CN111951478A - Library mobile intelligent borrowing method and system - Google Patents

Library mobile intelligent borrowing method and system Download PDF

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Publication number
CN111951478A
CN111951478A CN202010799732.7A CN202010799732A CN111951478A CN 111951478 A CN111951478 A CN 111951478A CN 202010799732 A CN202010799732 A CN 202010799732A CN 111951478 A CN111951478 A CN 111951478A
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CN
China
Prior art keywords
vehicle
borrowing
mounted terminal
book
user
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Pending
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CN202010799732.7A
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Chinese (zh)
Inventor
刘国峰
吴昊
钱海钢
彭为楚
孙德鹏
文利情
李耀华
王保华
蔡佳
李安恙
谭鹏
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Zhongshan Library Of Guangdong Province Guangdong Ancient Books Protection Center
Shenzhen Seaever Intelligent Technology Co ltd
Original Assignee
Zhongshan Library Of Guangdong Province Guangdong Ancient Books Protection Center
Shenzhen Seaever Intelligent Technology Co ltd
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Application filed by Zhongshan Library Of Guangdong Province Guangdong Ancient Books Protection Center, Shenzhen Seaever Intelligent Technology Co ltd filed Critical Zhongshan Library Of Guangdong Province Guangdong Ancient Books Protection Center
Priority to CN202010799732.7A priority Critical patent/CN111951478A/en
Publication of CN111951478A publication Critical patent/CN111951478A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0042Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects
    • G07F17/005Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects for the hiring of content carriers, e.g. of DVDs or CDs
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • G06K17/0029Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device the arrangement being specially adapted for wireless interrogation of grouped or bundled articles tagged with wireless record carriers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/10Services
    • G06Q50/26Government or public services
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0042Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects
    • G07F17/0057Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects for the hiring or rent of vehicles, e.g. cars, bicycles or wheelchairs
    • 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
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • 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
    • H04L67/54Presence management, e.g. monitoring or registration for receipt of user log-on information, or the connection status of the users

Abstract

The invention discloses a mobile intelligent borrowing method and a mobile intelligent borrowing system for a library, wherein the method comprises the following steps of: entering a terminal program by scanning the intelligent two-dimensional code, and performing login authorization on the terminal program to enable the vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocked state; when a user borrows books on the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the books in the book bucket, then borrows the books on the library management system, and modifies the label alarm position of the books after the book borrowing is successful; when a user returns the vehicle on the vehicle-mounted terminal, the vehicle-mounted terminal acquires the position of the intelligent borrowing vehicle and judges whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is at a vehicle returning point, ending the borrowing; if the intelligent borrowing vehicle is not located the returning point, the user is guided to push the intelligent borrowing vehicle to the returning point, and then the vehicle borrowing is finished. According to the intelligent borrowing vehicle, the effect that a user borrows along with walking in a library is achieved, and the user experience is improved.

Description

Library mobile intelligent borrowing method and system
Technical Field
The invention relates to the technical field of intelligent libraries, in particular to a mobile intelligent borrowing method and system for a library.
Background
The book borrowing flow of the current library usually selects books from a reading room for a user, and after the books needing to be borrowed are selected, the borrowed books are required to be carried to a fixed book borrowing device arranged in the library for borrowing. This kind of flow of borrowing has certain drawback usually, for example the user need will wait to borrow the books and carry to fixed book device front of borrowing and can borrow the book, and if the reading room that the user was located does not install fixed book device of borrowing, then need the user to spend certain time and physical power to borrow the book before other fixed book devices of borrowing, for example when having more users to borrow the book simultaneously again, then need everybody to queue up and borrow the book, so can consume a large amount of time in lining up, influence user experience.
Disclosure of Invention
The embodiment of the invention provides a mobile intelligent book borrowing method and system for a library, aiming at overcoming the defect that a user needs to borrow a book before a book borrowing device is fixed.
The embodiment of the invention provides a mobile intelligent book borrowing method for a library, which comprises the following steps:
scanning a two-dimensional code on an intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program, and performing login authorization on the terminal program so as to enable a vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocked state;
when a user borrows books on a vehicle-mounted terminal, the vehicle-mounted terminal calls an RFID read-write module to read label information of the books in a book bucket, then borrows the books in a library management system based on the label information, and modifies label alarm positions of the books after the books are successfully borrowed, so that book borrowing operation is completed;
when the user returns the vehicle on the vehicle-mounted terminal, the vehicle-mounted terminal acquires the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down or lock; and if the intelligent borrowing vehicle is not located at the vehicle returning point, guiding the user to push the intelligent borrowing vehicle to the vehicle returning point, and then ending the vehicle borrowing.
Further, get into corresponding terminal program through the two-dimensional code on the user terminal scanning intelligence book car, and login the authorization on the terminal program, so that on-vehicle terminal on the intelligence book car is in the unblock state, include:
scanning the two-dimensional code on the intelligent borrowing vehicle through the user terminal to enter a corresponding terminal program, and prompting a user to confirm the borrowing vehicle on the terminal program;
when the user confirms the borrowing, the terminal program sends binding information and starting information to a terminal program service platform, and the terminal program service platform judges the current state of the intelligent borrowing vehicle;
when the intelligent borrowing vehicle is in a shutdown state, the terminal program service platform sends a startup instruction to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform receives and forwards the startup instruction to a remote switch, the remote switch returns a startup result to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform receives and forwards the startup result to the terminal program service platform, and the terminal program service platform returns the startup result to a terminal program;
when the intelligent borrowing vehicle is in a screen locking state, the terminal program service platform judges whether the current login user is the user or not according to the binding information;
if the current login user is the user, sending a screen unlocking command to the vehicle-mounted terminal so as to enable the vehicle-mounted terminal to be in an unlocking state; and if the current login user is not the user, returning the information of the failure of the car borrowing to the terminal program.
Further, when the user borrows a book on the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the tag information of the book in the book bucket, then borrows the book in the library management system based on the tag information, and modifies the tag alarm position of the book after the book borrowing is successful, so as to complete the book borrowing operation, including:
when a user borrows books on the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the books in the book bucket;
the vehicle-mounted terminal sends a book borrowing request to a library management system according to the tag information, and the library management system receives the book borrowing request and performs book borrowing operation;
and if the vehicle-mounted terminal receives a book borrowing success result returned by the library management system, modifying the label alarm position of the book through the RFID read-write module.
Further, when the user returns the vehicle on the vehicle-mounted terminal, the vehicle-mounted terminal acquires the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down or lock; if the intelligent borrowing vehicle is not located the returning point, the user is guided to push the intelligent borrowing vehicle to the returning point, and then the vehicle borrowing is finished, and the method comprises the following steps:
sending a vehicle returning application to the vehicle-mounted terminal remote service platform through the vehicle-mounted terminal, and inquiring whether the intelligent borrowing vehicle is at a vehicle returning point or not from the indoor positioning platform after the vehicle returning application is received by the vehicle-mounted terminal remote service platform;
the indoor positioning platform returns a query result to the vehicle-mounted terminal remote service platform, and the vehicle-mounted terminal remote service platform receives and forwards the query result to the vehicle-mounted terminal;
when the intelligent borrowing vehicle is at a vehicle returning point, the vehicle-mounted terminal sends a shutdown request or a locking request to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform sends a shutdown command or a locking command to the remote switch according to the shutdown request or the locking request, the remote switch executes shutdown operation or locking operation according to the shutdown command or the locking command, and then sends a shutdown result or a locking result to the terminal program;
when the intelligent borrowing vehicle is not located at a vehicle returning point, displaying navigation information on the vehicle-mounted terminal to prompt a user to push the intelligent borrowing vehicle to the vehicle returning point according to the navigation information and finish vehicle returning; or when the intelligent borrowing vehicle is not at a vehicle returning point and the user determines to return the vehicle in the original place, finishing vehicle returning and deducting the personal points of the user.
Further, the method also comprises the following steps:
when the user carries out a car returning operation on a terminal program, the terminal program sends a car returning application to the terminal program service platform, and the terminal program service platform inquires whether the intelligent borrowing car is at a car returning point or not from the indoor positioning platform according to the car returning application;
the indoor positioning platform returns a query result to the terminal program service platform, and the terminal program service platform receives and forwards the query result to the terminal program;
when the intelligent borrowing vehicle is at a vehicle returning point, the terminal program sends a shutdown request to the terminal program service platform, the terminal program service platform sends a shutdown command to the vehicle-mounted terminal remote service platform according to the shutdown request, the vehicle-mounted terminal remote service platform receives and forwards the shutdown command to the remote switch, the remote switch returns a shutdown result to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform returns the shutdown result to the terminal program service platform, and the terminal program service platform returns the shutdown result to the terminal program;
when the intelligent borrowing vehicle is not located at a vehicle returning point, displaying navigation information on the terminal program to prompt a user to push the intelligent borrowing vehicle to the vehicle returning point according to the navigation information and finish vehicle returning; or when the intelligent borrowing vehicle is not at a vehicle returning point and the user determines to return the vehicle in the original place, finishing vehicle returning and deducting the personal points of the user.
Further, the method also comprises the following steps:
when the user performs checking operation through the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the books in the book bucket;
the vehicle-mounted terminal sends a query instruction to the library management system according to the tag information, and after receiving the query instruction, the library management system performs query operation according to the tag information and returns a query result of the book information to the vehicle-mounted terminal;
and the vehicle-mounted terminal generates and displays a book information list according to the query result.
Further, after the vehicle-mounted terminal generates and displays the book information list according to the query result, the method includes:
when book borrowing operation is performed by singly selecting one book in the book information list or selecting a plurality of books in the book information list in batches, the vehicle-mounted terminal sends a book borrowing request to a library management system according to the label information of the selected book, and the library management system receives the book borrowing request and performs book borrowing operation;
and if the vehicle-mounted terminal receives a book borrowing success result returned by the library management system, modifying the label alarm position of the book through the RFID read-write module.
Further, when the user returns the car operation on vehicle mounted terminal, vehicle mounted terminal obtains through indoor positioning platform the position of car is borrowed to the intelligence and judges whether the car is borrowed to the intelligence and whether be in and return the car and put, include:
when the user returns the book from the car through the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the book in the book bucket;
the vehicle-mounted terminal sends a query instruction to the library management system according to the tag information, and after receiving the query instruction, the library management system performs query operation according to the tag information and returns a query result of the book information to the vehicle-mounted terminal;
the vehicle-mounted terminal generates and displays a book information list according to the query result;
when the book information list contains the information of the un-borrowed books, prompting that the un-borrowed books are processed firstly;
after processing of un-borrowed books, the vehicle-mounted terminal obtains the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a returning point.
Further, the method also comprises the following steps:
when a user performs book retrieval operation on the vehicle-mounted terminal, the vehicle-mounted terminal displays a retrieval interface;
the vehicle-mounted terminal sends a retrieval request to a retrieval system according to the query condition, the retrieval system sends a retrieval result to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the retrieval result;
when the user selects to view the position map of the target book in the retrieval result, the vehicle-mounted terminal sends a position map request to the retrieval system, the retrieval system returns the position map of the target book to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the position map;
when the user selects to view navigation, the vehicle-mounted terminal sends a navigation request to the indoor navigation platform, the indoor navigation platform inquires the corresponding positioning information of the intelligent borrowing vehicle from the indoor positioning platform, the indoor positioning platform returns the positioning information to the indoor navigation platform, the indoor navigation platform generates a navigation map and a path according to the positioning information and returns the navigation map and the path to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the navigation map and the path.
The embodiment of the invention also provides a library mobile intelligent borrowing system, which comprises:
the intelligent book borrowing vehicle comprises a vehicle-mounted terminal and an RFID reading and writing module, wherein the vehicle-mounted terminal is used for calling the RFID reading and writing module to read tag information of books in a book hopper, then book borrowing operation is carried out in a library management system based on the tag information, and an alarm position of the books is modified after the book borrowing is successful, so that the book borrowing operation is completed; the intelligent borrowing vehicle is used for acquiring the position of the intelligent borrowing vehicle through an indoor positioning platform and judging whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down; if the intelligent borrowing vehicle is not located at the vehicle returning point, guiding the user to push the intelligent borrowing vehicle to the vehicle returning point, and then ending the vehicle borrowing; the RFID read-write module is used for reading label information of books in the book bucket;
and the user terminal is used for scanning the two-dimensional code on the intelligent borrowing vehicle to enter a corresponding terminal program and performing login authorization on the terminal program so as to enable the vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocking state.
The embodiment of the invention provides a mobile intelligent library borrowing method and a system, wherein the method comprises the steps of scanning a two-dimensional code on an intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program, and performing login authorization on the terminal program so as to enable a vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocked state; when a user borrows books on a vehicle-mounted terminal, the vehicle-mounted terminal calls an RFID read-write module to read label information of the books in a book bucket, then borrows the books in a library management system based on the label information, and modifies label alarm positions of the books after the books are successfully borrowed, so that book borrowing operation is completed; when the user returns the vehicle on the vehicle-mounted terminal, the vehicle-mounted terminal acquires the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down or lock; and if the intelligent borrowing vehicle is not located at the vehicle returning point, guiding the user to push the intelligent borrowing vehicle to the vehicle returning point, and then ending the vehicle borrowing. According to the embodiment of the invention, the effect that the user borrows along with walking in the library is realized through the intelligent borrowing vehicle, and the user experience is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
Fig. 1 is a schematic flowchart of a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 2 is a schematic sub-flow diagram of a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 3 is another schematic sub-flow chart of a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 4 is a schematic view illustrating another sub-flow of a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 5 is another schematic flow chart illustrating a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 6 is another schematic flow chart illustrating a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 7 is another schematic flow chart illustrating a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 8 is another schematic flow chart illustrating a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 9 is another schematic flow chart illustrating a library mobile intelligent borrowing method according to an embodiment of the present invention;
fig. 10 is a schematic structural diagram of a mobile intelligent library borrowing system according to an embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It will be understood that the terms "comprises" and/or "comprising," when used in this specification and the appended claims, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
It is also to be understood that the terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used in the specification of the present invention and the appended claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
It should be further understood that the term "and/or" as used in this specification and the appended claims refers to and includes any and all possible combinations of one or more of the associated listed items.
Referring to fig. 1, fig. 1 is a schematic flow chart of a mobile intelligent borrowing method for a library according to an embodiment of the present invention, which specifically includes: steps S101 to S103.
S101, scanning a two-dimensional code on an intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program, and performing login authorization on the terminal program so as to enable a vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocked state;
s102, when a user borrows books on a vehicle-mounted terminal, the vehicle-mounted terminal calls an RFID read-write module to read label information of the books in a book bucket, then borrows the books in a library management system based on the label information, and modifies label alarm positions of the books after the books are borrowed successfully, so that book borrowing operation is completed;
s103, when the user returns the vehicle on the vehicle-mounted terminal, the vehicle-mounted terminal obtains the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down or lock; and if the intelligent borrowing vehicle is not located at the vehicle returning point, guiding the user to push the intelligent borrowing vehicle to the vehicle returning point, and then ending the vehicle borrowing.
In this embodiment, a user scans a two-dimensional code on an intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program (for example, entering a corresponding applet through code scanning by using WeChat), and performs authorized login on the terminal program, so as to complete the borrowing operation; when a user borrows books at the vehicle-mounted terminal of the intelligent book borrowing vehicle, the books can be borrowed only by placing the borrowed books in the book bucket and selecting a book borrowing option on the vehicle-mounted terminal interface; when the user returns the car, only need on-vehicle terminal select confirm still the car can, certainly, still need obey during still the car rule will the car propelling movement is borrowed to the correct car point of returning and is still returned the car to intelligence.
The intelligent book borrowing vehicle is arranged in the library, so that a user can borrow books without queuing, the books can be borrowed in any place within the allowed range of the library, and the effect of borrowing along with walking is realized in a certain sense. The intelligent borrowing vehicle in the embodiment can be used only by authorization login of a user on a terminal program, other certificate cards are not needed, convenience and simplicity are achieved, one intelligent borrowing vehicle can be used by only one user, and other users cannot log in and use at the same time. In addition, the indoor positioning platform is adopted in the embodiment to be accurate in positioning, and in a specific application scenario, the indoor positioning platform adopts a UWB technology (Ultra-Wideband Ultra wide band).
In one embodiment, as shown in fig. 2, step S101 includes: steps S201 to S205.
S201, scanning the two-dimensional code on the intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program, and prompting a user to confirm the borrowing vehicle on the terminal program;
s202, when the user confirms the borrowing, the terminal program sends binding information and starting information to a terminal program service platform, and the terminal program service platform judges the current state of the intelligent borrowing vehicle;
s203, when the intelligent borrowing vehicle is in a shutdown state, the terminal program service platform sends a startup instruction to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform receives and forwards the startup instruction to a remote switch, the remote switch returns a startup result to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform receives and forwards the startup result to the terminal program service platform, and the terminal program service platform returns the startup result to a terminal program;
s204, when the intelligent borrowing vehicle is in a screen locking state, the terminal program service platform judges whether a current login user is the user or not according to the binding information;
s205, if the current login user is the user, sending a screen unlocking command to the vehicle-mounted terminal so as to enable the vehicle-mounted terminal to be in an unlocking state; and if the current login user is not the user, returning the information of the failure of the car borrowing to the terminal program.
In this embodiment, when a user needs to borrow the intelligent borrowing vehicle, the two-dimensional code on the intelligent borrowing vehicle needs to be scanned, so that the corresponding terminal program is skipped to, a series of vehicle borrowing operations are completed on the terminal program, for example, authorized login is performed on the terminal program, vehicle borrowing is confirmed by clicking, and other operations are completed.
In a specific embodiment, as shown in fig. 5, a user selects "code scanning and car taking" and displays a "code scanning and car taking" interface at a user terminal, a scanning frame on the interface is used for aligning and reading a two-dimensional code on the intelligent borrowing car, after the two-dimensional code is successfully read, a corresponding terminal program is entered, the terminal program displays a serial number of the intelligent borrowing car on the interface, and prompts the user to confirm that the intelligent borrowing car is opened; after a user confirms that the intelligent borrowing vehicle is opened, the terminal program sends binding information and starting information to a terminal program service platform, and the terminal program service platform judges whether the corresponding intelligent borrowing vehicle is in a shutdown state or a screen locking state; when the intelligent borrowing vehicle is in a shutdown state, sending a startup instruction to a vehicle-mounted terminal remote service platform, receiving and forwarding the startup instruction to a remote switch by the vehicle-mounted terminal remote service platform, controlling the intelligent borrowing vehicle to start up according to the startup instruction by the remote switch, returning a startup result to the vehicle-mounted terminal remote service platform after startup, receiving and forwarding the startup result to the terminal program service platform by the vehicle-mounted terminal remote service platform, returning the startup result to the terminal program by the terminal program service platform, and displaying the startup result on an interface of the terminal program; when the intelligent borrowing vehicle is in a screen locking state, whether a current login user is the user is judged, if yes, the vehicle-mounted terminal is unlocked, and if not, the intelligent borrowing vehicle is displayed to be used and cannot be borrowed again.
In a specific application scenario, the terminal program service platform and a library local area network service end (i.e., the vehicle-mounted terminal remote service platform) are connected and communicated through a secure VPN (virtual private network) to ensure network security.
In one embodiment, as shown in fig. 3, step S102 includes: steps S301 to S303.
S301, when a user borrows books on a vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read label information of books in a book bucket;
s302, the vehicle-mounted terminal sends a book borrowing request to a library management system according to the tag information, and the library management system receives the book borrowing request and performs book borrowing operation;
and S303, if the vehicle-mounted terminal receives a book borrowing success result returned by the library management system, modifying the label alarm position of the book through the RFID read-write module.
In this embodiment, when a user needs to borrow a book, the vehicle-mounted terminal only needs to select a book borrowing operation, and then the vehicle-mounted terminal and the library management system perform information interaction, so that the book borrowing operation is completed. It should be noted that when a user borrows books, only the books in the book bucket can be borrowed, because the RFID reading and writing module only scans and reads the books in the book bucket, but does not read the books in other places, it is avoided that the book information list finally displayed on the vehicle-mounted terminal interface contains redundant books, occupies resources and affects user experience, and therefore the user is required to place the books to be borrowed in the book bucket.
In one embodiment, as shown in fig. 4, step S103 includes: steps S401 to S404.
S401, sending a vehicle returning application to a vehicle-mounted terminal remote service platform through the vehicle-mounted terminal, and inquiring whether the intelligent borrowing vehicle is at a vehicle returning point or not from the indoor positioning platform after the vehicle returning application is received by the vehicle-mounted terminal remote service platform;
s402, the indoor positioning platform returns a query result to the vehicle-mounted terminal remote service platform, and the vehicle-mounted terminal remote service platform receives and forwards the query result to the vehicle-mounted terminal;
s403, when the intelligent borrowing vehicle is at a vehicle returning point, the vehicle-mounted terminal sends a shutdown request or a locking request to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform sends a shutdown command or a locking command to the remote switch according to the shutdown request or the locking request, the remote switch executes shutdown operation or locking operation according to the shutdown command or the locking command, and then sends a shutdown result or a locking result to the terminal program;
s404, when the intelligent borrowing vehicle is not located at a vehicle returning point, displaying navigation information on the vehicle-mounted terminal to prompt a user to push the intelligent borrowing vehicle to the vehicle returning point according to the navigation information and finish vehicle returning; or when the intelligent borrowing vehicle is not at a vehicle returning point and the user determines to return the vehicle in the original place, finishing vehicle returning and deducting the personal points of the user.
In this embodiment, when the user needs to return the car and select to be in when returning the car operation on the vehicle mounted terminal, the vehicle mounted terminal is through confirming the application of returning the car with vehicle mounted terminal remote service platform interaction, vehicle mounted terminal remote service platform basis the application of returning the car sends the shutdown instruction to remote switch, remote switch then basis shutdown instruction control the intelligence is borrowed the car and is shut down, and after shutting down successfully, to the terminal procedure returns the shutdown result, thereby accomplishes the operation of borrowing the car.
It can be understood that, in order to avoid the intelligence to borrow the car and stop in disorder at will and put, influence other users, consequently manage the parking of the car is borrowed to intelligence through setting up fixed returning the parking spot, the user need with when returning the car intelligence propelling movement to the corresponding returning the parking spot. Of course, the user may also choose to return the car in an area other than the car return point, and in this case, the personal points of the user in the library may be used to make certain punishment on the behavior of the illegal car return (i.e. the illegal car return is not performed at the car return point), for example, the personal points may be deducted. Further, for a user who illegally returns the vehicle for the first time, point deduction can be avoided, for a user who illegally returns the vehicle for multiple times, the personal point is deducted in an increasing mode according to the number of times of violation, for example, the user illegally returns the vehicle for 2 times, the personal point is deducted for 1 time when the user illegally returns the vehicle for the second time, the personal point is deducted for 2 times when the user illegally returns the vehicle for the third time, and by analogy, corresponding personal point deduction is carried out on subsequent illegal returns.
In one embodiment, the library mobile intelligent borrowing method further comprises the following steps:
when the user carries out a car returning operation on a terminal program, the terminal program sends a car returning application to the terminal program service platform, and the terminal program service platform inquires whether the intelligent borrowing car is at a car returning point or not from the indoor positioning platform according to the car returning application;
the indoor positioning platform returns a query result to the terminal program service platform, and the terminal program service platform receives and forwards the query result to the terminal program;
when the intelligent borrowing vehicle is at a vehicle returning point, the terminal program sends a shutdown request to the terminal program service platform, the terminal program service platform sends a shutdown command to the vehicle-mounted terminal remote service platform according to the shutdown request, the vehicle-mounted terminal remote service platform receives and forwards the shutdown command to the remote switch, the remote switch returns a shutdown result to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform returns the shutdown result to the terminal program service platform, and the terminal program service platform returns the shutdown result to the terminal program;
when the intelligent borrowing vehicle is not located at a vehicle returning point, displaying navigation information on the terminal program to prompt a user to push the intelligent borrowing vehicle to the vehicle returning point according to the navigation information and finish vehicle returning; or when the intelligent borrowing vehicle is not at a vehicle returning point and the user determines to return the vehicle in the original place, finishing vehicle returning and deducting the personal points of the user.
In this embodiment, when the user needs to return the car and selects to carry out the operation of returning the car on the terminal program, the terminal program with terminal program service platform carries out information interaction, and after confirming to return the car, terminal program service platform sends the shutdown instruction to on-vehicle terminal remote service platform, the shutdown instruction is forwarded to remote switch afterwards, then by remote switch control the intelligence is borrowed the car and is shut down to accomplish the operation of returning the car.
In a specific embodiment, as shown in fig. 6, the user selects a return car at the terminal program, the terminal displays a return car interface, after the user confirms, the terminal program sends a return car application to the terminal program service platform, the terminal program service platform queries whether the intelligent borrowed car reaches a designated return position (i.e., a return point) from the indoor positioning platform, the indoor positioning platform returns a query result to the terminal program service platform, the terminal program service platform returns the query result to the terminal program, if the position of the intelligent borrowed car is correct (i.e., located at the return point), the terminal program displays information such as correct position, successful return of the intelligent borrowed car and thank for use phrases, and if the position of the intelligent borrowed car is wrong (i.e., located outside the return point), the user is prompted to push the intelligent borrowed car to the return point according to navigation, if the user chooses to remain in return (e.g., when the user has left the library), the return is done and the user's personal points are deducted.
In one embodiment, the library mobile intelligent borrowing method further comprises the following steps:
when the user performs checking operation through the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the books in the book bucket;
the vehicle-mounted terminal sends a query instruction to the library management system according to the tag information, and after receiving the query instruction, the library management system performs query operation according to the tag information and returns a query result of the book information to the vehicle-mounted terminal;
and the vehicle-mounted terminal generates and displays a book information list according to the query result.
In this embodiment, a user can check book information in the book bucket at the vehicle-mounted terminal in addition to performing car borrowing, car returning and book borrowing operations at the vehicle-mounted terminal. Specifically, information interaction is performed among the vehicle-mounted terminal, the RFID reading and writing module and the library management system, so that the form of a book information list in the book bucket is displayed on an interface for a user to check, and the user can check detailed information of books in the book information list.
It should be noted that the RFID read/write module supports two frequency bands, namely a high frequency band and an ultrahigh frequency band, and can be configured according to actual application requirements, and tag read ranges are controlled within a range of a book hopper, and tags outside the book hopper cannot be read. In a specific application scenario, the RFID read-write module can stably read and write tag information of books within 10 books.
In an embodiment, after the in-vehicle terminal generates and displays the book information list according to the query result, the method includes:
when book borrowing operation is performed by singly selecting one book in the book information list or selecting a plurality of books in the book information list in batches, the vehicle-mounted terminal sends a book borrowing request to a library management system according to the label information of the selected book, and the library management system receives the book borrowing request and performs book borrowing operation;
and if the vehicle-mounted terminal receives a book borrowing success result returned by the library management system, modifying the label alarm position of the book through the RFID read-write module.
In this embodiment, after the user views the book information list, if a book desired to be borrowed by the user exists in the book information list, the corresponding book (which may be selected singly or in multiple ways) in the book information list may be directly selected, and after the selection, the vehicle-mounted terminal performs information interaction with the library management system, thereby completing the book borrowing operation.
In a specific embodiment, as shown in fig. 7, after a user selects to view "my book bucket" at the vehicle-mounted terminal, the vehicle-mounted terminal opens the RFID read-write module, the RFID read-write module reads tag information of books in the book bucket, the vehicle-mounted terminal sends a book information query instruction to the library management system according to the tag information, the library management system queries according to the tag information and returns corresponding book information, the vehicle-mounted terminal generates a corresponding book information list according to the book information and provides single-selectable and multi-selectable book borrowing selection and shelf position information of the books; when a user selects books in the book information list to confirm book borrowing operation, the vehicle-mounted terminal sends a book borrowing request to the library management system according to the tag information of the borrowed books, the library management system returns an operation result to the vehicle-mounted terminal, and when the book borrowing is successful, the vehicle-mounted terminal modifies the tag alarm position of the corresponding book through the RFID read-write module and displays the book borrowing operation result on an interface.
In addition, the vehicle-mounted terminal can provide a related book recommendation option and a bookshelf navigation option for the user while displaying the book information list, when the user selects the related book recommendation option, the vehicle-mounted terminal sends a related book recommendation request to the book recommendation system, the book recommendation system returns the corresponding related book recommendation list to the vehicle-mounted terminal, and the user can check the detail information of the corresponding book in the related book recommendation list; when a user selects a bookshelf navigation option, the vehicle-mounted terminal sends a bookshelf navigation request to an indoor navigation platform, the indoor navigation platform inquires the position information of the intelligent borrowing vehicle from the indoor positioning platform, and the indoor navigation platform returns bookshelf navigation and map data to the vehicle-mounted terminal after acquiring the position information of the intelligent borrowing vehicle.
In an embodiment, the step S103 further includes:
when the user returns the book from the car through the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the book in the book bucket;
the vehicle-mounted terminal sends a query instruction to the library management system according to the tag information, and after receiving the query instruction, the library management system performs query operation according to the tag information and returns a query result of the book information to the vehicle-mounted terminal;
the vehicle-mounted terminal generates and displays a book information list according to the query result;
when the book information list contains the information of the un-borrowed books, prompting that the un-borrowed books are processed firstly;
after processing of un-borrowed books, the vehicle-mounted terminal obtains the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a returning point.
In this embodiment, when a user returns the book from the vehicle-mounted terminal, the vehicle-mounted terminal reads tag information of books in the book bucket through the RFID read-write model, and generates a corresponding book information list according to the tag information, and if the book information list includes books that are not borrowed, the user is prompted to complete book borrowing operation first or move the books that are not borrowed out of the book bucket, and then the book returning operation is continued. Preferably, after the user completes borrowing the book or moves the un-borrowed book out of the book bucket, the vehicle-mounted terminal generates the book information list again, confirms that the un-borrowed book does not exist, and then continues the returning operation.
In a specific embodiment, as shown in fig. 8, a user selects a returning operation at the vehicle-mounted terminal, and the vehicle-mounted terminal displays a book information list of books in the book bucket on an interface and prompts the user to complete a book borrowing operation first or return the books in the book bucket to the book shelf and then continue the returning operation; when the user confirms car borrowing and returning, the vehicle-mounted terminal handles corresponding book borrowing procedures for the user, prompts the user to finish book borrowing and prompts the user to handle the car returning operation after the book borrowing procedures are finished; the vehicle-mounted terminal sends a car returning application to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform inquires whether the intelligent borrowing car is located at a car returning point or not from the indoor positioning platform, the indoor positioning platform returns an inquiry result to the vehicle-mounted terminal remote service platform after the inquiry is completed, the vehicle-mounted terminal remote service platform returns the inquiry result to the vehicle-mounted terminal, if the position of the intelligent borrowing car is correct (namely, the intelligent borrowing car is located at the car returning point), the intelligent borrowing car prompts a user to normally return and thank the usage phrases, and displays information for reminding the user to carry books and other articles, if the position of the intelligent borrowing car is wrong (namely, the intelligent borrowing car is located outside the car returning point), the user is prompted to select navigation and push the intelligent borrowing car to the car returning point according to the navigation, when the user selects to return (for example, the user leaves the library), continuing returning the vehicle according to the user instruction; after the user confirms to return the vehicle, the vehicle-mounted terminal sends a shutdown request to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform sends a shutdown instruction to the remote switch, the remote switch controls the intelligent borrowing vehicle to shut down according to the shutdown command, and a shutdown result is returned to the terminal program after shutdown.
In one embodiment, the library mobile intelligent borrowing method further comprises the following steps:
when a user performs book retrieval operation on the vehicle-mounted terminal, the vehicle-mounted terminal displays a retrieval interface;
the vehicle-mounted terminal sends a retrieval request to a retrieval system according to the query condition, the retrieval system sends a retrieval result to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the retrieval result;
when the user selects to view the position map of the target book in the retrieval result, the vehicle-mounted terminal sends a position map request to the retrieval system, the retrieval system returns the position map of the target book to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the position map;
when the user selects to view navigation, the vehicle-mounted terminal sends a navigation request to the indoor navigation platform, the indoor navigation platform inquires the corresponding positioning information of the intelligent borrowing vehicle from the indoor positioning platform, the indoor positioning platform returns the positioning information to the indoor navigation platform, the indoor navigation platform generates a navigation map and a path according to the positioning information and returns the navigation map and the path to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the navigation map and the path.
In this embodiment, a user may perform book retrieval (for example, fuzzy retrieval or other retrieval methods) at the vehicle-mounted terminal, where the vehicle-mounted terminal reflects a corresponding retrieval result list on an interface according to a retrieval condition input by the user, and provides a corresponding location option for each book in the list; when a user selects to check the position of one book, displaying a position map corresponding to the book on an interface of the vehicle-mounted terminal, and providing a corresponding navigation option; and when the user selects the navigation option for viewing the book, the vehicle-mounted terminal displays a corresponding navigation map and a corresponding path on the interface, and guides the user to the specific position of the book.
In another specific embodiment, as shown in fig. 9, a user selects book retrieval at the in-vehicle terminal, the in-vehicle terminal displays a retrieval interface, the user inputs a fuzzy query condition at the retrieval interface, the in-vehicle terminal sends a retrieval request to a retrieval system according to the fuzzy query condition, the retrieval system returns a retrieval result to the in-vehicle terminal, the in-vehicle terminal generates a retrieval result list according to the retrieval result, and provides a location map option corresponding to each book on the retrieval result list; when a user selects a position map option, the vehicle-mounted terminal sends a position map request to the retrieval system, the retrieval system returns a position map to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the position map on an interface and provides an option for entering navigation; when a user selects to enter navigation, the vehicle-mounted terminal sends a navigation request to an indoor navigation platform, the indoor navigation platform inquires the position information of the intelligent borrowing vehicle for the indoor positioning platform, the indoor positioning platform returns the position information of the intelligent borrowing vehicle to the indoor navigation platform, the indoor navigation platform generates a corresponding navigation map and a path according to the position information and returns the navigation map and the path to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the navigation map and the path on an interface.
In addition, when a user selects associated book recommendation on the vehicle-mounted terminal, the vehicle-mounted terminal sends an associated recommendation request to the retrieval system, the retrieval system returns associated recommendation data to the vehicle-mounted terminal, and the vehicle-mounted terminal generates a corresponding associated recommendation list according to the associated recommendation data and displays the associated recommendation list on an interface. Further, the user can read or listen to the book on the associated recommendation list. Specifically, the vehicle-mounted terminal can display the two-dimensional code corresponding to the reading or listening data on an interface, and a user can read or listen to the book by scanning the code through the user terminal.
Fig. 10 is a schematic block diagram of a library mobile intelligent borrowing system according to an embodiment of the present invention, including:
the intelligent book borrowing vehicle 1001 comprises a vehicle-mounted terminal 10011 and an RFID reading and writing module 10012, wherein the vehicle-mounted terminal 10011 is used for calling the RFID reading and writing module 10012 to read tag information of books in a book bucket, book borrowing operation is carried out in a library management system based on the tag information, and an alarm position of the books is modified after the book borrowing is successful, so that the book borrowing operation is completed; the intelligent borrowing vehicle is used for acquiring the position of the intelligent borrowing vehicle 1001 through the indoor positioning platform 1003 and judging whether the intelligent borrowing vehicle 1001 is at a vehicle returning point; if the intelligent borrowing vehicle 1001 is at the returning point, ending the borrowing and controlling the vehicle-mounted terminal 10011 to automatically shut down; if the intelligent borrowing vehicle 1001 is not located at the returning point, guiding the user to push the intelligent borrowing vehicle 1001 to the returning point, and then ending the borrowing; the RFID read-write module 10012 is configured to read tag information of a book in the book bucket;
the user terminal 1002 is configured to scan the two-dimensional code on the intelligent borrowing vehicle 1001 to enter a corresponding terminal program, and perform login authorization on the terminal program, so that the vehicle-mounted terminal 1011 on the intelligent borrowing vehicle 101 is in an unlocked state.
Since the embodiment of the system part corresponds to the embodiment of the method part, the embodiment of the system part is described with reference to the embodiment of the method part, and is not repeated here.
The embodiments are described in a progressive manner in the specification, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other. For the system disclosed by the embodiment, the description is relatively simple because the system corresponds to the method disclosed by the embodiment, and the relevant points can be referred to the method part for description. It should be noted that, for those skilled in the art, it is possible to make several improvements and modifications to the present application without departing from the principle of the present application, and such improvements and modifications also fall within the scope of the claims of the present application.
It is further noted that, in the present specification, relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.

Claims (10)

1. The library mobile intelligent borrowing method is characterized by comprising the following steps:
scanning a two-dimensional code on an intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program, and performing login authorization on the terminal program so as to enable a vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocked state;
when a user borrows books on a vehicle-mounted terminal, the vehicle-mounted terminal calls an RFID read-write module to read label information of the books in a book bucket, then borrows the books in a library management system based on the label information, and modifies label alarm positions of the books after the books are successfully borrowed, so that book borrowing operation is completed;
when the user returns the vehicle on the vehicle-mounted terminal, the vehicle-mounted terminal acquires the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down or lock; and if the intelligent borrowing vehicle is not located at the vehicle returning point, guiding the user to push the intelligent borrowing vehicle to the vehicle returning point, and then ending the vehicle borrowing.
2. The library mobile intelligent borrowing method according to claim 1, wherein the step of scanning a two-dimensional code on an intelligent borrowing vehicle through a user terminal to enter a corresponding terminal program and performing login authorization on the terminal program so as to enable a vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocked state comprises the steps of:
scanning the two-dimensional code on the intelligent borrowing vehicle through the user terminal to enter a corresponding terminal program, and prompting a user to confirm the borrowing vehicle on the terminal program;
when the user confirms the borrowing, the terminal program sends binding information and starting information to a terminal program service platform, and the terminal program service platform judges the current state of the intelligent borrowing vehicle;
when the intelligent borrowing vehicle is in a shutdown state, the terminal program service platform sends a startup instruction to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform receives and forwards the startup instruction to a remote switch, the remote switch returns a startup result to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform receives and forwards the startup result to the terminal program service platform, and the terminal program service platform returns the startup result to a terminal program;
when the intelligent borrowing vehicle is in a screen locking state, the terminal program service platform judges whether the current login user is the user or not according to the binding information;
if the current login user is the user, sending a screen unlocking command to the vehicle-mounted terminal so as to enable the vehicle-mounted terminal to be in an unlocking state; and if the current login user is not the user, returning the information of the failure of the car borrowing to the terminal program.
3. The library mobile intelligent borrowing method according to claim 1, wherein when a user borrows books on a vehicle-mounted terminal, the vehicle-mounted terminal calls an RFID read-write module to read tag information of the books in a book bucket, then borrows the books on a library management system based on the tag information, and modifies tag alarm positions of the books after the books are successfully borrowed, so that the book borrowing operation is completed, and the library mobile intelligent borrowing method comprises the following steps:
when a user borrows books on the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the books in the book bucket;
the vehicle-mounted terminal sends a book borrowing request to a library management system according to the tag information, and the library management system receives the book borrowing request and performs book borrowing operation;
and if the vehicle-mounted terminal receives a book borrowing success result returned by the library management system, modifying the label alarm position of the book through the RFID read-write module.
4. The library mobile intelligent borrowing method according to claim 1, wherein when the user performs a vehicle returning operation on a vehicle-mounted terminal, the vehicle-mounted terminal obtains the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is at a vehicle returning point; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down or lock; if the intelligent borrowing vehicle is not located the returning point, the user is guided to push the intelligent borrowing vehicle to the returning point, and then the vehicle borrowing is finished, and the method comprises the following steps:
sending a vehicle returning application to the vehicle-mounted terminal remote service platform through the vehicle-mounted terminal, and inquiring whether the intelligent borrowing vehicle is at a vehicle returning point or not from the indoor positioning platform after the vehicle returning application is received by the vehicle-mounted terminal remote service platform;
the indoor positioning platform returns a query result to the vehicle-mounted terminal remote service platform, and the vehicle-mounted terminal remote service platform receives and forwards the query result to the vehicle-mounted terminal;
when the intelligent borrowing vehicle is at a vehicle returning point, the vehicle-mounted terminal sends a shutdown request or a locking request to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform sends a shutdown command or a locking command to the remote switch according to the shutdown request or the locking request, the remote switch executes shutdown operation or locking operation according to the shutdown command or the locking command, and then sends a shutdown result or a locking result to the terminal program;
when the intelligent borrowing vehicle is not located at a vehicle returning point, displaying navigation information on the vehicle-mounted terminal to prompt a user to push the intelligent borrowing vehicle to the vehicle returning point according to the navigation information and finish vehicle returning; or when the intelligent borrowing vehicle is not at a vehicle returning point and the user determines to return the vehicle in the original place, finishing vehicle returning and deducting the personal points of the user.
5. The library mobile intelligent borrowing method according to claim 1, further comprising:
when the user carries out a car returning operation on a terminal program, the terminal program sends a car returning application to the terminal program service platform, and the terminal program service platform inquires whether the intelligent borrowing car is at a car returning point or not from the indoor positioning platform according to the car returning application;
the indoor positioning platform returns a query result to the terminal program service platform, and the terminal program service platform receives and forwards the query result to the terminal program;
when the intelligent borrowing vehicle is at a vehicle returning point, the terminal program sends a shutdown request to the terminal program service platform, the terminal program service platform sends a shutdown command to the vehicle-mounted terminal remote service platform according to the shutdown request, the vehicle-mounted terminal remote service platform receives and forwards the shutdown command to the remote switch, the remote switch returns a shutdown result to the vehicle-mounted terminal remote service platform, the vehicle-mounted terminal remote service platform returns the shutdown result to the terminal program service platform, and the terminal program service platform returns the shutdown result to the terminal program;
when the intelligent borrowing vehicle is not located at a vehicle returning point, displaying navigation information on the terminal program to prompt a user to push the intelligent borrowing vehicle to the vehicle returning point according to the navigation information and finish vehicle returning; or when the intelligent borrowing vehicle is not at a vehicle returning point and the user determines to return the vehicle in the original place, finishing vehicle returning and deducting the personal points of the user.
6. The library mobile intelligent borrowing method according to claim 1, further comprising:
when the user performs checking operation through the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the books in the book bucket;
the vehicle-mounted terminal sends a query instruction to the library management system according to the tag information, and after receiving the query instruction, the library management system performs query operation according to the tag information and returns a query result of the book information to the vehicle-mounted terminal;
and the vehicle-mounted terminal generates and displays a book information list according to the query result.
7. The method for intelligent library borrowing according to claim 6, wherein after the vehicle-mounted terminal generates and displays a book information list according to the query result, the method comprises the following steps:
when book borrowing operation is performed by singly selecting one book in the book information list or selecting a plurality of books in the book information list in batches, the vehicle-mounted terminal sends a book borrowing request to a library management system according to the label information of the selected book, and the library management system receives the book borrowing request and performs book borrowing operation;
and if the vehicle-mounted terminal receives a book borrowing success result returned by the library management system, modifying the label alarm position of the book through the RFID read-write module.
8. The library mobile intelligent borrowing method according to claim 1, wherein when the user performs a vehicle returning operation on a vehicle-mounted terminal, the vehicle-mounted terminal obtains the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is at a vehicle returning point, and the method comprises the following steps:
when the user returns the book from the car through the vehicle-mounted terminal, the vehicle-mounted terminal calls the RFID read-write module to read the label information of the book in the book bucket;
the vehicle-mounted terminal sends a query instruction to the library management system according to the tag information, and after receiving the query instruction, the library management system performs query operation according to the tag information and returns a query result of the book information to the vehicle-mounted terminal;
the vehicle-mounted terminal generates and displays a book information list according to the query result;
when the book information list contains the information of the un-borrowed books, prompting that the un-borrowed books are processed firstly;
after processing of un-borrowed books, the vehicle-mounted terminal obtains the position of the intelligent borrowing vehicle through an indoor positioning platform and judges whether the intelligent borrowing vehicle is in a returning point.
9. The library mobile intelligent borrowing method according to claim 1, further comprising:
when a user performs book retrieval operation on the vehicle-mounted terminal, the vehicle-mounted terminal displays a retrieval interface;
the vehicle-mounted terminal sends a retrieval request to a retrieval system according to the query condition, the retrieval system sends a retrieval result to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the retrieval result;
when the user selects to view the position map of the target book in the retrieval result, the vehicle-mounted terminal sends a position map request to the retrieval system, the retrieval system returns the position map of the target book to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the position map;
when the user selects to view navigation, the vehicle-mounted terminal sends a navigation request to the indoor navigation platform, the indoor navigation platform inquires the corresponding positioning information of the intelligent borrowing vehicle from the indoor positioning platform, the indoor positioning platform returns the positioning information to the indoor navigation platform, the indoor navigation platform generates a navigation map and a path according to the positioning information and returns the navigation map and the path to the vehicle-mounted terminal, and the vehicle-mounted terminal displays the navigation map and the path.
10. The utility model provides a system is borrowed to library's removal wisdom, a serial communication port, includes:
the intelligent book borrowing vehicle comprises a vehicle-mounted terminal and an RFID reading and writing module, wherein the vehicle-mounted terminal is used for calling the RFID reading and writing module to read tag information of books in a book hopper, then book borrowing operation is carried out in a library management system based on the tag information, and an alarm position of the books is modified after the book borrowing is successful, so that the book borrowing operation is completed; the intelligent borrowing vehicle is used for acquiring the position of the intelligent borrowing vehicle through an indoor positioning platform and judging whether the intelligent borrowing vehicle is in a vehicle returning point or not; if the intelligent borrowing vehicle is located at the vehicle returning point, ending the borrowing and controlling the vehicle-mounted terminal to automatically shut down; if the intelligent borrowing vehicle is not located at the vehicle returning point, guiding the user to push the intelligent borrowing vehicle to the vehicle returning point, and then ending the vehicle borrowing; the RFID read-write module is used for reading label information of books in the book bucket;
and the user terminal is used for scanning the two-dimensional code on the intelligent borrowing vehicle to enter a corresponding terminal program and performing login authorization on the terminal program so as to enable the vehicle-mounted terminal on the intelligent borrowing vehicle to be in an unlocking state.
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