CN111209762B - Information identification device, system and identification method - Google Patents

Information identification device, system and identification method Download PDF

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Publication number
CN111209762B
CN111209762B CN201911426062.8A CN201911426062A CN111209762B CN 111209762 B CN111209762 B CN 111209762B CN 201911426062 A CN201911426062 A CN 201911426062A CN 111209762 B CN111209762 B CN 111209762B
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China
Prior art keywords
scanning
disc
type storage
server
information
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CN201911426062.8A
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CN111209762A (en
Inventor
柳邦源
黄伟任
罗全胜
邓京
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Zhuhai Livzon Diagnostics Inc
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Zhuhai Livzon Diagnostics Inc
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Priority to CN201911426062.8A priority Critical patent/CN111209762B/en
Publication of CN111209762A publication Critical patent/CN111209762A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • 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
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • G06K7/10544Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation by scanning of the records by radiation in the optical part of the electromagnetic spectrum
    • G06K7/10821Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation by scanning of the records by radiation in the optical part of the electromagnetic spectrum further details of bar or optical code scanning devices
    • G06K7/10861Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation by scanning of the records by radiation in the optical part of the electromagnetic spectrum further details of bar or optical code scanning devices sensing of data fields affixed to objects or articles, e.g. coded labels

Abstract

The invention provides an information identification device, an information identification system and an information identification method, and relates to the technical field of information, wherein the device comprises a scanning assembly and a disc type storage assembly which are respectively connected with a server; the disc type storage assembly is positioned at one side of the scanning assembly; at least one container box is stored in the disc type storage assembly, and each container box is provided with an electronic tag; the disc type storage assembly is used for rotating when receiving a rotating instruction from the server so as to align the electronic tag on the container box in the disc type storage assembly with the scanning assembly; the scanning component is used for scanning the electronic tag when receiving a scanning instruction from the server to obtain scanning information, and sending the scanning information to the server to enable the server to identify the scanning information. The invention effectively improves the accuracy of information identification while ensuring the identification efficiency.

Description

Information identification device, system and identification method
Technical Field
The present invention relates to the field of information technologies, and in particular, to an information identification device, system, and identification method.
Background
With the popularity of automated medical devices, many large medical instruments have a storage compartment for chemical or biological kits. The batch of reagent boxes are placed in a storage room, and the instrument is required to automatically distinguish the type, concentration, batch, capacity and other information of the reagent in each different reagent box during the operation and test. For identifying information in the kit, an electronic tag reader is usually disposed beside the reagent storage area for identification. However, since more than one kind of kit is stored in the storage room, the different positions of the electronic tag reader and each kind of kit lead to poor recognition effect, and meanwhile, the electronic tag reader simultaneously recognizes the kit stored in the storage room, so that the recognition accuracy is lower.
Disclosure of Invention
The invention aims to provide an information identification device, an information identification system and an information identification method, so that the technical problems of poor identification effect and low identification efficiency of an electronic tag reader in the prior art are solved, and the accuracy of information identification is effectively improved.
In a first aspect, an embodiment of the present invention provides an information identifying apparatus, including a scanning assembly and a disc storage assembly, where the scanning assembly and the disc storage assembly are respectively connected to a server; the disc type storage assembly is positioned at one side of the scanning assembly; at least one container box is stored in the disc type storage assembly, and each container box is provided with an electronic tag; the disc type storage assembly is used for rotating when receiving a rotating instruction from the server so as to align the electronic tag on the container box in the disc type storage assembly with the scanning assembly; the scanning component is used for scanning the electronic tag when receiving a scanning instruction from the server to obtain scanning information, and sending the scanning information to the server to enable the server to identify the scanning information.
Further, the scanning assembly comprises a main control module and a tag reader; the main control module is connected with the server; the tag reader is positioned in the closed scanning module shielding cover; the main control module is used for controlling the tag reader to scan when receiving a scanning instruction from the server; the tag reader is used for scanning the electronic tag to obtain the identification information in the corresponding container box stored in the electronic tag; the main control module is also used for decoding the identification information obtained by scanning the tag reader and returning the decoded identification information to the server.
Further, the main control module is further configured to return information indicating that the identification information is empty to the server when the tag reader does not scan the electronic tag.
Further, the disc type storage assembly comprises a disc type shielding cover, a disc type storage room and a disc type module controller, wherein the disc type storage room is positioned in the disc type shielding cover; the disc module controller is driven by a disc driving motor; and the disc module controller is used for controlling the disc storage room to rotate according to a designated angle when receiving a rotation instruction from the server so as to align the electronic tag on the container box with the tag reader.
Further, the apparatus further includes: a position sensor located below the disc-type storage chamber; the position sensor is used to sense the position of the disc-type storage compartment so that the disc-type storage compartment is aligned with the tag reader when rotated.
Further, a first bin gate and a second bin gate are arranged on the disc type shielding cover, the first bin gate is used for placing the container box in the disc type storage chamber, and the second bin gate is used for taking out the container box from the disc type storage chamber; the device also comprises a bin gate switch controller connected with the server; the bin gate switch controller is driven by a bin gate control motor; and the bin gate switch controller is used for controlling the first bin gate and/or the second bin gate to switch when receiving the rotation instruction.
Further, a plurality of independent storage grids are arranged in the disc-type storage room according to a first designated position, and a separation baffle is arranged between each two storage grids; the storage grid is used for placing the container box; the storage compartment also includes a plurality of storage locations.
Further, the device is applied to a chemiluminescent immunoassay system.
In a second aspect, an embodiment of the present invention provides an information identifying system, including an information identifying apparatus according to any one of the embodiments of the first aspect, and a server connected to the information identifying apparatus.
In a third aspect, an embodiment of the present invention provides an information identifying method, which is applied to the information identifying apparatus of any one of the above embodiments, where the apparatus includes a scanning assembly and a disc storage assembly, the scanning assembly and the disc storage assembly are respectively connected to a server, the disc storage assembly is located at one side of the scanning assembly, and one or more container boxes located inside the disc storage assembly, and each container box is provided with an electronic tag; the method is performed by a server, the method comprising: transmitting a rotation instruction to the disc type storage assembly so as to align the electronic tag on the container box in the disc type storage assembly with the scanning assembly; and sending a scanning instruction to the scanning assembly and receiving information obtained by scanning by the scanning assembly so as to identify the information.
The invention provides an information identification device, a system and an identification method, wherein the device is provided with a scanning assembly and a disc type storage assembly which are respectively connected with a server, the disc type storage assembly is arranged at one side of the scanning assembly, and at least one container box (provided with an electronic tag) is stored in the disc type storage assembly. The disc type storage assembly rotates when receiving a rotation instruction from the server, so that the electronic tag on the container box in the disc type storage assembly is aligned to the scanning assembly, the scanning assembly scans the electronic tag when receiving a scanning instruction from the server, scanning information is obtained, and the scanning information is sent to the server to enable the server to identify the scanning information. When the disc type storage assembly rotates, the scanning assembly identifies the container boxes which are placed in the disc type storage assembly and provided with the electronic tags, so that the distance between each container box and the scanning assembly is the same during identification, and the identification accuracy of the scanning assembly is improved; meanwhile, by means of the method of matching the plurality of components, the function of executing label information scanning in the rotation of the disc is designed and realized, so that the total time required for identifying information of a plurality of container boxes is greatly shortened relative to that of a common method, and the identification efficiency of the whole label information scanning system is ensured. Therefore, the embodiment of the invention effectively improves the accuracy of information identification while ensuring the identification efficiency.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings that are needed in the description of the embodiments or the prior art will be briefly described, and it is obvious that the drawings in the description below are some embodiments of the present invention, and other drawings can be obtained according to the drawings without inventive effort for a person skilled in the art. Thus, the following detailed description of the embodiments of the invention, as presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
It should be noted that: like reference numerals and letters denote like items in the following figures, and thus once an item is defined in one figure, no further definition or explanation thereof is necessary in the following figures.
Fig. 1 is a schematic structural diagram of an information identifying apparatus according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a specific information identifying apparatus according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a scan module according to an embodiment of the present invention;
FIG. 4 is a schematic diagram of a position sensor according to an embodiment of the present invention;
FIG. 5 is a schematic structural view of a disc-type storage assembly according to an embodiment of the present invention;
FIG. 6 is a schematic view of another disc-type storage assembly according to an embodiment of the present invention;
fig. 7 is a schematic structural diagram of an information recognition system according to an embodiment of the present invention;
fig. 8 is a flowchart of an information identification method according to an embodiment of the present invention.
Icon: 100-server; 10-a scanning assembly; 101-a main control module; 102-a tag reader; 103-scanning module shielding; 20-a disc-type storage assembly; 201-a container box; 202-an electronic tag; 203-a disc shield; 204-a disc-type storage compartment; 205-position sensor; 206-slit; 207-a first bin gate; 208-a second bin gate; 209-a baffle.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments of the present invention. The components of the embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
In consideration of the prior art, the reagent box information recognition system based on the RFID electronic tag recognition technology usually recognizes by arranging an electronic tag reader beside a reagent storage area, however, a plurality of reagent boxes are often stored in the reagent storage area, and the plurality of reagent boxes stored in the storage area are scanned by the RFID electronic tag reader and can be influenced by the storage position of the reagent boxes and the distance from the RFID electronic tag reader, so that the scanning effect is poor, and the accuracy of the scanning result is low. Therefore, the embodiment of the invention provides an information identification device, an information identification system and an information identification method, and the accuracy of information identification is effectively improved.
For the convenience of understanding the embodiments, first, an information recognition device is provided in detail, and referring to a schematic structure of an information recognition device shown in fig. 1, the information recognition device mainly includes a scanning assembly 10 and a disc type storage assembly 20, and the scanning assembly 10 and the disc type storage assembly 20 are respectively connected to a server 100; the disc-type storage assembly 20 is positioned at one side of the scanning assembly 10; the disc-type storage assembly 20 is a disc-shaped assembly having a storage space, at least one container box 201 is stored in the disc-type storage assembly 20, the container box 201 is used for storing articles to be stored, which may be solid articles, gaseous articles or liquid articles, each container box 201 is provided with an electronic tag 202, such as by sticking the electronic tag 202 on the surface or cover of the container box 201, and information of the articles stored in the container box 201 is stored in the electronic tag 202.
In one embodiment, the disc-type storage assembly 20 is configured to rotate when receiving a rotation command from the server 100, so that the electronic tag 202 on the container box 201 in the disc-type storage assembly 20 is aligned with the scanning assembly 10, and the disc-type storage assembly 20 aligns the position where each container box is placed with the scanning assembly 10 when rotating, so that the scanning assembly 10 can accurately identify the content stored in the electronic tag disposed on the container box.
In one embodiment, the scanning component 10 is configured to scan the electronic tag 202 when receiving a scanning instruction from the server 100, so as to obtain scanning information, where the scanning information is information stored in the electronic tag, and may include a product type, a name, a number, a production date, and the like, and send the scanning information to the server 100 to enable the server 100 to identify the scanning information.
According to the information identification device provided by the embodiment of the invention, the scanning assembly and the disc-type storage assembly which are respectively connected with the server are arranged, the disc-type storage assembly is arranged on one side of the scanning assembly, and at least one container box (provided with an electronic tag) is stored in the disc-type storage assembly. The disc type storage assembly rotates when receiving a rotation instruction from the server, so that the electronic tag on the container box in the disc type storage assembly is aligned to the scanning assembly, the scanning assembly scans the electronic tag when receiving a scanning instruction from the server, scanning information is obtained, and the scanning information is sent to the server to enable the server to identify the scanning information. When the disc type storage assembly rotates, the scanning assembly identifies the container boxes which are placed in the disc type storage assembly and provided with the electronic tags, so that the distance between each container box and the scanning assembly is the same during identification, and the identification accuracy of the scanning assembly is improved, and therefore, the information identification accuracy is effectively improved; meanwhile, by means of the method of matching the plurality of components, the function of executing label information scanning in the rotation of the disc is designed and realized, so that the total time required for identifying information of a plurality of container boxes is greatly shortened relative to that of a common method, and the identification efficiency of the whole label information scanning system is ensured. Therefore, the embodiment of the invention effectively improves the accuracy of information identification while ensuring the identification efficiency.
For further description of the above scanning assembly and disc-type storage assembly, referring to a schematic structural diagram of a specific information identifying apparatus shown in fig. 2, a dotted line range in the drawing represents a range of the scanning assembly for scanning electronic tags, the scanning assembly 10 includes a main control module 101 and a tag reader 102, which may be an RFID reader, and the main control module 101 is connected to the server 100 to receive an instruction issued by the server 100 and transmit identification information back to the server 100. The tag reader 102 is located in a closed shielding cover 103 of the scanning module, referring to a schematic structural diagram of a scanning module shown in fig. 3, the scanning module includes the tag reader 102 and the shielding cover 103 of the scanning module, in fig. 3a, the tag reader 102 and the shielding cover 103 of the scanning module are split, in fig. 3b, the tag reader 102 and the shielding cover 103 of the scanning module are closed, the main material of the shielding cover 103 of the scanning module is plastic, and when the scanning module is installed, a sealing glue is used to seal a gap, and when the scanning module works, the scanning module is in a completely sealed state. When the main control module 101 is configured to receive a scan instruction from the server 100, the tag reader 102 is controlled to scan the electronic tag 202, so as to obtain identification information in the corresponding container box 201 stored in the electronic tag 202, where the identification information of the container box may include information such as a type, a production date, and a lot number of the article stored in the container. When the tag reader 102 scans the information of the electronic tag 202, the main control module 101 is further configured to perform a decoding operation on the identification information obtained by scanning the tag reader 102, thereby obtaining decoded identification information, and return the decoded identification information to the server 100.
In practical application, there may be a case that the container box does not store articles, at this time, the tag reader cannot scan the electronic tag and the information stored therein when scanning, so the main control module 101 is further configured to return information indicating that the identification information is empty to the server 100 when the tag reader 102 does not scan the electronic tag 202, and when receiving the empty information, the server can determine that the container box does not store articles according to the received empty information, thereby realizing a function of detecting whether the container box is placed at the current scanning position.
In addition, the disc type storage assembly 20 includes a disc type shielding case 203, a disc type storage chamber 204 located in the disc type shielding case 203, and a disc type module controller (not shown) which is generally stored at a low temperature when storing biological or chemical reagents, so that condensed water exists to affect the recognition effect, and thus, under the action of the disc type shielding case 203, the air inside the disc type storage chamber 204 is isolated from the outside air, moisture in the outside air cannot enter the disc type storage chamber 204, the internal condensed water is greatly reduced relative to the open disc type storage chamber 204 (only part of air is convected when the label in the disc enters and exits from the bin), meanwhile, the disc type storage chamber 204 is isolated from the scanning assembly 10 under the action of the disc type shielding case 203, and the scanning assembly 10 can be maintained in a higher temperature range than the inside of the reagent box disc. The tag reader 102 will not be affected by condensed water, improving the scanning success rate and extending the life of the system.
In one embodiment, the disc module controller is configured to control the disc storage compartment 204 to rotate at a specified angle by driving the disc driving motor when receiving a rotation command from the server 100, so that the electronic tag 202 on the container box 201 is aligned with the tag reader 102.
In order to accurately align each container box 201 with the tag reader 102 during rotation of the disc storage compartment 204, a position sensor 205 is provided below the disc storage compartment 204, see a schematic diagram of one of the position sensors shown in fig. 4, and the position of the position sensor 205 and the disc storage compartment 204 is shown in fig. 4 a. The position sensor 205 is configured to sense the position of the disc storage compartment 204 so that the disc storage compartment 204 is aligned with the tag reader 102 during rotation. For example, a code wheel may be installed under the disc-type storage chamber 204, and the code wheel disc-type storage chamber 204 is fixed as a whole and rotates without a gap with the disc. The metal material of the code wheel is designed with a small gap 206, as shown in fig. 4 b. Each slit 206 corresponds to a scanning position. When the disc storage chamber 204 rotates, the sensor in the disc control system senses the position of the gap and forms closed loop control with the disc controller, as shown in fig. 4, to achieve precise control of the disc rotation position. With this system, the disc position accuracy will be controllable to 0.2mm. With this control accuracy, the electronic tag scan is affected by the position movement to be almost negligible.
In one embodiment, the disc-type shielding cover is provided with a first bin gate 207 and a second bin gate 208, the first bin gate 207 is used for placing the container box 201 in the disc-type storage chamber 204, the second bin gate 208 is used for taking the container box 201 out of the disc-type storage chamber 204, for convenience of understanding, referring to a schematic structural diagram of the disc-type storage assembly shown in fig. 5, the container box 201 rotates to a position of a bin gate in and out of a disc according to a received rotation command sent by the server host, so that a gripper module can conveniently grip a reagent card in the container box 201, and other experimental steps are performed.
In addition, the device also comprises a bin gate switch controller connected with the server, wherein the bin gate switch controller is driven by a bin gate control motor; and the bin gate switch controller is used for controlling the first bin gate and/or the second bin gate to switch when receiving the rotation instruction.
In one embodiment, a plurality of independent storage compartments are arranged in the disc-type storage compartment according to a first designated position, and in order that each container box 201 is stored at the same distance from the tag reader when rotating, the storage compartments are arranged according to the position shown in fig. 6, and a separation gear 209 is arranged between each storage compartment; the storage compartment is used for placing the container box 201. In view of the fact that the variety of articles stored is large and the sample is large in practical application, the storage grid further comprises a plurality of storage positions.
Optionally, the device can be applied to a chemiluminescent immunoassay system to identify information of an electronic tag of a kit in the chemiluminescent immunoassay system.
An embodiment of the present invention provides an information identifying system, referring to a schematic structural diagram of an information identifying system shown in fig. 7, where the system includes an information identifying apparatus according to any one of the embodiments, and a server connected to the information identifying apparatus.
The invention provides an information identification system, which comprises an information identification device and a server connected with the information identification device, wherein the system transmits a rotation instruction to a disc-type storage assembly through the server so as to lead an electronic tag on a container box in the disc-type storage assembly to be aligned with a scanning assembly, transmits a scanning instruction to the scanning assembly and receives information obtained by scanning by the scanning assembly, so as to identify the information. Because the scanning assembly is used for identifying the container boxes which are placed in the disc storage assembly and provided with the electronic tags when the disc storage assembly rotates, the distance between each container box and the scanning assembly is the same when the container boxes are identified, the identification accuracy of the scanning assembly is improved, and meanwhile, the information identification efficiency can be ensured by the scanning mode in rotation. Therefore, the embodiment of the invention effectively improves the accuracy of information identification.
The invention also provides an information identification method for carrying out information identification by using the information identification device, for convenience of understanding, refer to a flow diagram of the information identification method shown in fig. 8, and the method mainly comprises the following steps S802 to S804:
step S802: and sending a rotation instruction to the disc type storage assembly so as to align the electronic tag on the container box in the disc type storage assembly with the scanning assembly.
Step S804: and sending a scanning instruction to the scanning assembly and receiving information obtained by scanning by the scanning assembly so as to identify the information.
In one embodiment, the server sends a scanning command in rotation to the disc type storage component and the scanning component, so that the disc type storage component (namely the disc type storage component) starts to rotate, meanwhile, the disc type storage component senses the alignment position of the electronic tag on the container box in the storage component and the scanning component through the special position sensor, once the electronic tag is aligned in rotation, the alignment command is fed back to the server immediately, the server sends the scanning command to the scanning component immediately, and the scanning component starts scanning immediately after receiving the command; and the server receives the information obtained by scanning by the scanning component and performs information identification. The above-mentioned actions are repeated in the course of rotation until the container box which is set before the end of rotation or before the start of command and needs to be identified is identified. The information identification method provided by the invention is executed by the server, and the electronic tag on the container box in the disc type storage assembly is aligned with the scanning assembly by sending a rotation instruction to the disc type storage assembly, the scanning instruction is sent to the scanning assembly, and the information obtained by scanning by the scanning assembly is received so as to identify the information. Because the scanning assembly identifies the container boxes which are placed in the disc type storage assembly and provided with the electronic tags when the disc type storage assembly rotates, the distance between each container box and the scanning assembly is the same during identification, the identification accuracy of the scanning assembly is improved, meanwhile, the function of executing tag information scanning during disc rotation is designed and realized through a method of matching a plurality of assemblies, the total time required for identifying information of a plurality of container boxes is greatly shortened relative to that of a common method, and the identification efficiency of the whole tag information scanning system is ensured. Therefore, the embodiment of the invention effectively improves the accuracy of information identification while ensuring the identification efficiency.
In the description of the present invention, it should be noted that, the azimuth or positional relationship indicated by the terms "upper", "inner", etc. are based on the azimuth or positional relationship shown in the drawings, or the azimuth or positional relationship in which the inventive product is conventionally put in use, are merely for convenience of describing the present invention and simplifying the description, and are not indicative or implying that the apparatus or element to be referred to must have a specific azimuth, be configured and operated in a specific azimuth, and therefore, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," and the like are used merely to distinguish between descriptions and should not be construed as indicating or implying relative importance.
In the description of the present invention, it should also be noted that, unless explicitly specified and limited otherwise, the terms "disposed", "connected" and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present invention will be understood in specific cases by those of ordinary skill in the art.
Finally, it should be noted that: the above embodiments are only for illustrating the technical solution of the present invention, and not for limiting the same; although the invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some or all of the technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit of the invention.

Claims (4)

1. The information identification device is characterized by being applied to a chemiluminescent immunoassay system and comprising a scanning assembly and a disc type storage assembly, wherein the scanning assembly and the disc type storage assembly are respectively connected with a server; the disc type storage assembly is positioned at one side of the scanning assembly; at least one container box is stored in the disc type storage assembly, and each container box is provided with an electronic tag;
the disc type storage assembly is used for rotating when receiving a rotating instruction from the server so as to align the electronic tag on the container box in the disc type storage assembly with the scanning assembly;
the scanning component is used for scanning the electronic tag when receiving a scanning instruction from the server to obtain scanning information, and sending the scanning information to the server to enable the server to identify the scanning information;
the scanning assembly comprises a main control module and a tag reader; the main control module is connected with the server; the tag reader is positioned in the closed scanning module shielding cover;
the main control module is used for controlling the tag reader to scan when receiving the scanning instruction from the server;
the tag reader is used for scanning the electronic tag to obtain the corresponding identification information in the container box stored in the electronic tag;
the main control module is also used for decoding the identification information obtained by scanning the tag reader and returning the decoded identification information to the server;
the disc type storage assembly comprises a disc type shielding cover, a disc type storage room and a disc type module controller, wherein the disc type storage room is positioned in the disc type shielding cover; the disc module controller is driven by a disc driving motor; the disc module controller is used for controlling the disc storage room to rotate according to a specified angle when receiving the rotation instruction from the server so as to align the electronic tag on the container box with the tag reader;
the information identifying apparatus further includes: a position sensor located below the disc-type storage chamber; the position sensor is used for sensing the position of the disc-type storage chamber so that the disc-type storage chamber is aligned with the tag reader when rotating;
a first bin gate and a second bin gate are arranged on the disc type shielding cover, the first bin gate is used for placing the container box in the disc type storage chamber, and the second bin gate is used for taking out the container box from the disc type storage chamber; the device also comprises a bin gate switch controller connected with the server; the bin gate switch controller is driven by a bin gate control motor; the bin gate switch controller is used for controlling the first bin gate and/or the second bin gate to switch when receiving the rotation instruction;
a plurality of independent storage grids are arranged in the disc-type storage room according to a first designated position, and a separation baffle is arranged between each two storage grids; the storage grid is used for placing the container box; the storage compartment further includes a plurality of storage locations.
2. The apparatus of claim 1, wherein the master control module is further configured to return information to the server indicating that the identification information is empty when the tag reader does not scan the electronic tag.
3. An information recognition system comprising the information recognition device of any one of claims 1 to 2, and a server connected to the information recognition device.
4. An information identification method, which is applied to a chemiluminescent immunoassay system, wherein the method is applied to the information identification device as claimed in any one of claims 1 to 2, the device comprises a scanning component and a disc-type storage component, the scanning component and the disc-type storage component are respectively connected with a server, the disc-type storage component is positioned at one side of the scanning component, one or more container boxes are positioned inside the disc-type storage component, and each container box is provided with an electronic tag; the scanning assembly comprises a main control module and a tag reader; the main control module is connected with the server; the tag reader is positioned in the closed scanning module shielding cover;
the method is performed by the server, the method comprising:
transmitting a rotation command to the disc-type storage assembly to align the electronic tag on the container box in the disc-type storage assembly with the scanning assembly;
and sending a scanning instruction to the scanning assembly, so that when the main control module receives the scanning instruction, the main control module controls the tag reader to scan, the tag reader scans the electronic tag to obtain the corresponding identification information in the container box stored in the electronic tag, decodes the identification information obtained by scanning the tag reader, and returns the decoded identification information to the server, so that the server receives the information obtained by scanning by the scanning assembly, and information identification is performed.
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