CN113887980A - Metering turnover cabinet management method and system - Google Patents

Metering turnover cabinet management method and system Download PDF

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Publication number
CN113887980A
CN113887980A CN202111196922.0A CN202111196922A CN113887980A CN 113887980 A CN113887980 A CN 113887980A CN 202111196922 A CN202111196922 A CN 202111196922A CN 113887980 A CN113887980 A CN 113887980A
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metering
cabinet
data
operation instruction
appliance
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化振谦
张永旺
刘海斌
彭策
欧振国
邓珊
舒晔
黄博伟
彭强
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Guangdong Power Grid Co Ltd
Measurement Center of Guangdong Power Grid Co Ltd
Metrology Center of Guangdong Power Grid Co Ltd
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Guangdong Power Grid Co Ltd
Measurement Center of Guangdong Power Grid Co Ltd
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Priority to CN202111196922.0A priority Critical patent/CN113887980A/en
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Abstract

The invention provides a management method and a system for a metering turnover cabinet, wherein the method comprises the following steps: receiving a measuring instrument operation instruction input by a user; judging whether the operation instruction of the metering appliance is correct or not according to the inventory data of the metering appliance, the storable space data of the metering turnover cabinet and the quantity change information carried in the operation instruction of the metering appliance; if the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period; counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices; and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user. The invention reduces the cost caused by manpower and improves the management efficiency.

Description

Metering turnover cabinet management method and system
Technical Field
The invention relates to the technical field of measurement instrument storage management, in particular to a measurement turnover cabinet management method and system.
Background
At present, the base level power supply stations have disordered storehouse management, the meter receiving flow is not standard, the first-in first-out management of meter stocks cannot be achieved, the meter stock accounts are disordered due to the frequent mode of receiving first and then moving the flow, the meters which are not received but installed on the site cannot be effectively managed and counted, and difficulty is brought to the base level power supply station stock management work. Although some power supply stations use the metering turnover cabinet for management, manufacturers of the turnover cabinet have different hardware and software, and the large-scale popularization and application of the metering turnover cabinet are not facilitated.
Meanwhile, the existing metering turnover cabinet cannot realize data interaction with a metering production management platform of a metering center, only realizes the storage function of a metering appliance, is low in informatization level, cannot monitor the working state of the turnover cabinet and the state of the internal metering appliance, mainly depends on manual operation, is high in misoperation rate, high in manual management cost and low in management efficiency, and seriously influences the field operation efficiency.
Disclosure of Invention
In order to solve the above problems in the prior art, the invention provides a method and a system for managing a metering turnover cabinet, which reduce the cost caused by labor and improve the management efficiency.
The invention provides a management method of a metering turnover cabinet, which comprises the following steps:
receiving a measuring instrument operation instruction input by a user;
judging whether the operation instruction of the metering appliance is correct or not according to the inventory data of the metering appliance, the storable space data of the metering turnover cabinet and the quantity change information carried in the operation instruction of the metering appliance;
if the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period;
counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices;
and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user.
Further, the determining whether the meter operating instruction is correct includes:
determining the type of the operation instruction of the measuring instrument according to the operation instruction of the measuring instrument;
when the operation instruction of the metering appliance is a warehousing instruction of the metering appliance, determining the quantity relation between storable space data of the metering turnover cabinet and warehousing quantity of the metering appliance carried by the warehousing instruction of the metering appliance;
if the warehousing quantity of the metering appliances is less than or equal to the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are correct;
if the warehousing quantity of the metering appliances is larger than the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are incorrect;
when the operation instruction of the metering appliance is an out-warehouse instruction of the metering appliance, judging the quantity relationship between the inventory data of the metering appliance and the out-warehouse quantity of the metering appliance carried by the out-warehouse instruction of the metering appliance;
if the quantity of the measuring instruments taken out of the warehouse is less than or equal to the data stored in the measuring instruments warehouse, the operating instructions of the measuring instruments are correct;
and if the quantity of the metering devices taken out of the warehouse is larger than the data stored in the metering device warehouse, the operating instruction of the metering device is incorrect.
Further, before receiving a user-input operation instruction of the measuring instrument, the method further includes:
acquiring user login information;
judging whether the user is a legal user or not according to the user login information;
if the user is legal, receiving a measuring instrument operation instruction input by the user;
and if the user is illegal, refusing to receive the operation instruction of the metering appliance input by the user.
Further, before receiving a user-input operation instruction of the measuring instrument, the method further includes:
acquiring monitoring data of a metering turnover cabinet, and judging whether the monitoring data is abnormal or not; wherein the monitoring data comprises: measuring internal temperature and humidity data of the turnover cabinet, and measuring internal and peripheral video acquisition image information of the turnover cabinet;
if the monitoring data is abnormal, carrying out alarm prompt;
and if the monitoring data is normal, receiving a measuring instrument operation instruction input by a user.
Further, the determining whether the monitoring data is abnormal includes:
judging the type of the monitoring data according to the monitoring data;
when the monitoring data is internal temperature and humidity data of the metering transfer cabinet, judging whether the internal temperature and humidity data of the metering transfer cabinet meets the temperature and humidity threshold value according to the temperature and humidity threshold value and the internal temperature and humidity data of the metering transfer cabinet;
if so, determining that the monitoring data is normal;
if not, determining that the monitoring data is abnormal;
when the monitoring data is the internal and peripheral video acquisition image information of the measurement transfer cabinet, judging whether the internal and peripheral video acquisition images of the measurement transfer cabinet are abnormal or not according to the internal and peripheral video acquisition image information and the video standard image information of the measurement transfer cabinet;
if the internal and peripheral video acquisition images of the metering turnover cabinet are normal, the monitoring data are abnormal;
and if the internal or peripheral video acquisition image of the metering turnover cabinet is abnormal, the monitoring data is abnormal.
The second aspect of the present invention provides a measurement turnaround cabinet management system, including:
the operation instruction receiving module is used for receiving a metering appliance operation instruction input by a user;
the judging module is used for judging whether the operation instruction of the metering appliance is correct or not according to the inventory data of the metering appliance, the storable space data of the metering turnover cabinet and the quantity change information carried in the operation instruction of the metering appliance;
if the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period;
counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices;
and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user.
Further, the determining module is further configured to:
determining the type of the operation instruction of the measuring instrument according to the operation instruction of the measuring instrument;
when the operation instruction of the metering appliance is a warehousing instruction of the metering appliance, determining the quantity relation between storable space data of the metering turnover cabinet and warehousing quantity of the metering appliance carried by the warehousing instruction of the metering appliance;
if the warehousing quantity of the metering appliances is less than or equal to the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are correct;
if the warehousing quantity of the metering appliances is larger than the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are incorrect;
when the operation instruction of the metering appliance is an out-warehouse instruction of the metering appliance, judging the quantity relationship between the inventory data of the metering appliance and the out-warehouse quantity of the metering appliance carried by the out-warehouse instruction of the metering appliance;
if the quantity of the measuring instruments taken out of the warehouse is less than or equal to the data stored in the measuring instruments warehouse, the operating instructions of the measuring instruments are correct;
and if the quantity of the metering devices taken out of the warehouse is larger than the data stored in the metering device warehouse, the operating instruction of the metering device is incorrect.
Further, the measurement turnover cabinet management system further includes: a user identity information judgment module, configured to:
acquiring user login information;
judging whether the user is a legal user or not according to the user login information;
if the user is legal, receiving a measuring instrument operation instruction input by the user;
and if the user is illegal, refusing to receive the operation instruction of the metering appliance input by the user.
Further, the measurement turnover cabinet management system further includes: a monitoring module to:
acquiring monitoring data of a metering turnover cabinet, and judging whether the monitoring data is abnormal or not; wherein the monitoring data comprises: measuring internal temperature and humidity data of the turnover cabinet, and measuring internal and peripheral video acquisition image information of the turnover cabinet;
if the monitoring data is abnormal, carrying out alarm prompt;
and if the monitoring data is normal, receiving a measuring instrument operation instruction input by a user.
Further, the monitoring module is further configured to:
judging the type of the monitoring data according to the monitoring data;
when the monitoring data is internal temperature and humidity data of the metering transfer cabinet, judging whether the internal temperature and humidity data of the metering transfer cabinet meets the temperature and humidity threshold value according to the temperature and humidity threshold value and the internal temperature and humidity data of the metering transfer cabinet;
if so, determining that the monitoring data is normal;
if not, determining that the monitoring data is abnormal;
when the monitoring data is the internal and peripheral video acquisition image information of the measurement transfer cabinet, judging whether the internal and peripheral video acquisition images of the measurement transfer cabinet are abnormal or not according to the internal and peripheral video acquisition image information and the video standard image information of the measurement transfer cabinet;
if the internal and peripheral video acquisition images of the metering turnover cabinet are normal, the monitoring data are abnormal;
and if the internal or peripheral video acquisition image of the metering turnover cabinet is abnormal, the monitoring data is abnormal.
Compared with the prior art, the embodiment of the invention has the beneficial effects that:
the invention provides a management method and a system for a metering turnover cabinet, wherein the method comprises the following steps: receiving a measuring instrument operation instruction input by a user; judging whether the operation instruction of the metering appliance is correct or not according to the inventory data of the metering appliance, the storable space data of the metering turnover cabinet and the quantity change information carried in the operation instruction of the metering appliance; if the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period; counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices; and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user. The invention manages and optimizes the service data, the working condition data of the turnover cabinet and the operation flow, sequences the traditional complicated management mode, further standardizes the storage and utilization flows of the metering devices, greatly reduces the cost caused by labor and improves the management efficiency.
Drawings
In order to more clearly illustrate the technical solution of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a flowchart of a metering turnaround cabinet management method according to an embodiment of the present invention;
fig. 2 is a flowchart of a metering turnaround cabinet management method according to another embodiment of the present invention;
fig. 3 is a flowchart of a metering turnaround cabinet management method according to another embodiment of the present invention;
fig. 4 is a flowchart of a metering turnaround cabinet management method according to yet another embodiment of the present invention;
fig. 5 is a flowchart of a warehouse-out method in a measurement turnaround cabinet management method according to an embodiment of the present invention;
fig. 6 is a flowchart of a warehousing method in a measurement turnaround cabinet management method according to an embodiment of the present invention;
fig. 7 is a diagram of an apparatus of a metering turnaround cabinet management system according to an embodiment of the present invention;
fig. 8 is a diagram of an apparatus of a metering turnaround cabinet management system according to another embodiment of the present invention;
fig. 9 is a diagram of an apparatus of a metering turnaround cabinet management system according to yet another embodiment of the present invention;
fig. 10 is a schematic diagram of a metering turnaround cabinet management apparatus according to an embodiment of the present invention;
fig. 11 is a schematic diagram of an interface module of a metering transfer cabinet management apparatus according to an embodiment of the present invention;
fig. 12 is a schematic diagram of a monitoring module of a metering transfer cabinet management apparatus according to an embodiment of the present invention;
fig. 13 is a schematic diagram of a management module of a metering turnaround cabinet management apparatus according to an embodiment of the present invention;
fig. 14 is a schematic diagram of a basic module of a metering transfer cabinet management apparatus according to an embodiment of the present invention;
fig. 15 is a block diagram of an electronic device according to an embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be understood that the step numbers used herein are for convenience of description only and are not intended as limitations on the order in which the steps are performed.
It is to be understood that the terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used in the specification of the present invention and the appended claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
The terms "comprises" and "comprising" indicate the presence of the described features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
The term "and/or" refers to and includes any and all possible combinations of one or more of the associated listed items.
A first aspect.
Referring to fig. 1-4, an embodiment of the invention provides a measurement turnover cabinet management method, including:
and S10, receiving a measuring instrument operation instruction input by a user. Wherein the meter instrument operating instructions comprise: a meter warehousing instruction and a meter ex-warehousing instruction.
And S20, judging whether the operation instruction of the measuring instrument is correct or not according to the inventory data of the measuring instrument, the storable space data of the measuring turnover cabinet and the quantity change information carried in the operation instruction of the measuring instrument.
And S31, if yes, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period.
It is to be understood that if: the operation instruction of the metering appliance is correct.
And S32, counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the metering device inventory data and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices.
And S41, if not, sending alarm information to the user.
It is understood that if not: the meter operating instructions are incorrect.
In a specific implementation manner of the embodiment of the present invention, the step S20 includes:
and S21, determining the type of the measuring instrument operation instruction according to the measuring instrument operation instruction.
And S22, when the operation instruction of the measuring instrument is a storage instruction of the measuring instrument, determining the quantity relation between the storable space data of the measuring turnover cabinet and the storage quantity of the measuring instrument carried by the storage instruction of the measuring instrument.
And S23, if the warehousing number of the measuring instruments is less than or equal to the storable space data of the measuring turnover cabinet, the operating instruction of the measuring instruments is correct.
And S24, if the warehousing quantity of the metering appliances is larger than the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are incorrect.
And S25, when the measuring instrument operation command is a measuring instrument delivery command, judging the quantity relation between the measuring instrument inventory data and the quantity of the measuring instruments delivered from the warehouse carried by the measuring instrument delivery command.
And S26, if the quantity of the measuring instruments taken out of the warehouse is less than or equal to the data stored in the measuring instruments warehouse, the operating instruction of the measuring instruments is correct.
And S27, if the quantity of the measuring instruments taken out of the warehouse is larger than the data stored in the measuring instruments warehouse, the operating instructions of the measuring instruments are incorrect.
In a specific implementation manner of the embodiment of the present invention, before the step S10, the method includes:
and S01, acquiring the user login information.
And S02, judging whether the user is a legal user according to the user login information.
And S10, if yes, executing the operation instruction of the measuring instrument input by the user.
It is to be understood that if: the user is legitimate.
And S11, if not, refusing to receive the measuring instrument operation instruction input by the user.
It is understood that if not: the user is illegal.
In a specific implementation manner of the embodiment of the present invention, before the step S10, the method includes:
s03, acquiring monitoring data of the metering turnover cabinet;
and S04, judging whether the monitoring data is abnormal or not. Wherein the monitoring data comprises: measuring internal temperature and humidity data of the turnover cabinet, and measuring internal and peripheral video acquisition image information of the turnover cabinet;
and S12, if yes, giving an alarm.
It is to be understood that if: the monitoring data is abnormal.
And S10, if not, executing the measuring instrument operation instruction input by the user.
It is understood that if not: the monitoring data is normal.
Preferably, the determining whether the monitoring data is abnormal includes:
judging the type of the monitoring data according to the monitoring data;
when the monitoring data is internal temperature and humidity data of the metering transfer cabinet, judging whether the internal temperature and humidity data of the metering transfer cabinet meets the temperature and humidity threshold value according to the temperature and humidity threshold value and the internal temperature and humidity data of the metering transfer cabinet;
if so, determining that the monitoring data is normal;
if not, determining that the monitoring data is abnormal;
when the monitoring data is the internal and peripheral video acquisition image information of the measurement transfer cabinet, judging whether the internal and peripheral video acquisition images of the measurement transfer cabinet are abnormal or not according to the internal and peripheral video acquisition image information and the video standard image information of the measurement transfer cabinet;
if the internal and peripheral video acquisition images of the metering turnover cabinet are normal, the monitoring data are abnormal;
and if the internal or peripheral video acquisition image of the metering turnover cabinet is abnormal, the monitoring data is abnormal.
The method provided by the invention manages and optimizes the service data, the working condition data of the turnover cabinet and the operation process, sequences the traditional complicated management mode, further standardizes the storage and utilization processes of the metering device, greatly reduces the cost caused by labor and improves the management efficiency.
Referring to fig. 5, an embodiment of the present invention provides a measurement turnover cabinet management method, wherein the ex-warehouse operation process includes:
after the user successfully logs in, clicking a delivery button, entering a delivery parameter input page, inputting information such as types, parameters and quantity of delivery metering devices, clicking a confirmation button after the user confirms the parameters of the delivery metering devices, checking the parameters of the delivery metering devices through a management module, returning to the delivery parameter input page if the checking fails, re-inputting the information by the user, sending a control command through an interface module after the checking passes, preparing the delivery metering device equipment by a turnover cabinet, controlling the turnover cabinet to open a door by an MCU (microprogrammed control unit), controlling the turnover cabinet to close the door by the MCU after the user takes all the delivery metering devices away, updating inventory information of the turnover cabinet through a basic module and the interface module, wherein the inventory information comprises the quantity, the states of the metering devices, property units and the like, and finishing the delivery flow.
Referring to fig. 6, an embodiment of the present invention provides a method for managing a measurement turnaround cabinet, where the warehousing operation process includes:
after the user successfully logs in, clicking a warehousing button, entering a warehousing parameter input page, inputting information such as types, parameters and quantity of metering devices to be warehoused, clicking a confirmation button after the user confirms the parameters of the metering devices to be warehoused, checking the parameters of the metering devices to be warehoused through a management module, returning to the warehousing parameter input page if the checking is not passed, enabling the user to input the parameters again, sending a control instruction through an interface module after the checking is passed, controlling a turnover cabinet to open a door by an MCU (microprogrammed control unit), clicking a completion button after the user puts all the metering devices to be warehoused, taking all the metering devices to be warehoused away by the turnover cabinet, controlling the turnover cabinet to close the door by the MCU, updating inventory information of the turnover cabinet through a basic module and the interface module, wherein the inventory information comprises the quantity, the states of the metering devices, property units and the like, and finishing the warehousing process.
A second aspect.
Referring to fig. 7-9, an embodiment of the invention provides a measurement turnover cabinet management system, including:
and the operation instruction receiving module 10 is used for receiving the operation instruction of the measuring instrument input by the user. Wherein the meter instrument operating instructions comprise: a meter warehousing instruction and a meter ex-warehousing instruction.
And the judging module 20 is configured to judge whether the operation instruction of the metering device is correct according to the inventory data of the metering device, the storable space data of the metering turnaround cabinet, and the quantity change information carried in the operation instruction of the metering device. If the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period; counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices; and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user.
Preferably, the determining module 20 is further configured to:
determining the type of the operation instruction of the measuring instrument according to the operation instruction of the measuring instrument;
when the operation instruction of the metering appliance is a warehousing instruction of the metering appliance, determining the quantity relation between storable space data of the metering turnover cabinet and warehousing quantity of the metering appliance carried by the warehousing instruction of the metering appliance;
if the warehousing quantity of the metering appliances is less than or equal to the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are correct;
if the warehousing quantity of the metering appliances is larger than the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are incorrect;
when the operation instruction of the metering appliance is an out-warehouse instruction of the metering appliance, judging the quantity relationship between the inventory data of the metering appliance and the out-warehouse quantity of the metering appliance carried by the out-warehouse instruction of the metering appliance;
if the quantity of the measuring instruments taken out of the warehouse is less than or equal to the data stored in the measuring instruments warehouse, the operating instructions of the measuring instruments are correct;
and if the quantity of the metering devices taken out of the warehouse is larger than the data stored in the metering device warehouse, the operating instruction of the metering device is incorrect.
In a specific implementation manner of the embodiment of the present invention, the measurement turnaround cabinet management system further includes: a user identity information judging module 30, configured to:
acquiring user login information;
judging whether the user is a legal user or not according to the user login information;
if the user is legal, executing a metering appliance operation instruction input by the user;
and if the user is illegal, refusing to receive the operation instruction of the metering appliance input by the user.
In a specific implementation manner of the embodiment of the present invention, the measurement turnaround cabinet management system further includes: a monitoring module 40 for:
acquiring monitoring data of a metering turnover cabinet, and judging whether the monitoring data is abnormal or not; wherein the monitoring data comprises: measuring internal temperature and humidity data of the turnover cabinet, and measuring internal and peripheral video acquisition image information of the turnover cabinet;
if the monitoring data is abnormal, carrying out alarm prompt;
and if the monitoring data is normal, only executing the operation instruction of the measuring instrument input by the user.
Preferably, the monitoring module 40 is further configured to:
judging the type of the monitoring data according to the monitoring data;
when the monitoring data is internal temperature and humidity data of the metering transfer cabinet, judging whether the internal temperature and humidity data of the metering transfer cabinet meets the temperature and humidity threshold value according to the temperature and humidity threshold value and the internal temperature and humidity data of the metering transfer cabinet;
if so, determining that the monitoring data is normal;
if not, determining that the monitoring data is abnormal;
when the monitoring data is the internal and peripheral video acquisition image information of the measurement transfer cabinet, judging whether the internal and peripheral video acquisition images of the measurement transfer cabinet are abnormal or not according to the internal and peripheral video acquisition image information and the video standard image information of the measurement transfer cabinet;
if the internal and peripheral video acquisition images of the metering turnover cabinet are normal, the monitoring data are abnormal;
and if the internal or peripheral video acquisition image of the metering turnover cabinet is abnormal, the monitoring data is abnormal.
The system provided by the invention manages and optimizes the service data, the working condition data of the turnover cabinet and the operation process, sequences the traditional complicated management mode, further standardizes the storage and utilization processes of the metering devices, greatly reduces the cost caused by labor and improves the management efficiency.
In a third aspect.
Referring to fig. 10-14, an embodiment of the invention provides a metering turnover cabinet management apparatus, including:
an interface module 100, a monitoring module 200, a management module 300 and a base module 400;
the interface module 100 is used for data communication with the metering service bus and the MCU;
the monitoring module 200 is used for monitoring the turnover cabinet and the related states of the metering devices in the turnover cabinet;
the management module 300 is used for managing related business operations and information of the turnover cabinet;
the base module 400 is used for maintaining the base data of the turnover cabinet, authenticating the user identity and upgrading and managing the program.
It should be noted that, the measurement turnaround cabinet management system and the fv base module 400 provided in the embodiment of the present application acquire the existing measurement appliance information of the turnaround cabinet, and compare the measurement appliance information of the turnaround cabinet and the measurement appliance information of the fv base module to ensure that the measurement appliance devices in the turnaround cabinet are completely consistent with the information records; the overdue alarm unit 304 is used for alarming overdue meters in the inventory of the turnover cabinet, after the meters are qualified, the inventory validity period exists, and the meters exceeding the validity period cannot be delivered to the user for use, so that the overdue meters need to be alarmed.
Preferably, the base module 400 includes:
an identity authentication unit 401, a basic data management unit 402, and a program upgrading unit 403;
the identity authentication unit 401 is configured to authenticate a user login identity, and ensure that users who successfully login are authorized users;
the basic data management unit 402 is used for setting basic information of the turnover cabinet;
the program upgrading unit 403 is used for upgrading and updating the program of the program;
in the basic module 400 included in the embodiment of the present application, when a user performs a login operation, the identity authentication unit 401 obtains login information of the user, and verifies the login information with user authorization information stored in the provincial level metering center metering production management platform through the interface module 100, if the verification passes, the user successfully logs in, the verification fails, and the user fails to log in; the basic data management unit 402 is configured to set basic information of the turnover cabinet, including storage location information, device model, archive information, network communication parameters, and the like, and after the setting is successful, synchronize the modified basic information to the provincial level metering center metering production management platform and the MCU through the interface module 100; the program upgrading unit 403 is used for upgrading and updating the program itself, and after the program is upgraded successfully, the program version number of the program itself is sent to the provincial level metering center metering production management platform through the interface module 100.
A fourth aspect.
The present invention provides an electronic device, including:
a processor, a memory, and a bus;
the bus is used for connecting the processor and the memory;
the memory is used for storing operation instructions;
the processor is configured to call the operation instruction, and the executable instruction enables the processor to execute an operation corresponding to the measurement turnaround cabinet management method shown in the first aspect of the application.
In an alternative embodiment, there is provided an electronic device, as shown in fig. 15, the electronic device 5000 shown in fig. 15 including: a processor 5001 and a memory 5003. The processor 5001 and the memory 5003 are coupled, such as via a bus 5002. Optionally, the electronic device 5000 may also include a transceiver 5004. It should be noted that the transceiver 5004 is not limited to one in practical application, and the structure of the electronic device 5000 is not limited to the embodiment of the present application.
The processor 5001 may be a CPU, general purpose processor, DSP, ASIC, FPGA or other programmable logic device, transistor logic device, hardware component, or any combination thereof. Which may implement or perform the various illustrative logical blocks, modules, and circuits described in connection with the disclosure. The processor 5001 may also be a combination of processors implementing computing functionality, e.g., a combination comprising one or more microprocessors, a combination of DSPs and microprocessors, or the like.
Bus 5002 can include a path that conveys information between the aforementioned components. The bus 5002 may be a PCI bus or EISA bus, etc. The bus 5002 may be divided into an address bus, a data bus, a control bus, and the like. For ease of illustration, only one thick line is shown in FIG. 15, but this is not intended to represent only one bus or type of bus.
The memory 5003 may be, but is not limited to, a ROM or other type of static storage device that can store static information and instructions, a RAM or other type of dynamic storage device that can store information and instructions, an EEPROM, a CD-ROM or other optical disk storage, optical disk storage (including compact disk, laser disk, optical disk, digital versatile disk, blu-ray disk, etc.), magnetic disk storage media or other magnetic storage devices, or any other medium that can be used to carry or store desired program code in the form of instructions or data structures and that can be accessed by a computer.
The memory 5003 is used for storing application program codes for executing the present solution, and the execution is controlled by the processor 5001. The processor 5001 is configured to execute application program code stored in the memory 5003 to implement the teachings of any of the foregoing method embodiments.
Among them, electronic devices include but are not limited to: mobile terminals such as mobile phones, notebook computers, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), in-vehicle terminals (e.g., in-vehicle navigation terminals), and the like, and fixed terminals such as digital TVs, desktop computers, and the like.
A fourth aspect.
The invention provides a computer-readable storage medium, on which a computer program is stored, which, when executed by a processor, implements a method for managing a metering turnaround cabinet as shown in the first aspect of the present application.
Yet another embodiment of the present application provides a computer-readable storage medium, on which a computer program is stored, which, when run on a computer, enables the computer to perform the corresponding content in the aforementioned method embodiments.

Claims (10)

1. A management method for a metering turnover cabinet is characterized by comprising the following steps:
receiving a measuring instrument operation instruction input by a user;
judging whether the operation instruction of the metering appliance is correct or not according to the inventory data of the metering appliance, the storable space data of the metering turnover cabinet and the quantity change information carried in the operation instruction of the metering appliance;
if the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period;
counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices;
and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user.
2. The method for managing the metering turnover cabinet as claimed in claim 1, wherein the step of judging whether the operation instruction of the metering appliance is correct comprises the steps of:
determining the type of the operation instruction of the measuring instrument according to the operation instruction of the measuring instrument;
when the operation instruction of the metering appliance is a warehousing instruction of the metering appliance, determining the quantity relation between storable space data of the metering turnover cabinet and warehousing quantity of the metering appliance carried by the warehousing instruction of the metering appliance;
if the warehousing quantity of the metering appliances is less than or equal to the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are correct;
if the warehousing quantity of the metering appliances is larger than the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are incorrect;
when the operation instruction of the metering appliance is an out-warehouse instruction of the metering appliance, judging the quantity relationship between the inventory data of the metering appliance and the out-warehouse quantity of the metering appliance carried by the out-warehouse instruction of the metering appliance;
if the quantity of the measuring instruments taken out of the warehouse is less than or equal to the data stored in the measuring instruments warehouse, the operating instructions of the measuring instruments are correct;
and if the quantity of the metering devices taken out of the warehouse is larger than the data stored in the metering device warehouse, the operating instruction of the metering device is incorrect.
3. The method for managing the metering turnover cabinet as claimed in claim 1, wherein before receiving the operation instruction of the metering appliance input by the user, the method further comprises the following steps:
acquiring user login information;
judging whether the user is a legal user or not according to the user login information;
if the user is legal, receiving a measuring instrument operation instruction input by the user;
and if the user is illegal, refusing to receive the operation instruction of the metering appliance input by the user.
4. The method for managing the metering turnover cabinet as claimed in claim 1, wherein before receiving the operation instruction of the metering appliance input by the user, the method further comprises the following steps:
acquiring monitoring data of a metering turnover cabinet, and judging whether the monitoring data is abnormal or not; wherein the monitoring data comprises: measuring internal temperature and humidity data of the turnover cabinet, and measuring internal and peripheral video acquisition image information of the turnover cabinet;
if the monitoring data is abnormal, carrying out alarm prompt;
and if the monitoring data is normal, receiving a measuring instrument operation instruction input by a user.
5. The method for managing the metering turnover cabinet as claimed in claim 4, wherein the step of judging whether the monitoring data is abnormal comprises the following steps:
judging the type of the monitoring data according to the monitoring data;
when the monitoring data is internal temperature and humidity data of the metering transfer cabinet, judging whether the internal temperature and humidity data of the metering transfer cabinet meets the temperature and humidity threshold value according to the temperature and humidity threshold value and the internal temperature and humidity data of the metering transfer cabinet;
if so, determining that the monitoring data is normal;
if not, determining that the monitoring data is abnormal;
when the monitoring data is the internal and peripheral video acquisition image information of the measurement transfer cabinet, judging whether the internal and peripheral video acquisition images of the measurement transfer cabinet are abnormal or not according to the internal and peripheral video acquisition image information and the video standard image information of the measurement transfer cabinet;
if the internal and peripheral video acquisition images of the metering turnover cabinet are normal, the monitoring data are abnormal;
and if the internal or peripheral video acquisition image of the metering turnover cabinet is abnormal, the monitoring data is abnormal.
6. A metering turnaround cabinet management system, comprising:
the operation instruction receiving module is used for receiving a metering appliance operation instruction input by a user;
the judging module is used for judging whether the operation instruction of the metering appliance is correct or not according to the inventory data of the metering appliance, the storable space data of the metering turnover cabinet and the quantity change information carried in the operation instruction of the metering appliance;
if the operation instruction of the metering device is correct, controlling the metering turnover cabinet to open the door, and controlling the metering turnover cabinet to close the door after a preset time period;
counting the number of the metering devices in the metering turnover cabinet to obtain the statistical data of the metering devices, and updating the inventory data of the metering devices and the storable space data of the metering turnover cabinet by using the statistical data of the metering devices;
and if the operation instruction of the metering appliance is incorrect, sending alarm information to the user.
7. The metering turnaround cabinet management system of claim 6, wherein the determination module is further configured to:
determining the type of the operation instruction of the measuring instrument according to the operation instruction of the measuring instrument;
when the operation instruction of the metering appliance is a warehousing instruction of the metering appliance, determining the quantity relation between storable space data of the metering turnover cabinet and warehousing quantity of the metering appliance carried by the warehousing instruction of the metering appliance;
if the warehousing quantity of the metering appliances is less than or equal to the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are correct;
if the warehousing quantity of the metering appliances is larger than the storable space data of the metering turnover cabinet, the operating instructions of the metering appliances are incorrect;
when the operation instruction of the metering appliance is an out-warehouse instruction of the metering appliance, judging the quantity relationship between the inventory data of the metering appliance and the out-warehouse quantity of the metering appliance carried by the out-warehouse instruction of the metering appliance;
if the quantity of the measuring instruments taken out of the warehouse is less than or equal to the data stored in the measuring instruments warehouse, the operating instructions of the measuring instruments are correct;
and if the quantity of the metering devices taken out of the warehouse is larger than the data stored in the metering device warehouse, the operating instruction of the metering device is incorrect.
8. The metering turnaround cabinet management system of claim 6, further comprising: a user identity information judgment module, configured to:
acquiring user login information;
judging whether the user is a legal user or not according to the user login information;
if the user is legal, receiving a measuring instrument operation instruction input by the user;
and if the user is illegal, refusing to receive the operation instruction of the metering appliance input by the user.
9. The metering turnaround cabinet management system of claim 6, further comprising: a monitoring module to:
acquiring monitoring data of a metering turnover cabinet, and judging whether the monitoring data is abnormal or not; wherein the monitoring data comprises: measuring internal temperature and humidity data of the turnover cabinet, and measuring internal and peripheral video acquisition image information of the turnover cabinet;
if the monitoring data is abnormal, carrying out alarm prompt;
and if the monitoring data is normal, receiving a measuring instrument operation instruction input by a user.
10. The metering turnaround cabinet management system of claim 9, wherein the monitoring module is further to:
judging the type of the monitoring data according to the monitoring data;
when the monitoring data is internal temperature and humidity data of the metering transfer cabinet, judging whether the internal temperature and humidity data of the metering transfer cabinet meets the temperature and humidity threshold value according to the temperature and humidity threshold value and the internal temperature and humidity data of the metering transfer cabinet;
if so, determining that the monitoring data is normal;
if not, determining that the monitoring data is abnormal;
when the monitoring data is the internal and peripheral video acquisition image information of the measurement transfer cabinet, judging whether the internal and peripheral video acquisition images of the measurement transfer cabinet are abnormal or not according to the internal and peripheral video acquisition image information and the video standard image information of the measurement transfer cabinet;
if the internal and peripheral video acquisition images of the metering turnover cabinet are normal, the monitoring data are abnormal;
and if the internal or peripheral video acquisition image of the metering turnover cabinet is abnormal, the monitoring data is abnormal.
CN202111196922.0A 2021-10-14 2021-10-14 Metering turnover cabinet management method and system Pending CN113887980A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111196922.0A CN113887980A (en) 2021-10-14 2021-10-14 Metering turnover cabinet management method and system

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Application Number Priority Date Filing Date Title
CN202111196922.0A CN113887980A (en) 2021-10-14 2021-10-14 Metering turnover cabinet management method and system

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Publication Number Publication Date
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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104318346A (en) * 2014-09-29 2015-01-28 国家电网公司 Storage management method and system of intelligent meter database
CN106570669A (en) * 2016-10-26 2017-04-19 国网北京市电力公司 Device and system used for storing metering appliance
CN108550013A (en) * 2017-10-11 2018-09-18 京东方科技集团股份有限公司 A kind of processing method and equipment of object storage
CN109146364A (en) * 2018-07-31 2019-01-04 深圳春沐源控股有限公司 Warehouse materials management method and system
CN111439510A (en) * 2020-03-23 2020-07-24 山东瑞吉德自动化股份有限公司 Method for managing articles in and out
CN111612982A (en) * 2020-03-31 2020-09-01 深圳市康拓普信息技术有限公司 Measurement turnover cabinet system based on RFID

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104318346A (en) * 2014-09-29 2015-01-28 国家电网公司 Storage management method and system of intelligent meter database
CN106570669A (en) * 2016-10-26 2017-04-19 国网北京市电力公司 Device and system used for storing metering appliance
CN108550013A (en) * 2017-10-11 2018-09-18 京东方科技集团股份有限公司 A kind of processing method and equipment of object storage
CN109146364A (en) * 2018-07-31 2019-01-04 深圳春沐源控股有限公司 Warehouse materials management method and system
CN111439510A (en) * 2020-03-23 2020-07-24 山东瑞吉德自动化股份有限公司 Method for managing articles in and out
CN111612982A (en) * 2020-03-31 2020-09-01 深圳市康拓普信息技术有限公司 Measurement turnover cabinet system based on RFID

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