WO2015188622A1 - 一种车辆检测方法、移动终端和车载终端 - Google Patents

一种车辆检测方法、移动终端和车载终端 Download PDF

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Publication number
WO2015188622A1
WO2015188622A1 PCT/CN2015/070721 CN2015070721W WO2015188622A1 WO 2015188622 A1 WO2015188622 A1 WO 2015188622A1 CN 2015070721 W CN2015070721 W CN 2015070721W WO 2015188622 A1 WO2015188622 A1 WO 2015188622A1
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WIPO (PCT)
Prior art keywords
vehicle
terminal
mobile terminal
operating state
state data
Prior art date
Application number
PCT/CN2015/070721
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English (en)
French (fr)
Inventor
刘均
吕霖
Original Assignee
深圳市元征科技股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市元征科技股份有限公司 filed Critical 深圳市元征科技股份有限公司
Priority to KR1020167034363A priority Critical patent/KR20170015855A/ko
Priority to US14/781,223 priority patent/US20160148441A1/en
Priority to JP2016572740A priority patent/JP2017518920A/ja
Priority to EP15806819.7A priority patent/EP3157228A4/en
Publication of WO2015188622A1 publication Critical patent/WO2015188622A1/zh

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Classifications

    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C5/00Registering or indicating the working of vehicles
    • G07C5/008Registering or indicating the working of vehicles communicating information to a remotely located station
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C5/00Registering or indicating the working of vehicles
    • G07C5/08Registering or indicating performance data other than driving, working, idle, or waiting time, with or without registering driving, working, idle or waiting time
    • G07C5/0808Diagnosing performance data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • H04W4/48Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P] for in-vehicle communication
    • 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
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • H04W4/44Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P] for communication between vehicles and infrastructures, e.g. vehicle-to-cloud [V2C] or vehicle-to-home [V2H]

Definitions

  • the present invention relates to the field of vehicle detection technologies, and in particular, to a vehicle detection method, a mobile terminal, and an in-vehicle terminal.
  • vehicle operating status information such as vehicle running speed, engine speed, engine temperature, running mileage, headlight status, running time, gear position, seat belt status, door status, etc.
  • vehicle operating status information such as vehicle running speed, engine speed, engine temperature, running mileage, headlight status, running time, gear position, seat belt status, door status, etc.
  • vehicle operating status information are generally displayed on the dashboard of the vehicle cockpit, the owner Only after the after-sales maintenance department of the car 4S point or other vehicle maintenance points, using the diagnostic tools of the vehicle manufacturer to diagnose the fault, the owner can know the overall operating state of the entire vehicle electronic control system, and the fault diagnosis can be performed because it is necessary to go to the designated service point.
  • Most car owners only go to the vehicle for fault diagnosis after the vehicle has failed. However, when the vehicle fails, it has actually caused inconvenience to the owner of the trip.
  • the invention provides a vehicle detecting method, a mobile terminal and an in-vehicle terminal, which are used for facilitating diagnosis of a vehicle by a vehicle owner.
  • a first aspect of the present invention provides a vehicle detection method, including:
  • the mobile terminal establishes a wireless connection with the vehicle-mounted terminal, wherein the vehicle-mounted terminal is connected to the OBD of the vehicle;
  • the mobile terminal sends a vehicle diagnosis command to the vehicle-mounted terminal
  • the mobile terminal receives vehicle operating state data from the vehicle terminal, wherein the vehicle operating state data includes: a vehicle operating state result obtained by the vehicle-mounted terminal diagnosing the vehicle by the OBD under an instruction of the vehicle diagnostic command;
  • the mobile terminal generates a vehicle operating status report based on the vehicle operating state data.
  • Another aspect of the present invention provides a vehicle detection method, including:
  • the above vehicle terminal establishes a wireless connection with the mobile terminal
  • the vehicle-mounted terminal receives a vehicle diagnostic command from the mobile terminal
  • the vehicle-mounted terminal diagnoses the vehicle by the OBD under the instruction of the vehicle diagnostic command to obtain a vehicle operating state result
  • the vehicle-mounted terminal transmits vehicle operating state data including the vehicle operating state result to the mobile terminal.
  • a third aspect of the present invention provides a mobile terminal, including:
  • connection module configured to establish a wireless connection between the mobile terminal and the vehicle-mounted terminal, wherein the vehicle-mounted terminal is connected to an on-board diagnostic system OBD of the vehicle;
  • a sending module configured to send a vehicle diagnosis command to the vehicle-mounted terminal
  • a receiving module configured to receive vehicle operating state data from the vehicle terminal, wherein the vehicle operating state data includes: a vehicle operating state obtained by the vehicle-mounted terminal diagnosing the vehicle by using the OBD under the indication of the vehicle diagnostic command result;
  • a generating module configured to generate a vehicle running status report according to the vehicle operating state data received by the receiving module.
  • a fourth aspect of the present invention provides an in-vehicle terminal, including:
  • a first connection module configured to establish a connection between the vehicle-mounted terminal and the on-board diagnostic system OBD of the vehicle
  • a second connection module configured to establish a wireless connection between the foregoing vehicle terminal and the mobile terminal
  • a receiving module configured to receive a vehicle diagnostic command from the mobile terminal
  • a diagnosis module configured to perform diagnosis on the vehicle by using the OBD according to the indication of the vehicle diagnosis command, to obtain a vehicle running state result
  • a sending module configured to send, to the mobile terminal, vehicle operating state data including the foregoing vehicle operating state result.
  • the user of the present invention can establish a wireless connection directly with the vehicle-mounted terminal through the mobile terminal, and send a vehicle diagnosis command to the vehicle-mounted terminal. Since the vehicle-mounted terminal establishes a connection with the OBD of the vehicle, the vehicle-mounted terminal can be diagnosed in the vehicle. The vehicle is diagnosed by the OBD under the command, and the vehicle operating state data including the diagnosed vehicle operating state result is returned to the mobile terminal, and the mobile terminal generates a vehicle operating state report based on the received vehicle operating state data.
  • the user can detect the vehicle by himself only through the mobile terminal and the vehicle-mounted terminal, and check the overall operating state of the vehicle electronic control system, thereby eliminating the need to go to the designated maintenance point for fault diagnosis. Disadvantages, great convenience for the user to diagnose the vehicle.
  • the mobile terminal generates a vehicle running status report according to the received vehicle running state data, so that the user can intuitively know the running state of the vehicle's electronic control system through the vehicle running state report, and further grasp the detailed running condition of the vehicle in real time for the user. Provided convenience.
  • FIG. 1 is a schematic flow chart of an embodiment of a vehicle detecting method according to the present invention.
  • FIG. 2 is a schematic flow chart of another embodiment of a vehicle detecting method according to the present invention.
  • FIG. 3 is a schematic structural diagram of an embodiment of a mobile terminal provided by the present invention.
  • FIG. 4 is a schematic structural diagram of another embodiment of an in-vehicle terminal according to the present invention.
  • the vehicle detection method in the embodiment of the present invention is described below with reference to FIG. 1.
  • the vehicle detection method in the embodiment of the present invention includes:
  • the mobile terminal establishes a wireless connection with the vehicle terminal.
  • the vehicle terminal is connected to the OBD of the vehicle.
  • the in-vehicle terminal in the embodiment of the present invention is a golo device, and the golo device can collect various operating data of the whole system of the automobile in real time, including fault information, data flow, location information, vehicle status, etc., thereby realizing “real-time remote diagnosis”, Various vehicle applications such as “vehicle professional medical examination”, “vehicle alarm reminder”, “owner living community” and “map location service”.
  • the connector of the golo device is inserted into the onboard diagnostic system of the vehicle (OBD, On-Board) Diagnostic) interface to connect the golo device to the OBD of the vehicle.
  • OBD On-Board Diagnostic
  • the mobile terminal establishes a wireless connection with the above-mentioned vehicle-mounted terminal, and the wireless connection may be, for example, Bluetooth.
  • the in-vehicle terminal in the embodiment of the present invention is a golo3 device (ie, a third-generation golo device). Since the golo3 device supports Wi-Fi (Wireless-Fidelity) technology, the mobile terminal can be connected with Bluetooth through In addition to the wireless connection, the golo3 device can also establish a wireless connection with the golo3 device via Wi-Fi technology.
  • the mobile terminal can establish a wireless connection with the in-vehicle terminal by matching the above-mentioned vehicle-mounted terminal installed on the mobile terminal.
  • the car terminal is a golo device
  • the user can install the golo client on the mobile terminal. After the golo client is successfully installed, the user starts the golo client (in some scenarios, the user also needs to log in through the registered username and password. Golo client) After confirming the OBD connection between the golo device and the vehicle, the user can support the wireless connection mode through Bluetooth or Wi-Fi or other golo devices and mobile terminals to establish a wireless connection between the golo client and the vehicle terminal.
  • the user when the user first uses the mobile terminal's golo client, the user needs to select the model of the vehicle to which the golo device is connected in the golo client, so that the golo client loads the vehicle profile of the model selected by the user.
  • the mobile terminal sends a vehicle diagnosis command to the vehicle terminal.
  • the vehicle diagnostic command is used to instruct the vehicle-mounted terminal to diagnose a vehicle to which the vehicle terminal is connected.
  • the mobile terminal receives vehicle running status data from the vehicle terminal.
  • the vehicle operating state data includes: a vehicle operating state result obtained by the vehicle-mounted terminal diagnosing the vehicle by the OBD under the instruction of the vehicle diagnostic command;
  • the process of diagnosing the vehicle by the OBD is required in the prior art. Therefore, the embodiment of the present invention does not describe the process of diagnosing the vehicle by the OBD through the OBD.
  • the vehicle operating state data is transmitted to the mobile terminal through the wireless connection (for example, Bluetooth or Wi-Fi) established by the mobile terminal in step 101.
  • the wireless connection for example, Bluetooth or Wi-Fi
  • the mobile terminal generates a vehicle running status report according to the vehicle operating state data.
  • the vehicle operating state data is analyzed and processed to generate an electronic version of the vehicle running state report, and the vehicle running state report can completely display the vehicle operating state report. Control the operating status of the system.
  • the mobile terminal generates a vehicle running status report in a pdf format according to the vehicle operating state data.
  • the mobile terminal may also generate a vehicle running status report in another file format according to the vehicle operating state data.
  • the mobile terminal may also The vehicle running state data generates a vehicle running status report in a format of a word format, an excel format, a txt format, or a jpg image format, which is not limited herein.
  • the mobile terminal may also send the vehicle running status report by means of mail, or the mobile terminal may also store the generated vehicle running status report locally in the mobile terminal. Or upload to the server.
  • the mobile terminal in the embodiment of the present invention includes, but is not limited to, a smart terminal device such as a smart phone, a tablet computer, or a notebook.
  • the user can directly establish a wireless connection with the vehicle-mounted terminal through the mobile terminal, and send a vehicle diagnosis command to the vehicle-mounted terminal. Since the vehicle-mounted terminal establishes a connection with the OBD of the vehicle, the vehicle-mounted terminal can be in the vehicle diagnostic command. The vehicle is diagnosed by the OBD under the instruction, and the vehicle operating state data including the diagnosed vehicle operating state result is returned to the mobile terminal, and the mobile terminal generates a vehicle operating state report according to the received vehicle operating state data.
  • the user can detect the vehicle by himself only through the mobile terminal and the vehicle-mounted terminal, and check the overall operating state of the vehicle electronic control system, thereby eliminating the need to go to the designated maintenance point for fault diagnosis. Disadvantages, great convenience for the user to diagnose the vehicle.
  • the mobile terminal generates a vehicle running status report according to the received vehicle running state data, so that the user can intuitively know the running state of the vehicle's electronic control system through the vehicle running state report, and further grasp the detailed running condition of the vehicle in real time for the user. Provided convenience.
  • the vehicle detection method in the embodiment of the present invention is described below with reference to the vehicle-mounted terminal. Referring to FIG. 2, the vehicle detection method in the embodiment of the present invention includes:
  • the in-vehicle terminal in the embodiment of the present invention is a golo device, and the golo device can collect various operating data of the whole system of the automobile in real time, including fault information, data flow, location information, vehicle status, etc., thereby realizing “real-time remote diagnosis”, Various vehicle applications such as “vehicle professional medical examination”, “vehicle alarm reminder”, “owner living community” and “map location service”.
  • the connector of the golo device is inserted into the OBD interface of the vehicle to effect connection of the golo device to the OBD of the vehicle.
  • the vehicle terminal establishes a wireless connection with the mobile terminal.
  • the vehicle terminal establishes a wireless connection with the mobile terminal, and the wireless connection may be, for example, Bluetooth.
  • the in-vehicle terminal in the embodiment of the present invention is a golo3 device (ie, a third-generation golo device). Since the golo3 device supports Wi-Fi technology, the golo3 device can establish a wireless connection with the golo3 device through Bluetooth. A wireless connection can be established with the mobile terminal through Wi-Fi technology.
  • the in-vehicle terminal receives a vehicle diagnosis command from the mobile terminal.
  • the vehicle-mounted terminal diagnoses the vehicle by using an OBD under the instruction of the vehicle diagnosis command to obtain a vehicle running state result.
  • the process of diagnosing the vehicle by the OBD is required in the prior art. Therefore, the embodiment of the present invention does not describe the process of diagnosing the vehicle by the OBD through the OBD.
  • the vehicle-mounted terminal sends, to the mobile terminal, vehicle operating state data including the vehicle operating state result.
  • the vehicle terminal After obtaining the vehicle running state result, the vehicle terminal transmits the vehicle running state data to the mobile terminal through the wireless connection (for example, Bluetooth or Wi-Fi) established by the mobile terminal in step 202, so that the mobile terminal generates the vehicle running according to the vehicle running state data. status report.
  • the wireless connection for example, Bluetooth or Wi-Fi
  • the mobile terminal in the embodiment of the present invention includes, but is not limited to, a smart terminal device such as a smart phone, a tablet computer, or a notebook.
  • the user can directly establish a wireless connection with the vehicle-mounted terminal through the mobile terminal, and send a vehicle diagnosis command to the vehicle-mounted terminal. Since the vehicle-mounted terminal establishes a connection with the OBD of the vehicle, the vehicle-mounted terminal can be in the vehicle diagnostic command. The vehicle is diagnosed by the OBD under the instruction, and the vehicle operating state data including the diagnosed vehicle operating state result is returned to the mobile terminal, and the mobile terminal generates a vehicle operating state report according to the received vehicle operating state data.
  • the user can detect the vehicle by himself only through the mobile terminal and the vehicle-mounted terminal, and check the overall operating state of the vehicle electronic control system, thereby eliminating the need to go to the designated maintenance point for fault diagnosis. Disadvantages, great convenience for the user to diagnose the vehicle.
  • the mobile terminal generates a vehicle running status report according to the received vehicle running state data, so that the user can intuitively know the running state of the vehicle's electronic control system through the vehicle running state report, and further grasp the detailed running condition of the vehicle in real time for the user. Provided convenience.
  • the embodiment of the present invention further provides a mobile terminal.
  • the mobile terminal 300 in the embodiment of the present invention includes:
  • the connection module 301 is configured to establish a wireless connection between the mobile terminal 300 and the vehicle-mounted terminal, wherein the vehicle-mounted terminal is connected to the OBD of the vehicle;
  • the sending module 302 is configured to send a vehicle diagnosis command to the in-vehicle terminal
  • the receiving module 303 is configured to receive vehicle operating state data from the vehicle terminal, where the vehicle operating state data includes: a vehicle operating state result obtained by the vehicle terminal being diagnosed by the OBD under the indication of the vehicle diagnostic command;
  • the generating module 304 is configured to generate a vehicle running status report according to the vehicle operating state data received by the receiving module 303.
  • the generating module 304 is specifically configured to: generate a vehicle running status report in a pdf format according to the vehicle operating state data received by the receiving module 303.
  • the generating module 304 may also generate a vehicle running status report of other file formats according to the vehicle operating state data.
  • the generating module 304 may also generate a word format, an excel format, a txt format, or a jpg image format according to the vehicle running state data.
  • the format of the vehicle operating status report is not limited here.
  • the in-vehicle terminal in the embodiment of the present invention is a golo device, and the golo device can collect various operating data of the whole system of the automobile in real time, including fault information, data flow, location information, vehicle status, etc., thereby realizing “real-time remote diagnosis”, Various vehicle applications such as “vehicle professional medical examination”, “vehicle alarm reminder”, “owner living community” and “map location service”.
  • the connector of the golo device is inserted into the OBD interface of the vehicle to effect connection of the golo device to the OBD of the vehicle.
  • the in-vehicle terminal is a golo3 device. Since the golo3 device supports the Wi-Fi technology, the connection module 301 can be specifically configured to: establish a Wi-Fi connection between the mobile terminal 300 and the in-vehicle terminal.
  • the mobile terminal in the embodiment of the present invention includes, but is not limited to, a smart terminal device such as a smart phone, a tablet computer, or a notebook.
  • the mobile terminal in the embodiment of the present invention may be used as the mobile terminal in the foregoing method embodiment, and may be used to implement all the technical solutions in the foregoing method embodiments, and the specific implementation process of each functional module may refer to the relevant in the foregoing device embodiment. Description, no longer repeat here.
  • the user can directly establish a wireless connection with the vehicle-mounted terminal through the mobile terminal, and send a vehicle diagnosis command to the vehicle-mounted terminal. Since the vehicle-mounted terminal establishes a connection with the OBD of the vehicle, the vehicle-mounted terminal can be in the vehicle diagnostic command. The vehicle is diagnosed by the OBD under the instruction, and the vehicle operating state data including the diagnosed vehicle operating state result is returned to the mobile terminal, and the mobile terminal generates a vehicle operating state report according to the received vehicle operating state data.
  • the user can detect the vehicle by himself only through the mobile terminal and the vehicle-mounted terminal, and check the overall operating state of the vehicle electronic control system, thereby eliminating the need to go to the designated maintenance point for fault diagnosis. Disadvantages, great convenience for the user to diagnose the vehicle.
  • the mobile terminal generates a vehicle running status report according to the received vehicle running state data, so that the user can intuitively know the running state of the vehicle's electronic control system through the vehicle running state report, and further grasp the detailed running condition of the vehicle in real time for the user. Provided convenience.
  • the embodiment of the present invention further provides an in-vehicle terminal.
  • the in-vehicle terminal 400 in the embodiment of the present invention includes:
  • a first connection module 401 configured to establish a connection between the vehicle-mounted terminal 400 and an OBD of the vehicle
  • a second connection module 402 configured to establish a wireless connection between the vehicle-mounted terminal 400 and the mobile terminal;
  • a receiving module 403, configured to receive a vehicle diagnostic command from the mobile terminal
  • the diagnosis module 404 is configured to perform diagnosis on the vehicle by using an OBD under the indication of the vehicle diagnosis command to obtain a vehicle running state result;
  • the sending module 405 is configured to send, to the mobile terminal, vehicle operating state data including the vehicle operating state result.
  • the in-vehicle terminal in the embodiment of the present invention is a golo device, and the golo device can collect various operating data of the whole system of the automobile in real time, including fault information, data flow, location information, vehicle status, etc., thereby realizing “real-time remote diagnosis”, Various vehicle applications such as “vehicle professional medical examination”, “vehicle alarm reminder”, “owner living community” and “map location service”.
  • the connector of the golo device is inserted into the OBD interface of the vehicle, and the first connection module 401 establishes a connection between the vehicle terminal 400 and the OBD of the vehicle.
  • the in-vehicle terminal in the embodiment of the present invention is a golo3 device
  • the second connection module 402 is specifically configured to establish a Wi-Fi connection between the in-vehicle terminal 400 and the mobile terminal.
  • the mobile terminal in the embodiment of the present invention includes, but is not limited to, a smart terminal device such as a smart phone, a tablet computer, or a notebook.
  • vehicle-mounted terminal in the embodiment of the present invention may be used as the vehicle-mounted terminal in the foregoing method embodiment, and may be used to implement all the technical solutions in the foregoing method embodiments, and the specific implementation process of each functional module may refer to the foregoing device. Related descriptions in the embodiments are not described herein again.
  • the user can directly establish a wireless connection with the vehicle-mounted terminal through the mobile terminal, and send a vehicle diagnosis command to the vehicle-mounted terminal. Since the vehicle-mounted terminal establishes a connection with the OBD of the vehicle, the vehicle-mounted terminal can be in the vehicle diagnostic command. The vehicle is diagnosed by the OBD under the instruction, and the vehicle operating state data including the diagnosed vehicle operating state result is returned to the mobile terminal, and the mobile terminal generates a vehicle operating state report according to the received vehicle operating state data.
  • the user can detect the vehicle by himself only through the mobile terminal and the vehicle-mounted terminal, and check the overall operating state of the vehicle electronic control system, thereby eliminating the need to go to the designated maintenance point for fault diagnosis. Disadvantages, great convenience for the user to diagnose the vehicle.
  • the mobile terminal generates a vehicle running status report according to the received vehicle running state data, so that the user can intuitively know the running state of the vehicle's electronic control system through the vehicle running state report, and further grasp the detailed running condition of the vehicle in real time for the user. Provided convenience.
  • the disclosed apparatus and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.

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Abstract

本发明公开了一种车辆检测方法、移动终端和车载终端,其中,一种车辆检测方法包括:移动终端与车载终端建立无线连接,其中,所述车载终端与车辆的OBD连接;所述移动终端向所述车载终端发送车辆诊断命令;所述移动终端接收来自所述车辆终端的车辆运行状态数据,其中,所述车辆运行状态数据包括:所述车载终端在所述车辆诊断命令的指示下,通过所述OBD对所述车辆进行诊断得到的车辆运行状态结果;所述移动终端根据所述车辆运行状态数据生成车辆运行状态报告。本发明提供的技术方案能够方便车主对车辆进行诊断。

Description

一种车辆检测方法、移动终端和车载终端 技术领域
本发明涉及车辆检测技术领域,具体涉及一种车辆检测方法、移动终端和车载终端。
背景技术
由于车辆在使用过程中,随着使用时间的延长(或行驶里程的增加),其零件逐渐磨损、腐蚀、变形、老化,以及润滑油变质等,致使配合副间隙变大,从而容易引起运动松旷、振动、发响和漏气、漏水、漏油等问题,造成汽车技术性能下降。可见,定期对车辆进行体检维护很有必要。
目前,车辆运行状态信息,如车辆运行速度、发动机转速、发动机温度、运行里程、车灯状态、运行时长、档位、安全带状态、车门状态等信息一般显示在车辆驾驶舱的仪表盘,车主只有到汽车4S点的售后维修部门或者其它汽车维修点,利用车型厂家的诊断工具进行故障诊断,车主才能知晓整个车辆电控系统的整体运行状态,由于需要到指定维修点才能进行故障诊断,因此,绝大部分车主只有在车辆出现故障后才会去为车辆进行故障诊断。然而,当车辆出现故障时,实际上已经为车主的出行带来了不便。
技术问题
本发明提供一种车辆检测方法、移动终端和车载终端,用于方便车主对车辆进行诊断。
技术解决方案
本发明第一方面提供一种车辆检测方法,包括:
移动终端与车载终端建立无线连接,其中,上述车载终端与车辆的OBD连接;
上述移动终端向上述车载终端发送车辆诊断命令;
上述移动终端接收来自上述车辆终端的车辆运行状态数据,其中,上述车辆运行状态数据包括:上述车载终端在上述车辆诊断命令的指示下,通过上述OBD对上述车辆进行诊断得到的车辆运行状态结果;
上述移动终端根据上述车辆运行状态数据生成车辆运行状态报告。
本发明另一方面提供一种车辆检测方法,包括:
车载终端与车辆的OBD连接;
上述车载终端与移动终端建立无线连接;
上述车载终端接收来自上述移动终端的车辆诊断命令;
上述车载终端在上述车辆诊断命令的指示下,通过上述OBD对上述车辆进行诊断,得到车辆运行状态结果;
上述车载终端向上述移动终端发送包含上述车辆运行状态结果的车辆运行状态数据。
本发明第三方面提供一种移动终端,包括:
连接模块,用于建立上述移动终端与车载终端之间的无线连接,其中,上述车载终端与车辆的车载诊断系统OBD连接;
发送模块,用于向上述车载终端发送车辆诊断命令;
接收模块,用于接收来自上述车辆终端的车辆运行状态数据,其中,上述车辆运行状态数据包括:上述车载终端在上述车辆诊断命令的指示下,通过上述OBD对上述车辆进行诊断得到的车辆运行状态结果;
生成模块,用于根据上述接收模块接收到的车辆运行状态数据生成车辆运行状态报告。
本发明第四方面提供一种车载终端,包括:
第一连接模块,用于建立上述车载终端与车辆的车载诊断系统OBD之间的连接;
第二连接模块,用于建立上述车载终端与移动终端之间的无线连接;
接收模块,用于接收来自上述移动终端的车辆诊断命令;
诊断模块,用于在上述车辆诊断命令的指示下,通过上述OBD对上述车辆进行诊断,得到车辆运行状态结果;
发送模块,用于向上述移动终端发送包含上述车辆运行状态结果的车辆运行状态数据。
有益效果
从本发明上述技术方案可知,本发明用户可以直接通过移动终端与车载终端建立无线连接,并向车载终端发送车辆诊断命令,由于车载终端与车辆的OBD建立连接,因此,车载终端可以在车辆诊断命令的指示下通过OBD对该车辆进行诊断,并向移动终端返回包含诊断得到的车辆运行状态结果的车辆运行状态数据,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告。一方面,通过本发明技术方案,用户只需通过移动终端和车载终端便可以自行对车辆进行检测,且查看车辆电控系统的整体运行状态,免去了需要到指定维修点才能进行故障诊断的弊端,为用户对车辆进行诊断带来的极大地便利性。另一方面,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告,使得用户通过车辆运行状态报告便可直观地获知车辆的电控系统运行状态,进一步为用户实时掌握车辆的详细运行状况提供了便利。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本发明提供的一种车辆检测方法一个实施例流程示意图;
图2为本发明提供的一种车辆检测方法另一个实施例流程示意图;
图3为本发明提供的移动终端一个实施例结构示意图;
图4为本发明提供的车载终端另一个实施例结构示意图。
本发明的实施方式
为使得本发明的发明目的、特征、优点能够更加的明显和易懂,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而非全部实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
下面以移动终端为描述主体,对本发明实施例中的一种车辆检测方法进行描述,请参阅图1,本发明实施例中的车辆检测方法,包括:
101、移动终端与车载终端建立无线连接;
其中,上述车载终端与车辆的OBD连接。
可选的,本发明实施例中的车载终端为golo设备,golo设备可以实时采集汽车全系统各种运行数据包括故障信息、数据流、位置信息、车辆状态等,从而实现“实时远程诊断”、“车辆专业体检”、“车辆报警提醒”、“车主生活社区”以及“地图定位服务”等各种汽车应用。本发明实施例中,将golo设备的接头插入车辆的车载诊断系统(OBD,On-Board Diagnostic)接口,以实现golo设备与车辆的OBD的连接。
移动终端与上述车载终端建立无线连接,无线连接的方式例如可以是蓝牙。具体的,本发明实施例中的车载终端为golo3设备(即第3代golo设备),由于golo3设备支持无线保真(Wi-Fi,Wireless-Fidelity)技术,因此,移动终端除了可以通过蓝牙与golo3设备建立无线连接之外,还可以通过Wi-Fi技术与golo3设备建立无线连接。
在本发明实施例中,移动终端可以通过移动终端上安装的与上述车载终端匹配客户端与车载终端建立无线连接。例如,假设车载终端为golo设备,则用户可以在移动终端上安装golo客户端,在成功安装golo客户端之后,用户启动golo客户端(在某些场景下还需要用户通过注册的用户名和密码登陆golo客户端),在确认golo设备与车辆的OBD连接之后,用户可以通过蓝牙或Wi-Fi或其它golo设备和移动终端均支持无线连接方式,建立golo客户端与车载终端之间的无线连接。需要说明的是,当用户首次使用移动终端的golo客户端时,需要用户在golo客户端中选择golo设备所连接的车辆的车型,以便golo客户端载入用户所选的车型的车辆配置文件。
102、移动终端向上述车载终端发送车辆诊断命令;
上述车辆诊断命令用于指示上述车载终端对车辆终端所连接的车辆进行诊断。
103、移动终端接收来自上述车辆终端的车辆运行状态数据;
其中,上述车辆运行状态数据包括:上述车载终端在上述车辆诊断命令的指示下,通过OBD对上述车辆进行诊断得到的车辆运行状态结果;
需要说明的是,由于车载终端通过OBD对上述车辆进行诊断的过程需要现有技术,因此,本发明实施例不对车载终端通过OBD对上述车辆进行诊断的过程进行赘述。
上述车载终端通过对车辆进行诊断得到车辆运行状态结果之后,通过步骤101与移动终端建立的无线连接(例如蓝牙或Wi-Fi),向移动终端发送车辆运行状态数据。
104、移动终端根据上述车辆运行状态数据生成车辆运行状态报告;
本发明实施例中,当移动终端接收来自上述车辆终端的车辆运行状态数据后,对车辆运行状态数据进行解析处理,生成电子版的车辆运行状态报告,车辆运行状态报告能够完整展示上述车辆的电控系统的运行状态。
可选的,移动终端根据上述车辆运行状态数据生成pdf格式的车辆运行状态报告,当然,移动终端根据上述车辆运行状态数据也可以生成其它文件格式的车辆运行状态报告,例如,移动终端也可以根据上述车辆运行状态数据生成word格式、excel格式、txt格式或jpg图片格式等格式的车辆运行状态报告,此处不作限定。
可选的,由于生成的车辆运行状态报告为电子版,因此,移动终端还可以通过邮件的方式发送该车辆运行状态报告,或者,移动终端也可以将生成的车辆运行状态报告存储在移动终端本地或上传到服务器。
需要说明的是,本发明实施例中的移动终端包括但不限于智能手机、平板电脑、笔记本等智能终端设备。
由上可见,本发明实施例中用户可以直接通过移动终端与车载终端建立无线连接,并向车载终端发送车辆诊断命令,由于车载终端与车辆的OBD建立连接,因此,车载终端可以在车辆诊断命令的指示下通过OBD对该车辆进行诊断,并向移动终端返回包含诊断得到的车辆运行状态结果的车辆运行状态数据,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告。一方面,通过本发明技术方案,用户只需通过移动终端和车载终端便可以自行对车辆进行检测,且查看车辆电控系统的整体运行状态,免去了需要到指定维修点才能进行故障诊断的弊端,为用户对车辆进行诊断带来的极大地便利性。另一方面,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告,使得用户通过车辆运行状态报告便可直观地获知车辆的电控系统运行状态,进一步为用户实时掌握车辆的详细运行状况提供了便利。
下面以车载终端为描述主体,对本发明实施例中的一种车辆检测方法进行描述,请参阅图2,本发明实施例中的车辆检测方法,包括:
201、车载终端与车辆的OBD连接;
可选的,本发明实施例中的车载终端为golo设备,golo设备可以实时采集汽车全系统各种运行数据包括故障信息、数据流、位置信息、车辆状态等,从而实现“实时远程诊断”、“车辆专业体检”、“车辆报警提醒”、“车主生活社区”以及“地图定位服务”等各种汽车应用。本发明实施例中,将golo设备的接头插入车辆的OBD接口,以实现golo设备与车辆的OBD的连接。
202、车载终端与移动终端建立无线连接;
车载终端与移动终端建立无线连接,无线连接的方式例如可以是蓝牙。具体的,本发明实施例中的车载终端为golo3设备(即第3代golo设备),由于golo3设备支持Wi-Fi技术,因此,golo3设备除了可以通过蓝牙与golo3设备建立无线连接之外,还可以通过Wi-Fi技术与移动终端建立无线连接。
203、车载终端接收来自上述移动终端的车辆诊断命令。
204、车载终端在上述车辆诊断命令的指示下,通过OBD对上述车辆进行诊断,得到车辆运行状态结果;
需要说明的是,由于车载终端通过OBD对上述车辆进行诊断的过程需要现有技术,因此,本发明实施例不对车载终端通过OBD对上述车辆进行诊断的过程进行赘述。
205、车载终端向上述移动终端发送包含上述车辆运行状态结果的车辆运行状态数据;
车载终端获得车辆运行状态结果之后,通过步骤202与移动终端建立的无线连接(例如蓝牙或Wi-Fi),向移动终端发送车辆运行状态数据,以便该移动终端根据上述车辆运行状态数据生成车辆运行状态报告。
需要说明的是,本发明实施例中的移动终端包括但不限于智能手机、平板电脑、笔记本等智能终端设备。
由上可见,本发明实施例中用户可以直接通过移动终端与车载终端建立无线连接,并向车载终端发送车辆诊断命令,由于车载终端与车辆的OBD建立连接,因此,车载终端可以在车辆诊断命令的指示下通过OBD对该车辆进行诊断,并向移动终端返回包含诊断得到的车辆运行状态结果的车辆运行状态数据,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告。一方面,通过本发明技术方案,用户只需通过移动终端和车载终端便可以自行对车辆进行检测,且查看车辆电控系统的整体运行状态,免去了需要到指定维修点才能进行故障诊断的弊端,为用户对车辆进行诊断带来的极大地便利性。另一方面,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告,使得用户通过车辆运行状态报告便可直观地获知车辆的电控系统运行状态,进一步为用户实时掌握车辆的详细运行状况提供了便利。
本发明实施例还提供一种移动终端,请参阅图3,本发明实施例中的移动终端 300,包括:
连接模块301,用于建立移动终端300与车载终端之间的无线连接,其中,上述车载终端与车辆的OBD连接;
发送模块302,用于向车载终端发送车辆诊断命令;
接收模块303,用于接收来自车辆终端的车辆运行状态数据,其中,上述车辆运行状态数据包括:车载终端在上述车辆诊断命令的指示下,通过OBD对上述车辆进行诊断得到的车辆运行状态结果;
生成模块304,用于根据接收模块303接收到的车辆运行状态数据生成车辆运行状态报告。
可选的,生成模块304具体用于:根据接收模块303接收到的车辆运行状态数据生成pdf格式的车辆运行状态报告。当然,生成模块304也可以根据上述车辆运行状态数据生成其它文件格式的车辆运行状态报告,例如,生成模块304也可以根据上述车辆运行状态数据生成word格式、excel格式、txt格式或jpg图片格式等格式的车辆运行状态报告,此处不作限定。
可选的,本发明实施例中的车载终端为golo设备,golo设备可以实时采集汽车全系统各种运行数据包括故障信息、数据流、位置信息、车辆状态等,从而实现“实时远程诊断”、“车辆专业体检”、“车辆报警提醒”、“车主生活社区”以及“地图定位服务”等各种汽车应用。本发明实施例中,将golo设备的接头插入车辆的OBD接口,以实现golo设备与车辆的OBD的连接。具体的,车载终端为golo3设备,由于golo3设备支持Wi-Fi技术,因此,连接模块301可以具体用于:建立移动终端300与车载终端之间的Wi-Fi连接。
需要说明的是,本发明实施例中的移动终端包括但不限于智能手机、平板电脑、笔记本等智能终端设备。本发明实施例中的移动终端可以如上述方法实施例中的移动终端,可以用于实现上述方法实施例中的全部技术方案,其各个功能模块的具体实现过程可参照上述装置实施例中的相关描述,此处不再赘述。
由上可见,本发明实施例中用户可以直接通过移动终端与车载终端建立无线连接,并向车载终端发送车辆诊断命令,由于车载终端与车辆的OBD建立连接,因此,车载终端可以在车辆诊断命令的指示下通过OBD对该车辆进行诊断,并向移动终端返回包含诊断得到的车辆运行状态结果的车辆运行状态数据,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告。一方面,通过本发明技术方案,用户只需通过移动终端和车载终端便可以自行对车辆进行检测,且查看车辆电控系统的整体运行状态,免去了需要到指定维修点才能进行故障诊断的弊端,为用户对车辆进行诊断带来的极大地便利性。另一方面,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告,使得用户通过车辆运行状态报告便可直观地获知车辆的电控系统运行状态,进一步为用户实时掌握车辆的详细运行状况提供了便利。
本发明实施例还提供一种车载终端,请参阅图4,本发明实施例中的车载终端 400,包括:
第一连接模块401,用于建立车载终端400与车辆的OBD之间的连接;
第二连接模块402,用于建立车载终端400与移动终端之间的无线连接;
接收模块403,用于接收来自上述移动终端的车辆诊断命令;
诊断模块404,用于在上述车辆诊断命令的指示下,通过OBD对上述车辆进行诊断,得到车辆运行状态结果;
发送模块405,用于向上述移动终端发送包含上述车辆运行状态结果的车辆运行状态数据。
可选的,本发明实施例中的车载终端为golo设备,golo设备可以实时采集汽车全系统各种运行数据包括故障信息、数据流、位置信息、车辆状态等,从而实现“实时远程诊断”、“车辆专业体检”、“车辆报警提醒”、“车主生活社区”以及“地图定位服务”等各种汽车应用。本发明实施例中,将golo设备的接头插入车辆的OBD接口,第一连接模块401建立车载终端400与车辆的OBD之间的连接。
可选的,本发明实施例中的车载终端为golo3设备,第二连接模块402具体用于建立车载终端400与上述移动终端之间的Wi-Fi连接。
需要说明的是,本发明实施例中的移动终端包括但不限于智能手机、平板电脑、笔记本等智能终端设备。
需要说明的是,本发明实施例中的车载终端可以如上述方法实施例中的车载终端,可以用于实现上述方法实施例中的全部技术方案,其各个功能模块的具体实现过程可参照上述装置实施例中的相关描述,此处不再赘述。
由上可见,本发明实施例中用户可以直接通过移动终端与车载终端建立无线连接,并向车载终端发送车辆诊断命令,由于车载终端与车辆的OBD建立连接,因此,车载终端可以在车辆诊断命令的指示下通过OBD对该车辆进行诊断,并向移动终端返回包含诊断得到的车辆运行状态结果的车辆运行状态数据,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告。一方面,通过本发明技术方案,用户只需通过移动终端和车载终端便可以自行对车辆进行检测,且查看车辆电控系统的整体运行状态,免去了需要到指定维修点才能进行故障诊断的弊端,为用户对车辆进行诊断带来的极大地便利性。另一方面,移动终端根据接收到的车辆运行状态数据生成车辆运行状态报告,使得用户通过车辆运行状态报告便可直观地获知车辆的电控系统运行状态,进一步为用户实时掌握车辆的详细运行状况提供了便利。
在本申请所提供的几个实施例中,应该理解到,所揭露的装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
需要说明的是,对于前述的各方法实施例,为了简便描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,因为依据本发明,某些步骤可以采用其它顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定都是本发明所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其它实施例的相关描述。
以上为对本发明所提供的一种车辆检测方法、移动终端和车载终端的描述,对于本领域的一般技术人员,依据本发明实施例的思想,在具体实施方式及应用范围上均会有改变之处,综上,本说明书内容不应理解为对本发明的限制。

Claims (10)

  1. 一种车辆检测方法,其特征在于,包括:
    移动终端与车载终端建立无线连接,其中,所述车载终端与车辆的车载诊断系统OBD连接;
    所述移动终端向所述车载终端发送车辆诊断命令;
    所述移动终端接收来自所述车辆终端的车辆运行状态数据,其中,所述车辆运行状态数据包括:所述车载终端在所述车辆诊断命令的指示下,通过所述OBD对所述车辆进行诊断得到的车辆运行状态结果;
    所述移动终端根据所述车辆运行状态数据生成车辆运行状态报告。
  2. 根据权利要求1所述的方法,其特征在于,所述移动终端根据所述车辆运行状态数据生成车辆运行状态报告,具体为:所述移动终端根据所述车辆运行状态数据生成pdf格式的车辆运行状态报告。
  3. 根据权利要求1或2所示的方法,其特征在于,
    所述车载终端为golo3设备;
    所述移动终端与车载终端建立无线连接具体为:
    所述移动终端与车载终端建立无线保真Wi-Fi连接。
  4. 一种车辆检测方法,其特征在于,包括:
    车载终端与车辆的车载诊断系统OBD连接;
    所述车载终端与移动终端建立无线连接;
    所述车载终端接收来自所述移动终端的车辆诊断命令;
    所述车载终端在所述车辆诊断命令的指示下,通过所述OBD对所述车辆进行诊断,得到车辆运行状态结果;
    所述车载终端向所述移动终端发送包含所述车辆运行状态结果的车辆运行状态数据。
  5. 根据权利要求1所述的方法,其特征在于,所述车载终端为golo3设备;
    所述车载终端与移动终端建立无线连接具体为:
    所述车载终端与移动终端建立无线保真Wi-Fi连接。
  6. 一种移动终端,其特征在于,包括:
    连接模块,用于建立所述移动终端与车载终端之间的无线连接,其中,所述车载终端与车辆的车载诊断系统OBD连接;
    发送模块,用于向所述车载终端发送车辆诊断命令;
    接收模块,用于接收来自所述车辆终端的车辆运行状态数据,其中,所述车辆运行状态数据包括:所述车载终端在所述车辆诊断命令的指示下,通过所述OBD对所述车辆进行诊断得到的车辆运行状态结果;
    生成模块,用于根据所述接收模块接收到的车辆运行状态数据生成车辆运行状态报告。
  7. 根据权利要求6所述的移动终端,其特征在于,
    所述生成模块具体用于:根据所述接收模块接收到的车辆运行状态数据生成pdf格式的车辆运行状态报告。
  8. 根据权利要求6或7所述的移动终端,其特征在于,
    所述车载终端为golo3设备;
    所述连接模块具体用于:建立所述移动终端与车载终端之间的无线保真Wi-Fi连接。
  9. 一种车载终端,其特征在于,包括:
    第一连接模块,用于建立所述车载终端与车辆的车载诊断系统OBD之间的连接;
    第二连接模块,用于建立所述车载终端与移动终端之间的无线连接;
    接收模块,用于接收来自所述移动终端的车辆诊断命令;
    诊断模块,用于在所述车辆诊断命令的指示下,通过所述OBD对所述车辆进行诊断,得到车辆运行状态结果;
    发送模块,用于向所述移动终端发送包含所述车辆运行状态结果的车辆运行状态数据。
  10. 根据权利要求9所述的车载终端,其特征在于,
    所述车载终端为golo3设备;
    所述第二连接模块具体用于建立所述车载终端与移动终端之间的无线保真Wi-Fi连接。
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