WO2014180394A1 - 道路监控方法、摄像装置、车载终端、及系统 - Google Patents

道路监控方法、摄像装置、车载终端、及系统 Download PDF

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Publication number
WO2014180394A1
WO2014180394A1 PCT/CN2014/078450 CN2014078450W WO2014180394A1 WO 2014180394 A1 WO2014180394 A1 WO 2014180394A1 CN 2014078450 W CN2014078450 W CN 2014078450W WO 2014180394 A1 WO2014180394 A1 WO 2014180394A1
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WIPO (PCT)
Prior art keywords
road traffic
road
information describing
traffic condition
image
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PCT/CN2014/078450
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English (en)
French (fr)
Inventor
廖凯
夏险峰
王东
Original Assignee
中兴通讯股份有限公司
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Publication of WO2014180394A1 publication Critical patent/WO2014180394A1/zh

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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/09Arrangements for giving variable traffic instructions
    • G08G1/0962Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
    • G08G1/0967Systems involving transmission of highway information, e.g. weather, speed limits
    • G08G1/096766Systems involving transmission of highway information, e.g. weather, speed limits where the system is characterised by the origin of the information transmission
    • G08G1/096783Systems involving transmission of highway information, e.g. weather, speed limits where the system is characterised by the origin of the information transmission where the origin of the information is a roadside individual element
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/01Detecting movement of traffic to be counted or controlled
    • G08G1/0104Measuring and analyzing of parameters relative to traffic conditions
    • G08G1/0108Measuring and analyzing of parameters relative to traffic conditions based on the source of data
    • G08G1/0116Measuring and analyzing of parameters relative to traffic conditions based on the source of data from roadside infrastructure, e.g. beacons
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/01Detecting movement of traffic to be counted or controlled
    • G08G1/0104Measuring and analyzing of parameters relative to traffic conditions
    • G08G1/0125Traffic data processing
    • G08G1/0133Traffic data processing for classifying traffic situation
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/01Detecting movement of traffic to be counted or controlled
    • G08G1/04Detecting movement of traffic to be counted or controlled using optical or ultrasonic detectors
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/09Arrangements for giving variable traffic instructions
    • G08G1/0962Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/09Arrangements for giving variable traffic instructions
    • G08G1/0962Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
    • G08G1/0967Systems involving transmission of highway information, e.g. weather, speed limits
    • G08G1/096708Systems involving transmission of highway information, e.g. weather, speed limits where the received information might be used to generate an automatic action on the vehicle control
    • G08G1/096716Systems involving transmission of highway information, e.g. weather, speed limits where the received information might be used to generate an automatic action on the vehicle control where the received information does not generate an automatic action on the vehicle control
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast

Definitions

  • the present invention relates to the field of video surveillance technologies, and in particular, to a road monitoring method, an imaging device, an in-vehicle terminal, and a system.
  • BACKGROUND OF THE INVENTION With the continuous increase of car ownership and the increasing pressure on urban road traffic, how to take effective measures to divert vehicles on the road and improve the urban traffic environment has become an urgent problem to be solved.
  • many solutions have been proposed, including: Using GPS or base station positioning technology, performing background analysis on collected data, calculating vehicle travel speed, judging road congestion status; and camera equipment deployed through road intersections, which will be collected.
  • the real-time road traffic video screen is transmitted to the background control center, and the background control center performs image analysis to judge the road congestion status and the like.
  • a main object of the embodiments of the present invention is to provide a road monitoring method, which aims to solve the technical problem that the data push delay and the background data processing pressure are large and the operation is not stable enough in the prior art.
  • an embodiment of the present invention provides a road monitoring method, including the following steps: The camera device collects real-time video of the road; the camera device performs image analysis on the video image, determines the current congestion state of the road, and generates information describing the road traffic condition.
  • the camera device searches for the adjacent vehicle terminal and other camera devices, and transmits locally generated information describing the road traffic condition to the other camera devices and receives information describing the road traffic conditions sent by the other camera devices; Each camera device transmits the received and locally generated information describing the road traffic condition to the corresponding proximity vehicle terminal.
  • the method includes: receiving, by the vehicle-mounted terminal, information describing a road traffic condition; The information of road traffic conditions is summarized and analyzed to generate text, voice or image display results of road traffic conditions; current road traffic conditions and optimal driving routes are displayed by text, voice or image.
  • the above method further comprises the steps of: the camera device transmitting information describing the road traffic condition to the background control center; and the background control center summarizing, displaying or secondary analyzing the information describing the road traffic condition.
  • the information describing the road traffic condition is text information or data information.
  • the embodiment of the invention further provides an image capturing device, comprising an image collecting module, configured to collect road real-time video; and further comprising: an image analyzing module, configured to perform image analysis on the video image, determine a current road congestion state, and generate a description road Information of traffic conditions; a data exchange module configured to search for neighboring in-vehicle terminals and other camera devices, transmit locally generated information describing road traffic conditions to other camera devices, and receive information describing road traffic conditions transmitted by other camera devices; And transmitting the received and locally generated information describing the road traffic condition to the corresponding adjacent vehicle terminal
  • the data exchange module is further configured to send information describing the road traffic condition to the background control center.
  • An embodiment of the present invention provides an in-vehicle terminal, including: a data receiving module, configured to receive information describing a road traffic condition sent by the camera device; a data analysis module, configured to summarize and analyze the information describing the road traffic condition, and generate text, voice or image display results of the road traffic condition; the data display module is configured to display the current road by text, voice or image Traffic conditions and optimal driving routes.
  • the embodiment of the present invention further provides a road monitoring system, including an image capturing device and an in-vehicle terminal.
  • the camera device includes: an image capturing module configured to collect real-time video of the road; an image analyzing module configured to perform image analysis on the video image, and determine The current road congestion condition generates information describing the road traffic condition; the data exchange module is configured to search for the adjacent vehicle terminal and other camera devices, and transmit locally generated information describing the road traffic condition to other camera devices and receive other camera devices. Sending information describing the road traffic condition; and transmitting the received and locally generated information describing the road traffic condition to the corresponding adjacent vehicle terminal
  • the in-vehicle terminal includes: a data receiving module configured to receive the information describing the road traffic condition; and a data analysis module configured to summarize and analyze the information describing the road traffic condition to generate a road traffic condition Text, voice or image display results; data display module, set to display current road traffic conditions and optimal driving routes by text, voice or image.
  • the road monitoring system further includes: a background control center, configured to summarize, display, or perform secondary analysis on the information describing the road traffic condition.
  • the information describing the road traffic condition is text information or data information.
  • FIG. 1 is a schematic flow chart of an embodiment of a road monitoring method according to an embodiment of the present invention
  • FIG. 2 is a detailed flowchart of steps for displaying information by an in-vehicle terminal according to an embodiment of a road monitoring method according to the present invention
  • FIG. 4 is a schematic flowchart of another embodiment of a road monitoring method according to the present invention
  • FIG. 5 is a structural block diagram of an embodiment of an image capturing apparatus according to the present invention
  • FIG. 7 is a structural block diagram of an embodiment of a road monitoring system according to the present invention
  • FIG. 8 is a schematic structural diagram of another embodiment of a road monitoring system according to the present invention.
  • the road monitoring method includes the following steps: Step S10: The camera device collects a road real-time video; Step S20, the camera device performs image analysis on the video image. , judging the current road congestion situation, generating information describing the road traffic condition; Step S30, the camera device searches for the adjacent vehicle-mounted terminal and other camera devices, and transmits locally generated information describing the road traffic condition to the other camera devices and receives information describing the road traffic conditions sent by the other camera devices.
  • Step S40 each camera device The received and locally generated information describing the road traffic condition is transmitted to the corresponding proximity vehicle terminal.
  • the camera device includes a camera mounted on the roadside, and is also loaded with image analysis software. After the road real-time video is collected, the image analysis software performs image analysis on the video image to determine whether the current road is congested or unblocked. And generate corresponding information describing the road traffic conditions.
  • a data exchange module is integrated in the camera device, and the data exchange module can automatically discover adjacent cameras and vehicle terminals through wireless technologies (such as ZigBee, etc.), and form an interconnected self-organizing network with adjacent cameras and vehicle terminals.
  • the vehicle terminal can display the information by voice, text, and images.
  • the embodiment of the invention collects real-time video information of the road through the camera device, analyzes the video image, generates information describing the road traffic condition, and transmits the information to the vehicle-mounted terminal, so that a part of the data processing work is completed in the camera device, and all the background control is avoided.
  • the central processing data can effectively enhance the timeliness of data processing, improve the real-time performance of information, and alleviate the processing pressure of the background control center. Referring to FIG.
  • the step of displaying information by the vehicle-mounted terminal includes: Step S41: receiving information describing a road traffic condition; Step S42, summarizing information describing the road traffic condition and The analysis generates a text, voice or image display result of the road traffic condition; and in step S43, the current road traffic condition and the optimal driving route are displayed by text, voice or image.
  • the vehicle-mounted terminal is loaded with data processing software, and the data processing software can process the information describing the road traffic condition, and generate a text, voice or image display result corresponding thereto.
  • the data processing software may display the text information on the display screen of the vehicle terminal: the road ahead is congested, or the content is prompted by the voice, or may be on the traveling map of the vehicle terminal.
  • the line is filled with color to identify a section of congestion.
  • the foregoing step S30 may include: Step S31, searching for an adjacent camera device and an in-vehicle terminal; Step S32, forming an interconnected self-organizing network with all the neighboring camera devices and the vehicle-mounted terminals found.
  • a plurality of camera devices integrated with the data exchange module can be networked through a wireless technology such as ZigBee, and a plurality of camera devices are formed into an interconnected self-organizing network, and the current camera device generates and slaves the adjacent camera device.
  • the received information describing the road traffic conditions is sent to other nearby cameras.
  • the camera device can also receive the information sent by the adjacent camera device through the data exchange module, thereby realizing the sharing of the entire network of the information, thereby pushing the road conditions of the plurality of roads in real time, so that the user can select the road in advance and ensure the smooth flow of the road.
  • the method further includes the following steps: Step S50: The camera device sends information describing a road traffic condition to a background control center; Step S60, the background control center summarizes the information, Show or secondary analysis.
  • the camera device can also send information describing the road traffic condition to the background control center, and the background control center can analyze the information according to the information, determine the road congestion condition, and the like, and pass the real-time traffic information through the display on the road. Displayed, or pushed to the vehicle terminal through the base station, thereby inducing the traveling vehicle.
  • the information describing the road traffic condition may be data information (for example, hexadecimal data information) or text information.
  • the embodiment of the present invention further provides an image capturing apparatus.
  • the image capturing apparatus 10 includes: an image capturing module 11 configured to collect road real-time video; and an image analyzing module 12 configured to pair video The screen performs image analysis, determines the current road congestion condition, and generates information describing the road traffic condition; the data exchange module 13 is configured to search the adjacent vehicle-mounted terminal 20 and other camera devices 10, and send the locally generated information describing the road traffic condition.
  • the image acquisition module 11 may be a camera mounted on the roadside
  • the image analysis module 12 may be an image analysis software loaded in the camera device 10. After the road real-time video is collected, the image is acquired. The analysis module 12 performs image analysis on the video screen to determine whether the current road is congested or unblocked, and generates corresponding information describing the road traffic condition.
  • a data exchange module 13 is further integrated in the camera device 10, and the data exchange module 13 can automatically discover the adjacent camera and the vehicle-mounted terminal 20 through a wireless communication technology (for example, ZigBee, etc.) to form an interconnected self-organizing network.
  • the aforementioned information describing the road traffic condition is thus transmitted to the adjacent in-vehicle terminal 20.
  • the in-vehicle terminal 20 can display the information by means of voice, text, and images.
  • the embodiment of the present invention further provides an in-vehicle terminal. Referring to FIG.
  • the in-vehicle terminal 20 may include: a data receiving module 21 configured to receive the information describing the road traffic condition;
  • the module 22 is configured to summarize and analyze the information describing the road traffic condition, and generate text, voice or image display results of the road traffic condition;
  • the data display module 23 is configured to display the current road traffic by text, voice or image. Status and optimal driving route.
  • the vehicle-mounted terminal 20 is loaded with data processing software, and the data processing software includes at least three modules: a data receiving module 21, a data analyzing module 22, and a data displaying module 23, which can process information describing road traffic conditions. Generate a text, voice, or image display result corresponding to it.
  • the data display module 23 may display the text information on the display screen of the vehicle terminal 23: the road ahead is congested, or the content is prompted by the voice, or The line on the travel map of the in-vehicle terminal 20 is colored to identify a certain section of the road.
  • the data exchange module 13 can be configured to: look up the adjacent camera device 10 and the vehicle-mounted terminal 20; form an interconnected self-organizing network with all of the neighboring camera devices 10 and the vehicle-mounted terminal 20 that are found.
  • a plurality of camera devices 10 integrated with the data exchange module 13 can be networked through a wireless technology such as ZigBee, and a plurality of camera devices 10 are formed into an interconnected self-organizing network, which is generated by the current camera device 10 and Information describing the road traffic conditions received from the adjacent camera device is sent to other nearby cameras.
  • the camera device 10 can also receive the information sent by the adjacent camera device through the data exchange module, thereby realizing the sharing of the entire network of the information, thereby pushing the road conditions of the plurality of roads in real time, so that the user can select the road in advance and ensure the smooth flow of the road.
  • the communication of the terminal 20 preferably adopts the ZigBee communication technology, but is not limited to this technology, and all similar related technologies should be limited to the scope of the present invention.
  • the embodiment of the invention further provides a road monitoring system for implementing the road monitoring method described above. Referring to FIG. 7, the road monitoring system includes the aforementioned image pickup apparatus 10 and the vehicle-mounted terminal 20.
  • the working principle and implementation method of the image capturing device 10 and the in-vehicle terminal 20 can be referred to the foregoing embodiments, and details are not described herein.
  • the road monitoring system of the embodiment of the present invention collects road real-time video information by the camera device 10, analyzes the video screen, generates information describing the road traffic condition, and transmits the information to the vehicle-mounted terminal 20, so that a part of the data processing work is completed in the camera device. It avoids all processing data by the background control center, which can effectively enhance the timeliness of data processing, improve the real-time of information, and alleviate the processing pressure of the background control center.
  • the road monitoring system may further include: a background control center 30, configured to receive the information sent by the data exchange module 13, and summarize and display the information describing the road traffic condition. Or secondary analysis.
  • the camera device 10 can also send information describing the road traffic condition to the background control center 30, and the background control center 30 can analyze according to the information describing the road traffic condition, determine the road congestion condition, and the like, and The traffic information is displayed on the display screen on the road, or is pushed to the vehicle terminal 20 through the base station, thereby inducing the traveling vehicle.
  • the workflow of the road monitoring system includes the following steps: The image capturing module 11 in the camera device 10 collects real-time video of the road, and sends the real-time video data to the image analyzing module 12; the image analyzing module 12 performs the video image.
  • Image analysis determining the current road congestion condition, generating information describing the road traffic condition, and transmitting the information to the data exchange module 13; the data exchange module 13 searching for the proximity camera device and the vehicle-mounted terminal 20, forming a contact with the proximity camera and the vehicle-mounted terminal
  • the data exchange module 13 transmits the information describing the road traffic condition generated by the image analysis module 12 to the proximity camera device and the vehicle-mounted terminal 20; the data receiving module 21 of the vehicle-mounted terminal 20 receives the transmission from the adjacent camera device.
  • the data analysis module 22 summarizes and analyzes the information describing the road traffic condition, and generates text, voice or image display results of the road traffic condition; the data analysis module 22 performs aggregation and analysis based on the information describing the road traffic condition, and calculates the current current maximum.
  • the data driving module 22 sends the display result and the optimal driving route to the data display module 23; the data display module 23 displays the current road traffic condition and the optimal driving route by text, voice or image.
  • the data exchange module 13 sends the information describing the road traffic condition generated by the image analysis module 12 to the background control center 30; the background control center 30 summarizes, displays or performs a more in-depth secondary analysis on the information describing the road traffic condition.
  • the road monitoring system of the embodiment of the present invention collects real-time video information of the road through the camera device 10, analyzes the video image, generates information describing the road traffic condition, and transmits the information to the vehicle-mounted terminal 20, so that a part of the data processing work is in the camera.
  • the device 10 is completed, avoiding all processing data by the background control center, which can effectively enhance the timeliness of data processing, improve the real-time performance of the information, and alleviate the processing pressure of the background control center.

Abstract

本发明公开一种道路监控方法,包括如下步骤:摄像装置采集道路实时视频;摄像装置对视频画面进行图像分析,判断当前道路的拥堵状况,生成描述道路交通状况的信息;摄像装置查找邻近的车载终端和其他摄像装置,将本地生成的描述道路交通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描述道路交通状况的信息;各摄像装置将接收到的和本地生成的所述描述道路交通状况的信息发送至对应的邻近车载终端。本发明还公开一种摄像装置、一种车载终端和一种道路监控系统,本发明能增强数据处理的及时性,提升信息的实时性,缓解后台控制中心的处理压力。

Description

道路监控方法、 摄像装置、 车载终端、 及系统 技术领域 本发明涉及视频监控技术领域, 更具体地, 涉及一种道路监控方法、 摄像装置、 车载终端及系统。 背景技术 随着汽车保有量的不断增加, 城市道路交通压力愈来愈大, 如何能够采取有效的 措施疏导道路上的车辆, 改善城市交通环境, 成为一个迫在眉睫急需解决的问题。 现阶段已经提出了诸多解决方案, 包括: 利用 GPS或基站定位技术, 针对采集到 的数据进行后台分析, 计算车辆行驶速度, 判断道路拥堵状况; 以及通过道路路口部 署的摄像装置, 将采集到的实时道路交通视频画面传输至后台控制中心, 由后台控制 中心进行图像分析, 判断道路拥堵状况等等。 在上述基础上, 将实时交通信息通过道 路上的显示屏展示, 或者通过基站推送给车载终端, 从而对行驶车辆进行诱导。 上述技术都需要后台强大的数据存储及分析功能来支撑, 容易导致数据推送延时 以及后台数据处理压力大、 运行不够平稳等情况的发生。 针对大数据的未来, 基于嵌 入式设备性能的飞速提升, 如何增强数据处理的及时性, 提升信息的实时性, 缓解后 台处理压力, 成为亟需解决的问题。 发明内容 本发明实施例的主要目的在于提供一种道路监控方法, 旨在解决现有技术中数据 推送延时以及后台数据处理压力大、 运行不够平稳的技术问题。 为了实现发明目的, 本发明实施例提供一种道路监控方法, 包括如下步骤: 摄像装置采集道路实时视频; 摄像装置对视频画面进行图像分析, 判断当前道路的拥堵状况, 生成描述道路交 通状况的信息; 摄像装置查找邻近的车载终端和其他摄像装置, 将本地生成的描述道路交通状况 的信息发送至其他摄像装置并接收其他摄像装置发送的描述道路交通状况的信息; 各摄像装置将接收到的和本地生成的所述描述道路交通状况的信息发送至对应的 邻近车载终端。 优选地, 在执行各摄像装置将接收到的和本地生成的所述描述道路交通状况的信 息发送至对应的邻近车载终端的步骤之后包括: 车载终端接收描述道路交通状况的信息; 对接收到描述道路交通状况的信息进行汇总及分析, 生成道路交通状况的文本、 语音或图像展示结果; 通过文本、 语音或图像的方式展示当前道路交通状况及最优行驶路线。 优选地, 上述方法还包括以下步骤: 摄像装置将描述道路交通状况的信息发送至后台控制中心; 后台控制中心对所述描述道路交通状况的信息进行汇总、 展示或者二次分析。 优选地, 所述描述道路交通状况的信息为文本信息或数据信息。 本发明实施例还提供一种摄像装置,包括图像采集模块,用于采集道路实时视频; 其还包括: 图像分析模块, 设置为对视频画面进行图像分析, 判断当前道路的拥堵状况, 生 成描述道路交通状况的信息; 数据交换模块, 设置为查找邻近的车载终端和其他摄像装置, 将本地生成的描述 道路交通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描述道路交通状 况的信息; 以及 将接收到的和本地生成的所述描述道路交通状况的信息发送至对应的邻近车载终
¾ ; 所述数据交换模块还设置为将描述道路交通状况的信息发送至后台控制中心。 本发明实施例提供一种车载终端, 其包括: 数据接收模块, 设置为接收摄像装置发送的描述道路交通状况的信息; 数据分析模块, 设置为对所述描述道路交通状况的信息进行汇总及分析, 生成道 路交通状况的文本、 语音或图像展示结果; 数据展示模块, 设置为通过文本、 语音或图像的方式展示当前道路交通状况及最 优行驶路线。 本发明实施例还提供一种道路监控系统, 包括摄像装置及车载终端; 所述摄像装 置包括: 图像采集模块, 设置为采集道路实时视频; 图像分析模块, 设置为对视频画面进行图像分析, 判断当前道路的拥堵状况, 生 成描述道路交通状况的信息; 数据交换模块, 设置为查找邻近的车载终端和其他摄像装置, 将本地生成的描述 道路交通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描述道路交通状 况的信息; 以及 将接收到的和本地生成的所述描述道路交通状况的信息发送至对应的邻近车载终
优选地, 所述车载终端包括: 数据接收模块, 设置为接收所述描述道路交通状况的信息; 数据分析模块, 设置为对所述描述道路交通状况的信息进行汇总及分析, 生成道 路交通状况的文本、 语音或图像展示结果; 数据展示模块, 设置为通过文本、 语音或图像的方式展示当前道路交通状况及最 优行驶路线。 优选地, 上述道路监控系统还包括: 后台控制中心, 用于对所述描述道路交通状况的信息进行汇总、 展示或者二次分 析。 优选地, 所述描述道路交通状况的信息为文本信息或数据信息。 由上可知, 本发明实施例通过摄像装置采集道路实时视频信息, 并对视频画面进 行分析, 生成描述道路交通状况的信息并发送给车载终端, 使得一部分数据处理的工 作在摄像装置完成, 避免了全部由后台控制中心处理数据, 能够有效增强数据处理的 及时性, 提升了信息的实时性, 缓解了后台控制中心的处理压力。 附图说明 图 1为本发明道路监控方法一实施例的流程示意图; 图 2为本发明道路监控方法一实施例中车载终端对信息进行展示的步骤详细流程 图; 图 3为本发明道路监控方法一实施例中摄像装置查找邻近的车载终端的步骤详细 流程图; 图 4为本发明道路监控方法另一实施例的流程示意图; 图 5为本发明摄像装置一实施例的结构框图; 图 6为本发明车载终端一实施例的结构框图; 图 7为本发明道路监控系统一实施例的结构框图; 图 8为本发明道路监控系统另一实施例的组成示意图。
本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。 具体实施方式 应当理解, 此处所描述的具体实施例仅用以解释本发明, 并不用于限定本发明。 本发明实施例提供一种道路监控方法, 参照图 1, 在一实施例中, 该道路监控方 法包括如下步骤: 步骤 S10, 摄像装置采集道路实时视频; 步骤 S20, 摄像装置对视频画面进行图像分析, 判断当前道路的拥堵状况, 生成 描述道路交通状况的信息; 步骤 S30, 摄像装置查找邻近的车载终端和其他摄像装置, 将本地生成的描述道 路交通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描述道路交通状况 的信息; 步骤 S40, 各摄像装置将接收到的和本地生成的该描述道路交通状况的信息发送 至对应的邻近车载终端。 本发明实施例中, 摄像装置包括架设在道路旁的摄像头, 其还加载有图像分析软 件, 当采集到道路实时视频后, 该图像分析软件对视频画面进行图像分析, 判断当前 道路是拥堵还是畅通, 并生成相应的描述道路交通状况的信息。 另外, 在摄像装置中 还集成有数据交换模块, 该数据交换模块可通过无线技术(例如 ZigBee等) 自动发现 邻近的摄像头及车载终端, 与邻近的摄像头及车载终端形成一个互联互通的自组织网 络, 从而将前述描述道路交通状况的信息发送至邻近车载终端。 车载终端可以通过语 音、 文字以及图像等方式展示该信息。 本发明实施例通过摄像装置采集道路实时视频信息, 并对视频画面进行分析, 生 成描述道路交通状况的信息并发送给车载终端, 使得一部分数据处理的工作在摄像装 置完成, 避免了全部由后台控制中心处理数据, 能够有效增强数据处理的及时性, 提 升了信息的实时性, 缓解了后台控制中心的处理压力。 参照图 2所示, 本发明一较佳实施例中, 车载终端对信息进行展示的步骤包括: 步骤 S41, 接收描述道路交通状况的信息; 步骤 S42, 对该描述道路交通状况的信息进行汇总及分析, 生成道路交通状况的 文本、 语音或图像展示结果; 步骤 S43, 通过文本、语音或图像的方式展示当前道路交通状况及最优行驶路线。 本发明实施例中, 车载终端加载有数据处理软件, 该数据处理软件可对描述道路 交通状况的信息进行处理, 生成与之对应的文本、 语音或图像展示结果。 例如, 如果 信息的内容为前方道路拥堵,该数据处理软件可在车载终端的显示屏上显示文字信息: 前方道路拥堵, 或者将该内容通过语音提示用户, 也可在车载终端的行进地图上对线 路加注颜色以标识某路段拥堵。 参照图 3, 本发明一优选实施例中, 上述步骤 S30可包括: 步骤 S31, 查找邻近的摄像装置及车载终端; 步骤 S32, 与查找到的所有的邻近摄像装置及车载终端形成一个互联互通的自组 织网络。 本发明实施例中,可将若干集成有数据交换模块的摄像装置通过 ZigBee等无线技 术进行组网, 将若干摄像装置形成一个互联互通的自组织网络, 将当前摄像装置生成 的以及从邻近摄像装置接收到的描述道路交通状况的信息发送至其他邻近摄像头。 同 时, 摄像装置还可通过数据交换模块接收邻近摄像装置发送的信息, 实现信息的全网 共享, 从而实时推送多条道路的路况, 以便用户提前选择道路, 保障道路畅通。 参照图 4所示, 本发明一实施例中, 上述方法还包括以下步骤: 步骤 S50, 摄像装置将描述道路交通状况的信息发送至后台控制中心; 步骤 S60, 后台控制中心对该信息进行汇总、 展示或者二次分析。 本发明实施例中,摄像装置还可将描述道路交通状况的信息发送至后台控制中心, 后台控制中心可根据该信息进行分析, 判断道路拥堵状况等等, 将实时交通信息通过 道路上的显示屏展示, 或者通过基站推送给车载终端, 从而对行驶车辆进行诱导。 应当说明的是, 本发明实施例中, 描述道路交通状况的信息可以为数据信息 (例 如十六进制数据信息) 也可以为文本信息。 本发明实施例还提供一种摄像装置, 参照图 5所示, 在一实施例中, 该摄像装置 10包括: 图像采集模块 11, 设置为采集道路实时视频; 图像分析模块 12, 设置为对视频画面进行图像分析, 判断当前道路的拥堵状况, 生成描述道路交通状况的信息; 数据交换模块 13, 设置为查找邻近的车载终端 20和其他摄像装置 10, 将本地生 成的描述道路交通状况的信息发送至其他摄像装置 10并接收其他摄像装置 10发送的 描述道路交通状况的信息; 以及 将接收到的和本地生成的该描述道路交通状况的信息发送至对应的邻近车载终端 20。 本发明实施例中, 图像采集模块 11可以为架设在道路旁的摄像头, 图像分析模块 12可以为加载在摄像装置 10中的图像分析软件, 当采集到道路实时视频后, 该图像 分析模块 12对视频画面进行图像分析,判断当前道路是拥堵还是畅通, 并生成相应的 描述道路交通状况的信息。 另外, 在摄像装置 10中还集成有数据交换模块 13, 该数 据交换模块 13可通过无线通信技术 (例如 ZigBee等) 自动发现邻近的摄像头及车载 终端 20, 与其形成一个互联互通的自组织网络, 从而将前述描述道路交通状况的信息 发送至邻近车载终端 20。 车载终端 20可以通过语音、 文字以及图像等方式展示该信 息。 本发明实施例还提供一种车载终端, 参照图 6所示, 本发明一较佳实施例中, 车 载终端 20可包括: 数据接收模块 21, 设置为接收该描述道路交通状况的信息; 数据分析模块 22, 设置为对该描述道路交通状况的信息进行汇总及分析, 生成道 路交通状况的文本、 语音或图像展示结果; 数据展示模块 23, 设置为通过文本、 语音或图像的方式展示当前道路交通状况及 最优行驶路线。 本发明实施例中, 车载终端 20加载有数据处理软件,该数据处理软件至少包括数 据接收模块 21、 数据分析模块 22和数据展示模块 23三大模块, 可对描述道路交通状 况的信息进行处理, 生成与之对应的文本、 语音或图像展示结果。 例如, 如果描述道 路交通状况的信息的内容为前方道路拥堵, 该数据展示模块 23可在车载终端 23的显 示屏上显示文字信息: 前方道路拥堵, 或者将该内容通过语音提示用户, 也可在车载 终端 20的行进地图上对线路加注颜色以标识某路段拥堵。 在一较佳实施例中, 数据交换模块 13可设置为: 查找邻近的摄像装置 10及车载终端 20; 与查找到的所有的邻近摄像装置 10及车载终端 20形成一个互联互通的自组织网 络。 本发明实施例中, 可将若干集成有数据交换模块 13 的摄像装置 10通过 ZigBee 等无线技术进行组网,将若干摄像装置 10形成一个互联互通的自组织网络,将当前摄 像装置 10 生成的以及从邻近摄像装置接收到的描述道路交通状况的信息发送至其他 邻近摄像头。同时,摄像装置 10还可通过数据交换模块接收邻近摄像装置发送的信息, 实现信息的全网共享, 从而实时推送多条道路的路况, 以便用户提前选择道路, 保障 道路畅通。应当说明的是,本发明实施例该数据交换模块 13和该邻近摄像装置及车载 终端 20的通信优选采用 ZigBee通信技术, 但不限于此技术, 所有类似的相关技术均 应限制在本发明权利保护范围之内。 本发明实施例还提供一种道路监控系统, 用于实现上述道路监控方法。 参照图 7 所示, 该道路监控系统包括前述摄像装置 10和车载终端 20。 本发明实施例中, 摄像 装置 10和车载终端 20的工作原理和实现方法可参照前述实施例, 在此不做赘述。 本 发明实施例的道路监控系统通过摄像装置 10采集道路实时视频信息,并对视频画面进 行分析, 生成描述道路交通状况的信息并发送给车载终端 20, 使得一部分数据处理的 工作在摄像装置完成, 避免了全部由后台控制中心处理数据, 能够有效增强数据处理 的及时性, 提升了信息的实时性, 缓解了后台控制中心的处理压力。 参照图 8所示, 本发明一实施例中, 上述道路监控系统还可包括: 后台控制中心 30, 用于接收数据交换模块 13发送的该信息, 对该描述道路交通 状况的信息进行汇总、 展示或者二次分析。 本发明实施例中,摄像装置 10还可将描述道路交通状况的信息发送至后台控制中 心 30, 后台控制中心 30可根据该描述道路交通状况的信息进行分析, 判断道路拥堵 状况等等, 将实时交通信息通过道路上的显示屏展示, 或者通过基站推送给车载终端 20, 从而对行驶车辆进行诱导。 本发明一实施例中, 道路监控系统的工作流程包括如下步骤: 摄像装置 10中的图像采集模块 11采集道路实时视频, 将实时视频数据发送至图 像分析模块 12; 图像分析模块 12对视频画面进行图像分析,判断当前道路的拥堵状况, 生成描述 道路交通状况的信息, 将该信息发送至数据交换模块 13 ; 数据交换模块 13查找邻近摄像装置和车载终端 20, 与该邻近摄像头以及车载终 端形成一个互联互通的自组织网络; 数据交换模块 13将该图像分析模块 12生成的描述道路交通状况的信息发送至该 邻近摄像装置以及车载终端 20; 车载终端 20的数据接收模块 21接收邻近摄像装置发送的描述道路交通状况的信 息, 并将该描述道路交通状况的信息转发至数据分析模块 22; 数据分析模块 22对该描述道路交通状况的信息进行汇总及分析,生成道路交通状 况的文本、 语音或图像展示结果; 数据分析模块 22基于该描述道路交通状况的信息进行汇总及分析,计算当前最优 行驶路线; 数据分析模块 22将该展示结果及最优行驶路线发送至数据展示模块 23 ; 数据展示模块 23通过文本、语音或图像的方式展示当前道路交通状况及最优行驶 路线。 数据交换模块 13将该图像分析模块 12生成的描述道路交通状况的信息发送至后 台控制中心 30; 后台控制中心 30对该描述道路交通状况的信息进行汇总、展示或者做更深入的二 次分析。 由上可知, 本发明实施例道路监控系统通过摄像装置 10采集道路实时视频信息, 并对视频画面进行分析, 生成描述道路交通状况的信息并发送给车载终端 20, 使得一 部分数据处理的工作在摄像装置 10完成,避免了全部由后台控制中心处理数据, 能够 有效增强数据处理的及时性,提升了信息的实时性,缓解了后台控制中心的处理压力。
以上仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利用本发 明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运用在其他相关 的技术领域, 均同理包括在本发明的专利保护范围内。 工业实用性 本发明实施例提供的技术方案可以应用于视频监控技术领域, 增强数据处理的及 时性, 提升信息的实时性, 缓解后台控制中心的处理压力。

Claims

权 利 要 求 书
1、 一种道路监控方法, 包括如下步骤:
摄像装置采集道路实时视频;
摄像装置对视频画面进行图像分析, 判断当前道路的拥堵状况, 生成描述 道路交通状况的信息;
摄像装置查找邻近的车载终端和其他摄像装置, 将本地生成的描述道路交 通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描述道路交通状 况的信息;
各摄像装置将接收到的和本地生成的所述描述道路交通状况的信息发送至 对应的邻近车载终端。 、 如权利要求 1所述的道路监控方法, 其中, 在执行各摄像装置将接收到的和本 地生成的所述描述道路交通状况的信息发送至对应的邻近车载终端的步骤之后 包括:
车载终端接收描述道路交通状况的信息;
对接收到描述道路交通状况的信息进行汇总及分析, 生成道路交通状况的 文本、 语音或图像展示结果;
通过文本、 语音或图像的方式展示当前道路交通状况及最优行驶路线。 、 如权利要求 1或 2所述的道路监控方法, 其中, 还包括以下步骤: 摄像装置将描述道路交通状况的信息发送至后台控制中心;
后台控制中心对所述描述道路交通状况的信息进行汇总、 展示或者二次分 析。 、 如权利要求 3所述的道路监控方法, 其中, 所述描述道路交通状况的信息为文 本信息或数据信息。 、 一种摄像装置, 包括图像采集模块, 用于采集道路实时视频, 还包括:
图像分析模块, 设置为对视频画面进行图像分析, 判断当前道路的拥堵状 况, 生成描述道路交通状况的信息; 数据交换模块, 设置为查找邻近的车载终端和其他摄像装置, 将本地生成 的描述道路交通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描 述道路交通状况的信息; 以及
将接收到的和本地生成的所述描述道路交通状况的信息发送至对应的邻近 车载终端;
所述数据交换模块还设置为将描述道路交通状况的信息发送至后台控制中 心。 、 一种车载终端, 包括:
数据接收模块, 设置为接收摄像装置发送的描述道路交通状况的信息; 数据分析模块, 设置为对所述描述道路交通状况的信息进行汇总及分析, 生成道路交通状况的文本、 语音或图像展示结果;
数据展示模块, 设置为通过文本、 语音或图像的方式展示当前道路交通状 况及最优行驶路线。 、 一种道路监控系统, 包括摄像装置及车载终端; 所述摄像装置包括:
图像采集模块, 设置为采集道路实时视频;
图像分析模块, 设置为对视频画面进行图像分析, 判断当前道路的拥堵状 况, 生成描述道路交通状况的信息;
数据交换模块, 设置为查找邻近的车载终端和其他摄像装置, 将本地生成 的描述道路交通状况的信息发送至其他摄像装置并接收其他摄像装置发送的描 述道路交通状况的信息; 以及
将接收到的和本地生成的所述描述道路交通状况的信息发送至对应的邻近 车载终端。 、 如权利要求 7所述的道路监控系统, 其中, 所述车载终端包括: 数据接收模块, 设置为接收所述描述道路交通状况的信息;
数据分析模块, 设置为对所述描述道路交通状况的信息进行汇总及分析, 生成道路交通状况的文本、 语音或图像展示结果;
数据展示模块, 设置为通过文本、 语音或图像的方式展示当前道路交通状 况及最优行驶路线。 、 如权利要求 7或 8所述的道路监控系统, 其中, 还包括:
后台控制中心, 用于对所述描述道路交通状况的信息进行汇总、 展示或者 二次分析。 0、 如权利要求 9所述的道路监控系统, 其中, 所述描述道路交通状况的信息为文 本信息或数据信息。
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