录;
设备检查人员使用个人账号,通过第二移动终端30上的设备管理应用程序31进行登录,登录成功后,在设备管理应用程序31中查看最新的检查任务。
S302、根据检查任务,到达指定位置;
根据该检查任务中需要检查的设备编号查询设备的位置,并根据位置信息到达对应的车间。
S303、匹配设备上的射频识别标签;
使用第二移动终端30中的设备管理应用程序31,控制第一移动终端20进行扫描,设备上的射频识别标签10被激活,该射频识别标签10向第一移动终端20发送该设备编号信息,第一移动终端20再将该设备编号信息发送给第 二移动终端30,第二移动终端30将其与检查任务中的设备编号匹配,若匹配成功,设备管理应用程序31中显示该设备的检修记录和检查方法,设备检查人员开始进行设备检查任务。
S304、完成设备检查任务;
设备检查人员对该设备进行检查,完成设备检查任务。
S305、上传检查结果信息给服务器;
完成检查任务后,设备检查人员在第二移动终端30内拍照、描述检查结果信息,通过设备管理应用程序31把检查结果信息上传到服务器40。
S306、当该检查的设备出现故障时,生成维修单。
当该检查的设备出现故障时,在设备管理应用程序31内生成相应的维修单。
进行设备维修任务:
请参阅图5,为本申请第四实施例提供的设备管理方法中设备维修任务的流程示意图。
S401、设备维修人员登录;
设备维修人员使用个人账号,通过第二移动终端30上的设备管理应用程序31进行登录,登录成功后,在设备管理应用程序31中可以查看待维修的设备。
S402、查询维修单;
S403、判断是否有指派的任务;
若有指派的任务,则执行步骤S404;若无指派的任务,执行步骤S405。
S404、根据维修任务,到达指定位置;
设备维修人员在设备管理应用程序31上抢接维修单,抢接成功后,根据设备编号查询该设备位置,并根据位置信息到达对应的车间位置。
S405、判断是否有待接维修单;
若有待接维修单,则执行步骤S406;若无待接维修单,执行步骤S402。
S406、判断是否接下维修单;
若接下维修单,则执行步骤S404;若无待接维修单,执行步骤S402。
S407、匹配设备上的射频识别标签;
使用第二移动终端30中的设备管理应用程序31,控制第一移动终端20进行扫描,设备上的射频识别标签10被激活,向第一移动终端20发送设备编号信息,第一移动终端20再将该设备编号信息发送给第二移动终端30,第二移动终端30将其与检查任务中的设备编号匹配,若匹配成功,再次检查该设备,确认该设备的故障原因。
S408、完成设备维修任务;
确认设备故障原因后,设备维修人员开始进行维修任务。
S409、上传维修结果信息给服务器。
设备维修完成后,设备维修人员在第二移动终端30内拍照并记录维修结果信息,通过设备管理应用程序31把维修结果信息上传到服务器40。
更多的,若维修任务超过预设期限无设备维修人员抢接,则由设备管理员在设备管理应用程序31中指派维修任务给指定设备维修人员。
本实施例未尽之细节,请参阅前述图1、图2所示实施例的描述,此处不再赘述。
本申请实施例中,一方面,通过使用射频识别标签,能够及时存储记录设备的当前状况,避免设备信息遗漏,为设备的检查、维修和盘点工作提供依据,另一方面,使用第一移动终端和第二移动终端,能更好的跟踪记录设备的位置,实时了解掌握设备当前状况,以及,有效保障任务的切实执行,从而维持和改善设备工作性能,保证正常生产,再一方面,使用服务器,存储设备所有相关信息,保障了信息的完整性,同时,在第二移动终端中安装设备管理应用程序,实施系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化的数据。
需要说明的是,在本申请所提供的几个实施例中,应该理解到,所揭露系 统和方法,可以通过其它的方式实现。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其它实施例的相关描述。
以上为对本申请所提供的一种设备管理系统及方法的描述,对于本领域的技术人员,依据本申请实施例的思想,在具体实施方式及应用范围上均会有改变之处,综上,本说明书内容不应理解为对本申请的限制
另外,在本申请各个实施例中的各功能模块可以集成在一起形成一个独立的部分,也可以是各个模块单独存在,也可以两个或两个以上模块集成形成一个独立的部分。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。应注意到:相似的标号和字母在下面的附图中表示类似项,因此,一旦某一项在一个附图中被定义,则在随后的附图中不需要对其进行进一步定义和解释。
只要不违背本申请创造的思想,对本申请的各种不同实施例进行任意组合,均应当视为本申请公开的内容;在本申请的技术构思范围内,对技术方案进行多种简单的变型及不同实施例进行的不违背本申请创造的思想的任意组合,均应在本申请的保护范围之内。
工业实用性:
本申请提供的设备管理系统及方法,一方面,通过使用射频识别标签,能够及时存储记录设备的当前状况,避免设备信息遗漏,为设备的检查、维修和盘点工作提供依据,另一方面,使用第一移动终端和第二移动终端,能更好的跟踪记录设备的位置,实时了解掌握设备当前状况,以及,有效保障任务的切实执行,从而维持和改善设备工作性能,保证正常生产,再一方面,使用服务器,存储设备所有相关信息,保障了信息的完整性,同时,在第二移动终端中 安装设备管理应用程序,实施系统化的管理,不仅提高了工作效率和管理效率,也为工作人员的考核、追责和奖励提供了可视化的数据。

Claims (17)

  1. 一种设备管理系统,其特征在于,包括:射频识别标签、第一移动终端、第二移动终端和服务器;
    所述射频识别标签安装在待管理设备上,所述射频识别标签配置成存储和发送所述设备的相关信息;
    所述第一移动终端与所述第二移动终端均内置无线通信模块,所述第一移动终端与所述第二移动终端无线连接;
    所述第一移动终端内置射频读写模块,在所述第二移动终端的控制下,所述第一移动终端利用所述射频读写模块读取和修改所述射频识别标签中存储的所述设备的相关信息,并将所述设备的相关信息发送给所述第二移动终端;
    所述第二移动终端中安装有设备管理应用程序,通过所述设备管理应用程序获取当前用户的权限任务,并显示给所述当前用户,以及,当检测到所述当前用户的执行任务指令时,根据所述指令处理所述设备的相关信息;
    所述服务器与所述第二移动终端无线连接,配置成获取所述第二移动终端发送的所述设备的相关信息、所述指令的处理结果信息,以及预先存储所述待管理设备的相关信息。
  2. 如权利要求1所述的系统,其特征在于,所述射频识别标签为超高频无源抗金属标签。
  3. 如权利要求1或2所述的系统,其特征在于,所述射频识别标签最远可读距离为10米。
  4. 如权利要求1至3任一项所述的系统,其特征在于,所述射频识别标签工作频率为902~928兆赫兹。
  5. 如权利要求1至4任一项所述的系统,其特征在于,所述设备的相关信息包括所述设备的生产厂家、生产日期、价格、设备编号、设备型号、设备拥有部门和设备位置中的至少一种。
  6. 如权利要求1至5任一项所述的系统,其特征在于,所述无线通信模块为蓝牙模块。
  7. 一种设备管理方法,其特征在于,包括:
    当检测到权限任务获取操作时,与第一移动终端无线连接的第二移动终端中的设备管理应用程序,获取当前用户的权限任务,并显示给所述当前用户;
    当检测到所述当前用户的执行任务指令时,所述设备管理应用程序根据所述指令控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,并发送所述设备的相关信息给所述设备管理应用程序,所述设备管理应用程序根据所述返回的设备的相关信息,获取待处理设备的处理结果信息;
    所述设备管理应用程序发送所述处理结果信息给服务器。
  8. 如权利要求7所述的方法,其特征在于,所述当检测到所述当前用户的执行任务指令时,所述设备管理应用程序根据所述指令控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,并发送所述设备的相关信息给所述设备管理应用程序,所述设备管理应用程序根据所述返回的设备的相关信息,获取待处理设备的处理结果信息,包括:
    当所述执行任务的指令为执行设备盘点任务指令时,所述第二移动终端中的设备管理应用程序根据获取的盘点任务的执行内容,控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的待盘点设备的相关信息;
    根据所述待盘点设备的相关信息,所述设备管理应用程序获取所述设备的盘点任务的处理结果信息。
  9. 如权利要求7或8所述的方法,其特征在于,所述当检测到所述当前用户的执行任务指令时,所述设备管理应用程序根据所述指令控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,并发送所述设备的相关信息给所述设备管理应用程序,所述设备管理应用程序根据所述返回的设备的相关信息,获取待处理设备的处理结果信息,包括:
    当所述执行任务的指令为执行设备检查任务指令时,所述第二移动终端中的设备管理应用程序根据获取的检查任务的执行内容,控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,所述检查任务指令中包括待检查设备的相关信息;
    所述设备管理应用程序匹配所述待检查设备的相关信息与所述返回的设备的相关信息;
    若匹配成功,所述设备管理应用程序显示所述待检查设备的检修记录和检查方法;
    根据所述待检查设备的检修记录和检查方法,所述设备管理应用程序获取所述待检查设备的处理结果信息。
  10. 如权利要求7至9任一项所述的方法,其特征在于,所述当检测到所述当前用户的执行任务指令时,所述设备管理应用程序根据所述指令控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,并发送所述设备的相关信息给所述设备管理应用程序,所述设备管理应用程序根据所述返回的设备的相关信息,获取待处理设备的处理结果信息,包括:
    当所述当前用户的权限任务为维修任务,且检测到所述当前用户的执行维修任务指令时,所述第二移动终端中的设备管理应用程序根据获取的维修任务的执行内容,控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,所述维修任务指令中包括待维修设备的相关信息;
    所述设备管理应用程序匹配所述待维修设备的相关信息与所述返回的设备的相关信息;
    若匹配成功,所述设备管理应用程序获取所述待维修设备的处理结果信息。
  11. 如权利要求10所述的方法,其特征在于,所述方法还包括:
    当所述当前用户的权限任务为维修任务,但未检测到所述当前用户的执行维修任务指令时,显示待接维修任务给所述当前用户;
    所述第二移动终端中的设备管理应用程序根据获取的维修任务的执行内容,控制所述第一移动终端扫描射频识别标签,并获取所述射频识别标签返回的设备的相关信息,所述维修任务指令中包括待维修设备的相关信息;
    所述设备管理应用程序匹配所述待维修设备的相关信息与所述返回的设备的相关信息;
    若匹配成功,所述设备管理应用程序获取所述待维修设备的处理结果信息。
  12. 如权利要求7至11任一项所述的方法,其特征在于,所述方法还包括:
    当存在超过预设期限未被执行的维修任务指令时,所述设备管理应用程序发出提醒信息,以提醒所述当前用户指派所述未被执行的维修任务给指定用户。
  13. 如权利要求7至12任一项所述的方法,其特征在于,所述射频识别标签为超高频无源抗金属标签。
  14. 如权利要求7至13任一项所述的方法,其特征在于,所述射频识别标签最远可读距离为10米。
  15. 如权利要求7至14任一项所述的方法,其特征在于,所述射频识别标签工作频率为902~928兆赫兹。
  16. 如权利要求7至15任一项所述的方法,其特征在于,所述设备的相关信息包括所述设备的生产厂家、生产日期、价格、设备编号、设备型号、设备拥有部门和设备位置中的至少一种。
  17. 如权利要求7至16任一项所述的方法,其特征在于,所述无线通信模块为蓝牙模块。
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