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WO2015117370A1 - 一种移动通信终端及交通监测设备探测方法 - Google Patents

一种移动通信终端及交通监测设备探测方法 Download PDF

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Publication number
WO2015117370A1
WO2015117370A1 PCT/CN2014/088971 CN2014088971W WO2015117370A1 WO 2015117370 A1 WO2015117370 A1 WO 2015117370A1 CN 2014088971 W CN2014088971 W CN 2014088971W WO 2015117370 A1 WO2015117370 A1 WO 2015117370A1
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WIPO (PCT)
Prior art keywords
traffic monitoring
monitoring device
map
detected
mobile communication
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PCT/CN2014/088971
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English (en)
French (fr)
Inventor
张楠
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ZTE Corp
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ZTE Corp
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S17/00Systems using the reflection or reradiation of electromagnetic waves other than radio waves, e.g. lidar systems
    • G01S17/02Systems using the reflection of electromagnetic waves other than radio waves
    • G01S17/06Systems determining position data of a target
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/34Route searching; Route guidance
    • G01C21/36Input/output arrangements for on-board computers
    • G01C21/3697Output of additional, non-guidance related information, e.g. low fuel level
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S13/00Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
    • G01S13/02Systems using reflection of radio waves, e.g. primary radar systems; Analogous systems
    • G01S13/06Systems determining position data of a target

Definitions

  • the present invention relates to the field of communications, and in particular, to a mobile communication terminal and a method for detecting a traffic monitoring device.
  • the vehicle owners in order to avoid violations of traffic regulations at these intersections and sections, the vehicle owners usually find these traffic monitoring devices by means of electronic maps marked with traffic monitoring devices stored in the mobile communication terminals.
  • an embodiment of the present invention provides a mobile communication terminal and a method for detecting a traffic monitoring device, which realizes detecting a traffic monitoring device by using a detector of the mobile communication terminal, and avoids an electronic map stored in the mobile communication terminal.
  • the information of the traffic monitoring equipment marked in the inaccuracy generates incorrect information to cause inconvenience to the owner.
  • An embodiment of the present invention provides a mobile communication terminal, including: a detector, configured to detect a traffic monitoring device in an area to be detected, and obtain a location of the detected traffic monitoring device; and a prompting system configured to generate according to the location Prompt message.
  • the mobile communication terminal further comprising: a processor configured to determine whether the detected traffic monitoring device is marked on the pre-stored map, and the detected traffic is not marked on the pre-stored map When the device is monitored, the detected traffic monitoring device is marked and saved on the map according to the location, so that when the mobile communication terminal enters the to-be-detected region again, it can be acquired according to the map. The location of the detected traffic monitoring device.
  • the detector is a full-frequency radar detector
  • the full-frequency radar detector can receive X frequency, K frequency, Ku frequency, new frequency, Ka frequency, LASER (laser), Any of a variety of frequency bands of Ka-Laser and P-band.
  • the processor is further configured to send a map marking the detected traffic monitoring device to the server, such that the The server updates the map in the server according to the map.
  • the prompt information is voice information
  • the prompting system includes: a speaker, configured to perform voice broadcast on the prompt information.
  • the prompt information is voice information
  • the prompting system is further configured to send the prompt information to another device capable of playing voice to perform voice broadcast.
  • the embodiment of the invention further provides a method for detecting a traffic monitoring device, comprising: detecting a traffic monitoring device in an area to be detected, obtaining a location of the detected traffic monitoring device; and determining whether the detection is marked on the pre-stored map. a traffic monitoring device; when the detected traffic monitoring device is not marked on the pre-stored map, the detected traffic monitoring device is marked and saved on the map according to the location, In order to make the location to be detected again, the location of the detected traffic monitoring device can be obtained according to the map; and the prompt information is generated according to the location.
  • the above-mentioned traffic monitoring device detecting method wherein the detecting the traffic monitoring device in the area to be detected is specifically: detecting a traffic monitoring device in the area to be detected by a full-frequency radar detector, wherein the full-frequency radar detector can receive the Any of a variety of frequency bands, X-frequency, K-frequency, Ku-frequency, new frequency, Ka-frequency, LASER (laser), Ka-Laser, and P-frequency.
  • the above-mentioned traffic monitoring device detecting method wherein the pre-stored map is acquired from a server, and after the marking and saving the detected traffic monitoring device on the map, the method further includes: marking the A map of the detected traffic monitoring device is sent to the server to cause the server to update the map in the server according to the map.
  • the invention provides a mobile communication terminal and a method for detecting a traffic monitoring device, which realizes the detection of a traffic monitoring device by using a detector of the mobile communication terminal, and real-times the information of the traffic monitoring device marked in the electronic map stored in the mobile communication terminal. Updated to avoid the inconvenience caused to the owner.
  • FIG. 1 is a schematic structural diagram of a mobile communication terminal according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic structural diagram of a mobile communication terminal according to Embodiment 2 of the present invention.
  • FIG. 3 is a schematic diagram showing the workflow of detecting a traffic monitoring device by using the mobile communication terminal provided by the present invention.
  • FIG. 4 is a schematic flowchart of updating a website of a corresponding manufacturer's official website by using the mobile communication terminal provided by the present invention.
  • the embodiment of the present invention is directed to the prior art, when using the electronic map stored in the mobile communication terminal to discover the traffic monitoring device, the inconvenience caused to the vehicle owner due to the inaccurate information of the marked traffic monitoring device in the electronic map is provided.
  • a mobile communication terminal and a method for detecting a traffic monitoring device realize real-time updating of information of a traffic monitoring device marked in an electronic map stored in a mobile communication terminal by using a detector of the mobile communication terminal, thereby avoiding The problem of inconvenience to the owner.
  • FIG. 1 is a schematic structural diagram of a mobile communication terminal according to Embodiment 1 of the present invention. As shown in the figure, the mobile communication terminal 10 includes:
  • the detector 11 is configured to detect a traffic monitoring device in the area to be detected, and obtain a location of the detected traffic monitoring device;
  • the prompting system 12 is configured to generate prompt information based on the location.
  • the mobile communication terminal detects the traffic monitoring device by using a detector, and generates prompt information according to the detected result, wherein the detected result includes the detected location information of the traffic monitoring device, for example, the detected traffic monitoring The latitude and longitude of the device.
  • the mobile communication terminal provided by the present invention can generate prompt information according to the detection result of the detector, thereby generating prompt information according to the detection result of the detector, thereby avoiding traffic monitoring of the mark in the electronic map stored in the mobile communication terminal.
  • the information of the equipment is inaccurate and the wrong prompt information is generated to bring inconvenience to the owner.
  • the traffic monitoring equipment can be a speed measuring facility, a red light monitoring facility, and the like.
  • the above mobile communication terminal further comprising: a processor configured to determine whether the detected traffic monitoring device is marked on the pre-stored map, and the detected information is not marked on the pre-stored map The traffic monitoring device, according to the location, marking and storing the detected traffic monitoring device on the map, so that when the mobile communication terminal enters the to-be-detected area again, according to the map Obtaining the location of the detected traffic monitoring device.
  • the mobile communication terminal described above can update the stored electronic map in real time according to the result detected by the detector, thereby ensuring the accuracy of the information of the traffic monitoring device marked in the electronic map stored in the mobile communication terminal, thereby avoiding the accuracy.
  • the wrong electronic map is inconvenient for the user.
  • the mobile communication terminal wherein the detector is a full-frequency radar detector, the full-frequency radar detection
  • the device can receive any one of a plurality of frequency bands including X frequency, K frequency, Ku frequency, new frequency, Ka frequency, LASER (Laser), Ka-Laser and P frequency.
  • the purpose of the above operation is to more fully detect a variety of different traffic monitoring devices by using full frequency radar detectors.
  • the pre-stored map in the mobile communication terminal is downloaded from a server, and the server stores an electronic map marked with a traffic monitoring device.
  • the electronic map in the server can be maintained by the manufacturer of the mobile communication terminal.
  • a current electronic map is stored by default, and the update of the electronic map can be provided by the official website of the manufacturer of the mobile communication terminal.
  • manpower and time it is difficult for manufacturers to update the electronic map in real time.
  • the mobile communication terminal wherein the pre-stored map is acquired from a server, the processor is further configured to mark the detected A map of the traffic monitoring device is sent to the server to cause the server to update the map in the server based on the map.
  • the purpose of the above operation is that the mobile communication terminal can synchronize the data in the server so that the map in the server can be updated in time. Specifically, when the detected traffic monitoring device is marked and saved on the map according to the location, when the mobile communication terminal performs the networked data operation again, the mobile communication terminal may perform whether the map tag is uploaded. Remind that if the user is willing at this time, the map stored in the mobile communication terminal can be uploaded to the map of the official website of the manufacturer of the mobile communication terminal, and the manufacturer can compare the map data of the official website to see if it is necessary to use the official website. The map data is updated.
  • the mobile communication terminal wherein the prompt information is voice information
  • the prompting system may include: a speaker, configured to perform voice broadcast on the prompt information.
  • the mobile communication terminal may broadcast the prompt information generated according to the location of the traffic monitoring device by voice. Specifically, the broadcasted voice information may notify the vehicle owner of the traffic. Monitor the distance between the equipment and the vehicle to alert the owner to comply with the relevant traffic rules.
  • the prompting system may be further configured to send the prompt information to other devices capable of playing voice for voice broadcast.
  • the mobile communication terminal can be associated with the in-vehicle system to play reminders and alarms through the car audio system; the mobile communication terminal can also be associated with an external device such as a Bluetooth headset to perform alarms and reminders.
  • the mobile communication terminal 20 includes:
  • the detector 201 is configured to implement the function of the detector in the mobile communication terminal provided by Embodiment 1 of the present invention, and detect the traffic monitoring device;
  • GPS positioning 202 configured to perform positioning on the traffic monitoring device
  • a memory 203 configured to store an electronic map
  • the CPU processor 204 is configured to implement the functions of the processor and the prompting system in the mobile communication terminal provided by Embodiment 1 of the present invention, and determine whether the electronic monitoring map stored in the memory 203 is marked with the traffic monitoring device detected by the detector 201. When not marked, according to the detected latitude and longitude of the traffic monitoring device, the detected traffic monitoring device is marked and saved on the electronic map, and the voice prompt information is generated;
  • the speaker 205 is configured to implement the function of the speaker provided in Embodiment 1 of the present invention, and broadcast the voice prompt information.
  • the mobile communication terminal can also perform data synchronization with the manufacturer's official website map 21 of the mobile communication terminal through the network; and can also associate with the car audio system 22 through the vehicle interface, and send the voice prompt information to the car audio through the vehicle interface.
  • the system performs the broadcast; the wireless interface can also be associated with the external device 23, and the voice prompt information is sent to the external device through the wireless interface for broadcast.
  • the invention also provides a method for detecting a traffic monitoring device, comprising: detecting a traffic monitoring device in an area to be detected, obtaining a location of the detected traffic monitoring device; and determining whether the detected location is marked on the pre-stored map. a traffic monitoring device; when the detected traffic monitoring device is not marked on the pre-stored map, the detected traffic monitoring device is marked and saved on the map according to the location, so that When the area to be detected is re-entered, the location of the detected traffic monitoring device can be obtained according to the map; and the prompt information is generated according to the location.
  • the above-mentioned traffic monitoring device detecting method wherein the detecting the traffic monitoring device in the area to be detected is specifically: detecting a traffic monitoring device in the area to be detected by a full-frequency radar detector, wherein the full-frequency radar detector can receive the Any of a variety of frequency bands, X-frequency, K-frequency, Ku-frequency, new frequency, Ka-frequency, LASER (laser), Ka-Laser, and P-frequency.
  • the above-mentioned traffic monitoring device detecting method wherein the pre-stored map is acquired from a server, and after the marking and saving the detected traffic monitoring device on the map, the method further includes: marking the A map of the detected traffic monitoring device is sent to the server to cause the server to update the map in the server according to the map.
  • FIG. 3 is a schematic diagram of a workflow of detecting a traffic monitoring device by using the mobile communication terminal provided by the present invention. As shown in the figure, the workflow includes:
  • Step S300 the function of the detector of the mobile communication terminal and the GPS positioning function is turned on;
  • Step S302 the initialization of the local map is mainly performed by using GPS, obtaining the current regional landmark, and completing the initialization of the local map;
  • Step S304 detecting by the detector, and continuously repositioning using the GPS
  • Step S306 whether the traffic monitoring device is detected, if yes, proceed to step S308, otherwise proceed to step S304;
  • Step S308 according to the positioning of the GPS, in the local map to determine whether the traffic monitoring device is marked, if yes, then proceeds to step S312, otherwise, proceeds to step S310;
  • Step S310 marking the traffic monitoring device in the local map
  • Step S312 performing map navigation, sending data such as latitude and longitude of the traffic monitoring device of the current location to the CPU, and waiting for processing;
  • Step S314 the CPU determines whether there is a speaker function by identifying the mobile communication terminal, and if so, proceeds to step S316, otherwise proceeds to step S318;
  • Step S316 converting data such as latitude and longitude of the traffic monitoring device into voice data for output from the horn;
  • Step S320 after the vehicle system interface or the external device wireless interface is connected, the CPU converts the data such as the latitude and longitude of the traffic monitoring device into voice data and transmits the data to the car audio system or the external device for broadcast notification or alarm.
  • FIG. 4 is a schematic diagram of a process for updating a website of a corresponding manufacturer's official website by using the mobile communication terminal provided by the present invention. As shown in the figure, the process includes:
  • Step S400 after the mobile communication terminal and the official website of the corresponding manufacturer are connected through the network, the mobile communication terminal reminds whether to perform the traffic monitoring device tag uploading, and if yes, proceeds to step S402;
  • Step S402 creating a new traffic monitoring device tag on the official website
  • Step S403 updating the official website map according to the newly created mark.
  • the detecting traffic monitoring device is implemented by using the detector of the mobile communication terminal, and the information of the traffic monitoring device marked in the electronic map stored in the mobile communication terminal is updated in real time, thereby avoiding Inconvenience to the owner.

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  • Engineering & Computer Science (AREA)
  • Radar, Positioning & Navigation (AREA)
  • Remote Sensing (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Automation & Control Theory (AREA)
  • Traffic Control Systems (AREA)
  • Navigation (AREA)

Abstract

一种移动通信终端及交通监测设备探测方法,移动通信终端(10)包括:探测器(11),设置为探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;提示系统(12),设置为根据该位置,生成提示信息。

Description

一种移动通信终端及交通监测设备探测方法 技术领域
本发明涉及通信领域,尤其涉及一种移动通信终端及交通监测设备探测方法。
背景技术
随着车辆的普及,发生交通事故的次数也越来越多,为了避免交通事故的发生,在现有的道路中,通常会在一些地段的路口及路段处设有交通监测设备,以监测在这些路口及路段处的车辆是否符合交通法规。
在现有技术中,为了避免在这些路口及路段处出现违反交通法规的行为,车主通常会借助于移动通信终端中存储的标记有交通监测设备的电子地图来发现这些交通监测设备。
然而,当使用现有的电子地图来发现交通监测设备时,只能够发现在地图上已经标记出的交通监测设备,而对于新增的,在电子地图上未作出标记的交通监测设备则无法发现,或对于一些已经拆除的,却未在地图中移除相应标记的交通监测设备造成误发现,从而给车主带来不便。
发明内容
为了解决上述技术问题,本发明实施例提供了一种移动通信终端及交通监测设备探测方法,通过使用移动通信终端的探测器来实现探测交通监测设备,避免了由于移动通信终端内存储的电子地图中标记的交通监测设备的信息不准确而生成错误的提示信息给车主带来不便的问题。
本发明实施例提供了一种移动通信终端,包括:探测器,设置为探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;提示系统,设置为根据所述位置,生成提示信息。
上述的移动通信终端,其中,还包括:处理器,设置为判断预存储的地图上是否标记有所述探测到的交通监测设备,并在预存储的地图上并未标记所述探测到的交通监测设备时,根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存,以使得所述移动通信终端再次进入所述待检测区域时,能够根据所述地图获取所述探测到的交通监测设备的位置。
上述的移动通信终端,其中,所述探测器为全频雷达探测器,所述全频雷达探测器能接收包括X频、K频、Ku频、新频、Ka频、LASER(雷射)、Ka-Laser及P频的多种频段中的任意一种频段。
上述的移动通信终端,其中,所述预存储的地图从一服务器中获取,所述处理器进一步设置为将标记了所述探测到的交通监测设备的地图发送给所述服务器,以使得所述服务器根据所述地图对所述服务器中的地图进行更新。
上述的移动通信终端,其中,所述提示信息为语音信息,所述提示系统包括:扬声器,设置为将所述提示信息进行语音播报。
上述的移动通信终端,其中,所述提示信息为语音信息,所述提示系统进一步设置为将所述提示信息发送给能够播放语音的其他设备以进行语音播报。
本发明实施例还提供了一种交通监测设备探测方法,包括:探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;判断在预存储的地图上是否标记有所述探测到的交通监测设备;当在预存储的地图上并未标记所述探测到的交通监测设备时,根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存,以使得再次进入所述待检测区域时,能够根据所述地图获取所述探测到的交通监测设备的位置;根据所述位置,生成提示信息。
上述的交通监测设备探测方法,其中,所述探测待检测区域内的交通监测设备具体为:通过全频雷达探测器探测待检测区域内的交通监测设备,所述全频雷达探测器能接收包括X频、K频、Ku频、新频、Ka频、LASER(雷射)、Ka-Laser及P频的多种频段中的任意一种频段。
上述的交通监测设备探测方法,其中,所述预存储的地图从一服务器中获取,所述在所述地图上对所述探测到的交通监测设备进行标记并保存之后还包括:将标记了所述探测到的交通监测设备的地图发送给所述服务器,以使得所述服务器根据所述地图对所述服务器中的地图进行更新。
本发明的上述技术方案的有益效果如下:
本发明提供了一种移动通信终端及交通监测设备探测方法,通过使用移动通信终端的探测器来实现探测交通监测设备,对存储在移动通信终端的电子地图中标记的交通监测设备的信息进行实时更新,从而避免了给车主带来不便的问题。
附图说明
图1为本发明实施例1提供的移动通信终端的结构示意图。
图2为本发明实施例2提供的移动通信终端的结构示意图。
图3为采用本发明提供的移动通信终端来探测交通监测设备的工作流程示意图。
图4为采用本发明提供的移动通信终端对对应厂商的官网地图库进行更新的流程示意图。
具体实施方式
为使本发明要解决的技术问题、技术方案和优点更加清楚,下面将结合附图及具体实施例进行详细描述。
本发明实施例针对现有技术中,在使用移动通信终端中存储的电子地图发现交通监测设备时,由于电子地图中标记的交通监测设备的信息不准确而给车主带来不便的问题,提供了一种移动通信终端及交通监测设备探测方法,通过使用移动通信终端的探测器来实现探测交通监测设备,对存储在移动通信终端的电子地图中标记的交通监测设备的信息进行实时更新,从而避免了给车主带来不便的问题。
图1为本发明实施例1提供的移动通信终端的结构示意图,如图所示,所述移动通信终端10包括:
探测器11,设置为探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;
提示系统12,设置为根据所述位置,生成提示信息。
上述的移动通信终端,通过探测器来探测交通监测设备,并根据探测出的结果来生成提示信息,其中探测出的结果中包括探测到的交通监测设备的位置信息,例如包括探测到的交通监测设备的经纬度。
本发明提供的移动通信终端,由于能够根据探测器探测到的结果来生成提示信息,从而能够根据探测器探测结果来生成提示信息,避免了由于移动通信终端内存储的电子地图中标记的交通监测设备的信息不准确而生成错误的提示信息给车主带来不便的问题,其中,交通监测设备可以为测速设施、闯红灯监测设施等。
上述的移动通信终端,其中,还可以包括:处理器,设置为判断预存储的地图上是否标记有所述探测到的交通监测设备,并在预存储的地图上并未标记所述探测到的交通监测设备时,根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存,以使得所述移动通信终端再次进入所述待检测区域时,能够根据所述地图获取所述探测到的交通监测设备的位置。
上述的移动通信终端,由于能够根据探测器探测到的结果来对存储的电子地图进行实时更新,从而能够确保移动通信终端内存储的电子地图中标记的交通监测设备的信息的准确性,避免了错误的电子地图给用户带来不便。
由于,各城市道路的测速设施及闯红灯监测设施等使用的雷达频率存在并不相同的情况,同一个城市有些装了来自三四个国家的不同频段的测速设施及闯红灯监测设施。
为了能够更全面地探测到多种不同的交通监测设备,在本发明一具体的实施例中,上述的移动通信终端,其中,所述探测器为全频雷达探测器,所述全频雷达探测器能接收包括X频、K频、Ku频、新频、Ka频、LASER(雷射)、Ka-Laser及P频的多种频段中的任意一种频段。
上述操作的目的是,通过使用全频雷达探测器来更全面地探测到多种不同的交通监测设备。
当然,本领域技术人员可以理解的是,上面提及的使用全频雷达探测器来探测到多种不同的交通监测设备只是一种具体的实施方式,而本发明并不以此为限。
上述的移动通信终端中预存储的地图是从服务器中下载得到的,该服务器中存储了标记了交通监测设备的电子地图,该服务器中的电子地图可以由移动通信终端的生产厂商来维护,每个移动通信终端出厂时,会默认存储有一份当前最新的电子地图,该电子地图的更新可以由移动通信终端的生产厂商的官网来提供。然而,生产厂商由于人力、时间等因素的限制,很难做到对电子地图的实时更新。
为了解决上述技术问题,在本发明一具体的实施例中,上述的移动通信终端,其中,所述预存储的地图从一服务器中获取,所述处理器进一步设置为将标记了所述探测到的交通监测设备的地图发送给所述服务器,以使得所述服务器根据所述地图对所述服务器中的地图进行更新。
上述操作的目的是,移动通信终端通过与服务器进行数据同步,使得服务器中的地图能够得到及时更新。具体的,当根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存后,在移动通信终端再次进行联网数据操作时,移动通信终端可以进行地图标记是否上传的提醒,如果用户此时愿意,可以将移动通信终端中存储的地图上传到移动通信终端的生产厂商的官网上的地图库,该生产厂商可以对比官网上的地图库数据,查看是否需要对官网上的地图库数据进行更新。同样的,当移动通信终端的生产厂商的官网上的地图库数据进行了更新后,当移动通信终端在一定周期后进行联网时,可以提醒用户是否需要对比地图库数据以及是否需要更新地图库数据。
在本发明一具体的实施例中,上述的移动通信终端,其中,所述提示信息为语音信息,所述提示系统可以包括:扬声器,设置为将所述提示信息进行语音播报。
为了方便地使得车主获取到关于交通监测设备的相关信息,移动通信终端可以将根据交通监测设备的位置所生成的提示信息,通过语音进行播报,具体的,播报的该语音信息可以向车主通知交通监测设备与车辆的距离,提醒车主注意遵守相关的交通规则。
如果移动通信终端不方便进行语音播放时,所述提示系统可以进一步设置为将所述提示信息发送给能够播放语音的其他设备以进行语音播报。
移动通信终端可以与车载系统进行关联,通过车载音响系统来进行播放提醒及报警;移动通信终端还可以与蓝牙耳机之类的外置设备关联,进行报警和提醒。
图2为本发明实施例2提供的移动通信终端的结构示意图,如图所示,所述移动通信终端20包括:
探测器201,设置为实现本发明实施例1提供的移动通信终端中的探测器的功能,对交通监测设备进行探测;
GPS定位202,设置为进行对交通监测设备进行定位;
存储器203,设置为存储电子地图;
CPU处理器204,设置为实现本发明实施例1提供的移动通信终端中的处理器及提示系统的功能,判断存储器203中存储的电子地图上是否标记有由探测器201探测到的交通监测设备;当未标记时,根据探测到的交通监测设备的经纬度,在电子地图上对探测到的交通监测设备进行标记并保存,同时生成语音提示信息;
喇叭205,设置为实现本发明实施例1提供的扬声器的功能,将语音提示信息播报出来。
同时,该移动通信终端还可以通过网络与该移动通信终端的生产厂商的官网地图库21进行数据同步;还可以通过车载接口与车载音响系统22关联,通过车载接口将语音提示信息发送给车载音响系统来进行播报;也可以通过无线接口与外置设备23关联,通过无线接口将语音提示信息发送给外置设备来进行播报。
本发明还提供了一种交通监测设备探测方法,包括:探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;判断在预存储的地图上是否标记有所述探测到的交通监测设备;当在预存储的地图上并未标记所述探测到的交通监测设备时,根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存,以使得再次进入所述待检测区域时,能够根据所述地图获取所述探测到的交通监测设备的位置;根据所述位置,生成提示信息。
上述的交通监测设备探测方法,其中,所述探测待检测区域内的交通监测设备具体为:通过全频雷达探测器探测待检测区域内的交通监测设备,所述全频雷达探测器能接收包括X频、K频、Ku频、新频、Ka频、LASER(雷射)、Ka-Laser及P频的多种频段中的任意一种频段。
上述的交通监测设备探测方法,其中,所述预存储的地图从一服务器中获取,所述在所述地图上对所述探测到的交通监测设备进行标记并保存之后还包括:将标记了所述探测到的交通监测设备的地图发送给所述服务器,以使得所述服务器根据所述地图对所述服务器中的地图进行更新。
图3为采用本发明提供的移动通信终端来探测交通监测设备的工作流程示意图,如图所示,其工作流程包括:
步骤S300,打开移动通信终端的探测器及GPS定位的功能;
步骤S302,本地地图的初始化,主要通过GPS进行定位,得到当前所在的区域地标,完成本地地图的初始化工作;
步骤S304,通过探测器进行探测,同时使用GPS的不断重新定位;
步骤S306,是否探测到交通监测设备,如果是,则进入步骤S308,否则进入步骤S304;
步骤S308,根据GPS的定位,在本地地图中进行对比判定是否对该交通监测设备进行了标记,如果是,则进入步骤S312,否则,进入步骤S310;
步骤S310,在本地地图中对该交通监测设备进行标记;
步骤S312,进行地图导航,将当前地点的交通监测设备的经纬度等数据送往CPU,等待处理;
步骤S314,CPU通过对该移动通信终端进行识别,判断是否具有喇叭功能,如果是,进入步骤S316,否则进入步骤S318;
步骤S316,将交通监测设备的经纬度等数据转换成语音数据从喇叭进行输出;
步骤S318,提示接入外置设备或者车载系统;
步骤S320,通过车载系统接口或者外置设备无线接口连接后,CPU将交通监测设备的经纬度等数据转换成语音数据传给车载音响系统或者外置设备进行播报提醒或报警。
图4为采用本发明提供的移动通信终端对对应厂商的官网地图库进行更新的流程示意图,如图所示,该流程包括:
步骤S400,当移动通信终端与对应厂商的官网通过网络连接后,移动通信终端提醒是否进行交通监测设备标记上传,如果是,进入步骤S402;
步骤S402,在官网上创建新的交通监测设备标记;
步骤S403,根据新建的标记对官网地图进行更新。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明所述原理的前提下,还可以作出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。
工业实用性
基于本发明实施例提供的上述技术方案,通过使用移动通信终端的探测器来实现探测交通监测设备,对存储在移动通信终端的电子地图中标记的交通监测设备的信息进行实时更新,从而避免了给车主带来不便的问题。

Claims (9)

  1. 一种移动通信终端,包括:
    探测器,设置为探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;
    提示系统,设置为根据所述位置,生成提示信息。
  2. 如权利要求1所述移动通信终端,其中,还包括:
    处理器,设置为判断预存储的地图上是否标记有所述探测到的交通监测设备,并在预存储的地图上未标记所述探测到的交通监测设备时,根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存,以使得所述移动通信终端再次进入所述待检测区域时,能够根据所述地图获取所述探测到的交通监测设备的位置。
  3. 如权利要求1所述移动通信终端,其中,所述探测器为全频雷达探测器,所述全频雷达探测器能接收包括X频、K频、Ku频、新频、Ka频、雷射LASER、Ka-Laser及P频的多种频段中的任意一种频段。
  4. 如权利要求2所述移动通信终端,其中,所述预存储的地图从一服务器中获取,所述处理器进一步设置为将标记了所述探测到的交通监测设备的地图发送给所述服务器,以使得所述服务器根据所述地图对所述服务器中的地图进行更新。
  5. 如权利要求1所述移动通信终端,其中,所述提示信息为语音信息,所述提示系统包括:
    扬声器,设置为将所述提示信息进行语音播报。
  6. 如权利要求1所述移动通信终端,其中,所述提示信息为语音信息,所述提示系统进一步设置为将所述提示信息发送给能够播放语音的其他设备以进行语音播报。
  7. 一种交通监测设备探测方法,包括:
    探测待检测区域内的交通监测设备,获取探测到的交通监测设备的位置;
    判断在预存储的地图上是否标记有所述探测到的交通监测设备;
    当在预存储的地图上并未标记所述探测到的交通监测设备时,根据所述位置,在所述地图上对所述探测到的交通监测设备进行标记并保存,以使得再次进入所述待检测区域时,能够根据所述地图获取所述探测到的交通监测设备的位置;
    根据所述位置,生成提示信息。
  8. 如权利要求7所述方法,其中,所述探测待检测区域内的交通监测设备具体为:
    通过全频雷达探测器探测待检测区域内的交通监测设备,所述全频雷达探测器能接收包括X频、K频、Ku频、新频、Ka频、雷射LASER、Ka-Laser及P频的多种频段中的任意一种频段。
  9. 如权利要求7所述方法,其中,所述预存储的地图从一服务器中获取,所述在所述地图上对所述探测到的交通监测设备进行标记并保存之后还包括:
    将标记了所述探测到的交通监测设备的地图发送给所述服务器,以使得所述服务器根据所述地图对所述服务器中的地图进行更新。
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