WO2019127151A1 - 一种检测方法、检测设备及服务器 - Google Patents

一种检测方法、检测设备及服务器 Download PDF

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Publication number
WO2019127151A1
WO2019127151A1 PCT/CN2017/119132 CN2017119132W WO2019127151A1 WO 2019127151 A1 WO2019127151 A1 WO 2019127151A1 CN 2017119132 W CN2017119132 W CN 2017119132W WO 2019127151 A1 WO2019127151 A1 WO 2019127151A1
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WIPO (PCT)
Prior art keywords
detecting device
information
server
substance
detected
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2017/119132
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English (en)
French (fr)
Inventor
骆磊
牟涛涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Cloudminds Shenzhen Holdings Co Ltd
Original Assignee
Cloudminds Shenzhen Holdings Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Cloudminds Shenzhen Holdings Co Ltd filed Critical Cloudminds Shenzhen Holdings Co Ltd
Priority to CN201780002524.6A priority Critical patent/CN108323234A/zh
Priority to PCT/CN2017/119132 priority patent/WO2019127151A1/zh
Publication of WO2019127151A1 publication Critical patent/WO2019127151A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/10Protocols in which an application is distributed across nodes in the network
    • H04L67/1095Replication or mirroring of data, e.g. scheduling or transport for data synchronisation between network nodes
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N21/25Colour; Spectral properties, i.e. comparison of effect of material on the light at two or more different wavelengths or wavelength bands
    • G01N21/31Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry

Definitions

  • the present application relates to the field of communications technologies, and in particular, to a detection method, a detection device, and a server.
  • the user may add the identifier of the substance to be detected and the information of the substance to be detected, such as the spectrum of the substance, the trait, etc., to the self-built library of the detecting device. In this way, if the detecting device is detected again by using the detecting device, the substance to be detected can be identified according to the information in the self-built library.
  • the user detects the substance to be detected by using other detecting devices, if the information of the substance to be detected is not stored in the other detecting device, the substance to be detected cannot be identified. Then, the user needs to detect the substance to be detected and add the information of the substance to be detected again to the other detecting device.
  • the information of the substance to be detected is derived from the detecting device storing the information of the substance to be detected, and is introduced into the other detecting device. The process of introducing the information for deriving the substance to be detected in this way, or repeatedly adding the information of the substance to be detected in different detecting devices, is not only cumbersome to operate, but also wastes a lot of time.
  • the present application provides a detection method, a detection device, and a server, which can solve the problem that the information of the same substance to be detected is exported from one detection device and then introduced into another detection device, or the same substance to be detected is repeatedly added to different detection devices. Information, causing a lot of wasted user time.
  • the present application provides a detection method, which is applied to a detection system, the detection system includes a server and at least one detection device group, and the detection device group includes at least two detection devices, and the method may include: The first detecting device acquires the detection result of the substance to be detected; if the detection result is that the substance to be detected cannot be identified, the first detecting device sends the information of the substance to be detected to the server, so that the server Synchronizing the information of the substance to be detected to the second detecting device; wherein the information of the substance to be detected includes feature information and an identifier, the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same Test device group.
  • the present application provides a detection method, the method being applied to a detection system, the detection system comprising a server and at least one detection device group, wherein the detection device group includes at least two detection devices, and the method may include
  • the server receives the information of the substance to be detected sent by the first detecting device; the server synchronizes the information of the substance to be detected to the second detecting device; wherein the information of the substance to be detected includes the feature information and And the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same detecting device group.
  • the embodiment of the present application provides a detection device, where the detection device belongs to a detection system, the detection system includes a server and at least one detection device group, and the detection device group includes at least two detection devices,
  • the detecting device as the first detecting device includes: an obtaining module, configured to acquire a detection result of the substance to be detected; and a sending module, configured to: if the detection result obtained by the acquiring module is that the substance to be detected cannot be identified, The server sends the information of the substance to be detected, so that the server synchronizes the information of the substance to be detected to the second detecting device; wherein the information of the substance to be detected includes feature information and an identifier, and the feature information includes The spectrum, the first detecting device and the second detecting device belong to the same detecting device group.
  • the embodiment of the present application provides a server, where the server belongs to a detection system, and the detection system further includes at least one detection device group, where the detection device group includes at least two detection devices, and the server includes: a receiving module, configured to receive information about the substance to be detected sent by the first detecting device, and a sending module, configured to synchronize information of the substance to be detected received by the receiving module to the second detecting device;
  • the information of the substance to be detected includes feature information and an identifier, the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same detecting device group.
  • the present application provides a detection apparatus comprising: a memory, a communication interface, and a processor, the memory and the communication interface being coupled to the processor, the memory for storing computer execution code, the processing
  • the computer is configured to execute the computer-implemented code control detecting device to perform the detecting method as described in the first aspect and various possible implementations thereof, the communication interface being used for data transmission of the detecting device and an external device.
  • the application provides a server, including: a memory, a communication interface, and a processor, the memory and the communication interface being coupled to the processor, the memory for storing computer execution code, the processor
  • the execution of the computer-executable code control server performs the detection method as described in the second aspect and various possible implementations thereof, the communication interface being used for data transmission between the server and an external device.
  • the present application provides a computer readable storage medium having instructions stored therein, when the instructions are run on a detecting device, causing the detecting device to perform the first aspect and Detection methods as described in various possible implementations.
  • the present application provides a computer readable storage medium having stored therein instructions that, when executed on a server, cause the server to perform the second aspect and various Possible implementation methods described.
  • the present application provides a computer program product comprising instructions, when the computer program product is run on a detection device, causing the detection device to perform as described in the first aspect and various possible implementations thereof Detection method.
  • the present application provides a computer program product comprising instructions, when the computer program product is run on a server, causing the server to perform the detection method as described in the second aspect and various possible implementations thereof .
  • the detection method, the detecting device and the server provided by the present application need to be derived from the previously used detecting device, if the detecting device that is currently used is replaced with the detecting device that has previously added the information of the substance to be detected.
  • the information of the substance to be detected is imported into the currently used detecting device, or the information of the substance to be detected is added again to the currently used detecting device.
  • the first detecting device can The information of the substance to be detected is sent to the server, after which the server synchronizes the information to the second detecting device. In this way, the information of the substance to be detected is added to all the detection devices in the detection system, and when the user uses any one of the detection devices belonging to the detection system, the substance to be detected can be directly identified, thereby saving user time. .
  • FIG. 1 is a schematic diagram of a detection system according to an embodiment of the present application.
  • FIG. 2 is a flowchart 1 of a detection method according to an embodiment of the present application.
  • FIG. 3 is a second flowchart of a detection method according to an embodiment of the present disclosure.
  • FIG. 4 is a third flowchart of a detection method according to an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram 1 of a detecting device according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram 1 of a server according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic structural diagram 2 of a detecting device according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic structural diagram 2 of a server according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram 3 of a detecting device according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic structural diagram 3 of a server according to an embodiment of the present application.
  • the words “exemplary” or “such as” are used to mean an example, illustration, or illustration. Any embodiment or design described as “exemplary” or “for example” in the embodiments of the present application should not be construed as preferred or advantageous over other embodiments or designs. Rather, the use of the words “exemplary” or “such as” is intended to present the concepts in a particular manner.
  • the embodiment of the present application provides a detecting method.
  • the method can be applied to the detecting system 101.
  • the detecting system 101 includes at least one detecting device group 102 and a server 103.
  • the server 103 can be a cloud server or a physical server.
  • the cloud server can be an enterprise mobile management (EMM) platform.
  • EMM enterprise mobile management
  • the detecting device group 102 and the server 103 may be connected by wire or wirelessly.
  • the wireless connection mode may be a Bluetooth (BT) connection, a Wireless Fidelity (Wi-Fi), or a near field communication. (Near Field Communication, NFC) and other connections.
  • BT Bluetooth
  • Wi-Fi Wireless Fidelity
  • NFC Near Field Communication
  • the detecting device 104 may include a local self-built library 108 and a local official library 109 for storing information of the substance to be detected synchronized by the server, and the local official library 109 is configured to store the manufacturer of the detecting device 104.
  • the set information wherein the information set by the manufacturer includes the characteristic information and name of the substance, and the characteristic information includes the spectrum.
  • the server 103 includes a cloud official library 105 and a cloud self-built library 106.
  • the cloud official library 105 is configured to store information set by the manufacturer of the detecting device 104
  • the cloud self-built library 106 is configured to store information of the substance to be detected uploaded by the detecting device 104.
  • the detecting device 104 may further include a device self-built library 110, where the self-built library 110 is configured to store information about the substance to be detected added by the user, and whether the detecting device 104 is connected to the server 103, the user can view, Add, modify, or delete the stored information in the device self-built library 110.
  • the self-built library 110 is configured to store information about the substance to be detected added by the user, and whether the detecting device 104 is connected to the server 103, the user can view, Add, modify, or delete the stored information in the device self-built library 110.
  • the server 103 may further include a cloud personal library 107.
  • the cloud personal library 107 belongs to a user, and the user may view, add, modify, or delete information about the substance to be detected stored in the cloud personal library 107.
  • the detection system 101 includes one detection device group 102 and one detection device group includes three detection devices 104 in FIG.
  • the number of detection device groups included in the detection system 101 and the number of detection devices included in the detection device group are not limited herein.
  • one server 103 can correspond to one detecting device group 102, and the cloud official library 105 and the cloud self-built library 106 in the server 103 can be used by all detecting devices in the detecting device group 102; or one server 103 can correspond to A plurality of detecting device groups 102, a plurality of detecting device groups 102 can jointly use the cloud official library 105 in the server 103, and each detecting device group separately uses a cloud self-built library 106, that is, the server 103 includes one The cloud official library 105 and the plurality of cloud self-built libraries 106 corresponding to the plurality of detection device groups 102.
  • the embodiment of the present application provides a detection method, which is applied to the detection system shown in FIG. 1 , as shown in FIG. 2 , the method includes:
  • Step 201 The first detecting device acquires a detection result of the substance to be detected.
  • the first detecting device after acquiring the feature information of the substance to be detected, sends the feature information of the substance to be detected to the server, so that the server receives the feature information and each substance stored.
  • the standard information is matched to determine the test results.
  • the detection result is sent to the first detecting device.
  • the first detecting device first matches the feature information of the substance to be detected with the locally stored standard information to obtain a first detection result. If the substance to be detected can be identified according to the locally stored standard information, the first detection result includes the name of the substance to be detected; if the first detection result is that the substance to be detected cannot be identified, after the network is unobstructed, the first detection The device sends the feature information of the to-be-detected substance to the server, and then the server matches the feature information with the standard information stored in the server to obtain a second detection result and sends the second detection result to the first detection device, where the first detection device will The second detection result is used as a detection result.
  • the standard information stored in the local official library in the first detecting device is set as a part of the standard information stored in the cloud official library.
  • the standard information stored in each detecting device can be set by the manufacturer of the detecting device.
  • the size of the information stored in the detecting device is not limited herein.
  • the first detecting device first matches the feature information of the substance to be detected with the standard information in the local self-built library. If the substance to be detected cannot be identified, the feature information of the substance to be detected is in the local official library. The standard information is matched.
  • the detection result includes the name of the substance to be detected, or the matching degree and the name of the characteristic information of the substance to be detected with the standard information.
  • Step 202 If the detection result is that the substance to be detected cannot be identified, the first detecting device sends information of the substance to be detected to the server, so that the server synchronizes the information of the substance to be detected to the second detecting device.
  • the information of the substance to be detected includes feature information and an identifier, and the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same detecting device group.
  • the user may store the information of the substance to be detected into the cloud personal library.
  • the detection result of the substance to be detected corresponding to the information stored by the user in the cloud self-built library must be such that the substance to be detected cannot be identified.
  • the identifier of the substance to be detected may be a name or a code. If the user determines the name of the substance to be detected, the name of the substance to be detected, such as potassium cyanide, may be sent to the server; if the user cannot determine the substance to be detected The name of the substance to be tested can be set, such as white powder, blue crystal, and the like.
  • the server may be numbered as the above code, such as white powder 101.
  • the server may be numbered sequentially according to the time sequence of the user uploading code, or randomly coded, but it should be noted that the number of each code is unique.
  • the principle that the server is numbered by the above code is not limited herein.
  • the first detecting device or the server matches the feature information of the substance to be detected with the standard information stored by the local storage or the server, and if the matching degree of the feature information of the substance to be detected and the standard information is greater than or equal to a preset threshold, And determining that the substance corresponding to the standard information is the same substance as the substance to be detected; if the matching degree of the characteristic information of the substance to be detected and the standard information of any one of the substances is less than a preset threshold, determining the detection result as not recognized The substance to be tested.
  • the preset threshold can be set by the manufacturer of the testing device.
  • the first detecting device applies to the server for uploading to the cloud self-built library before the first detecting device sends the information of the substance to be detected to the server.
  • Permissions for information the user may trigger a permission application by using a virtual button in the first detection device display interface, and the virtual button may be displayed as an application permission or an acquisition permission, etc., so that the user identifies the button to apply for uploading information to the cloud self-built library.
  • the permission of the user can be triggered by the entity button in the first detection device.
  • the method for triggering the permission application by the user is not limited herein.
  • the server may send the verification information to the user, and instruct the user to input the verification information to verify the identity of the user before uploading the information of the substance to be detected.
  • the verification information may be a dynamic verification code, and the dynamic verification code may be composed of symbols such as numbers and letters.
  • the dynamic verification code may be limited to a single use, that is, the dynamic verification code is invalid after being used once, or the usage time limit of the dynamic verification code may be set, for example, one for the convenience of a user who frequently uploads information. Hours, 2 hours, etc.
  • the form of the verification information is not limited herein.
  • the currently used detecting device is different from the detecting device that has previously added the information of the substance to be detected, it is necessary to derive the information of the substance to be detected from the previously used detecting device and import the currently used detecting device. Or, the information of the substance to be detected is added to the currently used detecting device.
  • the first detecting device may send the information of the substance to be detected to the server. The server then synchronizes the above information to the second detection device. In this way, the information of the substance to be detected is added to all the detection devices in the detection system, and when the user uses any one of the detection devices belonging to the detection system, the substance to be detected can be directly identified, thereby saving user time. .
  • step 303 and step 304 may also be performed:
  • Step 303 The first detecting device receives the login information input by the user.
  • the function implemented by the first detecting device is the same as that implemented by the detecting device in the prior art.
  • Step 304 If the login information is successfully verified, the first detecting device establishes a communication connection with the server, and provides the user with the right to use the information of the substance to be detected in the first detecting device.
  • the usage right includes information for viewing the substance to be detected in the first detecting device.
  • the user may send information about the substance to be detected in the first detecting device, and the information of the substance to be detected added at this time is stored in the self-built library of the device.
  • the first detecting device establishes a communication connection with the server, after which the first detecting device can upload information of the substance to be detected to the server, the server determines the detection result of the substance to be detected, or the first detecting device utilizes the local The standard information in the self-built library or the local official library identifies the substance to be tested.
  • the cloud server stores and the information provided to the first detecting device can be used, thereby preventing the illegal user from tampering with the information stored in the cloud self-built database in the server, and ensuring the data. Safety.
  • the present application provides a detection method applied to the detection system shown in FIG. 1, as shown in FIG. 4, the method includes:
  • Step 401 The server receives information about the substance to be detected sent by the first detecting device.
  • the server receives the information of the substance to be detected sent by the first detecting device
  • the information of the substance to be detected is stored in the cloud self-built library in the server, which is equivalent to executing the self-built library in the cloud.
  • Added operation In addition to the add operation, the operations performed on the cloud self-built library also include deletion and modification. Add, delete, and modify operations are collectively referred to as editing operations.
  • the server synchronizes the information of the substance to be detected in the cloud self-built library to all the detection devices in the corresponding detection device group.
  • the server may send the added information of the substance to be detected to each detecting device in the detecting device group to which the first detecting device belongs, or use the updated device.
  • the cloud self-built library replaces the local self-built library of each detecting device in the above detecting device group.
  • the server receives the feature information of the to-be-detected substance sent by the first detecting device, and the server matches the feature information with the standard information stored in the cloud self-built library to obtain a first matching result; if the first matching result is unrecognizable After the substance to be detected, the server matches the feature information with the standard information stored in the cloud official library to obtain a second matching result; the server determines the second matching result as the detection result, and sends the detection result to the first detecting device.
  • the matching order between the cloud official library and the cloud self-built library may not be limited.
  • Step 402 The server synchronizes information of the substance to be detected to the second detecting device.
  • the information of the substance to be detected includes feature information and an identifier, and the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same detecting device group.
  • the user item cloud may be allowed to add the information of the substance to be detected to the self-built library, and the user may not be allowed to perform other editing operations on the cloud self-checking library, such as modifying, deleting, etc. .
  • the information in the cloud self-built library also needs to be modified or deleted, you can set administrator rights to allow the administrator to modify or delete the information in the cloud self-built library.
  • the modified or deleted content can be sent to the administrator, and the administrator can review the content. If the audit is passed, the information in the cloud self-built library is modified accordingly.
  • the administrator can log in to the portal (web portal) to manage the information in the cloud self-built library.
  • the user may apply to the server to manage the permission of the cloud self-built library.
  • the server can verify the identity of the user. If the user authentication is successful, the user is allowed to manage the information in the cloud self-built library.
  • the server synchronizes the information of the substance to be detected to the second detecting device. . In this way, the information of the substance to be detected is added to all the detection devices in the detection system, and when the user uses any one of the detection devices belonging to the detection system, the substance to be detected can be directly identified, thereby saving user time. .
  • the embodiment of the present application may perform the division of the function module or the function unit on the detection device or the server according to the above method example.
  • each function module or function unit may be divided according to each function, or two or more functions may be integrated in the function.
  • a processing module In a processing module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules or functional units.
  • the division of modules or units in the embodiments of the present application is schematic, and is only a logical function division, and may be further divided in actual implementation.
  • the embodiment of the present application provides a detection device, where the detection device belongs to a detection system, and the detection system includes a server and at least one detection device group, and the detection device group includes at least two detection devices, and the detection device is the first
  • the detecting device 500 includes an obtaining module 501 and a sending module 502.
  • the obtaining module 501 is configured to obtain a detection result of the substance to be detected.
  • the sending module 502 is configured to: if the detection result acquired by the obtaining module 501 is that the substance to be detected cannot be identified, send information of the substance to be detected to the server, so that the server synchronizes the information of the substance to be detected to the second detecting device.
  • the information of the substance to be detected includes feature information and an identifier, and the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same detecting device group.
  • the sending module 502 is further configured to send the feature information to the server, so that the server matches the feature information with the stored standard information to determine the detection result.
  • the receiving module 503 is configured to receive a detection result sent by the server.
  • the first detecting device 500 further includes:
  • the matching module 504 is configured to match the feature information with the locally stored standard information to obtain a first detection result.
  • the sending module 502 is further configured to: if the first detection result obtained by the matching module 504 is that the substance to be detected cannot be identified, send the feature information to the server, and use the second detection result determined by the server according to the feature information as the detection result.
  • the receiving module 503 is configured to receive login information input by the user.
  • the first detecting device 500 further includes: a connecting module 505, configured to establish a communication connection with the server if the login information received by the receiving module 503 is successfully verified, and provide the user with the right to use the information of the substance to be detected in the first detecting device.
  • the usage rights include information for viewing the substance to be detected in the first detecting device.
  • the detecting device provided by the embodiment of the present application needs to derive the substance to be detected from the previously used detecting device, if the detecting device that is currently used is replaced with the detecting device that has previously added the information of the substance to be detected. And the information of the substance to be detected is added to the currently used detecting device, and in the embodiment of the present application, when the undetectable substance to be detected is detected, the first detecting device can The server transmits the information of the substance to be detected, and then the server synchronizes the above information to the second detecting device. In this way, the information of the substance to be detected is added to all the detection devices in the detection system, and when the user uses any one of the detection devices belonging to the detection system, the substance to be detected can be directly identified, thereby saving user time. .
  • the embodiment of the present application provides a server 600.
  • the server 600 is a detection system.
  • the detection system further includes at least one detection device group.
  • the detection device group includes at least two detection devices.
  • the server 600 includes:
  • the receiving module 601 is configured to receive information about the substance to be detected sent by the first detecting device.
  • the sending module 602 is configured to synchronize information of the substance to be detected received by the receiving module 601 to the second detecting device.
  • the information of the substance to be detected includes feature information and an identifier, and the feature information includes a spectrum, and the first detecting device and the second detecting device belong to the same detecting device group.
  • the server 600 includes:
  • the editing module 603 is configured to receive an editing operation of the information about the substance to be detected received by the receiving module, and the editing operation includes adding, deleting, and modifying.
  • the sending module 602 is further configured to synchronize the information of the substance to be detected edited by the editing module 603 to the first detecting device and the second detecting device.
  • the server 600 further includes:
  • the storage module 604 is configured to store the cloud self-built library and the cloud official library, and the cloud self-built library is configured to store information of the to-be-detected substance sent by the first detecting device, and the cloud official library is used to store the setting of the first detecting device manufacturer. Standard information.
  • the receiving module 601 is further configured to receive feature information of the to-be-detected substance sent by the first detecting device.
  • the matching module 605 is configured to match the feature information received by the receiving module 601 with the standard information stored in the cloud self-built library to obtain a first matching result.
  • the matching module 605 is further configured to: if the first matching result is that the to-be-detected substance cannot be identified, match the feature information with the standard information stored in the cloud official library to obtain a second matching result.
  • the sending module 602 is further configured to determine the second matching result obtained by the matching module 605 as the detection result, and send the detection result to the first detecting device.
  • the server provided by the embodiment of the present application needs to derive the substance to be detected from the previously used detecting device, if the detecting device that is currently used is replaced with the detecting device that has previously added the information of the substance to be detected.
  • the information is imported into the currently used detection device, or the information of the substance to be detected is added to the currently used detection device.
  • the server waits after receiving the information of the substance to be detected sent by the first detection device.
  • the information of the detected substance is synchronized to the second detecting device. In this way, the information of the substance to be detected is added to all the detection devices in the detection system, and when the user uses any one of the detection devices belonging to the detection system, the substance to be detected can be directly identified, thereby saving user time. .
  • the detecting device 700 includes a processing unit 701 and a communication unit 702.
  • the processing unit 701 is configured to control and manage the actions of the detecting device 700, for example, to perform the steps performed by the obtaining module 501, the matching module 504, and/or other processes for performing the techniques described herein.
  • the communication unit 702 is configured to support the communication between the detection device 700 and other network entities, for example, the steps performed by the sending module 502 and the receiving module 503 described above.
  • the detecting device 700 may further include a storage unit 703 for storing program codes and data of the detecting device 700.
  • the processing unit 701 may be a processor 901 or a controller in the detecting device 900, and the processor 901 or the controller may implement or perform various exemplary embodiments described in connection with the disclosure of the present application.
  • the processor 901 or controller can be a central processing unit, a general purpose processor, a digital signal processor, an application specific integrated circuit, a field programmable gate array or other programmable logic device, a transistor logic device, a hardware component, or any combination thereof. It is possible to implement or carry out the various illustrative logical blocks, modules and circuits described in connection with the present disclosure.
  • the processor 901 can also be a combination of computing functions, such as a combination of one or more microprocessors, a combination of digital signal processing (DSP) and a microprocessor.
  • DSP digital signal processing
  • the communication unit 702 can be a transceiver in the detection device 900, a transceiver circuit or communication interface 902, and the like.
  • the storage unit 703 may be a memory 903 or the like in the detecting device 900, and the storage may include a volatile memory such as a random access memory; the memory 903 may also include a non-volatile memory such as a read only memory, a flash memory, A hard disk or a solid state disk; the memory 903 may also include a combination of the above types of memories.
  • a volatile memory such as a random access memory
  • the memory 903 may also include a non-volatile memory such as a read only memory, a flash memory, A hard disk or a solid state disk
  • the memory 903 may also include a combination of the above types of memories.
  • the bus 904 may be an Extended Industry Standard Architecture (EISA) bus or the like.
  • EISA Extended Industry Standard Architecture
  • the bus 904 can be divided into an address bus, a data bus, a control bus, and the like. For ease of representation, only one thick line is shown in Figure 9, but it does not mean that there is only one bus or one type of bus.
  • the server 800 includes a processing unit 801 and a communication unit 802.
  • the processing unit 801 is for controlling management of the actions of the server 800, for example, performing the above-described editing module 603, the steps performed by the matching module 605, and/or other processes for performing the techniques described herein.
  • the communication unit 802 is configured to support communication between the server 800 and other network entities, for example, the steps performed by the receiving module 601 and the sending module 602.
  • the server 800 may further include a storage unit 803 for storing program codes and data of the server 800.
  • the processing unit 801 may be a processor 111 or a controller in the server 110, and the processor 111 or the controller may implement or execute various exemplary logics described in connection with the disclosure of the present application. Boxes, modules and circuits.
  • the processor 111 or controller can be a central processing unit, a general purpose processor, a digital signal processor, an application specific integrated circuit, a field programmable gate array or other programmable logic device, a transistor logic device, a hardware component, or any combination thereof. It is possible to implement or carry out the various illustrative logical blocks, modules and circuits described in connection with the present disclosure.
  • the processor 111 can also be a combination of computing functions, for example, including one or more microprocessor combinations, a combination of digital signal processing (DSP) and a microprocessor.
  • DSP digital signal processing
  • Communication unit 802 can be a transceiver in server 110, a transceiver circuit or communication interface 112, and the like.
  • the storage unit 803 may be a memory 113 or the like in the server 110, and the storage may include a volatile memory such as a random access memory; the memory 113 may also include a non-volatile memory such as a read only memory, a flash memory, a hard disk. Or a solid state drive; the memory 113 may also include a combination of the above types of memories.
  • the bus 114 may be an Extended Industry Standard Architecture (EISA) bus or the like.
  • EISA Extended Industry Standard Architecture
  • the bus 114 can be divided into an address bus, a data bus, a control bus, and the like. For ease of representation, only one thick line is shown in FIG. 10, but it does not mean that there is only one bus or one type of bus.
  • the steps of a method or algorithm described in connection with the present disclosure may be implemented in the form of hardware or by means of a processor executing software instructions.
  • the software instructions may be composed of corresponding software modules, which may be stored in RAM, flash memory, ROM, easable programmable read ROM (EPROM), electrically erasable programmable read only memory (electrically EPROM, EEPROM), registers, hard disk, removable hard disk, compact disk read only (CD-ROM) or any other form of storage medium known in the art.
  • An exemplary storage medium is coupled to the processor to enable the processor to read information from, and write information to, the storage medium.
  • the storage medium can also be an integral part of the processor.
  • the processor and the storage medium may be located in an Application Specific Integrated Circuit (ASIC).
  • ASIC Application Specific Integrated Circuit
  • Computer readable media includes both computer storage media and communication media including any medium that facilitates transfer of a computer program from one location to another.
  • a storage medium may be any available media that can be accessed by a general purpose or special purpose computer.
  • a computer readable storage medium may be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the above.
  • Non-exhaustive lists of computer readable storage media include: electrical connections with one or more wires, portable computer disks, hard disks, random access memory (RAM), read only memory (Read-Only Memory, ROM), Erasable Programmable Read Only Memory (EPROM), optical fiber, Compact Disc Read-Only Memory (CD-ROM), optical memory A magnetic storage device, or any suitable combination of the above.
  • the computer readable storage medium may be any tangible medium containing or storing a program that can be used by or in connection with an instruction execution system, apparatus, or device.

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Abstract

一种检测方法、检测设备及服务器,涉及通信技术领域,能够解决因需将相同待检测物质的信息从一个检测设备中导出后导入另一个检测设备,或者重复向不同检测设备中添加相同待检测物质的信息,导致用户时间大量浪费的问题。该方法包括:第一检测设备获取待检测物质的检测结果(201);如果所述检测结果为无法识别所述待检测物质,则所述第一检测设备向所述服务器发送所述待检测物质的信息,以便所述服务器将所述待检测物质的信息同步到第二检测设备(202);其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。

Description

一种检测方法、检测设备及服务器 技术领域
本申请涉及通信技术领域,尤其涉及一种检测方法、检测设备及服务器。
背景技术
在使用专业的检测设备检测物质的过程中,由于检测设备所存储的数据有限,难免遇到检测设备无法识别待检测物质的情况。在上述情况出现后,可以由用户将待检测物质的标识以及该待检测物质的信息,如物质光谱、性状等,添加到检测设备的自建库中。这样如果再次使用该检测设备检测到该待检测物质,则可根据该自建库中信息识别该待检测物质。
但是,当用户使用其他检测设备检测上述待检测物质时,如果该其他检测设备中同样未存储该待检测物质的信息,也就无法识别该待检测物质。那么,用户需要检测该待检测物质并再次将该待检测物质的信息添加到该其他检测设备中。或者从存储有待检测物质的信息的检测设备中导出该待检测物质的信息,并导入该其他检测设备中。这样导入导出待检测物质的信息的过程,或者在不同检测设备中重复添加待检测物质的信息的过程不但操作繁琐,还浪费了大量时间。
发明内容
本申请提供一种检测方法、检测设备及服务器,能够解决因需将相同待检测物质的信息从一个检测设备中导出后导入另一个检测设备,或者重复向不同检测设备中添加相同待检测物质的信息,导致用户时间大量浪费的问题。
为达到上述目的,本申请采用如下技术方案:
第一方面,本申请提供一种检测方法,该方法应用于检测系统,所述检测系统包括服务器和至少一个检测设备组,所述检测设备组 中包括至少两个检测设备,该方法可以包括:第一检测设备获取待检测物质的检测结果;如果所述检测结果为无法识别所述待检测物质,则所述第一检测设备向所述服务器发送所述待检测物质的信息,以便所述服务器将所述待检测物质的信息同步到第二检测设备;其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
第二方面,本申请提供一种检测方法,所述方法应用于检测系统,所述检测系统包括服务器和至少一个检测设备组,所述检测设备组中包括至少两个检测设备,该方法可以包括:所述服务器接收所述第一检测设备发送的待检测物质的信息;所述服务器将所述待检测物质的信息同步到第二检测设备;其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
第三方面,本申请实施例提供一种检测设备,所述检测设备属于检测系统,所述检测系统包括服务器和至少一个检测设备组,所述检测设备组中包括至少两个检测设备,所述检测设备作为第一检测设备包括:获取模块,用于获取待检测物质的检测结果;发送模块,用于如果所述获取模块获取的所述检测结果为无法识别所述待检测物质,则向所述服务器发送所述待检测物质的信息,以便所述服务器将所述待检测物质的信息同步到第二检测设备;其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
第四方面,本申请实施例提供一种服务器,所述服务器属于检测系统,所述检测系统还包括至少一个检测设备组,所述检测设备组中包括至少两个检测设备,所述服务器包括:接收模块,用于接收所述第一检测设备发送的待检测物质的信息;发送模块,用于将所述接收模块接收的所述待检测物质的信息同步到第二检测设备;其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
第五方面,本申请提供一种检测设备,包括:存储器、通信接口和处理器,所述存储器和所述通信接口耦合至所述处理器,所述存储器用于存储计算机执行代码,所述处理器用于执行所述计算机执行代码控制检测设备执行如第一方面及其各种可能的实现方式所述的检测方法,所述通信接口用于所述检测设备与外部设备的数据传输。
第六方面,本申请提供一种服务器,包括:存储器、通信接口和处理器,所述存储器和所述通信接口耦合至所述处理器,所述存储器用于存储计算机执行代码,所述处理器用于执行所述计算机执行代码控制服务器执行如第二方面及其各种可能的实现方式所述的检测方法,所述通信接口用于所述服务器与外部设备的数据传输。
第七方面,本申请提供一种计算机可读存储介质,所述计算机可读存储介质中存储有指令,当所述指令在检测设备上运行时,使得所述检测设备执行如第一方面及其各种可能的实现方式所述的检测方法。
第八方面,本申请提供一种计算机可读存储介质,所述计算机可读存储介质中存储有指令,当所述指令在服务器上运行时,使得所述服务器执行如第二方面及其各种可能的实现方式所述的检测方法。
第九方面,本申请提供一种包含指令的计算机程序产品,当所述计算机程序产品在检测设备上运行时,使得所述检测设备执行如第一方面及其各种可能的实现方式所述的检测方法。
第十方面,本申请提供一种包含指令的计算机程序产品,当所述计算机程序产品在服务器上运行时,使得所述服务器执行如第二方面及其各种可能的实现方式所述的检测方法。
本申请提供的检测方法、检测设备及服务器,相比较于现有技术中如果更换当前使用的检测设备与之前添加过待检测物质的信息的检测设备不同时,需要从之前使用的检测设备中导出待检测物质的信息并导入当前使用的检测设备,或者将待检测物质的信息再次 添加到当前使用的检测设备中,本申请中在检测到无法识别的待检测物质时,第一检测设备就可以向服务器发送该待检测物质的信息,之后服务器将上述信息同步到第二检测设备。这样一来,检测系统中所有的检测设备中都添加了该待检测物质的信息,当用户使用属于检测系统中的任意一个检测设备时,都能够直接识别该待检测物质,从而节省了用户时间。
附图说明
图1为本申请实施例提供的一种检测系统的示意图;
图2为本申请实施例提供的一种检测方法的流程图一;
图3为本申请实施例提供的一种检测方法的流程图二;
图4为本申请实施例提供的一种检测方法的流程图三;
图5为本申请实施例提供的一种检测设备的结构示意图一;
图6为本申请实施例提供的一种服务器的结构示意图一;
图7为本申请实施例提供的一种检测设备的结构示意图二;
图8为本申请实施例提供的一种服务器的结构示意图二;
图9为本申请实施例提供的一种检测设备的结构示意图三;
图10为本申请实施例提供的一种服务器的结构示意图三。
具体实施方式
本申请的描述中所提到的术语“包括”和“具有”以及它们的任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括其他没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或单元。
本申请实施例中,“示例性的”或者“例如”等词用于表示作例子、例证或说明。本申请实施例中被描述为“示例性的”或者“例如”的任何实施例或设计方案不应被解释为比其它实施例或设计方案更优选或更具优势。确切而言,使用“示例性的”或者“例如”等词旨在以具体方式呈现相关概念。
在本申请的描述中,除非另有说明,“多个”的含义是指两个 或两个以上。
为了实现检测设备之间的信息共享,本申请实施例提供一种检测方法,参考图1,该方法可以应用于检测系统101,该检测系统101包括至少一个检测设备组102和服务器103。其中,服务器103可以为云服务器或者物理服务器等。示例性的,云服务器可以为企业移动管理(enterprise mobile management,EMM)平台。其中,检测设备组102和服务器103可以通过有线或无线的方式连接,具体的,无线连接方式可以为通过蓝牙(Bluetooth,BT)连接、无线保真(Wireless Fidelity,Wi-Fi)、近场通信(Near Field Communication,NFC)等连接。
参考图1,检测设备组102中包括至少两个检测设备104。其中,检测设备104可以包括本地自建库108和本地官方库109,本地自建库108用于存储服务器同步的待检测物质的信息,本地官方库109用于存储该检测设备104所属的生产厂家设置的信息,其中,生产厂家设置的信息包括物质的特征信息及名称,特征信息包括光谱。服务器103中包括云端官方库105和云端自建库106。其中,云端官方库105用于存储检测设备104的生产厂家设置的信息,云端自建库106用于存储检测设备104上传的待检测物质的信息。
可选的,检测设备104中还可以包括设备自建库110,该设备自建库110用于存储用户添加的待检测物质的信息,无论检测设备104是否与服务器103连接,用户均可查看、添加、修改或删除设备自建库110中的存储的信息。
可选的,服务器103中还可以包括云端个人库107,该云端个人库107独属于一个用户,该用户可查看、添加、修改或删除该云端个人库107中存储的待检测物质的信息。
需要说明的是,图1中仅示出了检测系统101包括一个检测设备组102,以及一个检测设备组中包括3台检测设备104的情况。对于该检测系统101所包括的检测设备组的数量,以及检测设备组中所包括的检测设备的数量,在此不作限制。
可选的,一个服务器103可对应一个检测设备组102,该服务器103中云端官方库105和云端自建库106都可供该检测设备组102中所有检测设备使用;或者,一个服务器103可对应多个检测设备组102,多个检测设备组102可共同使用该服务器103中的云端官方库105,每个检测设备组单独使用一个云端自建库106,也就是说,该服务器103中包括一个云端官方库105和对应多个检测设备组102的多个云端自建库106。
本申请实施例提供一种检测方法,应用于如图1所示的检测系统,如图2所示,该方法包括:
步骤201、第一检测设备获取待检测物质的检测结果。
可选的,在网络通畅的情况下,第一检测设备在获取待检测物质的特征信息后,向服务器发送待检测物质的特征信息,以供服务器将接收到的特征信息与存储的每种物质的标准信息进行匹配,以确定检测结果。在服务器确定检测结果之后,向第一检测设备发送该检测结果。
可选的,在网络断开的情况下,第一检测设备先将待检测物质的特征信息与本地存储的标准信息进行匹配,得到第一检测结果。如果根据本地存储的标准信息能够识别该待检测物质,则第一检测结果中包括该待检测物质的名称;如果第一检测结果为无法识别该待检测物质,则在网络通畅后,第一检测设备向服务器发送该待检测物质的特征信息,之后服务器将特征信息与服务器中存储的标准信息进行匹配,得到第二检测结果并向第一检测设备发送该第二检测结果,第一检测设备将第二检测结果作为检测结果。
考虑到检测设备的本地存储空间有限以及计算处理能力有限,设置第一检测设备中本地官方库存储的标准信息为云端官方库中存储的标准信息的一部分。每个检测设备中存储的标准信息可由该检测设备的生产厂家自行设置,对于检测设备中所存储的信息量的大小,在此不做限定。
可选的,第一检测设备先将待检测物质的特征信息与本地自建 库中的标准信息进行匹配,如果无法识别该待检测物质,则将该待检测物质的特征信息与本地官方库中的标准信息进行匹配。
需要说明的是,如果第一检测设备或者服务器能够识别该待检测物质,则检测结果包括该待检测物质的名称,或者包括该待检测物质的特征信息与标准信息的匹配度以及名称。
步骤202、如果检测结果为无法识别待检测物质,则第一检测设备向服务器发送待检测物质的信息,以便服务器将待检测物质的信息同步到第二检测设备。
其中,待检测物质的信息包括特征信息和标识,特征信息包括光谱,第一检测设备和第二检测设备属于同一检测设备组。
可选的,如果检测结果为已识别该待检测物质,但用户对于该检测结果并不满意,用户可以将待检测物质的信息存储到云端个人库中。但需要注意的是,为了避免同一种物质的检测结果对应两个名称的情况,用户向云端自建库中存储的信息对应的待检测物质的检测结果须为无法识别该待检测物质。
需要说明的是,待检测物质的标识可以为名称或代号,如果用户确定该待检测物质的名称,可以向服务器发送该待检测物质的名称,如氰化钾;如果用户不能确定该待检测物质的名称,可以为该待检测物质设置代号,如白色粉末,蓝色晶体等。
可选的,如果对于不同的待检测物质,用户上传的代号相同,如第一待检测物质和第二待检测物质的代号均为白色粉末,则服务器可以为上述代号编号,如白色粉末101、白色粉末102等。服务器可以按照用户上传代号的时间顺序依次为代号编号,或者随机为代号编号,但需要注意的是,每个代号的编号具有唯一性。对于服务器为上述代号编号的原则,在此不做限定。
需要说明的是,第一检测设备或服务器将待检测物质的特征信息与本地存储或服务器存储的标准信息进行匹配,如果待检测物质的特征信息与标准信息的匹配度大于或等于预设阈值,则确定该标准信息对应的物质与待检测物质是同一种物质;如果待检测物质的 特征信息与任意一种物质的标准信息的匹配度均小于预设阈值,则将检测结果确定为未识别该待检测物质。其中,预设阈值可由检测设备的生产厂家自行设定。
为了保证云端自建库中添加的待检测物质的信息的可靠性,可选的,在第一检测设备向服务器发送待检测物质的信息之前,第一检测设备向服务器申请向云端自建库上传信息的权限。示例性的,用户可以通过第一检测设备显示界面中的虚拟按钮触发权限申请,该虚拟按钮可以显示为申请权限或获取权限等,以便于用户识别该按钮用于向云端自建库申请上传信息的权限;或者,还可以通过第一检测设备中的实体按钮触发权限申请,对于用户触发权限申请的方式,在此不做限定。服务器当接收到用户触发的权限申请信息后,可以向用户下发验证信息,并指示用户在上传待检测物质的信息之前先输入该验证信息以验证用户身份。可选的,该验证信息可以为动态验证码,该动态验证码可由数字、字母等符号组成。可选的,该动态验证码可以限定为单次使用,即使用一次后该动态验证码失效,或者为了方便频繁上传信息的用户的使用,可以设定该动态验证码的使用时限,如1个小时、2个小时等。对于验证信息的形式,在此不做限定。
相比较于现有技术中如果更换当前使用的检测设备与之前添加过待检测物质的信息的检测设备不同时,需要从之前使用的检测设备中导出待检测物质的信息并导入当前使用的检测设备,或者将待检测物质的信息再次添加到当前使用的检测设备中,本申请实施例中在检测到无法识别的待检测物质时,第一检测设备就可以向服务器发送该待检测物质的信息,之后服务器将上述信息同步至第二检测设备。这样一来,检测系统中所有的检测设备中都添加了该待检测物质的信息,当用户使用属于检测系统中的任意一个检测设备时,都能够直接识别该待检测物质,从而节省了用户时间。
为了保证服务器中存储信息的安全性与可靠性,在本申请实施例的一个实现方式中,需要验证用户身份,以保证使用服务器中信 息的用户为合法用户。因此,在如图2所示的实现方式中,还可以实现如图3所示的实现方式。其中,在执行步骤201第一检测设备获取待检测物质的检测结果之前,还可以执行步骤303和步骤304:
步骤303、第一检测设备接收用户输入的登录信息。
需要说明的是,在用户登录之前,第一检测设备所实现的功能与现有技术中检测设备实现的功能相同。
步骤304、如果登录信息验证成功,则第一检测设备建立与服务器的通信连接,并为用户提供第一检测设备中待检测物质的信息的使用权限。
其中,使用权限包括查看第一检测设备中待检测物质的信息。
需要说明的是,在用户登录之前,用户可以向第一检测设备中天剑待检测物质的信息,此时添加的待检测物质的信息存储在设备自建库中。在用户登录之后,第一检测设备建立与服务器之间的通信连接,之后第一检测设备可以上传待检测物质的信息至服务器,由服务器确定待检测物质的检测结果,或者第一检测设备利用本地自建库或本地官方库中的标准信息识别待检测物质。
在本申请实施例中,在用户登录成功之后,之后才能使用云端服务器存储以及提供给第一检测设备的信息,避免了非法用户肆意篡改服务器中云端自建库中存储信息的情况,保证了数据安全。
本申请提供一种检测方法,应用于如图1所示的检测系统,如图4所示,该方法包括:
步骤401、服务器接收第一检测设备发送的待检测物质的信息。
需要说明的是,当服务器接收到第一检测设备发送的待检测物质的信息之后,将该待检测物质的信息存储到服务器中的云端自建库中,也就相当于对云端自建库执行了添加操作。除添加操作之外,对云端自建库执行的操作还包括删除和修改,添加、删除和修改操作统称为编辑操作。当对云端自建库执行删除或修改操作后,服务器将云端自建库中的待检测物质的信息同步到对应检测设备组中的所有检测设备。
可选的,服务器在对云端自建库执行添加操作之后,服务器可以将该添加的待检测物质的信息发送至第一检测设备所属的检测设备组中的每个检测设备中,或者使用更新后的云端自建库替换上述检测设备组中每个检测设备的本地自建库。
可选的,服务器接收第一检测设备发送的待检测物质的特征信息;服务器将特征信息与云端自建库中存储的标准信息进行匹配,得到第一匹配结果;如果第一匹配结果为无法识别待检测物质,则服务器将特征信息与云端官方库中存储的标准信息进行匹配,得到第二匹配结果;服务器将第二匹配结果确定为检测结果,并向第一检测设备发送检测结果。
可选的,可以不限定云端官方库与云端自建库的匹配顺序,
步骤402、服务器将待检测物质的信息同步到第二检测设备。
其中,待检测物质的信息包括特征信息和标识,特征信息包括光谱,第一检测设备和第二检测设备属于同一检测设备组。
可选的,为了保证云端自建库中信息的安全性,可以允许用户项云端自建库中添加待检测物质的信息,不允许用户对于云端自检库的其他编辑操作,如修改、删除等。由于云端自建库中的信息也需要修改或删除,可以设置管理员权限,允许管理员修改或删除云端自建库中的信息。当用户需要修改或删除云端自建库中的信息时,可以将修改或删除的内容发送给管理员,由管理员审核该内容,如果审核通过,再对应修改云端自建库中信息。管理员可登录门户网站(web portal)管理云端自建库中信息。
可选的,若用户需要修改或删除云端自建库中信息,用户可向服务器申请管理云端自建库的权限。之后服务器可以验证用户身份,如果用户身份验证成功,则允许用户管理云端自建库中信息。
相比较于现有技术中如果更换当前使用的检测设备与之前添加过待检测物质的信息的检测设备不同时,需要从之前使用的检测设备中导出待检测物质的信息并导入当前使用的检测设备,或者将待检测物质的信息再次添加到当前使用的检测设备中,本申请中服务 器在接收到第一检测设备发送的待检测物质的信息之后,将待检测物质的信息同步到第二检测设备。这样一来,检测系统中所有的检测设备中都添加了该待检测物质的信息,当用户使用属于检测系统中的任意一个检测设备时,都能够直接识别该待检测物质,从而节省了用户时间。
本申请实施例可以根据上述方法示例对检测设备或者服务器进行功能模块或者功能单元的划分,例如,可以对应各个功能划分各个功能模块或者功能单元,也可以将两个或两个以上的功能集成在一个处理模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块或者功能单元的形式实现。其中,本申请实施例中对模块或者单元的划分是示意性的,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式。
如图5所示,本申请实施例提供一种检测设备,该检测设备属于检测系统,检测系统包括服务器和至少一个检测设备组,检测设备组中包括至少两个检测设备,检测设备作为第一检测设备500包括:获取模块501、发送模块502。
其中,获取模块501,用于获取待检测物质的检测结果。
发送模块502,用于如果获取模块501获取的检测结果为无法识别待检测物质,则向服务器发送待检测物质的信息,以便服务器将待检测物质的信息同步到第二检测设备。
其中,待检测物质的信息包括特征信息和标识,特征信息包括光谱,第一检测设备和第二检测设备属于同一检测设备组。
可选的,发送模块502,还用于向服务器发送特征信息,以供服务器将特征信息与存储的标准信息进行匹配,以确定检测结果。
接收模块503,用于接收服务器发送的检测结果。
可选的,该第一检测设备500,还包括:
匹配模块504,用于将特征信息与本地存储的标准信息进行匹配,得到第一检测结果。
发送模块502,还用于如果匹配模块504得到的第一检测结果为 无法识别待检测物质,则向服务器发送特征信息,并将服务器根据特征信息确定的第二检测结果作为检测结果。
可选的,接收模块503,用于接收用户输入的登录信息。
第一检测设备500还包括:连接模块505,用于如果接收模块503接收的登录信息验证成功,则建立与服务器的通信连接,并为用户提供第一检测设备中待检测物质的信息的使用权限,其中,使用权限包括查看第一检测设备中待检测物质的信息。
本申请实施例提供的检测设备,相比较于现有技术中如果更换当前使用的检测设备与之前添加过待检测物质的信息的检测设备不同时,需要从之前使用的检测设备中导出待检测物质的信息并导入当前使用的检测设备,或者将待检测物质的信息再次添加到当前使用的检测设备中,本申请实施例中在检测到无法识别的待检测物质时,第一检测设备就可以向服务器发送该待检测物质的信息,之后服务器将上述信息同步到第二检测设备。这样一来,检测系统中所有的检测设备中都添加了该待检测物质的信息,当用户使用属于检测系统中的任意一个检测设备时,都能够直接识别该待检测物质,从而节省了用户时间。
如图6所示,本申请实施例提供一种服务器600,该服务器600属于检测系统,检测系统还包括至少一个检测设备组,检测设备组中包括至少两个检测设备,服务器600包括:
接收模块601,用于接收第一检测设备发送的待检测物质的信息。
发送模块602,用于将接收模块601接收的待检测物质的信息同步到第二检测设备。
其中,待检测物质的信息包括特征信息和标识,特征信息包括光谱,第一检测设备和第二检测设备属于同一检测设备组。
可选的,服务器600包括:
编辑模块603,用于接收用户对接收模块接收的待检测物质的信息的编辑操作,编辑操作包括添加、删除和修改。
发送模块602,还用于将编辑模块603编辑后的待检测物质的信 息同步至第一检测设备和第二检测设备。
可选的,服务器600还包括:
存储模块604,用于存储云端自建库和云端官方库,云端自建库用于存储第一检测设备发送的待检测物质的信息,云端官方库用于存储第一检测设备的生产厂家设置的标准信息。
接收模块601,还用于接收第一检测设备发送的待检测物质的特征信息。
匹配模块605,用于将接收模块601接收的特征信息与云端自建库中存储的标准信息进行匹配,得到第一匹配结果。
匹配模块605,还用于如果第一匹配结果为无法识别待检测物质,则将特征信息与云端官方库中存储的标准信息进行匹配,得到第二匹配结果。
发送模块602,还用于将匹配模块605得到的第二匹配结果确定为检测结果,并向第一检测设备发送检测结果。
本申请实施例提供的服务器,相比较于现有技术中如果更换当前使用的检测设备与之前添加过待检测物质的信息的检测设备不同时,需要从之前使用的检测设备中导出待检测物质的信息并导入当前使用的检测设备,或者将待检测物质的信息再次添加到当前使用的检测设备中,本申请实施例中服务器在接收到第一检测设备发送的待检测物质的信息之后,将待检测物质的信息同步到第二检测设备。这样一来,检测系统中所有的检测设备中都添加了该待检测物质的信息,当用户使用属于检测系统中的任意一个检测设备时,都能够直接识别该待检测物质,从而节省了用户时间。
如图7所示,本申请实施例提供检测设备的另一种可能的结构示意图。该检测设备700包括:处理单元701、通信单元702。处理单元701用于对检测设备700的动作进行控制管理,例如,执行上述获取模块501、匹配模块504执行的步骤,和/或用于执行本文所描述的技术的其它过程。通信单元702用于支持检测设备700与其他网络实体的通信,例如,执行上述发送模块502、接收模块503 执行的步骤。检测设备700还可以包括存储单元703,存储单元703用于存储检测设备700的程序代码和数据。
其中,参阅图9所示,上述处理单元701可以是检测设备900中的处理器901或控制器,该处理器901或控制器可以实现或执行结合本申请公开内容所描述的各种示例性的逻辑方框,模块和电路。该处理器901或控制器可以是中央处理器,通用处理器,数字信号处理器,专用集成电路,现场可编程门阵列或者其他可编程逻辑器件、晶体管逻辑器件、硬件部件或者其任意组合。其可以实现或执行结合本申请公开内容所描述的各种示例性的逻辑方框,模块和电路。处理器901也可以是实现计算功能的组合,例如包含一个或多个微处理器组合,数字信号处理(Digital Signal Processing,DSP)和微处理器的组合等。
通信单元702可以是检测设备900中的收发器、收发电路或通信接口902等。
存储单元703可以是检测设备900中的存储器903等,该存储可以包括易失性存储器,例如随机存取存储器;该存储器903也可以包括非易失性存储器,例如只读存储器,快闪存储器,硬盘或固态硬盘;该存储器903还可以包括上述种类的存储器的组合。
总线904可以是扩展工业标准结构(Extended Industry Standard Architecture,EISA)总线等。总线904可以分为地址总线、数据总线、控制总线等。为便于表示,图9中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
如图8所示,本申请实施例提供服务器的另一种可能的结构示意图。该服务器800包括:处理单元801、通信单元802。处理单元801用于对服务器800的动作进行控制管理,例如,执行上述编辑模块603、匹配模块605执行的步骤,和/或用于执行本文所描述的技术的其它过程。通信单元802用于支持服务器800与其他网络实体的通信,例如,执行上述接收模块601、发送模块602执行的步骤。服务器800还可以包括存储单元803,存储单元803用于存储 服务器800的程序代码和数据。
其中,参阅图10所示,上述处理单元801可以是服务器110中的处理器111或控制器,该处理器111或控制器可以实现或执行结合本申请公开内容所描述的各种示例性的逻辑方框,模块和电路。该处理器111或控制器可以是中央处理器,通用处理器,数字信号处理器,专用集成电路,现场可编程门阵列或者其他可编程逻辑器件、晶体管逻辑器件、硬件部件或者其任意组合。其可以实现或执行结合本申请公开内容所描述的各种示例性的逻辑方框,模块和电路。处理器111也可以是实现计算功能的组合,例如包含一个或多个微处理器组合,数字信号处理(Digital Signal Processing,DSP)和微处理器的组合等。
通信单元802可以是服务器110中的收发器、收发电路或通信接口112等。
存储单元803可以是服务器110中的存储器113等,该存储可以包括易失性存储器,例如随机存取存储器;该存储器113也可以包括非易失性存储器,例如只读存储器,快闪存储器,硬盘或固态硬盘;该存储器113还可以包括上述种类的存储器的组合。
总线114可以是扩展工业标准结构(Extended Industry Standard Architecture,EISA)总线等。总线114可以分为地址总线、数据总线、控制总线等。为便于表示,图10中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
通过以上的实施方式的描述,所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将装置的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
结合本申请公开内容所描述的方法或者算法的步骤可以由硬件 的方式来实现,也可以是由处理器执行软件指令的方式来实现。软件指令可以由相应的软件模块组成,软件模块可以被存放于RAM、闪存、ROM、可擦除可编程只读存储器(easable programmable ROM,EPROM)、电可擦可编程只读存储器(electrically EPROM,EEPROM)、寄存器、硬盘、移动硬盘、只读光盘(CD-ROM)或者本领域熟知的任何其它形式的存储介质中。一种示例性的存储介质耦合至处理器,从而使处理器能够从该存储介质读取信息,且可向该存储介质写入信息。当然,存储介质也可以是处理器的组成部分。处理器和存储介质可以位于专用集成电路(Application Specific Integrated Circuit,ASIC)中。计算机可读介质包括计算机存储介质和通信介质,其中通信介质包括便于从一个地方向另一个地方传送计算机程序的任何介质。存储介质可以是通用或专用计算机能够存取的任何可用介质。计算机可读存储介质,例如可以是但不限于电、磁、光、电磁、红外线、或半导体的系统、装置或器件,或者任意以上的组合。计算机可读存储介质的更具体的例子(非穷举的列表)包括:具有一个或多个导线的电连接、便携式计算机磁盘、硬盘、随机存取存储器(Random Access Memory,RAM)、只读存储器(Read-Only Memory,ROM)、可擦式可编程只读存储器(Erasable Programmable Read Only Memory,EPROM)、光纤、便携式紧凑磁盘只读存储器(Compact Disc Read-Only Memory,CD-ROM)、光存储器件、磁存储器件、或者上述的任意合适的组合。在本申请实施例中,计算机可读存储介质可以是任何包含或存储程序的有形介质,该程序可以被指令执行系统、装置或者器件使用或者与其结合使用。
以上,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何在本申请揭露的技术范围内的变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应该以权利要求的保护范围为准。

Claims (20)

  1. 一种检测方法,其特征在于,所述方法应用于检测系统,所述检测系统包括服务器和至少一个检测设备组,所述检测设备组中包括至少两个检测设备,所述方法包括:
    第一检测设备获取待检测物质的检测结果;
    如果所述检测结果为无法识别所述待检测物质,则所述第一检测设备向所述服务器发送所述待检测物质的信息,以便所述服务器将所述待检测物质的信息同步到第二检测设备;
    其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
  2. 根据权利要求1所述的方法,其特征在于,所述第一检测设备获取待检测物质的检测结果,包括:
    所述第一检测设备向所述服务器发送所述特征信息,以供所述服务器将所述特征信息与存储的标准信息进行匹配,以确定所述检测结果;
    所述第一检测设备接收所述服务器发送的所述检测结果。
  3. 根据权利要求1所述的方法,其特征在于,所述第一检测设备获取待检测物质的检测结果,包括:
    所述第一检测设备将所述特征信息与本地存储的标准信息进行匹配,得到第一检测结果;
    如果所述第一检测结果为无法识别所述待检测物质,则所述第一检测设备向所述服务器发送所述特征信息,并将所述服务器根据所述特征信息确定的第二检测结果作为检测结果。
  4. 根据权利要求1至3中任一项所述的方法,其特征在于,在第一检测设备获取待检测物质的检测结果之前,所述方法还包括:
    所述第一检测设备接收用户输入的登录信息;
    如果所述登录信息验证成功,则所述第一检测设备建立与所述服务器的通信连接,并为所述用户提供所述第一检测设备中所述待检测物质的信息的使用权限,其中,所述使用权限包括查看所述第一检测 设备中所述待检测物质的信息。
  5. 一种检测方法,其特征在于,所述方法应用于检测系统,所述检测系统包括服务器和至少一个检测设备组,所述检测设备组中包括至少两个检测设备,所述方法包括:
    所述服务器接收所述第一检测设备发送的待检测物质的信息;
    所述服务器将所述待检测物质的信息同步到第二检测设备;
    其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
  6. 根据权利要求5所述的方法,其特征在于,所述方法包括:
    所述服务器接收用户对所述待检测物质的信息的编辑操作,所述编辑操作包括添加、删除和修改;
    所述服务器将编辑后的所述待检测物质的信息同步至所述第一检测设备和所述第二检测设备。
  7. 根据权利要求5或6所述的方法,其特征在于,所述服务器中存储有云端自建库和云端官方库,所述云端自建库用于存储第一检测设备发送的所述待检测物质的信息,所述云端官方库用于存储所述第一检测设备的生产厂家设置的标准信息;
    在所述服务器接收所述第一检测设备发送的待检测物质的信息之前,所述方法还包括:
    所述服务器接收所述第一检测设备发送的所述待检测物质的特征信息;
    所述服务器将所述特征信息与所述云端自建库中存储的标准信息进行匹配,得到第一匹配结果;
    如果所述第一匹配结果为无法识别所述待检测物质,则所述服务器将所述特征信息与所述云端官方库中存储的标准信息进行匹配,得到第二匹配结果;
    所述服务器将所述第二匹配结果确定为检测结果,并向所述第一检测设备发送所述检测结果。
  8. 一种检测设备,其特征在于,所述检测设备属于检测系统, 所述检测系统包括服务器和至少一个检测设备组,所述检测设备组中包括至少两个检测设备,所述检测设备作为第一检测设备包括:
    获取模块,用于获取待检测物质的检测结果;
    发送模块,用于如果所述获取模块获取的所述检测结果为无法识别所述待检测物质,则向所述服务器发送所述待检测物质的信息,以便所述服务器将所述待检测物质的信息同步到第二检测设备;
    其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
  9. 根据权利要求8所述的设备,其特征在于,所述第一检测设备,包括:
    所述发送模块,还用于向所述服务器发送所述特征信息,以供所述服务器将所述特征信息与存储的标准信息进行匹配,以确定所述检测结果;
    接收模块,用于接收所述服务器发送的所述检测结果。
  10. 根据权利要求8所述的设备,其特征在于,所述第一检测设备,包括:
    匹配模块,用于将所述特征信息与本地存储的标准信息进行匹配,得到第一检测结果;
    所述发送模块,还用于如果所述匹配模块得到的所述第一检测结果为无法识别所述待检测物质,则向所述服务器发送所述特征信息,并将所述服务器根据所述特征信息确定的第二检测结果作为检测结果。
  11. 根据权利要求8至10中任一项所述的设备,其特征在于,
    接收模块,用于接收用户输入的登录信息;
    所述第一检测设备还包括:
    连接模块,用于如果所述接收模块接收的所述登录信息验证成功,则建立与所述服务器的通信连接,并为所述用户提供所述第一检测设备中所述待检测物质的信息的使用权限,其中,所述使用权限包括查看所述第一检测设备中所述待检测物质的信息。
  12. 一种服务器,其特征在于,所述服务器属于检测系统,所述检测系统还包括至少一个检测设备组,所述检测设备组中包括至少两个检测设备,所述服务器包括:
    接收模块,用于接收所述第一检测设备发送的待检测物质的信息;
    发送模块,用于将所述接收模块接收的所述待检测物质的信息同步到第二检测设备;
    其中,所述待检测物质的信息包括特征信息和标识,所述特征信息包括光谱,所述第一检测设备和第二检测设备属于同一检测设备组。
  13. 根据权利要求12所述的服务器,其特征在于,所述服务器包括:
    编辑模块,用于接收用户对所述接收模块接收的所述待检测物质的信息的编辑操作,所述编辑操作包括添加、删除和修改;
    所述发送模块,还用于将所述编辑模块编辑后的所述待检测物质的信息同步至所述第一检测设备和所述第二检测设备。
  14. 根据权利要求12或13所述的服务器,其特征在于,所述服务器还包括:
    存储模块,用于存储云端自建库和云端官方库,所述云端自建库用于存储第一检测设备发送的所述待检测物质的信息,所述云端官方库用于存储所述第一检测设备的生产厂家设置的标准信息;
    所述接收模块,还用于接收所述第一检测设备发送的所述待检测物质的特征信息;
    匹配模块,用于将所述接收模块接收的所述特征信息与所述云端自建库中存储的标准信息进行匹配,得到第一匹配结果;
    所述匹配模块,还用于如果所述第一匹配结果为无法识别所述待检测物质,则将所述特征信息与所述云端官方库中存储的标准信息进行匹配,得到第二匹配结果;
    所述发送模块,还用于将所述匹配模块得到的所述第二匹配结果确定为检测结果,并向所述第一检测设备发送所述检测结果。
  15. 一种检测设备,其特征在于,包括:存储器、通信接口和处 理器,所述存储器和所述通信接口耦合至所述处理器,所述存储器用于存储计算机执行代码,所述处理器用于执行所述计算机执行代码控制检测设备执行权利要求1至4任一项所述的检测方法,所述通信接口用于所述检测设备与外部设备的数据传输。
  16. 一种服务器,其特征在于,包括:存储器、通信接口和处理器,所述存储器和所述通信接口耦合至所述处理器,所述存储器用于存储计算机执行代码,所述处理器用于执行所述计算机执行代码控制服务器执行权利要求5至7任一项所述的检测方法,所述通信接口用于所述服务器与外部设备的数据传输。
  17. 一种计算机可读存储介质,所述计算机可读存储介质中存储有指令,其特征在于,当所述指令在检测设备上运行时,使得所述检测设备执行如权利要求1至4中任一项所述的检测方法。
  18. 一种计算机可读存储介质,所述计算机可读存储介质中存储有指令,其特征在于,当所述指令在服务器上运行时,使得所述服务器执行如权利要求5至7中任一项所述的检测方法。
  19. 一种包含指令的计算机程序产品,其特征在于,当所述计算机程序产品在检测设备上运行时,使得所述检测设备执行如权利要求1至4中任一项所述的检测方法。
  20. 一种包含指令的计算机程序产品,其特征在于,当所述计算机程序产品在服务器上运行时,使得所述服务器执行如权利要求5至7中任一项所述的检测方法。
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