CN109840999B - Antenna controller and refueling equipment - Google Patents

Antenna controller and refueling equipment Download PDF

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Publication number
CN109840999B
CN109840999B CN201711208111.1A CN201711208111A CN109840999B CN 109840999 B CN109840999 B CN 109840999B CN 201711208111 A CN201711208111 A CN 201711208111A CN 109840999 B CN109840999 B CN 109840999B
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vehicle
module
refueled
main control
antenna
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CN109840999A (en
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桂杰
张凯
秦建良
韩召
蔡力立
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Beijing Juli Science and Technology Co Ltd
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Beijing Juli Science and Technology Co Ltd
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Abstract

The invention provides an antenna controller and refueling equipment, wherein the antenna controller comprises a main control module, an antenna communication module and a network communication module, wherein the main control module is respectively connected with the antenna communication module and the network communication module; the network communication module is used for receiving an acquisition instruction sent by the oiling machine; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled and sending the obtaining instruction to the main control module; the main control module sends the acquisition instruction to the antenna communication module; the antenna communication module is used for acquiring card information of the vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module; the main control module is also used for sending the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine so as to refuel the vehicle to be refueled through the refueling machine. The antenna controller and the oiling device provided by the invention improve the oiling efficiency.

Description

Antenna controller and refueling equipment
Technical Field
The invention relates to the technical field of vehicle refueling, in particular to an antenna controller and refueling equipment.
Background
With the increasing scale of vehicles, the refueling system of the gas station is also important in order to meet the refueling demand of the vehicles.
In the existing refueling system, a refueling machine is used for refueling a vehicle, a refueling card needs to be inserted into a clamping groove of the refueling machine firstly in the refueling process, the refueling machine needs to perform a series of pre-reading instructions to acquire corresponding card information, the refueling machine can refuel the vehicle after the card information is acquired, however, the time for acquiring the card information needs more time, so that the refueling efficiency is influenced, particularly when a plurality of refueling vehicles are refueled, the waiting time of a driver is longer, and the refueling efficiency is lower.
Therefore, the existing refueling mode is adopted, so that the refueling efficiency is low.
Disclosure of Invention
The invention provides an antenna controller and refueling equipment, and aims to improve refueling efficiency.
An embodiment of the present invention provides an antenna controller, including:
the antenna communication module is connected with the main control module;
the network communication module is used for receiving an acquisition instruction sent by the oiling machine; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled and sending the obtaining instruction to the main control module;
the main control module sends the acquisition instruction to the antenna communication module;
the antenna communication module is used for acquiring card information of a vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module;
the main control module is also used for sending the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine so as to refuel the vehicle to be refueled through the refueling machine.
In an embodiment of the present invention, the antenna controller further includes:
the authentication module is connected with the main control module;
the authentication module is used for generating a random number when receiving an authentication instruction sent by the main control module and sending the random number to the vehicle-mounted wireless terminal;
the authentication module is further used for receiving identity authentication information sent by the vehicle-mounted wireless terminal, decrypting the identity authentication information and determining that the vehicle-mounted wireless terminal is a legal vehicle-mounted wireless terminal according to the identity authentication information; the identity authentication information comprises the license plate number of the vehicle to be refueled encrypted by using the random number.
In an embodiment of the present invention, the antenna communication module is further configured to issue a broadcast message, and receive a broadcast response message sent by the vehicle-mounted wireless terminal; the broadcast message is used to determine whether a vehicle is to be refueled; the broadcast response message is used to indicate a vehicle to be refueled.
In an embodiment of the present invention, the antenna controller further includes:
the storage module is connected with the main control module;
the storage module is used for storing the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled.
In an embodiment of the present invention, the antenna controller further includes:
the state indicating module is connected with the main control module;
the state indicating module is used for indicating the working state of the antenna controller.
In an embodiment of the present invention, the antenna communication module includes at least one communication antenna;
the at least one communication antenna is used for acquiring card information of the vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module.
In an embodiment of the present invention, the antenna controller further includes:
the power supply module is connected with the main control module, the antenna communication module and the network communication module;
the power supply module is used for supplying power for the main control module, the antenna communication module and the network communication module.
In an embodiment of the present invention, the antenna controller further includes:
the power supply module is connected with the main control module, the antenna communication module and the network communication module through the voltage conversion module;
the voltage conversion module is used for converting the voltage output by the power supply module and outputting the processed voltage to the main control module, the antenna communication module and the network communication module.
In an embodiment of the present invention, the main control module is a micro control unit MCU.
An embodiment of the present invention further provides a refueling apparatus, including:
the antenna controller and at least one oiling machine;
the antenna controller is the antenna controller according to any one of the embodiments.
According to the antenna controller and the refueling device provided by the embodiment of the invention, when a vehicle to be refueled enters a refueling area, the network communication module is used for receiving an acquisition instruction sent by the refueling machine; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled and sending the obtaining instruction to the main control module; the main control module sends the acquisition instruction to the antenna communication module; the antenna communication module is used for acquiring card information of the vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module; the main control module is also used for sending the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine so as to refuel the vehicle to be refueled through the refueling machine. Before refueling, the refueling machine does not need to read card information on the vehicle to be refueled, and only needs to receive the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled sent by the antenna controller, and refueled according to the received license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, so that the refueling efficiency is improved.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and together with the description, serve to explain the principles of the disclosure.
Fig. 1 is a schematic structural diagram of an antenna controller according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of another antenna controller according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a refueling device according to an embodiment of the present invention.
With the foregoing drawings in mind, certain embodiments of the disclosure have been shown and described in more detail below. These drawings and written description are not intended to limit the scope of the disclosed concepts in any way, but rather to illustrate the concepts of the disclosure to those skilled in the art by reference to specific embodiments.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the exemplary embodiments below are not intended to represent all implementations consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.
The terms "first," "second," "third," "fourth," and the like in the description and in the claims, as well as in the drawings, if any, are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the invention described herein are, for example, capable of operation in sequences other than those illustrated or otherwise described herein. Furthermore, the terms "comprises," "comprising," and "having," and any variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed, but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
In the current oiling system, the oiling card needs to be inserted into the clamping groove of the oiling machine, the oiling machine needs to carry out a series of pre-reading instructions to acquire corresponding card information, however, the card information acquisition time needs more time, so that the oiling efficiency is influenced, and particularly when the oiling vehicles are more, the waiting time of a driver is longer, and the oiling efficiency is lower. Therefore, the existing refueling mode is adopted, so that the refueling efficiency is low. In order to improve the oiling efficiency, the embodiment of the invention provides the antenna controller, wherein once a vehicle to be oiled enters an oiling area, the network communication module is used for receiving an acquisition instruction sent by the oiling machine; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled and sending the obtaining instruction to the main control module; the main control module sends the acquisition instruction to the antenna communication module; the antenna communication module is used for acquiring card information of the vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module; the main control module is also used for sending the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine so as to refuel the vehicle to be refueled through the refueling machine. Before refueling, the refueling machine does not need to read card information on the vehicle to be refueled, and only needs to receive the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled sent by the antenna controller, and refueled according to the received license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, so that the refueling efficiency is improved.
The technical solution of the present invention and how to solve the above technical problems will be described in detail with specific examples. The following specific embodiments may be combined with each other, and details of the same or similar concepts or processes may not be repeated in some embodiments. Embodiments of the present invention will be described below with reference to the accompanying drawings.
Fig. 1 is a schematic structural diagram of an antenna controller 10 according to an embodiment of the present invention, please refer to fig. 1, which, of course, is only illustrated in fig. 1, but the present invention is not limited thereto. The antenna controller 10 may include:
the main control module 101 is connected with the antenna communication module 102 and the network communication module 103 respectively.
The network communication module 103 is used for receiving an acquisition instruction sent by the fuel dispenser; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, and sending the obtaining instruction to the main control module 101.
The main control module 101 sends the acquisition instruction to the antenna communication module 102.
The antenna communication module 102 is configured to obtain card information of a vehicle to be refueled, and send the card information of the vehicle to be refueled to the main control module 101.
The main control module 101 is further configured to send the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine, so as to refuel the vehicle to be refueled through the refueling machine.
Optionally, the main control module 101 is a Micro Controller Unit (MCU), and of course, the embodiment of the present invention is only described by taking the main control module 101 as the MCU, but the present invention is not limited thereto.
Optionally, the card information of the vehicle to be refueled includes at least a remaining amount. Of course, other information, such as historical consumption records, may also be included, and may be specifically set according to actual needs, and here, the embodiment of the present invention is only described by taking the example that the card information of the vehicle to be refueled includes at least the remaining amount, but the present invention is not limited thereto.
Optionally, before receiving the obtaining instruction sent by the fuel dispenser, the antenna communication module 102 is further configured to issue a broadcast message and receive a broadcast response message sent by the vehicle-mounted wireless terminal; the broadcast message is used to determine whether a vehicle is to be refueled; the broadcast response message is used to indicate that a vehicle is to be refueled.
After the antenna controller 10 is turned on, the antenna communication module 102 of the antenna controller issues a broadcast message to determine whether a vehicle to be refueled is in the fueling station area through the broadcast message, and when a broadcast response message sent by the vehicle-mounted wireless terminal is received, the vehicle to be refueled is determined in the fueling station area, and then an acquisition instruction sent by the fueling machine is received. It should be noted that, in the embodiment of the present invention, the antenna communication module 102 may issue the broadcast message in real time, or may send the broadcast message at preset time intervals, and here, as to the time mode in which the antenna communication module 102 issues the broadcast message, the embodiment of the present invention is not limited specifically. For example, in the embodiment of the present invention, the antenna communication module 102 issues the broadcast message in real time, so that the in-vehicle wireless terminal receives the broadcast message in time, thereby sending a broadcast response message to the antenna communication module 102.
Therefore, in the embodiment of the present invention, by setting the antenna controller 10, when receiving the acquisition instruction sent by the fueling machine, the network communication module 103 of the antenna controller 10 sends the acquisition instruction to the main control module 101, the main control module 101 sends the acquisition instruction to the antenna communication module 102, so that the antenna communication module 102 acquires the card information of the vehicle to be fueled and sends the card information of the vehicle to be fueled to the main control module 101, and the main control module 101 sends the license plate number of the vehicle to be fueled and the card information of the vehicle to be fueled to the fueling machine, that is, before fueling, the fueling machine need not read the card information of the vehicle to be fueled, only needs to receive the license plate number of the vehicle to be fueled and the card information of the vehicle to be fueled sent by the antenna controller 10, and can refuel the vehicle to be fueled according to the received license plate number of the vehicle to be fueled and the card information of the vehicle to be fueled, thereby improving the efficiency of refueling.
In the antenna controller 10 provided in the embodiment of the present invention, the network communication module 103 is configured to receive an acquisition instruction sent by the fueling machine when a vehicle to be fueled enters a fueling area; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, and sending the obtaining instruction to the main control module 101; the main control module 101 sends the acquisition instruction to the antenna communication module 102; the antenna communication module 102 is used for acquiring card information of a vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module 101; the main control module 101 is further configured to send the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine, so as to refuel the vehicle to be refueled through the refueling machine. Before refueling, the refueling machine does not need to read card information on the vehicle to be refueled, and only needs to receive the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled sent by the antenna controller 10 and refuel the vehicle to be refueled according to the received license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, so that the refueling efficiency is improved.
Based on the embodiment shown in fig. 1, on the basis of the embodiment shown in fig. 1, please refer to fig. 2, fig. 2 is a schematic structural diagram of another antenna controller 10 according to an embodiment of the present invention, where the antenna controller 10 may further include:
and the authentication module 104, wherein the authentication module 104 is connected with the main control module 101.
The authentication module 104 is configured to generate a random number when receiving an authentication instruction sent by the main control module 101, and send the random number to the vehicle-mounted wireless terminal.
The authentication module 104 is further configured to receive identity authentication information sent by the vehicle-mounted wireless terminal, decrypt the identity authentication information, and determine that the vehicle-mounted wireless terminal is a legal vehicle-mounted wireless terminal according to the identity authentication information; the identity authentication information comprises the license plate number of the vehicle to be refueled, which is encrypted by using a random number.
In the embodiment of the present invention, when the legitimacy of the vehicle-mounted wireless terminal is authenticated, the authentication module 104 of the antenna controller 10 randomly generates a random number and sends the random number to the vehicle-mounted wireless terminal, when the vehicle-mounted wireless terminal receives the random number, the random number is used as a password to encrypt the license plate number of the vehicle to be refueled corresponding to the vehicle-mounted wireless terminal, and the encrypted license plate number of the vehicle to be refueled is sent to the authentication module 104 as the identity authentication information, after receiving the identity authentication information, the authentication module 104 decrypts the identity authentication information by using the random number, if the license plate number information of the vehicle to be refueled is obtained, the vehicle-mounted wireless terminal is determined to be a legitimate vehicle-mounted wireless terminal, otherwise, the vehicle-mounted wireless terminal is determined to be an illegitimate vehicle-mounted wireless terminal.
For example, in the embodiment of the present invention, by providing the authentication module 104, it is intended to: the legality of the vehicle-mounted wireless terminal can be authenticated through the authentication module 104, and when the identity of the vehicle-mounted wireless terminal is determined to be legal, the vehicle to be refueled corresponding to the vehicle-mounted wireless terminal is refueled.
Optionally, the antenna controller 10 may further include:
and the storage module 105, wherein the storage module 105 is connected with the main control module 101.
The storage module 105 is used for storing the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled.
Optionally, in order to enable the operator to know the working state of the antenna controller 10 in time, for example, the working state may be a normal working state, a fault state, or a stop working state, the antenna controller 10 may further include:
and the state indicating module 106 is connected with the main control module 101.
The status indication module 106 is used for indicating the operation status of the antenna controller 10.
Optionally, in the embodiment of the present invention, the status indication module 106 may be implemented by providing three indicator lights, where the three indicator lights may be a red indicator light, a green indicator light, and a yellow indicator light. When the antenna controller 10 is in a normal working state, the main control module 101 instructs the green indicator light to turn on, and the staff can determine that the antenna controller 10 is in the normal working state according to the green indicator light. When the antenna controller 10 is in the stop state, the main control module 101 instructs the red indicator light to turn on, and the operator can determine that the antenna controller 10 is in the stop state according to the red indicator light. When the antenna controller 10 fails, the main control module 101 instructs the yellow indicator light to turn on, and the staff can determine that the antenna controller 10 is in a failure state according to the yellow indicator light. Of course, the embodiment of the present invention is only described by taking an example that the status indication module 106 can be implemented by providing three indication lamps, and the status indication module 106 can be specifically configured according to actual needs, and the present invention is not further limited to why the status indication module 106 specifically can determine the operating status of the antenna controller 10 according to the status indication module 106.
By way of example, in the embodiment of the present invention, the status indication module 106 is configured to: the operating status of the antenna controller 10 can be displayed by the status indication module 106, so that the operator can timely obtain the current status of the antenna controller 10.
Optionally, in this embodiment of the present invention, the antenna communication module includes at least one communication antenna.
At least one communication antenna is used for obtaining the card information of the vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module 101.
The number of the at least one communication antenna may be 2, or 4, or of course, may also be 6, and may be specifically set according to actual needs, where the number of the at least one communication antenna is specifically what, and the present invention is not limited further. Illustratively, in an embodiment of the present invention, the number of the at least one communication antenna is 4. Of course, the embodiment of the present invention is described by taking 4 communication antennas as an example, but the embodiment of the present invention is not limited thereto.
When the antenna controller 10 includes 4 communication antennas, optionally, the 4 communication antennas may be uniformly disposed on the antenna controller 10 so that the 4 communication antennas cover the fueling area where the antenna controller 10 is located, thereby reading card information of the vehicle to be fueled.
Illustratively, in the embodiment of the present invention, by providing at least one communication antenna on the antenna controller 10, the purpose is to: the at least one communication antenna can be made to cover the fueling area where the antenna controller 10 is located, so that when the vehicle to be fueled enters the fueling area, the card information of the vehicle to be fueled is read through the communication antenna on the antenna controller 10.
Optionally, the antenna controller 10 may further include:
the power module 107, the power module 107 is connected with the main control module 101, the antenna communication module 102 and the network communication module 103.
The power module 107 is used for supplying power to the main control module 101, the antenna communication module 102 and the network communication module 103.
In the embodiment of the present invention, the power module 107 may be connected to not only the power module 107 and the main control module 101, the antenna communication module 102 and the network communication module 103, but also the authentication module 104, the status indication module 106 and the storage module 105.
For example, in the embodiment of the present invention, by providing the power module 107, the purpose is to: the power module 107 can supply power to the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105, so as to ensure the normal operation of each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105.
Since the voltage values required by each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105 may be different, in order to ensure that power is normally supplied to each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105, the antenna controller 10 may further include:
the voltage conversion module 108 and the power supply module 107 are connected to the main control module 101, the antenna communication module 102 and the network communication module 103 through the voltage conversion module 108.
The voltage conversion module 108 is configured to perform conversion processing on the voltage output by the power supply module 107, and output the processed voltage to the main control module 101, the antenna communication module 102, and the network communication module 103.
By way of example, in the embodiment of the present invention, the voltage conversion module 108 is provided to: because the voltage values required by each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105 may be different, before the power module 107 supplies power to each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105, the voltage output by the power module 107 may be converted by the voltage conversion module 108, so that the voltage output by the voltage conversion module 108 satisfies the voltage values required by each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105, thereby avoiding the voltage values required by each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105 due to an excessive input voltage, The network communication module 103, the authentication module 104, the status indication module 106 or the storage module 105 are damaged, so that the normal operation of each of the main control module 101, the antenna communication module 102, the network communication module 103, the authentication module 104, the status indication module 106 and the storage module 105 is ensured.
In the practical application process, the antenna communication module 102 of the antenna controller 10 issues a broadcast message in real time to determine whether a vehicle to be refueled is in the refueling station area through the broadcast message, when receiving a broadcast response message sent by the vehicle-mounted wireless terminal, the vehicle to be refueled is determined in the refueling station area, then the legitimacy of the vehicle-mounted wireless terminal is authenticated, when authenticating, the authentication module 104 of the antenna controller 10 randomly generates a random number and sends the random number to the vehicle-mounted wireless terminal, when receiving the random number, the vehicle-mounted wireless terminal encrypts the random number as a password for the license plate number of the vehicle to be refueled corresponding to the vehicle-mounted wireless terminal, and sends the encrypted license plate number of the vehicle to be refueled as identity authentication information to the authentication module 104, after receiving the identity authentication information, decrypting the identity authentication information by using the random number, if license plate number information of the vehicle to be refueled is obtained, confirming that the vehicle-mounted wireless terminal is a legal vehicle-mounted wireless terminal, and receiving an acquisition instruction sent by the refueling machine by the network communication module 103; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, and the obtaining instruction is sent to the main control module 101, the main control module 101 is used for obtaining the card information of the vehicle to be refueled through the antenna communication module 102, and sending the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine, so that the vehicle to be refueled is refueled through the refueling machine. Before refueling, the refueling machine does not need to read card information on the vehicle to be refueled, and only needs to receive the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled sent by the antenna controller 10 and refuel the vehicle to be refueled according to the received license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled, so that the refueling efficiency is improved.
Fig. 3 is a schematic structural diagram of a refueling apparatus 30 according to an embodiment of the present invention, and referring to fig. 3, the refueling apparatus 30 may include:
an antenna controller 10 and at least one fuel dispenser 20.
The antenna controller is the antenna controller 10 shown in any of the above embodiments.
The fueling device 30 according to the embodiment of the present invention may implement the technical solution of the antenna controller 10 according to any one of the above embodiments, and the implementation principle and the beneficial effects thereof are similar and will not be described herein again.
Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure disclosed herein. This application is intended to cover any variations, uses, or adaptations of the disclosure following, in general, the principles of the disclosure and including such departures from the present disclosure as come within known or customary practice within the art to which the disclosure pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the disclosure being indicated by the following claims.
It will be understood that the present disclosure is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims (9)

1. An antenna controller, comprising:
the antenna communication module is connected with the main control module;
the network communication module is used for receiving an acquisition instruction sent by the oiling machine; the obtaining instruction is used for obtaining the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled and sending the obtaining instruction to the main control module;
the main control module sends the acquisition instruction to the antenna communication module;
the antenna communication module is used for acquiring card information of a vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module;
the main control module is also used for sending the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled to the refueling machine so as to refuel the vehicle to be refueled through the refueling machine;
the antenna controller also comprises an authentication module, and the authentication module is connected with the main control module;
the authentication module is used for generating a random number when receiving an authentication instruction sent by the main control module and sending the random number to the vehicle-mounted wireless terminal;
the authentication module is further used for receiving identity authentication information sent by the vehicle-mounted wireless terminal, decrypting the identity authentication information and determining that the vehicle-mounted wireless terminal is a legal vehicle-mounted wireless terminal according to the identity authentication information; the identity authentication information comprises the license plate number of the vehicle to be refueled encrypted by using the random number.
2. The controller of claim 1,
the antenna communication module is also used for issuing broadcast messages and receiving broadcast response messages sent by the vehicle-mounted wireless terminal; the broadcast message is used to determine whether a vehicle is to be refueled; the broadcast response message is used to indicate a vehicle to be refueled.
3. The controller of claim 1, further comprising:
the storage module is connected with the main control module;
the storage module is used for storing the license plate number of the vehicle to be refueled and the card information of the vehicle to be refueled.
4. The controller of claim 1, further comprising:
the state indicating module is connected with the main control module;
the state indicating module is used for indicating the working state of the antenna controller.
5. The controller according to any one of claims 1 to 4,
the antenna communication module comprises at least one communication antenna;
the at least one communication antenna is used for acquiring card information of the vehicle to be refueled and sending the card information of the vehicle to be refueled to the main control module.
6. The controller according to any one of claims 1 to 4, further comprising:
the power supply module is connected with the main control module, the antenna communication module and the network communication module;
the power supply module is used for supplying power for the main control module, the antenna communication module and the network communication module.
7. The controller of claim 6, further comprising:
the power supply module is connected with the main control module, the antenna communication module and the network communication module through the voltage conversion module;
the voltage conversion module is used for converting the voltage output by the power supply module and outputting the processed voltage to the main control module, the antenna communication module and the network communication module.
8. The controller according to any one of claims 1 to 4,
the main control module is a Micro Control Unit (MCU).
9. A fuel filling apparatus, comprising:
the antenna controller and at least one oiling machine;
the antenna controller is as claimed in any one of the preceding claims 1-8.
CN201711208111.1A 2017-11-27 2017-11-27 Antenna controller and refueling equipment Active CN109840999B (en)

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