CN111445594A - Card punching method, device and system based on intelligent hardware - Google Patents

Card punching method, device and system based on intelligent hardware Download PDF

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Publication number
CN111445594A
CN111445594A CN202010254223.6A CN202010254223A CN111445594A CN 111445594 A CN111445594 A CN 111445594A CN 202010254223 A CN202010254223 A CN 202010254223A CN 111445594 A CN111445594 A CN 111445594A
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China
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information
server
hardware
card punching
intelligent hardware
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CN202010254223.6A
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Chinese (zh)
Inventor
杨磊
江伟
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Shanghai Junzheng Network Technology Co Ltd
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Shanghai Junzheng Network Technology Co Ltd
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Priority to CN202010254223.6A priority Critical patent/CN111445594A/en
Publication of CN111445594A publication Critical patent/CN111445594A/en
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C1/00Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people
    • G07C1/10Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people together with the recording, indicating or registering of other data, e.g. of signs of identity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/52Network services specially adapted for the location of the user terminal

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Telephonic Communication Services (AREA)
  • Telephone Function (AREA)

Abstract

The application relates to a card punching method, equipment and a system based on intelligent hardware, which comprises the following steps: the card punching equipment acquires equipment information of the intelligent hardware; the card punching equipment provides equipment information to the first server so as to request the first server to issue the position information of the intelligent hardware; the card punching equipment receives position information from the first server, wherein the position information corresponds to the equipment information; and the card punching equipment provides the identity information and the position information of the user to the second server for punching the card. According to the method, the device and the system, the real position is obtained by scanning the intelligent hardware, the real position information can be provided, counterfeiting and tampering are prevented, the expense of most enterprises in card punching attendance is saved, the application value of various intelligent hardware such as a shared bicycle and a shared moped is improved, and value-added services are provided.

Description

Card punching method, device and system based on intelligent hardware
Technical Field
The application relates to the field of attendance card punching, in particular to a card punching method, equipment and a system capable of acquiring a real card punching position.
Background
The general enterprises need to acquire attendance of employees, certain groups or individuals in a certain place and a certain time period in some way. For example, attendance information of the employee, such as the attendance time, the late arrival time, the early departure time, the working time overtime and the like, is acquired to acquire the attendance condition of the employee, so that the purposes of supervising the work efficiency and seriously maintaining the enterprise discipline are achieved.
In the prior art, the general attendance checking modes comprise traditional punch-card modes, access control punch-card modes, fingerprint face punch-card modes and other biological identification modes. Above-mentioned various punching card modes all must add the punching machine or the supporting entrance guard reads card equipment, access control system and induction type entrance guard card or purchase hardware settings such as biological identification equipment, has not only increased the expense spending, and has follow-up equipment maintenance's problem, in case equipment breaks down, will lead to all the invalid disappearance of attendance data. In addition, by adopting the card punching mode, once meeting the peak period of work, the phenomenon that a large number of employees are gathered in front of hardware equipment to queue for punching cards is likely to occur, so that not only is the enterprise image influenced, but also the explosive type card punching easily causes the breakdown of the card punching equipment and the card punching system.
Currently, some enterprises also punch cards in the form of app punching, mainly by acquiring a GPS location of the mobile device or acquiring a hot spot IP address connected to the mobile device to perform positioning punching, but once the mobile device starts a GPS simulator or an IP agent, the above-mentioned form of app punching also basically behaves as an dummie.
Therefore, those skilled in the art are dedicated to develop a convenient card punching technical solution capable of eliminating the above hidden trouble.
Disclosure of Invention
In view of the above-mentioned defects of the prior art, the technical problem to be solved by the present application is how to ensure card punching authenticity on the basis of reducing card punching cost and improving card punching convenience.
The inventor discovers through long-term observation and research that various intelligent hardware such as shared bicycles, shared mopeds, spikes of electronic fences, parking piles, interaction machines of parking areas, shared charging treasures, intelligent express cabinets and unmanned sales counter are distributed in various indoor and outdoor places along with the development of the intelligent hardware, and various intelligent services are provided for the public. These smart hardware typically have a positioning module or device, such as a GPS, to locate the smart hardware and provide location information of where the smart hardware is located. The position information of the intelligent hardware is generated by a self-contained positioning module or device, is relatively independent from equipment at a user end such as a mobile phone and a tablet, is difficult to be tampered by a user through a GPS simulator or an IP agent and the like, and can be regarded as real-time, real and effective position information. Therefore, the card punching is carried out based on the position information provided by the intelligent hardware, the authenticity of the traditional field card punching or attendance checking mode is combined with the convenience of the existing online card punching mode, and the card punching cost can be effectively reduced and the card punching convenience can be improved on the basis of ensuring the card punching authenticity.
In order to achieve the above object, the present application provides a card punching method based on intelligent hardware, including: acquiring equipment information of intelligent hardware; providing equipment information to a first server so as to request the first server to issue the position information of the intelligent hardware; receiving location information from a first server, wherein the location information corresponds to device information; and providing the identity information and the location information of the user to the second server for card punching.
In some embodiments, optionally, the device information includes a device identifier capable of uniquely identifying the smart hardware, where the device identifier is obtained by scanning a two-dimensional code disposed on the smart hardware; and the location information corresponds to the device identification.
In some embodiments, optionally, the device information includes communication element identification information of the intelligent hardware, and a request instruction to upload the communication element identification information and obtain the location information to the first server; location information is received from a first server, wherein the location information indicates a current location of a communication element of the intelligent hardware.
In some embodiments, optionally, receiving a current time from the first server and/or a requested time to send a request to the first server; and saving the current time and/or the request time so as to delay the card refilling.
In some embodiments, optionally, the identity information is provided to the first server for verification by the first server.
In some embodiments, optionally, the identity information includes one or more of the following: a user identifier capable of uniquely identifying a user; information of the enterprise where the user is located; the job number of the user; the equipment information of the user equipment for the user to perform the card punching operation.
In some embodiments, optionally, the communication element identification information of the intelligent hardware is provided to the first server for verification by the first server.
In some embodiments, optionally, the device information includes communication element identification information of the intelligent hardware; and the position information corresponds to the communication element identification information.
In some embodiments, optionally, the communication element identification information includes one or more of the following: a Bluetooth MAC address; an NFC tag; the short-range communication element employed by the intelligent hardware identifies the information.
On the other hand, this application still provides a equipment of checking card based on intelligent hardware, includes: the acquisition module is configured to acquire equipment information of the intelligent hardware; a communication module configured to provide device information to a first server and receive location information of the intelligent hardware from the first server, wherein the location information corresponds to the device information; and the communication module is further configured to provide the identity information and the location information of the user to the second server for card punching.
In some embodiments, optionally, the device information includes a device identifier capable of uniquely identifying the smart hardware; the acquisition module comprises a shooting component, and the shooting component is configured to scan a two-dimensional code arranged on the intelligent hardware to acquire an equipment identifier; and the location information corresponds to the device identification.
In some embodiments, optionally, the communication module is further configured to receive a current time from the first server and/or a requested time to send the request to the first server; and the saving module is configured to save the current time and/or the request time so as to delay the card refilling.
In some embodiments, optionally, the communication module is further configured to provide identity information to the first server, wherein the identity information comprises one or more of: a user identifier capable of uniquely identifying a user; information of the enterprise where the user is located; the job number of the user; the equipment information of the user equipment for the user to perform the card punching operation.
In some embodiments, optionally, the communication module is further configured to provide communication element identification information of the intelligent hardware to the first server, wherein the communication element identification information comprises one or more of: a Bluetooth MAC address; an NFC tag; the short-range communication element employed by the intelligent hardware identifies the information.
On the other hand, the application also provides a card punching system based on intelligent hardware, which comprises the intelligent hardware, a first server and the card punching equipment based on the intelligent hardware, wherein: the intelligent hardware comprises a positioning module, wherein the positioning module is configured to generate position information according to the current position of the intelligent hardware and provide the position information to the first server; and the first server is configured to receive and store the location information.
In some embodiments, optionally, the method further includes: and the second server is configured to punch the card according to the identity information and the position information.
On the other hand, the application also provides a card punching method based on intelligent hardware, which comprises the following steps: establishing communication connection with the intelligent hardware within the communication range of the intelligent hardware; requesting position information from the intelligent hardware, wherein the position information reflects the current position of the intelligent hardware; receiving location information from the intelligent hardware; and providing the identity information and the location information of the user to the second server for card punching.
In some embodiments, optionally, the identity information of the user is provided to the intelligent hardware for verification by the intelligent hardware.
In some embodiments, optionally, the smart hardware includes a short-range communication element configured to establish a communication connection with a communication device within range of the smart hardware.
In some embodiments, optionally, the intelligent hardware includes a location module configured to generate location information from a current location of the intelligent hardware.
In some embodiments, optionally, time information including a current time is requested from the smart hardware, and the time information is received from the smart hardware as a time to punch a card.
On the other hand, this application still provides a equipment of checking card based on intelligent hardware, includes: and the communication module is configured to acquire the position information from the intelligent hardware by establishing communication connection with the intelligent hardware, and provide the identity information and the position information of the user to the second server for card punching.
In some embodiments, optionally, the communication module is further configured to provide the identity information of the user to the intelligent hardware for verification by the intelligent hardware.
In some embodiments, optionally, the smart hardware includes a short-range communication element, and the communication module is further configured to establish a communication connection with the short-range communication element within a range close to the smart hardware.
In some embodiments, optionally, the intelligent hardware includes a location module configured to generate location information from a current location of the intelligent hardware.
In some embodiments, optionally, the communication module is further configured to request time information including a current time from the smart hardware, and to receive the time information from the smart hardware as a time to punch a card.
On the other hand, the application also provides a card punching system based on intelligent hardware, which comprises the card punching device based on intelligent hardware and the intelligent hardware, wherein: the smart hardware includes a positioning module configured to generate location information from a current location of the smart hardware and provide the location information to the card punching device.
In another aspect, the present application further provides a smart hardware-based card punching device, which includes a memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein the processor is configured to implement the steps of the smart hardware-based card punching method described above when executing the computer program.
In another aspect, the present application further provides a computer-readable storage medium, on which a computer program is stored, wherein the computer program, when executed by a processor, is capable of implementing the steps of the above-mentioned smart hardware-based card punching method.
The method, the device and the system provided by the application acquire the real position by scanning the intelligent hardware, and have at least the following beneficial technical effects:
(1) true position information can be provided, and counterfeiting and tampering are prevented;
(2) the expense of most enterprises on card punching attendance can be saved;
(3) the application value of various intelligent hardware such as a shared bicycle and a shared moped can be improved, and value-added services are provided.
The conception, specific structure and technical effects of the present application will be further described in conjunction with the accompanying drawings to fully understand the purpose, characteristics and effects of the present application.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of a smart hardware-based card punching system in the present application.
Fig. 2 is a schematic flowchart of an embodiment of a smart hardware-based card punching method in the present application.
Fig. 3 is a schematic flowchart of an embodiment of a smart hardware-based card punching method in the present application.
FIG. 4 is a schematic block diagram of one embodiment of a computer apparatus, device or terminal according to the present application.
Detailed Description
The following description of the embodiments of the present application is provided by way of specific examples, and other advantages and effects of the present application will be readily apparent to those skilled in the art from the disclosure herein. The present application is capable of other and different embodiments and its several details are capable of modifications and/or changes in various respects, all without departing from the spirit of the present application. It is to be noted that the features in the following embodiments and examples may be combined with each other without conflict.
It should be noted that the drawings provided in the following embodiments are only for illustrating the basic idea of the present application, and the drawings only show the components related to the present application rather than the number, shape and size of the components in actual implementation, and the type, amount and ratio of the components in actual implementation may be changed arbitrarily, and the layout of the components may be more complicated.
Some exemplary embodiments of the present application have been described for illustrative purposes, and it is to be understood that the present application may be embodied in other ways not specifically shown in the drawings.
Fig. 1 is a schematic structural diagram of an embodiment of a smart hardware-based card punching system in the present application. As shown in fig. 1, a smart hardware-based card punching system may include a card punching device 101, smart hardware 103, a first server 110, and a second server 120.
The user uses the card punching device 101 to obtain the device information of the intelligent hardware 103, and provides the device information of the intelligent hardware 103 to the first server 110, so as to request the first server 110 to issue the location information of the intelligent hardware 103. First server 110 stores the location information of intelligent hardware 103, receives the request from card punching device 101, and then queries the location information of corresponding intelligent hardware 103 according to the device information of intelligent hardware 103 provided by card punching device 101, and feeds back the location information to card punching device 101. The card punching apparatus 101 receives the location information 103 from the first server 110 and provides the identity information and the location information of the user to the second server 120 for punching a card. The second server 120 receives the identity information and the position information from the card punching device 101, records the position of the user at the current time, and completes the card punching operation.
The card punching device 101 may be a mobile terminal that is convenient for users to carry, such as a mobile phone, a tablet, a smart watch, a smart bracelet, and smart glasses. The card punching device 101 comprises an acquisition module and a communication module. The acquisition module is used for acquiring the device information of the intelligent hardware 103. In some embodiments, the acquisition module may include an image acquisition device such as a camera, a scanner, or other shooting component, and may acquire the device information of the intelligent hardware 103 by shooting, scanning, or the like. The communication module may transmit and receive various types of information or data in one or more communication manners, such as WiFi, mobile data, cellular network, bluetooth, NFC, satellite signal, and the like, so as to implement communication between the card punching device 101 and the first server 110, the second server 120, and/or the smart hardware 103.
The intelligent hardware 103 can be various fixed or movable hardware devices such as shared bicycles, shared moped vehicles, spikes of electronic fences, parking piles, interaction machines in parking areas, shared charging treasures, intelligent express cabinets, unmanned sales counter and the like. The intelligent hardware 103 comprises a positioning module capable of detecting the current position of the intelligent hardware 103 and generating corresponding position information. The positioning module can perform positioning in one or more positioning modes such as GPS, Beidou, mobile data positioning, WiFi positioning and the like.
The intelligent hardware 103 may further include a wired or wireless communication module, and may provide its own location information to the first server 110 through one or more communication methods such as 2G, 3G, 4G, 5G, WiFi, mobile data, cellular network, and the like, and be stored and maintained by the first server 110. When the position of the intelligent hardware 103 moves, the positioning module can position the intelligent hardware 103 in real time, and provide the current position or the final position of the intelligent hardware 103 to the first server 110 for updating, so that the first server 110 can always store the current position or the final position of the intelligent hardware 103.
The smart hardware 103 may also include short-range communication elements such as bluetooth, NFC, etc. The card punching device 101 can establish a communication connection with the smart hardware 103 and communicate within a short-range communication range through these short-range communication elements. In some embodiments, card punching device 101 may obtain communication element identification information of smart hardware 103 and provide it to first server 110 as part of device information of smart hardware 103 to request issuing of location information of smart hardware 103 to first server 110. The identification (which may be encrypted) of the intelligent hardware 103 bound to it can be identified by the short-range communication element for the first server 110 to identify the intelligent hardware 103 and issue the real-time location of the intelligent hardware 103. The communication range of these short-range communication elements is typically within a few meters or tens of meters, depending on the element, for example the range of a bluetooth communication element is typically within 10 meters and the range of an NFC communication element is typically within 10 millimeters.
Since the card punching device 101 needs to come close to or contact with the smart hardware 103 to establish short-range communication with the smart hardware 103, adding the communication element identification information of the smart hardware 103 to the device information can ensure that the card punching operation occurs in the vicinity of the smart hardware 103. This way can effectively prevent the user from sharing the two-dimensional code of the smart hardware 103 to other users to obtain a false location for card punching. When the barcode representing the device information is not set on the smart hardware 103 or the barcode is damaged, the position information can be acquired in this way for punching.
In some embodiments, the card punching device 101 may obtain the communication element identification information of the smart hardware 103 from the smart hardware 103, upload the identification information of the communication element and the request instruction for obtaining the geographic location to the first server 110, and issue the current location of the communication element to the card punching device 101 by the first server 110 for card punching. This scheme can punch the card under the destroyed condition of intelligent hardware 103's two-dimensional code, reduces intelligent hardware 103's operating pressure simultaneously.
The first server 110 may be a cloud server or a web server. In some embodiments, the first server 110 may be a dedicated location server or may be a service server that is compatible with the services of the intelligent hardware 103 itself. For example, the smart hardware 103 is a sharing bicycle, which has a positioning module, and also needs a server capable of saving and processing the position information of the sharing bicycle, thereby providing a sharing travel-related service. The existing intelligent hardware 103 and the first server 110 are used for realizing the card punching function, new hardware equipment does not need to be purchased, and the cost is obviously reduced.
The first server 110 stores device information of the intelligent hardware 103 and location information corresponding to the intelligent hardware 103, and queries and acquires the corresponding location information through the device information of the intelligent hardware 103. In some embodiments, the device information of the intelligent hardware 103 may include one or more of: a device identification capable of uniquely identifying the smart hardware 103; a device ID in the form of a character string, a barcode, a two-dimensional code, or the like; communication element identification information of the intelligent hardware 103, and the like.
The second server 120 may be a cloud server or a web server. In some embodiments, the second server 120 may be a dedicated card punching server, or may be a service server that is compatible with the services of the smart hardware 103 itself. In some embodiments, the second server 120 may be a server that is opposite to the first server 110, may be integrated with the first server 110, or may be provided in the same server device as the first server 110 in the form of a module.
The second server 120 is configured to receive and record the card punching information provided by the card punching device 101, or further provide the card punching information to a corresponding unit in a preset manner, so as to implement a card punching operation. The card punching information can comprise identity information, position information and card punching time of the card punching user. In some embodiments, the second server 120 may use its own clock to record the time of the card punch operation as the time of the card punch. In other embodiments, the time provided by the card punching device 101 and/or the first server 110 may also be used as the card punching time.
In some embodiments, first server 110 issues the location information of smart hardware 103 to card punching device 101, and also issues the current time to card punching device 101. The card punching device 101 receives the position information and the current time from the first server 110, and stores the position information and the current time to the local place of the card punching device 101, so that a user can call the position information and the time information stored in the card punching device 101 at any time to perform additional card punching or re-card punching to deal with the situation that the card punching operation is unsuccessful.
In some embodiments, first server 110 records and issues a request time for card punching device 101 to send a request instruction to first server 110. The card punching device 101 receives the position information and the request time from the first server 110 and stores the position information and the request time to the local place of the card punching device 101, so that a user can call the position information and the time information stored in the card punching device 101 at any time to perform additional card punching or re-card punching to deal with the situation that the communication delay or the issuing delay of the first server occurs.
In some embodiments, card punching device 101 also provides identity information of the user to first server 110 and/or second server 120 to verify the identity of the user. After the user identity is verified, first server 110 issues other information, such as location information and/or time information, to card punching device 101. And after the user identity is verified by the second server 120, recording the card punching information and completing card punching. The identity information may include one or more of the following: user personal identity information; user identification information such as a user ID or a user job number; information of the unit where the user is located; device or account information bound by the user.
During communication, information and data including identity information may be transmitted in an encrypted manner. In some embodiments, after the first server 110 verifies the identity information of the user, the encrypted device information of the smart hardware 103 may be sent to the card punching device 101 and further provided to the second server 120, so that the second server 120 may perform an inspection on the abnormal card punching condition, for example, identify whether the card punching condition is a fixed parking pile, a bluetooth spike, or an unfixed shared bicycle, a shared moped, or the like.
In some embodiments, the card punching device 101 may also establish a communication connection with the smart hardware 103 within a communication range of the smart hardware 103, such as through a short-range communication element of the smart hardware 103. The card punching device 101 directly requests the intelligent hardware 103 for the position information, receives and acquires the current position information of the intelligent hardware 103 from the intelligent hardware 103, and then provides the position information and the identity information of the user to the second server 120 for punching the card. When the barcode representing the device information is not set on the smart hardware 103 or the barcode is damaged, the position information can be acquired in this way for punching. And this way does not require communication with the first server 110, it is also possible to obtain location information in case it is difficult or impossible to establish a communication connection with the first server 110.
In some embodiments, time information may also be obtained from the smart hardware 103 as a time to punch the card, along with the location information, to the second server 120. If it is difficult or inconvenient to establish a communication connection with the second server 120, the time information and the location information may be temporarily stored locally in the card punching device 101, and then provided to the second server 120 and punched.
Fig. 2 is a schematic flowchart of an embodiment of a smart hardware-based card punching method in the present application. As shown in fig. 2, the smart hardware-based card punching method may include the steps of:
and step S210, acquiring the equipment information of the intelligent hardware. The device information includes a device identifier capable of uniquely identifying the smart hardware, and the device identifier may be acquired by scanning a two-dimensional code provided on the smart hardware. The position information corresponds to the equipment identification, and the corresponding position information can be obtained through equipment identification inquiry.
Step S220, providing the device information to the first server, so as to request the first server to issue the location information of the intelligent hardware.
In some embodiments, the device information may include communication element identification information of the intelligent hardware, and request instructions to upload the communication element identification information and obtain the location information to the first server; location information is received from the first server for a card punch, wherein the location information corresponds to a current location of a communication element of the smart hardware.
In some embodiments, the identity information may also be provided to the first server for verification by the first server. The identity information may include one or more of the following: a user identifier capable of uniquely identifying a user; information of the enterprise where the user is located; the job number of the user; the device information of the user end device for the user to perform the card punching operation, and the like.
In some embodiments, the communication element identification information of the intelligent hardware may also be provided to the first server for verification by the first server. The device information may include communication element identification information of the intelligent hardware, the location information corresponds to the communication element identification information, and the corresponding location information may be obtained through a query of the communication element identification information. The communication element identification information may include one or more of the following: a Bluetooth MAC address; an NFC tag; short-range communication element identification information employed by the intelligent hardware, and the like.
Step S230, receiving location information from the first server, wherein the location information corresponds to the device information. In some embodiments, the current time and/or the request time for sending the request to the first server may also be received from the first server, and the current time and/or the request time may be saved to facilitate a later additional card punch.
Step S240, providing the identity information and the location information of the user to the second server for card punching. And the second server receives the card punching information comprising the identity information and the position information of the user, records the card punching information and completes the card punching operation correspondingly.
Fig. 3 is a schematic flowchart of an embodiment of a smart hardware-based card punching method in the present application. As shown in fig. 3, the smart hardware-based card punching method may include the steps of:
and step S310, establishing communication connection with the intelligent hardware in the communication range of the intelligent hardware. In some embodiments, the smart hardware may include various short-range communication elements as described above that are configured to establish a communication connection with a communication device within range of the smart hardware.
Step S320, requesting position information from the intelligent hardware, wherein the position information reflects a current position of the intelligent hardware. The intelligent hardware includes a location module configured to generate location information from a current location of the intelligent hardware. In some embodiments, the identity information of the user may be provided to the intelligent hardware for verification by the intelligent hardware. After the verification is passed, the intelligent hardware feeds back the position information of the card punching equipment.
Step S330, receiving location information from the intelligent hardware. In some embodiments, time information including a current time may also be requested from the smart hardware and received from the smart hardware as a time to punch a card.
Step S340, providing the identity information and the location information of the user to the second server for punching the card. In some embodiments, the time information obtained from the smart hardware may also be provided to the second server to facilitate delayed card punching.
In some embodiments, the present application further provides a smart hardware-based card punching device, which includes an acquisition module and a communication module. The acquisition module is configured to acquire device information of the intelligent hardware, wherein the device information comprises a device identification capable of uniquely identifying the intelligent hardware. The acquisition module may include a camera component configured to scan a two-dimensional code disposed on the smart hardware to obtain the device identification. The position information corresponds to the device identification, and the corresponding position information can be inquired and obtained through the device identification.
The communication module is configured to provide device information to a first server and receive location information of the intelligent hardware from the first server, wherein the location information corresponds to the device information. The communication module is further configured to provide the identity information and the location information of the user to the second server for the card punch.
In some embodiments, the smart hardware-based card punching device may further include a saving module configured to save the current time and/or the request time to facilitate a later additional card punching, and the current time may be received from the first server and/or the request time of the request may be sent to the first server through the communication module.
In some embodiments, the communication module is further configured to provide identity information to the first server, wherein the identity information may include one or more of: a user identifier capable of uniquely identifying a user; information of the enterprise where the user is located; the job number of the user; the device information of the user end device for the user to perform the card punching operation, and the like.
In some embodiments, the communication module is further configured to provide communication element identification information of the intelligent hardware to the first server, wherein the communication element identification information may include one or more of: a Bluetooth MAC address; an NFC tag; short-range communication element identification information employed by the intelligent hardware, and the like.
In some embodiments, the present application further provides a smart hardware-based card punching system, which may include smart hardware, a first server, a second server, and the smart hardware-based card punching device described above. The intelligent hardware may include a location module configured to generate location information from a current location of the intelligent hardware and provide the location information to the first server. The first server is configured to receive and store location information. The second server is configured to punch a card according to the identity information and the location information.
In some embodiments, the present application further provides a smart hardware-based card punching device, including a communication module configured to acquire location information from smart hardware by establishing a communication connection with the smart hardware, and provide the identity information and the location information of a user to a second server for punching a card. In this embodiment, the card punching device may directly obtain the location information from the smart hardware, and may not need to communicate with the first server, and may be suitable for a situation where the card punching device is not in communication with the first server smoothly or fails in communication.
The communication module may be further configured to provide the identity information of the user to the intelligent hardware for verification by the intelligent hardware. In some embodiments, the smart hardware may include various short-range communication elements as described above with which communication connections may be established within proximity to the smart hardware.
The intelligent hardware includes a location module configured to generate location information from a current location of the intelligent hardware. In some embodiments, the communication module is further configured to request time information including a current time from the smart hardware, and receive the time information from the smart hardware as a time to punch a card.
In some embodiments, the present application provides a card punching method capable of acquiring a real card punching position, which may include the steps of: a user scans a two-dimensional code of intelligent hardware through a mobile APP terminal, and sends identity information of the user and a command requesting to issue the position of the intelligent hardware to a first server; the first server verifies the identity information of the user, and after the identity information passes the verification, the first server sends the position information of the intelligent hardware to the mobile terminal; and the mobile APP terminal sends the acquired position information of the intelligent hardware and the ID identification of the user to a second server for card punching.
The intelligent hardware comprises a positioning module (including but not limited to a GPS) and a wireless communication module (including but not limited to a 2G, a 3G, a 4G, a 5G and the like), and the specific form of the intelligent hardware comprises but not limited to a shared bicycle, a shared moped, a spike of an electronic fence, a parking pile, an interactive machine of a parking area and the like. At present, a sharing bicycle and a sharing moped become a mode for most of enterprise employees to go out, the mode is green and environment-friendly, the distribution is wide, and each sharing bicycle and each sharing assisting power are provided with a positioning module, so that reliable position information can be provided. The position information fed back by intelligent hardware such as a shared bicycle needs to pass through a server of one party, and the position information cannot be tampered by a GPS simulator or an IP agent, so that the position information is real-time, real and unique position information. In addition, the card punching method provided by the application also saves the cost for enterprises to purchase and maintain the card punching hardware. If a plurality of intelligent hardware exists near the card punching position, the method is equivalent to providing a plurality of card punching hardware, so that the phenomenon of queuing for punching can be effectively relieved, and the possibility of breakdown of the card punching system can be reduced.
Preferably, the identity information of the user includes information of an enterprise where the user registered at the mobile APP end is located. The enterprise information may be sent to the first server in an encrypted form.
Preferably, after the user scans the two-dimensional code of the intelligent hardware through the mobile APP terminal, the method further includes sending an instruction requesting to issue the current time to the first server. And the first server simultaneously issues the position information and the current time of the intelligent hardware to the mobile terminal and stores the position information and the current time in the mobile APP terminal. The user can call the stored position information and time information at any time to carry out additional card punching. To cope with the situation that the card punching is unsuccessful.
Preferably, after the user scans the two-dimensional code of the intelligent hardware through the mobile APP terminal, the time for requesting to issue the request instruction is sent to the first server. And the first server simultaneously issues the position information of the intelligent hardware and the time of the request instruction to the mobile terminal and stores the position information and the time in the mobile APP terminal. The user can call the stored position information and time information at any time to carry out additional card punching. To cope with the situation that the first server delays the issue of the position.
Preferably, the first server checks the identity information of the user, and after the check is passed, the first server also sends encrypted intelligent hardware ID information to the mobile terminal, so that the second server can check abnormal card punching conditions. For example, the position of the parking pile is fixed, the Bluetooth spike is still a shared bicycle or a shared moped with a non-fixed position, and the like.
Preferably, the ID identification of the user includes the job number of the user and the like.
Preferably, after the user scans the two-dimensional code of the intelligent hardware through the mobile APP terminal, the method further includes reporting the communication element identification information of the intelligent hardware to the first server, so that the first server checks the identity information of the user. The communication element identification information includes, but is not limited to, short-distance communication element identification information such as a bluetooth MAC address and an NFC tag adopted by the smart hardware. In order to prevent a user from sharing the two-dimensional code scanned by punching a card to other users to obtain a false position.
In some embodiments, the present application further provides a card punching method capable of acquiring a real card punching position, which may include the steps of: a user scans the communication element identification information of the intelligent hardware through a mobile APP terminal, and sends the identity information of the user and a command requesting to issue the position of the intelligent hardware to a first server; the first server verifies the identity information of the user, and after the identity information passes the verification, the first server sends the position information of the intelligent hardware to the mobile terminal; and the mobile APP terminal sends the acquired position information of the intelligent hardware and the ID identification of the user to a second server for card punching.
The communication element includes, but is not limited to, a short-range communication element such as bluetooth and an NFC tag used by the smart hardware, and the short-range communication element can identify the identity (which may be encrypted) of the bound smart hardware, so that the first server can identify the smart hardware and issue the real-time location of the smart hardware. For intelligent hardware with damaged two-dimensional codes, a method for obtaining a real position can be compensated for punching a card.
In some embodiments, the present application further provides a card punching method capable of acquiring a real card punching position, which may include the steps of: a user is connected with a communication element of intelligent hardware through a mobile APP terminal signal, and sends the identity information of the user and a command requesting to send the position of the intelligent hardware to the intelligent hardware; the intelligent hardware checks the identity information of the user, and after the user passes the check, the intelligent hardware sends the position information of the intelligent hardware to the mobile terminal; and the mobile APP terminal sends the acquired position information of the intelligent hardware and the ID identification of the user to a second server for card punching.
The communication element includes, but is not limited to, a short-range communication element such as a bluetooth or an NFC tag, which is used by the intelligent hardware, and the communication element is in signal connection with the communication element to acquire the location information of the intelligent hardware. For intelligent hardware with damaged two-dimensional codes, a method for obtaining a real position can be compensated for punching a card.
In some embodiments, the present application further provides a computer apparatus, device or terminal, an internal structure of an embodiment of which may be as shown in fig. 4. The computer apparatus, device or terminal includes a processor, a memory, a network interface, a display screen and an input device connected by a system bus. The processor is used for providing calculation and control capability, and the memory comprises a nonvolatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operating system and the computer program to run in the non-volatile storage medium. The network interface is used for communicating with an external terminal through network connection. The computer program is executed by a processor to implement the various methods, procedures, steps disclosed in the present application, or the processor executes the computer program to implement the functions of the respective modules or units in the embodiments disclosed in the present application. The display screen can be a liquid crystal display screen or an electronic ink display screen, and the input device can be a touch layer covered on the display screen, a key, a track ball or a touch pad arranged on the shell, an external keyboard, a touch pad or a mouse and the like.
Illustratively, a computer program may be partitioned into one or more modules or units that are stored in a memory and executable by a processor to implement aspects of the present application. These modules or units may be a series of computer program instruction segments capable of performing specific functions, which are used to describe the execution of a computer program in an apparatus, device or terminal.
The device, the equipment or the terminal can be computing equipment such as a desktop computer, a notebook computer, a mobile electronic device, a palm computer, a cloud server and the like. It will be appreciated by those skilled in the art that the configurations shown in the figures are block diagrams of only some of the configurations relevant to the present disclosure, and do not constitute limitations on the apparatus, devices or terminals to which the present disclosure may be applied, and that a particular apparatus, device or terminal may include more or less components than shown in the figures, or may combine certain components, or have a different arrangement of components.
The Processor may be a Central Processing Unit (CPU), other general or special purpose Processor, a microprocessor, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), a Programmable Gate Array (FPGA) or other Programmable logic device, discrete Gate or transistor logic, discrete hardware components, etc. The processor is the control center of the above-mentioned apparatus, device or terminal, and connects the respective parts of the apparatus, device or terminal by using various interfaces and lines.
The memory may be used to store computer programs, modules and data, and the processor may implement various functions of the apparatus, device or terminal by executing or executing the computer programs and/or modules stored in the memory and calling the data stored in the memory. The memory may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application program (such as a sound playing function, an image playing function, etc.) required by at least one function, and the like; the data storage area may store various types of data (such as multimedia data, documents, operation histories, etc.) created according to the application, and the like. In addition, the memory may include high speed random access memory, and may also include non-volatile memory, such as a hard disk, a memory, a plug-in hard disk, a Smart Media Card (SMC), a Secure Digital (SD) Card, a Flash memory Card (Flash Card), a magnetic disk storage device, a Flash memory device, or other volatile solid state storage device.
One of ordinary skill in the art will appreciate that implementing all or a portion of the processes of the methods of the embodiments described above may be accomplished by a computer program instructing associated hardware that may be stored in a non-volatile computer-readable storage medium that, when executed, may include the processes of the embodiments of the methods described above, wherein any reference to memory, storage, database, or other media used in the embodiments provided herein may include non-volatile and/or volatile memory.
The above-described apparatus or terminal device integrated modules and units, if implemented in the form of software functional units and sold or used as separate products, may be stored in a computer-readable storage medium. Based on such understanding, the present application can realize all or part of the flow of the disclosed methods, and can also be realized by a computer program for instructing relevant hardware to complete, the computer program can be stored in a computer readable storage medium, and the computer program can realize the steps of the above methods when being executed by a processor. Wherein the computer program comprises computer program code, which may be in the form of source code, object code, an executable file or some intermediate form, etc. The computer readable medium may include: any entity or device capable of carrying computer program code, recording medium, U.S. disk, removable hard disk, magnetic disk, optical disk, computer Memory, Read-Only Memory (ROM), Random Access Memory (RAM), electrical carrier wave signals, telecommunications signals, software distribution media, and the like. It should be noted that the computer readable medium may contain content that is appropriately increased or decreased as required by legislation and patent practice in the jurisdiction.
In some embodiments, the various methods, procedures, modules, devices, apparatuses, or systems disclosed herein may be implemented or performed in one or more processing devices (e.g., digital processors, analog processors, digital circuits designed to process information, analog circuits designed to process information, state machines, computing devices, computers, and/or other mechanisms for electronically processing information). The one or more processing devices may include one or more devices that perform some or all of the operations of a method in response to instructions stored electronically on an electronic storage medium. The one or more processing devices may include one or more devices configured through hardware, firmware, and/or software to be specifically designed for performing one or more operations of a method. The above description is only for the preferred embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present application, and equivalent alternatives or modifications according to the technical solutions and the inventive concepts of the present application, and all such alternatives or modifications are encompassed in the scope of the present application.
Embodiments of the present application may be implemented in hardware, firmware, software, or various combinations thereof, and may also be implemented as instructions stored on a machine-readable medium, which may be read and executed using one or more processing devices. In some implementations, a machine-readable medium may include various mechanisms for storing and/or transmitting information in a form readable by a machine (e.g., a computing device). For example, a machine-readable storage medium may include read-only memory, random-access memory, magnetic disk storage media, optical storage media, flash-memory devices, and other media for storing information, and a machine-readable transmission medium may include various forms of propagated signals (including carrier waves, infrared signals, digital signals), and other media for transmitting information. While firmware, software, routines, or instructions may be described in the above disclosure in terms of performing certain exemplary aspects and embodiments of certain actions, it will be apparent that such descriptions are merely for convenience and that such actions in fact result from a machine device, computing device, processing device, processor, controller, or other device or machine executing the firmware, software, routines, or instructions.
The above embodiments are merely illustrative of the principles and utilities of the present application and are not intended to limit the application. Any person skilled in the art can modify or change the above-described embodiments without departing from the spirit and scope of the present application. Accordingly, it is intended that all equivalent modifications or changes which can be made by those skilled in the art without departing from the spirit and technical concepts disclosed in the present application shall be covered by the claims of the present application.

Claims (13)

1. A card punching method based on intelligent hardware is characterized by comprising the following steps:
acquiring equipment information of the intelligent hardware;
providing the equipment information to a first server so as to request the first server to issue the position information of the intelligent hardware;
receiving the location information from the first server, wherein the location information corresponds to the device information; and
and providing the identity information and the position information of the user to a second server for card punching.
2. The smart hardware-based card punching method of claim 1, wherein:
the device information comprises a device identifier capable of uniquely identifying the intelligent hardware, wherein the device identifier is obtained by scanning a two-dimensional code arranged on the intelligent hardware; and
the location information corresponds to the device identification.
3. The smart hardware-based card punching method of claim 1, wherein:
receiving a current time from the first server and/or a requested time to send a request to the first server; and
and saving the current time and/or the request time so as to delay the card refilling.
4. The smart hardware-based card punching method of claim 1, wherein:
providing communication element identification information of the intelligent hardware to the first server for verification by the first server.
5. The smart hardware-based card punching method of claim 4, wherein:
the communication element identification information includes one or more of: a Bluetooth MAC address; an NFC tag; the short-range communication element employed by the intelligent hardware identifies information.
6. A smart hardware-based card punching device, comprising:
the acquisition module is configured to acquire the equipment information of the intelligent hardware;
a communication module configured to provide the device information to a first server and receive location information of the intelligent hardware from the first server, wherein the location information corresponds to the device information; and
the communication module is further configured to provide the identity information of the user and the location information to a second server for card punching.
7. A smart hardware-based card punching system comprising the smart hardware-based card punching device of claim 6, the smart hardware, and the first server, wherein:
the intelligent hardware comprises a positioning module configured to generate the location information according to a current location of the intelligent hardware and provide the location information to the first server; and
the first server is configured to receive and store the location information.
8. A smart hardware-based card punch system as recited in claim 7, further comprising:
the second server is configured to punch a card according to the identity information and the position information.
9. A card punching method based on intelligent hardware is characterized by comprising the following steps:
establishing communication connection with the intelligent hardware within the communication range of the intelligent hardware;
requesting location information from the intelligent hardware, wherein the location information reflects a current location of the intelligent hardware;
receiving the location information from the smart hardware; and
and providing the identity information and the position information of the user to a second server for card punching.
10. The smart hardware-based card punching method of claim 9, wherein:
the intelligent hardware includes a short-range communication element configured to establish a communication connection with a communication device within range proximate the intelligent hardware.
11. A smart hardware-based card punching device, comprising:
the communication module is configured to acquire position information from the intelligent hardware by establishing communication connection with the intelligent hardware, and provide identity information of a user and the position information to a second server for punching.
12. A smart hardware-based card punching system, comprising the smart hardware-based card punching device of claim 11 and the smart hardware, wherein:
the smart hardware includes a location module configured to generate the location information from a current location of the smart hardware and provide the location information to the punch-in device.
13. A computer-readable storage medium, on which a computer program is stored, which, when being executed by a processor, is able to carry out the steps of the smart hardware-based card punching method according to any one of claims 1-5 and 9-10.
CN202010254223.6A 2020-04-02 2020-04-02 Card punching method, device and system based on intelligent hardware Pending CN111445594A (en)

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Application publication date: 20200724