WO2016188286A1 - 危险等级的确定方法及装置 - Google Patents

危险等级的确定方法及装置 Download PDF

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Publication number
WO2016188286A1
WO2016188286A1 PCT/CN2016/080157 CN2016080157W WO2016188286A1 WO 2016188286 A1 WO2016188286 A1 WO 2016188286A1 CN 2016080157 W CN2016080157 W CN 2016080157W WO 2016188286 A1 WO2016188286 A1 WO 2016188286A1
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WO
WIPO (PCT)
Prior art keywords
monitoring area
determining
level
monitored terminal
area
Prior art date
Application number
PCT/CN2016/080157
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English (en)
French (fr)
Inventor
郝志坚
朱钰
Original Assignee
中兴通讯股份有限公司
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Filing date
Publication date
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Publication of WO2016188286A1 publication Critical patent/WO2016188286A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/021Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/029Location-based management or tracking services
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/14Central alarm receiver or annunciator arrangements
    • 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
    • H04N7/183Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a single remote source
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms
    • G08B21/24Reminder alarms, e.g. anti-loss alarms

Definitions

  • the present invention relates to the field of communications, and in particular to a method and apparatus for determining a level of danger.
  • Parents can be said to have a lot of love, but parents are living in life. They can't take care of their children during the day, but they want to keep an eye on their children's status, especially if they are safe. It is what every parent will have.
  • China has now entered an aging society. Many elderly people are lost every year. Although children can't stay with the elderly at all times, they also want to know the location of the elderly when they need it.
  • the location information of the child or the elderly can be obtained by the positioning device.
  • the positioning device can only clearly know where the child or the old person is, and cannot determine whether the place where the child is located is a safe area or Alarm processing is performed when the area is a hazardous area. That is to say, in the related art, there is no technology that can define different levels of monitoring areas according to user requirements, and analyzes the positioning information according to the area, but needs to monitor the positioning result of the positioning device according to the positioning of the positioning device. Determine if the area where the child or the elderly are located is safe. As a result, the positioning efficiency is low.
  • the present invention provides a method and a device for determining a hazard level, so as to at least solve the problem that the hazard level of the monitoring area cannot be defined in the related art, so that the monitoring of different levels of the monitoring area cannot be realized, resulting in low positioning efficiency. No effective solution has yet been proposed.
  • a method for determining a hazard level including: determining current location information of a monitored terminal; determining current monitoring where the current location information is located according to a correspondence between the monitored area and a hazard level The hazard level of the area, wherein at least two of the monitoring areas including the current monitoring area have different hazard levels.
  • the method before determining the hazard level of the current monitoring area according to the correspondence between the monitoring area and the hazard level, the method further includes: determining a correspondence between the monitoring area and the hazard level.
  • determining the correspondence between the monitoring area and the hazard level includes: receiving a correspondence between the monitoring area and the hazard level sent by the monitoring terminal for monitoring the monitored terminal.
  • the method further includes: after determining that the hazard level corresponding to the current monitoring area is greater than a predetermined value, performing an alarm.
  • the method further includes: determining location information of the monitored terminal corresponding to the hazard level of the current monitoring area. And a frequency of at least two different monitoring levels including the current monitoring area respectively corresponding to different frequencies for acquiring location information of the monitored terminal; acquiring the monitored according to the determined frequency Location information of the terminal.
  • the higher the hazard level of the monitored area the greater the frequency of obtaining the location information of the monitored terminal.
  • the method further includes: recording an acquisition time of acquiring location information of the monitored terminal.
  • the method further includes: determining, according to the acquired location information of the monitored terminal and an acquisition time of acquiring the location information, determining, by the monitored terminal, Movement track.
  • the method further includes: transmitting the determined motion trajectory to a monitoring terminal for monitoring the monitored terminal.
  • a method for determining a hazard level including: determining a correspondence between a monitoring area and a hazard level; and transmitting the corresponding relationship to an intermediate network device and/or a monitored terminal, wherein The corresponding relationship is used by the intermediate network device and/or the monitored terminal to determine a hazard level of the current monitoring area where the monitored terminal is located, where the monitoring area including the current monitoring area is At least two monitoring areas have different levels of hazard.
  • determining the correspondence between the monitoring area and the hazard level includes: receiving the input area information for identifying the monitoring area, and level information for identifying a hazard level of the monitoring area; using the area information and the location The level information determines a correspondence between the monitoring area and the danger level.
  • the method further includes: receiving the intermediate network device and/or the monitored terminal, determining that the current monitoring area corresponds to a hazard level greater than The alarm information sent after the predetermined value.
  • the method further includes: sending the track request information to the intermediate network device and/or the monitored terminal, where the track request information And configured to request to acquire a motion track of the monitored terminal; and receive the motion track returned by the intermediate network device and/or the monitored terminal.
  • a device for determining a hazard level including: a first determining module configured to determine current location information of the monitored terminal; and a second determining module configured to be based on the monitored region and the hazard level The corresponding relationship determines a hazard level of the current monitoring area in which the current location information is located, wherein at least two monitoring areas in the monitored area including the current monitoring area have different hazard levels.
  • the device further includes: a third determining module, configured to correspond to the hazard level according to the monitoring area Before determining the hazard level of the current monitoring area, determining a correspondence between the monitoring area and the hazard level.
  • a third determining module configured to correspond to the hazard level according to the monitoring area Before determining the hazard level of the current monitoring area, determining a correspondence between the monitoring area and the hazard level.
  • the third determining module includes: a first receiving unit, configured to receive a correspondence between the monitoring area and a dangerous level sent by the monitoring terminal for monitoring the monitored terminal.
  • the device further includes: an alarm module, configured to determine, after determining a hazard level of the current monitoring area according to a correspondence between the monitoring area and the hazard level, determining that the hazard level corresponding to the current monitoring area is greater than a predetermined value After that, an alarm is issued.
  • an alarm module configured to determine, after determining a hazard level of the current monitoring area according to a correspondence between the monitoring area and the hazard level, determining that the hazard level corresponding to the current monitoring area is greater than a predetermined value After that, an alarm is issued.
  • the device further includes: a fourth determining module, configured to determine, after determining a hazard level of the current monitoring area according to a correspondence between the monitoring area and the hazard level, determining a hazard level of the current monitoring area Obtaining a frequency of the location information of the monitored terminal, where at least two monitoring areas having different risk levels, including the current monitoring area, respectively correspond to different frequencies for acquiring location information of the monitored terminal; And a module, configured to acquire location information of the monitored terminal according to the determined frequency.
  • a fourth determining module configured to determine, after determining a hazard level of the current monitoring area according to a correspondence between the monitoring area and the hazard level, determining a hazard level of the current monitoring area Obtaining a frequency of the location information of the monitored terminal, where at least two monitoring areas having different risk levels, including the current monitoring area, respectively correspond to different frequencies for acquiring location information of the monitored terminal;
  • a module configured to acquire location information of the monitored terminal according to the determined frequency.
  • the higher the hazard level of the monitored area the greater the frequency of obtaining the location information of the monitored terminal.
  • the device further includes: a recording module, configured to record, after acquiring the location information of the monitored terminal according to the determined frequency, an acquisition time of acquiring location information of the monitored terminal.
  • a recording module configured to record, after acquiring the location information of the monitored terminal according to the determined frequency, an acquisition time of acquiring location information of the monitored terminal.
  • the device further includes: a fifth determining module, configured to acquire the location information according to the acquired location information of the monitored terminal after acquiring an acquisition time of acquiring location information of the monitored terminal The acquisition time determines the motion trajectory of the monitored terminal.
  • a fifth determining module configured to acquire the location information according to the acquired location information of the monitored terminal after acquiring an acquisition time of acquiring location information of the monitored terminal The acquisition time determines the motion trajectory of the monitored terminal.
  • the device further includes: a first sending module, configured to send the determined motion track to the monitoring terminal for monitoring the monitored terminal after determining the motion track.
  • a first sending module configured to send the determined motion track to the monitoring terminal for monitoring the monitored terminal after determining the motion track.
  • a device for determining a hazard level including: a sixth determining module configured to determine a correspondence between a monitoring area and a hazard level; and a second sending module configured to: The relationship is sent to the intermediate network device and/or the monitored terminal, wherein the corresponding relationship is used by the intermediate network device and/or the monitored terminal to determine a hazard level of the current monitoring area in which the monitored terminal is located, where At least two of the monitoring areas including the current monitoring area have different levels of danger.
  • the sixth determining module includes: a second receiving unit, configured to receive input area information for identifying the monitoring area, and level information for identifying a hazard level of the monitoring area; determining unit, And configured to determine, by using the area information and the level information, a correspondence between the monitoring area and the danger level.
  • the device further includes: a first receiving module, configured to receive the intermediate network device and/or the monitored terminal after determining to send the corresponding relationship to the intermediate network device and/or the monitored terminal The alarm information sent after the hazard level corresponding to the current monitoring area is greater than a predetermined value.
  • the apparatus further includes: a third sending module, configured to send a trajectory to the intermediate network device and/or the monitored terminal after transmitting the corresponding relationship to the intermediate network device and/or the monitored terminal Request information, where The track request information is used to request to acquire a motion track of the monitored terminal; and the second receiving module is configured to receive the motion track returned by the intermediate network device and/or the monitored terminal.
  • a third sending module configured to send a trajectory to the intermediate network device and/or the monitored terminal after transmitting the corresponding relationship to the intermediate network device and/or the monitored terminal Request information, where The track request information is used to request to acquire a motion track of the monitored terminal
  • the second receiving module is configured to receive the motion track returned by the intermediate network device and/or the monitored terminal.
  • Another embodiment of the present invention provides a computer storage medium storing execution instructions for performing the method in the above embodiments.
  • the current location information of the monitored terminal is determined; and the risk level of the current monitoring area where the current location information is located is determined according to the correspondence between the monitoring area and the danger level, wherein the current monitoring area is included
  • At least two monitoring areas in the monitoring area have different levels of danger.
  • the problem has been solved that the danger level of the monitoring area cannot be defined in the related art, so that the monitoring of different levels of the monitoring area can not be realized, resulting in low positioning efficiency, thereby achieving the determination of the hazard level of the monitoring area, and thus can be targeted to different levels.
  • the monitoring area performs differential monitoring to improve the positioning efficiency.
  • FIG. 1 is a flow chart of a method for determining a first level of danger according to an embodiment of the present invention
  • FIG. 2 is a flow chart of a method for determining a second level of danger according to an embodiment of the present invention
  • FIG. 3 is a block diagram showing the structure of a first danger level determining apparatus according to an embodiment of the present invention.
  • FIG. 4 is a block diagram 1 showing a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention
  • FIG. 5 is a structural block diagram of a third determining module 42 in the determining device of the first danger level according to an embodiment of the present invention.
  • FIG. 6 is a block diagram 2 showing a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention
  • FIG. 7 is a block diagram 3 of a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention.
  • Figure 8 is a block diagram 4 showing a preferred structure of the first danger level determining apparatus according to an embodiment of the present invention.
  • FIG. 9 is a block diagram 5 of a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention.
  • Figure 10 is a block diagram 6 showing a preferred structure of the first danger level determining apparatus according to an embodiment of the present invention.
  • Figure 11 is a block diagram showing the structure of a second danger level determining apparatus according to an embodiment of the present invention.
  • FIG. 12 is a structural block diagram of a sixth determining module 112 in a determining apparatus of a second danger level according to an embodiment of the present invention.
  • Figure 13 is a block diagram 1 showing a preferred structure of a second danger level determining apparatus according to an embodiment of the present invention
  • Figure 14 is a block diagram 2 showing a preferred structure of a second danger level determining apparatus according to an embodiment of the present invention
  • 15 is a schematic diagram of a controlled area setting of an intelligent security system according to an embodiment of the present invention.
  • 16 is a schematic structural diagram of an intelligent locator according to an embodiment of the present invention.
  • 17 is a schematic diagram of interaction between a smart locator, a mobile terminal, and a cloud according to an embodiment of the present invention
  • Figure 18 is a flow chart 1 of positioning according to an embodiment of the present invention.
  • FIG. 19 is a second flowchart of positioning according to an embodiment of the present invention.
  • FIG. 20 is a schematic structural diagram of an intelligent locator according to an embodiment of the present invention.
  • 21 is a schematic diagram of a smart locator directly interacting with a mobile terminal according to an embodiment of the present invention.
  • 22 is a flow chart three of positioning in accordance with an embodiment of the present invention.
  • FIG. 1 is a flowchart of a method for determining a first hazard level according to an embodiment of the present invention. As shown in FIG. 1, the process includes the following steps:
  • Step S102 determining current location information of the monitored terminal
  • Step S104 Determine a hazard level of the current monitoring area where the current location information is located according to the correspondence between the monitoring area and the hazard level, wherein at least two monitoring areas in the monitoring area including the current monitoring area have different hazard levels.
  • the hazard level of the area where the monitored terminal is located can be determined according to the corresponding relationship between the monitoring area and the hazard level, thereby solving the hazard level of the unrestricted monitoring area existing in the related art, thereby failing to realize the monitoring area for different levels.
  • the problem of differential monitoring results in low positioning efficiency, which determines the hazard level of the monitoring area, and then monitors different levels of monitoring areas to improve the positioning efficiency.
  • the method before determining the hazard level of the current monitoring area according to the correspondence between the monitoring area and the hazard level, the method further includes: determining a correspondence between the monitoring area and the hazard level.
  • the intermediate network device may be an intermediate network device, where the intermediate network device may be a network node between the monitored terminal and the monitoring terminal, and the node may forward data or process data, where the corresponding relationship is determined.
  • the intermediate network device may determine the corresponding relationship according to some specific rules or algorithms, or the intermediate network device may obtain the corresponding relationship through other devices. It is determined by other means, which are not enumerated here, wherein the monitoring terminal is a terminal for monitoring the monitored terminal.
  • determining the correspondence between the monitoring area and the danger level comprises: receiving a correspondence between the monitoring area and the danger level sent by the monitoring terminal for monitoring the monitored terminal.
  • the method further includes: after determining that the hazard level corresponding to the current monitoring area is greater than a predetermined value, performing an alarm.
  • different monitoring areas correspond to different hazard levels, and when the hazard level of the monitored area entered by the monitored terminal is greater than a predetermined value (the predetermined value may be a critical value of an alarm), an alarm process is triggered.
  • the alarm process may be that the alarm information is sent to the monitoring terminal, so that the monitoring terminal can know the current situation of the monitored terminal in time, and accordingly, the corresponding process is performed. It serves as a reminder that the user of the monitored terminal is currently entering a dangerous area.
  • the method further includes: determining a location of the monitored terminal corresponding to the hazard level of the current monitoring area.
  • the frequency of the information wherein at least two monitoring areas different in the dangerous level including the current monitoring area respectively correspond to different frequencies for acquiring the position information of the monitored terminal; and acquiring the position of the monitored terminal according to the determined frequency information. That is, the frequency of acquiring the location information of the monitored terminal can be adjusted according to the hazard level of the area in which the monitored terminal is located.
  • the higher the hazard level of the monitoring area the higher the frequency of obtaining the location information of the monitored terminal.
  • the frequency of obtaining the location information of the monitored terminal is lower, so that the monitored terminal can be acquired at a lower frequency when determining that the monitored terminal is in the secure area.
  • the location information can be saved to save power.
  • the method further includes: recording an acquisition time of acquiring the location information of the monitored terminal, so that the monitored terminal can be determined at a specific time point. The specific location below.
  • the method further includes: determining, according to the obtained location information of the monitored terminal and the acquisition time of acquiring the location information, determining the monitored terminal Movement track.
  • the method further includes: transmitting the determined motion track to a monitoring terminal for monitoring the monitored terminal.
  • the monitoring terminal can be informed of the motion track of the monitored terminal over a period of time, wherein the motion track can be very image information marked on the map.
  • FIG. 2 is a flow chart of a method for determining a second hazard level according to an embodiment of the present invention. As shown in FIG. 2, the process includes the following steps:
  • Step S202 determining a correspondence between the monitoring area and the danger level
  • Step S204 the foregoing correspondence is sent to the intermediate network device and/or the monitored terminal, where the correspondence is used by the intermediate network device and/or the monitored terminal to determine the hazard level of the current monitoring area where the monitored terminal is located. At least two monitoring areas in the monitoring area including the current monitoring area have different levels of danger.
  • the intermediate network device and/or the monitored terminal can determine the hazard level of the area where the monitored terminal is located according to the corresponding relationship between the monitoring area and the hazard level, thereby solving the hazard level of the undefined driving area existing in the related art. Therefore, it is impossible to realize differential monitoring for different levels of monitoring areas, resulting in low positioning efficiency, and the determination of the hazard level of the monitoring area is achieved, thereby achieving the effect of differently monitoring the monitoring areas of different levels and improving the positioning efficiency.
  • determining the correspondence between the monitoring area and the hazard level includes: receiving the input area information for identifying the monitoring area and the level information for identifying the hazard level of the monitoring area; using the area information and The level information determines the correspondence between the above-mentioned monitoring area and the danger level.
  • the manner of determining the corresponding relationship between the monitoring area and the hazard level is only an example, and the corresponding relationship may be determined by other methods. For example, a specific algorithm may be used to determine the hazard level of the monitoring area, thereby forming a corresponding correspondence. relationship.
  • the method further includes: receiving the intermediate network device and/or the monitored terminal determining the risk level corresponding to the current monitoring area.
  • the alarm information sent after it is greater than the predetermined value.
  • the alarm information may be received by the monitoring terminal, so that the monitoring terminal can know the current situation of the monitored terminal in time and perform corresponding processing.
  • the method further includes: sending the track request information to the intermediate network device and/or the monitored terminal, where the track request is The information is used to request to obtain the motion track of the monitored terminal; and receive the motion track returned by the intermediate network device and/or the monitored terminal.
  • the method according to the above embodiment can be implemented by means of software plus a necessary general hardware platform, and of course, by hardware, but in many cases, the former is A better implementation.
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk,
  • the optical disc includes a number of instructions for causing a terminal device (which may be a cell phone, a computer, a server, or a network device, etc.) to perform the methods described in various embodiments of the present invention.
  • a device for determining the level of danger is also provided, and the device is used to implement the above-described embodiments and preferred embodiments, and the detailed description thereof has been omitted.
  • the term "module” may implement a combination of software and/or hardware of a predetermined function.
  • the apparatus described in the following embodiments is preferably implemented in software, hardware, or a combination of software and hardware, is also possible and contemplated.
  • FIG. 3 is a block diagram showing the structure of a first danger level determining apparatus according to an embodiment of the present invention. As shown in FIG. 3, the apparatus includes a first determining module 32 and a second determining module 34, which will be described below.
  • the first determining module 32 is configured to determine current location information of the monitored terminal; the second determining module 34 is connected to the first determining module 32, and is configured to determine that the current location information is located according to the correspondence between the monitoring area and the dangerous level.
  • the hazard level of the current monitoring area wherein at least two monitoring areas in the monitoring area including the current monitoring area have different hazard levels.
  • FIG. 4 is a block diagram 1 of a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention, as shown in FIG.
  • the apparatus includes a third determination module 42 in addition to all of the modules shown in FIG. 3, which will be described below.
  • the third determining module 42 is connected to the second determining module 34, and is configured to determine a correspondence between the monitoring area and the dangerous level before determining the dangerous level of the current monitoring area according to the correspondence between the monitoring area and the dangerous level.
  • FIG. 5 is a structural block diagram of a third determining module 42 in the determining apparatus of the first danger level according to an embodiment of the present invention.
  • the third determining module 42 includes a first receiving unit 52, which is Be explained.
  • the first receiving unit 52 is configured to receive a correspondence between the monitoring area and the danger level sent by the monitoring terminal for monitoring the monitored terminal.
  • FIG. 6 is a block diagram of a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention. As shown in FIG. 6, the apparatus includes an alarm module 62, in addition to all the modules shown in FIG. The device will be described.
  • the alarm module 62 is connected to the second determining module 34, and is configured to determine, after determining the hazard level of the current monitoring area according to the corresponding relationship between the monitoring area and the hazard level, after determining that the hazard level corresponding to the current monitoring area is greater than a predetermined value, Alarm.
  • FIG. 7 is a block diagram 3 of a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention. As shown in FIG. 7, the apparatus includes a fourth determining module 72 and, in addition to all the modules shown in FIG. The module 74 is obtained, and the device will be described below.
  • the fourth determining module 72 is connected to the second determining module 34, and is configured to determine, after determining the hazard level of the current monitoring area according to the correspondence between the monitoring area and the dangerous level, determining the hazard level of the current monitoring area for acquiring Monitoring the frequency of the location information of the terminal, wherein at least two monitoring areas having different risk levels, including the current monitoring area, respectively correspond to different frequencies for acquiring location information of the monitored terminal; and the obtaining module 74 is connected to the fourth The determining module 72 is configured to acquire the location information of the monitored terminal according to the determined frequency.
  • the higher the hazard level of the monitoring area the greater the frequency of obtaining the location information of the monitored terminal.
  • FIG. 8 is a block diagram showing a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention. As shown in FIG. 8, the apparatus includes a recording module 82, in addition to all the modules shown in FIG. The device will be described.
  • the recording module 82 is connected to the obtaining module 74, and is configured to record the acquiring time of acquiring the location information of the monitored terminal after acquiring the location information of the monitored terminal according to the determined frequency.
  • FIG. 9 is a block diagram 5 of a preferred structure of a first danger level determining apparatus according to an embodiment of the present invention. As shown in FIG. 9, the apparatus includes a fifth determining module 92 in addition to all the modules shown in FIG. The device will be described below.
  • the fifth determining module 92 is connected to the recording module 82, and is configured to determine the monitored terminal according to the obtained location information of the monitored terminal and the acquisition time of the acquired location information after the acquisition time of acquiring the location information of the monitored terminal is recorded. Movement track.
  • Figure 10 is a block diagram 6 showing a preferred structure of the first danger level determining apparatus according to an embodiment of the present invention, as shown in Figure 10
  • the device includes a first transmitting module 102 in addition to all the modules shown in FIG. 9, which will be described below.
  • the first sending module 102 is connected to the fifth determining module 92, and is configured to send the determined motion track to the monitoring terminal for monitoring the monitored terminal after determining the motion track.
  • FIG. 11 is a structural block diagram of a device for determining a second level of danger according to an embodiment of the present invention. As shown in FIG. The determination module 112 and the second transmission module 114 are described below.
  • the sixth determining module 112 is configured to determine a correspondence between the monitoring area and the danger level; the second sending module 114 is connected to the sixth determining module 112, and is configured to send the corresponding relationship to the intermediate network device and/or the monitored terminal. And the corresponding relationship is used by the intermediate network device and/or the monitored terminal to determine a hazard level of the current monitoring area where the monitored terminal is located, where at least two monitoring areas in the monitoring area including the current monitoring area are The hazard level is different.
  • FIG. 12 is a structural block diagram of a sixth determining module 112 in a second risk level determining apparatus according to an embodiment of the present invention. As shown in FIG. 12, the sixth determining module 112 includes a second receiving unit 122 and a determining unit 124. The sixth determination module 112 will be described below.
  • the second receiving unit 122 is configured to receive the input area information for identifying the monitoring area and the level information for identifying the danger level of the monitoring area; the determining unit 124 is connected to the second receiving unit 122, and is configured to use the foregoing The area information and the level information determine the correspondence between the monitoring area and the danger level.
  • FIG. 13 is a block diagram of a preferred structure of a second danger level determining apparatus according to an embodiment of the present invention. As shown in FIG. 13, the apparatus includes a first receiving module 132 in addition to all the modules shown in FIG. The device is described below:
  • the first receiving module 132 is connected to the second sending module 114, and is configured to receive the foregoing intermediate network device and/or the monitored terminal after determining the current current after transmitting the corresponding relationship to the intermediate network device and/or the monitored terminal.
  • the alarm information sent after the corresponding dangerous level of the monitoring area is greater than the predetermined value.
  • FIG. 14 is a block diagram showing a preferred structure of a second danger level determining apparatus according to an embodiment of the present invention.
  • the apparatus includes a third transmitting module 142 in addition to all the modules shown in FIG.
  • the second receiving module 144, the device is described below:
  • the third sending module 142 is connected to the second sending module 114, and is configured to send the track request information to the intermediate network device and/or the monitored terminal after transmitting the corresponding relationship to the intermediate network device and/or the monitored terminal.
  • the track request information is used to request to acquire the motion track of the monitored terminal;
  • the second receiving module 144 is connected to the third sending module 142, and is configured to receive the motion track returned by the intermediate network device and/or the monitored terminal. .
  • the following describes the present invention by taking the above monitoring terminal as a mobile terminal, the intermediate network device as a cloud, and the monitored terminal as an intelligent locator as an example.
  • the controlled area may be defined on the electronic map interface, and corresponding Coordinate information.
  • the interaction between the mobile terminal, the cloud, and the smart locator is: the mobile terminal can send the updated controlled area information to the cloud in real time, and can obtain the current location information of the smart locator and the active trajectory within a period of time from the cloud.
  • the intelligent locator can also be controlled indirectly through the cloud; the cloud serves as the center of data storage, analysis and control. According to the data analysis results, the motion trajectory can be obtained for a period of time, and the image can be combined with the actual map. The inner trajectory is revealed.
  • the cloud can adjust the location acquisition frequency of the intelligent locator in real time according to the analysis of the positioning information to maximize the power consumption of the intelligent locator.
  • FIG. 15 is a schematic diagram of a controlled area setting of an intelligent security system in accordance with an embodiment of the present invention.
  • the setting can be realized on the actual map, such as Google map, Baidu map, Gaode map and so on.
  • the area is simply and visually defined by brushes representing different levels of security, such as safety area A, quasi-hazard area B, and danger area C as shown in FIG.
  • the security area A can be regarded as a residential area; the safety area A is regarded as a lake in the residential area, and is set as a dangerous area; and the adjacent area of the lake and the periphery of the residential area are set as the quasi-hazardous area B; Area C, which is a certain distance from the community, is considered a dangerous area.
  • FIG. 16 is a schematic structural diagram of an intelligent locator according to an embodiment of the present invention. As shown in FIG. 16, the smart locator is composed of a first location acquisition module 162, a wireless communication module 164, a first alarm 166, a first power module 168, and a first microprocessor 1610.
  • the first location acquiring module 162 may be a Global Positioning System (GPS), a Beidou, etc., and is configured to acquire location information.
  • GPS Global Positioning System
  • Beidou Beidou
  • the wireless communication module 164 is configured to communicate remotely with the cloud by the smart locator.
  • the set controlled area information is obtained from the cloud, and the obtained location information is sent to the cloud in real time, and the instructions sent by the cloud are received.
  • the first alarm 166 when in the quasi-hazardous area or the danger zone, is set to prompt the user.
  • the first power module 168 supplies power to the smart locator.
  • the first microprocessor 1610 processes the data or instructions sent by the cloud, such as controlling the alarm, adjusting the frequency of acquiring the location information, and the like; and transmitting the coordinates obtained from the location acquisition module to the wireless communication module 164.
  • FIG. 17 is a schematic diagram of interaction between a smart locator, a mobile terminal, and a cloud according to an embodiment of the invention.
  • the mobile terminal sends the set controlled area information to the cloud, and can also read the active trajectory of the smart locator and the current location information within a period of time from the cloud; the location information that the intelligent locator will acquire.
  • the real-time sending is sent to the cloud; the cloud analyzes the acquired location information in combination with the controlled area information, and can send an instruction, such as separately sending an early warning instruction to the mobile terminal and the smart locator, and sending an instruction to the smart locator to adjust the frequency of acquiring the location.
  • FIG. 18 is a first flowchart of positioning according to an embodiment of the present invention. As shown in FIG. 18, the process includes the following steps:
  • Step S1802 setting a controlled area in the mobile terminal: a safe area, a quasi-hazardous area, and a dangerous area.
  • step S1804 the mobile terminal transmits the coordinate information of the set controlled area to the cloud designated account, and the account matches the device number of the smart positioning terminal.
  • Step S1806 The smart positioning terminal sends the acquired location information to an account corresponding to the cloud.
  • step S1808 the cloud analyzes the obtained location information, and adjusts the frequency of acquiring the location information according to the region where the current location is located and the moving speed, so as to reduce the power consumption of the intelligent positioning terminal as much as possible.
  • step S1810 it is determined according to the controlled area information which area is currently located.
  • step S1812 if jumping from another area to the safe area, the frequency of acquiring the position information is adjusted to be a low frequency, and the alarm is turned off; if it is always in the safe area, the state is maintained.
  • step S1814 if jumping from the other area to the quasi-hazardous area, the frequency of acquiring the position information is adjusted to the intermediate frequency, and the alarm enters the quasi-hazard warning mode. If it is always in the quasi-hazardous area, the state will remain unchanged.
  • step S1816 if jumping from another area to the dangerous area, the frequency of acquiring the position information is adjusted to be a high frequency, and the alarm enters the danger warning mode. If it is always in a dangerous area, it will remain unchanged.
  • step S1818 if the positioning information is in the quasi-hazardous area or the dangerous area, the cloud sends a warning message to the mobile terminal.
  • the mobile terminal can know the motion trajectory of the locator for a period of time through the cloud in real time, and the motion trajectory can be very image information marked on the map.
  • the mobile terminal can remotely monitor the intelligent locator through the cloud, and can update the controlled area to the cloud according to actual conditions.
  • the powerful information processing capability of the cloud can be used to analyze and count the data sent by the intelligent locator, and the movement trajectory of the intelligent locator can be marked on the real map of 3D or 2D, and the user can capture the intelligent positioning more vividly.
  • the dynamics of the device is controlled as shown in FIG. 19.
  • FIG. 19 is a flowchart 2 of positioning according to an embodiment of the present invention. The process includes the following steps:
  • Step S1902 setting a controlled area in the mobile terminal: a safe area, a quasi-hazardous area, and a dangerous area.
  • step S1904 the mobile terminal transmits the coordinate information of the set controlled area to the cloud designated account, and the account matches the device number of the smart positioning terminal.
  • step S1906 the mobile terminal sends an instruction to the corresponding account in the cloud.
  • Step S1908 implementing instructions for indirectly controlling the intelligent positioning terminal, such as: opening/closing the intelligent positioning terminal, controlling the alarm warning, reporting the current location information, obtaining the location information at a certain frequency, and automatically reporting the instructions.
  • step S1910 the cloud sends a corresponding instruction to the intelligent positioning terminal to implement control on the intelligent locator.
  • step S1912 an instruction for interacting with the cloud is implemented, such as: updating the controlled area to the cloud, and acquiring an instruction such as a moving track within a period of time.
  • step S1914 the cloud interacts with the mobile terminal according to the received instruction, for example, after re-updating the controlled area, the feedback update message is sent to the mobile terminal; and the track map in the specified specified time period is sent to the mobile terminal or the like.
  • the smart locator is configured by a second location acquisition module 202, a Bluetooth module 204, a storage module 206, a second alarm 208, and a second power module 2010. And a second microprocessor 2012.
  • the second location obtaining module 202 may be a GPS, a Beidou, or the like, and is configured to acquire location information.
  • the Bluetooth module 204 is configured to be in near field communication with the mobile terminal, and the mobile terminal transmits the set controlled area information through the Bluetooth intelligent locator, and the Bluetooth module can also obtain the activity from the smart locator for a period of time. Track.
  • the storage module 206 is configured to store the controlled area information transmitted from the mobile terminal and the coordinate data of the active track within a period of time.
  • the second alarm 208 when in the quasi-hazardous area or the danger zone, is set to prompt the user.
  • the second power module 2010 supplies power to the smart locator.
  • the second microprocessor 2012 processes the data or instructions sent by the mobile terminal, analyzes the coordinates obtained from the second location acquisition module 202, and adjusts the frequency of acquiring the location information.
  • 21 is a schematic diagram of a smart locator interacting directly with a mobile terminal according to an embodiment of the invention.
  • the mobile terminal needs to obtain the activity track for a certain period of time, and the mobile terminal needs to set the interaction between them, the smart positioner can work independently for the rest of the time.
  • FIG. 22 is a third flowchart of positioning according to an embodiment of the present invention. As shown in FIG. 22, the process includes the following steps:
  • Step S2202 setting a controlled area in the mobile terminal: a safe area, a near dangerous area, and a dangerous area.
  • Step S2204 The mobile terminal and the intelligent positioning terminal establish a connection through Bluetooth, and the mobile terminal transmits the coordinate information of the set controlled area to the intelligent positioning terminal.
  • Step S2206 The smart positioning terminal acquires the location information at the lowest frequency when the terminal is turned on.
  • the frequency of acquiring the location information is adjusted according to the area where the current location is located and the moving speed, so as to reduce the power consumption as much as possible.
  • Step S2208 The intelligent positioning terminal analyzes the obtained location information, such as a moving speed, determines a security level of the current area according to the controlled area information, and determines a position change according to the previous location information.
  • Step S2210 Determine, according to the controlled area information, what area is currently in the area.
  • step S2212 if jumping from another area to the secure area, the frequency of acquiring the position information is adjusted to be a low frequency, and the alarm is turned off; if it is always in the safe area, the state is maintained.
  • step S2214 if jumping from the other area to the quasi-hazardous area, the frequency of acquiring the position information is adjusted to the intermediate frequency, and the alarm enters the quasi-hazard warning mode. If it is always in the quasi-hazardous area, the state will remain unchanged.
  • step S2216 if jumping from another area to the dangerous area, the frequency of acquiring the position information is adjusted to be a high frequency, and the alarm enters the danger warning mode. If it is always in a dangerous area, it will remain unchanged.
  • the mobile terminal user can quickly and vividly set the security level of the active area of the smart locator user, and the user experience will be very good.
  • Real-time alarm when the intelligent terminal user is in the quasi-hazardous area and the dangerous area Features.
  • the guardian can also know the location information of the ward and the trajectory of the activity within a certain period of time. It is a must-have for office workers and parents, and can help the police to solve the problem of lost or abducted children.
  • each of the above modules may be implemented by software or hardware.
  • the foregoing may be implemented by, but not limited to, the foregoing modules are all located in the same processor; or, the modules are located in multiple In the processor.
  • Embodiments of the present invention also provide a storage medium.
  • the foregoing storage medium may be configured to store program code for performing the following steps:
  • S12 Determine a hazard level of the current monitoring area where the current location information is located according to the corresponding relationship between the monitoring area and the hazard level, wherein at least two monitoring areas in the monitoring area including the current monitoring area have different hazard levels.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the foregoing correspondence is sent to the intermediate network device and/or the monitored terminal, where the correspondence is used by the intermediate network device and/or the monitored terminal to determine a hazard level of the current monitoring area where the monitored terminal is located, where At least two monitoring areas in the monitoring area including the current monitoring area described above have different levels of danger.
  • the foregoing storage medium may include, but is not limited to, a USB flash drive, a Read-Only Memory (ROM), and a Random Access Memory (RAM).
  • ROM Read-Only Memory
  • RAM Random Access Memory
  • the processor performs the above steps S11-S12 according to the stored program code in the storage medium.
  • the processor performs the above steps S21-S22 according to the stored program code in the storage medium.
  • modules or steps of the present invention described above can be implemented by a general-purpose computing device that can be centralized on a single computing device or distributed across a network of multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device such that they may be stored in the storage device by the computing device and, in some cases, may be different from the order herein.
  • the steps shown or described are performed, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps thereof are fabricated as a single integrated circuit module.
  • the invention is not limited to any specific combination of hardware and software.
  • the method and apparatus for determining the level of danger provided by the embodiment of the present invention have the following beneficial effects: solving the danger level of the monitoring area that cannot be defined in the related art, thereby failing to implement differential monitoring for different levels of the monitoring area.
  • the problem of low positioning efficiency is achieved, and the hazard level of the monitoring area is determined, and then the monitoring of different levels of the monitoring area is performed to improve the positioning efficiency.

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Abstract

本发明提供了一种危险等级的确定方法及装置,其中,该方法包括:确定被监控终端的当前位置信息;根据监控区域与危险等级的对应关系确定上述当前位置信息所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。通过本发明,解决相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,实现了确定监控区域的危险等级,进而针对不同等级的监控区域进行区别监控,提高定位效率的效果。

Description

危险等级的确定方法及装置 技术领域
本发明涉及通信领域,具体而言,涉及一种危险等级的确定方法及装置。
背景技术
在当今社会中,每个家庭一般只有一个孩子,父母可谓疼爱有加,但父母奔于生活,白天上班照顾不到孩子,但又想时时关注孩子的状态,尤其是孩子是否安全,这种需求是每位父母都会有的。同时,我国目前已进入老龄化社会,每年也有很多老人走丢,虽然儿女不能时时呆在老人身边照顾,但也想在需要时获知老人的位置。
在相关技术中,可以通过定位设备来获取孩子或者老人的位置信息,但是,通过定位设备仅能明确的知道还子或者老人在什么地方,而无法确定其所在的地方是否是安全区域,也无法在该区域为危险区域时进行报警处理。也就是说,在相关技术中,不存在可以根据用户需求界定不同等级的监控区域,并根据该区域来对定位信息进行分析的技术,而是需要监控人人为的根据定位设备的定位结果去判断孩子或者老人所处的区域是否安全。从而导致定位效率低。
针对相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,目前尚未提出有效的解决方案。
发明内容
本发明提供了一种危险等级的确定方法及装置,以至少解决相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,目前尚未提出有效的解决方案。
在本发明的一个实施例中,提供了一种危险等级的确定方法,包括:确定被监控终端的当前位置信息;根据监控区域与危险等级的对应关系确定所述当前位置信息所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
可选地,在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之前,还包括:确定所述监控区域与危险等级的对应关系。
可选地,确定所述监控区域与危险等级的对应关系包括:接收用于监控所述被监控终端的监控终端发送的所述监控区域与危险等级的对应关系。
可选地,在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,还包括:在确定所述当前监控区域对应的危险等级大于预定值后,进行告警。
可选地,在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,还包括:确定所述当前监控区域的危险等级对应的用于获取所述被监控终端的位置信息的频率,其中,包括所述当前监控区域在内的至少两个危险等级不同的监控区域分别对应不同的获取所述被监控终端的位置信息的频率;按照确定的所述频率获取所述被监控终端的位置信息。
可选地,所述监控区域的危险等级越高,对应的获取所述被监控终端的位置信息的频率越大。
可选地,在按照确定的所述频率获取所述被监控终端的位置信息之后,还包括:记录获取所述被监控终端的位置信息的获取时间。
可选地,在记录获取所述被监控终端的位置信息的获取时间之后,还包括:根据获取的所述被监控终端的位置信息和获取所述位置信息的获取时间确定所述被监控终端的运动轨迹。
可选地,在确定所述运动轨迹之后,还包括:将确定的所述运动轨迹发送给用于监控所述被监控终端的监控终端。
在本发明的另一个实施例中,提供了一种危险等级的确定方法,包括:确定监控区域与危险等级的对应关系;将所述对应关系发送给中间网络设备和/或被监控终端,其中,所述对应关系用于所述中间网络设备和/或被监控终端确定所述被监控终端所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
可选地,确定监控区域与危险等级的对应关系包括:接收输入的用于标识所述监控区域的区域信息和用于标识所述监控区域的危险等级的等级信息;利用所述区域信息和所述等级信息确定所述监控区域与所述危险等级的对应关系。
可选地,在将所述对应关系发送给中间网络设备和/或被监控终端之后,还包括:接收所述中间网络设备和/或被监控终端在确定所述当前监控区域对应的危险等级大于预定值后,发送的告警信息。
可选地,在将所述对应关系发送给中间网络设备和/或被监控终端之后,还包括:向所述中间网络设备和/或被监控终端发送轨迹请求信息,其中,所述轨迹请求信息用于请求获取所述被监控终端的运动轨迹;接收所述中间网络设备和/或被监控终端返回的所述运动轨迹。
在本发明的一个实施例中,提供了一种危险等级的确定装置,包括:第一确定模块,设置为确定被监控终端的当前位置信息;第二确定模块,设置为根据监控区域与危险等级的对应关系确定所述当前位置信息所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
可选地,所述装置还包括:第三确定模块,设置为在根据监控区域与危险等级的对应关 系确定所述当前监控区域的危险等级之前,确定所述监控区域与危险等级的对应关系。
可选地,所述第三确定模块包括:第一接收单元,设置为接收用于监控所述被监控终端的监控终端发送的所述监控区域与危险等级的对应关系。
可选地,所述装置还包括:告警模块,设置为在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,在确定所述当前监控区域对应的危险等级大于预定值后,进行告警。
可选地,所述装置还包括:第四确定模块,设置为在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,确定所述当前监控区域的危险等级对应的用于获取所述被监控终端的位置信息的频率,其中,包括所述当前监控区域在内的至少两个危险等级不同的监控区域分别对应不同的获取所述被监控终端的位置信息的频率;获取模块,设置为按照确定的所述频率获取所述被监控终端的位置信息。
可选地,所述监控区域的危险等级越高,对应的获取所述被监控终端的位置信息的频率越大。
可选地,所述装置还包括:记录模块,设置为在按照确定的所述频率获取所述被监控终端的位置信息之后,记录获取所述被监控终端的位置信息的获取时间。
可选地,所述装置还包括:第五确定模块,设置为在记录获取所述被监控终端的位置信息的获取时间之后,根据获取的所述被监控终端的位置信息和获取所述位置信息的获取时间确定所述被监控终端的运动轨迹。
可选地,所述装置还包括:第一发送模块,设置为在确定所述运动轨迹之后,将确定的所述运动轨迹发送给用于监控所述被监控终端的监控终端。
在本发明的另一个实施例中,提供了一种危险等级的确定装置,包括:第六确定模块,设置为确定监控区域与危险等级的对应关系;第二发送模块,设置为将所述对应关系发送给中间网络设备和/或被监控终端,其中,所述对应关系用于所述中间网络设备和/或被监控终端确定所述被监控终端所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
可选地,所述第六确定模块包括:第二接收单元,设置为接收输入的用于标识所述监控区域的区域信息和用于标识所述监控区域的危险等级的等级信息;确定单元,设置为利用所述区域信息和所述等级信息确定所述监控区域与所述危险等级的对应关系。
可选地,所述装置还包括:第一接收模块,设置为在将所述对应关系发送给中间网络设备和/或被监控终端之后,接收所述中间网络设备和/或被监控终端在确定所述当前监控区域对应的危险等级大于预定值后,发送的告警信息。
可选地,所述装置还包括:第三发送模块,设置为在将所述对应关系发送给中间网络设备和/或被监控终端之后,向所述中间网络设备和/或被监控终端发送轨迹请求信息,其中,所 述轨迹请求信息用于请求获取所述被监控终端的运动轨迹;第二接收模块,设置为接收所述中间网络设备和/或被监控终端返回的所述运动轨迹。
本发明另一实施例提供了一种计算机存储介质,所述计算机存储介质存储有执行指令,所述执行指令用于执行上述实施例中的方法。
通过本发明,采用确定被监控终端的当前位置信息;根据监控区域与危险等级的对应关系确定所述当前位置信息所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。解决了相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,进而达到了确定监控区域的危险等级,进而可以针对不同等级的监控区域进行区别监控,提高定位效率的效果。
附图说明
此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部分,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1是根据本发明实施例的第一种危险等级的确定方法的流程图;
图2是根据本发明实施例的第二种危险等级的确定方法的流程图;
图3是根据本发明实施例的第一种危险等级的确定装置的结构框图;
图4是根据本发明实施例的第一种危险等级的确定装置的优选结构框图一;
图5是根据本发明实施例的第一种危险等级的确定装置中第三确定模块42的结构框图;
图6是根据本发明实施例的第一种危险等级的确定装置的优选结构框图二;
图7是根据本发明实施例的第一种危险等级的确定装置的优选结构框图三;
图8是根据本发明实施例的第一种危险等级的确定装置的优选结构框图四;
图9是根据本发明实施例的第一种危险等级的确定装置的优选结构框图五;
图10是根据本发明实施例的第一种危险等级的确定装置的优选结构框图六;
图11是根据本发明实施例的第二种危险等级的确定装置的结构框图;
图12是根据本发明实施例的第二种危险等级的确定装置中第六确定模块112的结构框图;
图13是根据本发明实施例的第二种危险等级的确定装置的优选结构框图一;
图14是根据本发明实施例的第二种危险等级的确定装置的优选结构框图二;
图15是根据本发明实施例的智能安防系统的受控区域设置示意图;
图16是根据本发明实施例的智能定位器的结构示意图;
图17是根据本发明实施例的智能定位器、移动终端以及云端三者的交互示意图;
图18是根据本发明实施例的定位流程图一;
图19是根据本发明实施例的定位流程图二;
图20是根据本发明实施例的智能定位器的结构示意图;
图21是根据本发明实施例的智能定位器直接与移动终端经行交互的示意图;
图22是根据本发明实施例的定位流程图三。
具体实施方式
下文中将参考附图并结合实施例来详细说明本发明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
需要说明的是,本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
在本实施例中提供了一种危险等级的确定方法,图1是根据本发明实施例的第一种危险等级的确定方法的流程图,如图1所示,该流程包括如下步骤:
步骤S102,确定被监控终端的当前位置信息;
步骤S104,根据监控区域与危险等级的对应关系确定上述当前位置信息所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。
通过上述步骤,可以根据监控区域与危险等级的对应关系确定被监控终端所处的区域的危险等级,从而解决相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,实现了确定监控区域的危险等级,进而针对不同等级的监控区域进行区别监控,提高定位效率的效果。
在一个可选的实施例中,在根据监控区域与危险等级的对应关系确定上述当前监控区域的危险等级之前,还包括:确定上述监控区域与危险等级的对应关系。其中,执行该操作的可以是中间网络设备,该中间网络设备可以是被监控终端与监控终端之间的一个网络节点,该节点可以转发数据,也可以对数据进行处理,其中,确定上述对应关系时,可以有多种确定方式,例如,可以是该中间网络设备根据一些特定的规则或算法确定上述对应关系,也可以是该中间网络设备通过其他的设备去获取该对应关系,当然,也可以采用其他的方式确定,在此不一一列举,其中,上述的监控终端为用于监控上述被监控终端的终端。
通过上述实施例可知,上述的监控区域与危险等级的对应关系可以是从其他设备中获取 的,在一个可选的实施例中,确定上述监控区域与危险等级的对应关系包括:接收用于监控上述被监控终端的监控终端发送的监控区域与危险等级的对应关系。
在一个可选的实施例中,在根据监控区域与危险等级的对应关系确定上述当前监控区域的危险等级之后,还包括:在确定该当前监控区域对应的危险等级大于预定值后,进行告警。在该实施例中,不同的监控区域对应着不同的危险等级,当被监控终端进入的监控区域的危险等级大于预定值(该预定值可以是一个报警的临界值)时,便触发告警流程,并且,该告警流程可以是向监控终端发送告警信息,使得监控终端能够及时获知被监控终端当前的处境,从而做出相应的处理,当然该告警流程也可以是向被监控终端发送告警信息,从而起到提醒被监控终端的使用者当前进入了危险区域的作用。
在一个可选的实施例中,在根据监控区域与危险等级的对应关系确定上述当前监控区域的危险等级之后,还包括:确定该当前监控区域的危险等级对应的用于获取被监控终端的位置信息的频率,其中,包括上述当前监控区域在内的至少两个危险等级不同的监控区域分别对应不同的获取所述被监控终端的位置信息的频率;按照确定的上述频率获取被监控终端的位置信息。即,可以根据被监控终端所处的区域的危险等级调整获取被监控终端的位置信息的频率。
在一个可选的实施例中,上述的监控区域的危险等级越高,对应的获取被监控终端的位置信息的频率越大。同样地,当监控区域的危险等级低时,对应的获取被监控终端的位置信息的频率也就越低,从而可以在确定被监控终端处于安全区域中时,以较低的频率获取被监控终端的位置信息即可,节省电量。
在一个可选的实施例中,在按照确定的频率获取上述被监控终端的位置信息之后,还包括:记录获取上述被监控终端的位置信息的获取时间,从而可以确定被监控终端在特定时间点下的具体位置。
在一个可选的实施例中,在记录获取上述被监控终端的位置信息的获取时间之后,还包括:根据获取的上述被监控终端的位置信息和获取上述位置信息的获取时间确定被监控终端的运动轨迹。
在一个可选的实施例中,在确定上述运动轨迹之后,还包括:将确定的上述运动轨迹发送给用于监控上述被监控终端的监控终端。从而可以使得监控终端获知被监控终端在一段时间内的运动轨迹,其中,该运动轨迹可以是在地图上标记的非常形象的信息。
图2是根据本发明实施例的第二种危险等级的确定方法的流程图,如图2所示,该流程包括如下步骤:
步骤S202,确定监控区域与危险等级的对应关系;
步骤S204,将上述对应关系发送给中间网络设备和/或被监控终端,其中,该对应关系用于中间网络设备和/或被监控终端确定上述被监控终端所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。
通过上述步骤,可以使得中间网络设备和/或被监控终端根据监控区域与危险等级的对应关系,确定被监控终端所处区域的危险等级,从而解决相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,实现了确定监控区域的危险等级,进而达到了针对不同等级的监控区域进行区别监控,提高定位效率的效果。
在一个可选的实施例中,确定监控区域与危险等级的对应关系包括:接收输入的用于标识上述监控区域的区域信息和用于标识监控区域的危险等级的等级信息;利用上述区域信息和等级信息确定上述监控区域与危险等级的对应关系。其中,上述的确定监控区域与危险等级的对应关系的方式仅是一种示例,还可以采用其他的方式确定上述对应关系,例如,可以利用特定的算法来确定监控区域的危险等级,进而形成对应关系。
在一个可选的实施例中,在将上述对应关系发送给中间网络设备和/或被监控终端之后,还包括:接收中间网络设备和/或被监控终端在确定上述当前监控区域对应的危险等级大于预定值后,发送的告警信息。其中,在该实施例中,可以是由监控终端接收上述告警信息,从而使得监控终端能够及时获知被监控终端当前的处境,并做出相应的处理。
在一个可选的实施例中,在将上述对应关系发送给中间网络设备和/或被监控终端之后,还包括:向中间网络设备和/或被监控终端发送轨迹请求信息,其中,该轨迹请求信息用于请求获取上述被监控终端的运动轨迹;接收上述中间网络设备和/或被监控终端返回的运动轨迹。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到根据上述实施例的方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,或者网络设备等)执行本发明各个实施例所述的方法。
在本实施例中还提供了一种危险等级的确定装置,该装置用于实现上述实施例及优选实施方式,已经进行过说明的不再赘述。如以下所使用的,术语“模块”可以实现预定功能的软件和/或硬件的组合。尽管以下实施例所描述的装置较佳地以软件来实现,但是硬件,或者软件和硬件的组合的实现也是可能并被构想的。
图3是根据本发明实施例的第一种危险等级的确定装置的结构框图,如图3所示,该装置包括第一确定模块32和第二确定模块34,下面对该装置进行说明。
第一确定模块32,设置为确定被监控终端的当前位置信息;第二确定模块34,连接至上述第一确定模块32,设置为根据监控区域与危险等级的对应关系确定当前位置信息所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。
图4是根据本发明实施例的第一种危险等级的确定装置的优选结构框图一,如图4所示, 该装置除包括图3所示的所有模块外,还包括第三确定模块42,下面对该装置进行说明。
第三确定模块42,连接至上述第二确定模块34,设置为在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之前,确定上述监控区域与危险等级的对应关系。
图5是根据本发明实施例的第一种危险等级的确定装置中第三确定模块42的结构框图,如图5所示,该第三确定模块42包括第一接收单元52,下面对其进行说明。
第一接收单元52,设置为接收用于监控上述被监控终端的监控终端发送的监控区域与危险等级的对应关系。
图6是根据本发明实施例的第一种危险等级的确定装置的优选结构框图二,如图6所示,该装置除包括图3所示的所有模块外,还包括告警模块62,下面对该装置进行说明。
告警模块62,连接至上述第二确定模块34,设置为在根据监控区域与危险等级的对应关系确定上述当前监控区域的危险等级之后,在确定当前监控区域对应的危险等级大于预定值后,进行告警。
图7是根据本发明实施例的第一种危险等级的确定装置的优选结构框图三,如图7所示,该装置除包括图3所示的所有模块外,还包括第四确定模块72和获取模块74,下面对该装置进行说明。
第四确定模块72,连接至上述第二确定模块34,设置为在根据监控区域与危险等级的对应关系确定上述当前监控区域的危险等级之后,确定当前监控区域的危险等级对应的用于获取被监控终端的位置信息的频率,其中,包括上述当前监控区域在内的至少两个危险等级不同的监控区域分别对应不同的获取被监控终端的位置信息的频率;获取模块74,连接至上述第四确定模块72,设置为按照确定的上述频率获取被监控终端的位置信息。
在一个可选的实施例中,上述监控区域的危险等级越高,对应的获取被监控终端的位置信息的频率越大。
图8是根据本发明实施例的第一种危险等级的确定装置的优选结构框图四,如图8所示,该装置除包括图7所示的所有模块外,还包括记录模块82,下面对该装置进行说明。
记录模块82,连接至上述获取模块74,设置为在按照确定的上述频率获取被监控终端的位置信息之后,记录获取上述被监控终端的位置信息的获取时间。
图9是根据本发明实施例的第一种危险等级的确定装置的优选结构框图五,如图9所示,该装置除包括图8所示的所有模块外,还包括第五确定模块92,下面对该装置进行说明。
第五确定模块92,连接至上述记录模块82,设置为在记录获取上述被监控终端的位置信息的获取时间之后,根据获取的被监控终端的位置信息和获取位置信息的获取时间确定被监控终端的运动轨迹。
图10是根据本发明实施例的第一种危险等级的确定装置的优选结构框图六,如图10所 示,该装置除包括图9所示的所有模块外,还包括第一发送模块102,下面对该装置进行说明。
第一发送模块102,连接至上述第五确定模块92,设置为在确定上述运动轨迹之后,将确定的运动轨迹发送给用于监控被监控终端的监控终端。
在本发明实施例中,还提供了一种危险等级的确定装置,图11是根据本发明实施例的第二种危险等级的确定装置的结构框图,如图11所示,该装置包括第六确定模块112和第二发送模块114,下面对该装置进行说明。
第六确定模块112,设置为确定监控区域与危险等级的对应关系;第二发送模块114,连接至上述第六确定模块112,设置为将上述对应关系发送给中间网络设备和/或被监控终端,其中,该对应关系用于中间网络设备和/或被监控终端确定被监控终端所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。
图12是根据本发明实施例的第二种危险等级的确定装置中第六确定模块112的结构框图,如图12所示,该第六确定模块112包括第二接收单元122和确定单元124,下面对该第六确定模块112进行说明。
第二接收单元122,设置为接收输入的用于标识上述监控区域的区域信息和用于标识监控区域的危险等级的等级信息;确定单元124,连接至上述第二接收单元122,设置为利用上述区域信息和等级信息确定监控区域与危险等级的对应关系。
图13是根据本发明实施例的第二种危险等级的确定装置的优选结构框图一,如图13所示,该装置除包括图11所示的所有模块外,还包括第一接收模块132,下面对该装置进行说明:
第一接收模块132,连接至上述第二发送模块114,设置为在将上述对应关系发送给中间网络设备和/或被监控终端之后,接收上述中间网络设备和/或被监控终端在确定上述当前监控区域对应的危险等级大于预定值后,发送的告警信息。
图14是根据本发明实施例的第二种危险等级的确定装置的优选结构框图二,如图14所示,该装置除包括图11所示的所有模块外,还包括第三发送模块142和第二接收模块144,下面对该装置进行说明:
第三发送模块142,连接至上述第二发送模块114,设置为在将上述对应关系发送给中间网络设备和/或被监控终端之后,向中间网络设备和/或被监控终端发送轨迹请求信息,其中,该轨迹请求信息用于请求获取上述被监控终端的运动轨迹;第二接收模块144,连接至上述第三发送模块142,设置为接收上述中间网络设备和/或被监控终端返回的运动轨迹。
下面以上述监控终端为移动终端、中间网络设备为云端、被监控终端为智能定位器为例,对本发明进行说明。
在本发明实施例中,可以在电子地图界面上形象的对受控区域进行界定,并生成相应的 坐标信息。其中,移动终端、云端和智能定位器之间的交互为:移动终端可以实时将更新的受控区域信息发送到云端,可以从云端获取智能定位器的当前位置信息以及一段时间内的活动轨迹,还可以通过云端间接的实现对智能定位器的控制;云端作为数据存储、分析和控制的中心,根据数据分析结果,可以获得一段时间内的运动轨迹,而且可以结合实际地图,形象的将一段时间内的运动轨迹展现出来。云端可以根据对定位信息的分析,实时调整智能定位器的位置获取频率以最大限度节约智能定位器的功耗。
图15是根据本发明实施例的智能安防系统的受控区域设置示意图。其中,该设置可以实际的地图上去实现,如谷歌地图、百度地图、高德地图等。在用户关心的区域,通过代表不同安全级别的画笔来简单、形象的圈定区域,如图15所示的安全区域A、准危险区域B和危险区域C。可以将安全区域A看做是居住的小区;安全区域A内的C区看做是居住小区内的一个湖泊,设置为危险区域;而该湖临近区域以及小区的外围设置为准危险区域B;距小区一定距离的C区认定为危险区域。
用户在设置好受控区域后,实际上获得的是:根据安全等级划分的界定区域的坐标信息。
图16是根据本发明实施例的智能定位器的结构示意图。如图16所示,该智能定位器由第一位置获取模块162、无线通信模块164、第一警报器166、第一电源模块168以及第一微型处理器1610组成。
其中,第一位置获取模块162,可以是全球定位系统(Global Positioning System,简称为GPS)、北斗等,设置为获取位置信息。
无线通信模块164,设置为智能定位器与云端的远距离通信。从云端获取设置好的受控区域信息,将获取的位置信息实时地发送到云端,以及接收云端发送过来的指令等。
第一警报器166,当处于准危险区或危险区时,设置为给用户作出提示。
第一电源模块168,为智能定位器供电。
第一微型处理器1610,对云端发送来的数据或指令进行处理,如控制警报器、调整获取位置信息的频率等;将从位置获取模块获得的坐标发个无线通信模块164。
图17是根据本发明实施例的智能定位器、移动终端以及云端三者的交互示意图。如图17所示,移动终端将设置好的受控区域信息发送到云端,也可以从云端读取一段时间内的智能定位器的活动轨迹以及当前位置信息等;智能定位器将获取的位置信息实时发送到云端;云端对获取的位置信息结合受控区域信息进行分析,可以发送指令,如分别发送预警指令到移动终端和智能定位器、发送指令到智能定位器来调整获取位置的频率等。
图18是根据本发明实施例的定位流程图一,如图18所示,该流程包括如下步骤:
步骤S1802,在移动终端中设置受控区域:安全区域、准危险区域和危险区域。
步骤S1804,移动终端将设置好的受控区域的坐标信息传送至云端指定账户,该账户与智能定位终端的设备号相匹配。
步骤S1806,智能定位终端将获取的位置信息发送至云端对应的账户。
步骤S1808,云端对获得的位置信息进行分析,根据当前位置所在的区域和移动速度来调整获取位置信息的频率,以尽可能的降低智能定位终端的功耗。
步骤S1810,根据受控区域信息判断当前处于什么区域。
步骤S1812,若从其它区域跳转到安全区域,则调整获取位置信息的频率为低频,关闭警报器;若一直处于安全区域,则维持状态不变。
步骤S1814,若从其它区域跳转到准危险区域,则调整获取位置信息的频率为中频,警报器进入准危险警告模式。若一直处于准危险区域,则维持状态不变。
步骤S1816,若从其它区域跳转到危险区域,则调整获取位置信息的频率为高频,警报器进入危险警告模式。若一直处于危险区域,则维持状态不变。
步骤S1818,如果定位信息处于准危险区域或危险区域,则云端发送警告信息至移动终端。移动终端可以实时通过云端获知定位器在一段时间内的运动轨迹,该运动轨迹可以是在地图上标记的非常形象的信息。
在本发明实施例中,通过云端,移动终端可以实现对智能定位器的远程监控,可以根据实际情况来更新受控区域到云端。同时可以利用云端强大的信息处理能力来对智能定位器发送来的数据进行分析、统计,可以在三维或二维的真实地图上标记出智能定位器的移动轨迹,用户可以更加形象的捕获智能定位器的动态,控制流程如图19所示,图19是根据本发明实施例的定位流程图二,该流程包括如下步骤:
步骤S1902,在移动终端中设置受控区域:安全区域、准危险区域和危险区域。
步骤S1904,移动终端将设置好的受控区域的坐标信息传送至云端指定账户,该账户与智能定位终端的设备号相匹配。
步骤S1906,移动终端发送指令至云端的对应账户。
步骤S1908,实现间接控制智能定位终端的指令,如:打开/关闭智能定位终端、控制警报器预警、上报当前位置信息、以一定频率获知位置信息并自动上报等指令。
步骤S1910,云端下发相应指令至智能定位终端,实现对智能定位器的控制。
步骤S1912,实现与云端交互的指令,如:更新受控区域至云端,获取一段时间内的移动轨迹等指令。
步骤S1914,云端根据接收到的指令与移动终端进行交互,如重新更新受控区域后回馈更新成功的消息至移动终端;将统计的指定时间段内的轨迹图发送至移动终端等。
图20是根据本发明实施例的智能定位器的结构示意图。如图20所示,该智能定位器由第二位置获取模块202、蓝牙模块204、存储模块206、第二警报器208、第二电源模块2010 以及第二微型处理器2012组成。
其中,第二位置获取模块202,可以是GPS、北斗等,设置为获取位置信息。
蓝牙模块204,设置为与移动终端的近场通信,移动终端将设置好的受控区域信息通过蓝牙传输的智能定位器中,也可以通过该蓝牙模块从智能定位器中获取一段时间内的活动轨迹。
存储模块206,设置为存储从移动终端中传送过来的受控区域信息,以及一段时间内的活动轨迹的坐标数据。
第二警报器208,当处于准危险区或危险区时,设置为给用户作出提示。
第二电源模块2010,为智能定位器供电。
第二微型处理器2012,对移动终端发送来的数据或指令进行处理,对从第二位置获取模块202获得的坐标进行分析,对获取位置信息的频率进行调整等。
图21是根据本发明实施例的智能定位器直接与移动终端经行交互的示意图。当然,只有需要受控区域信息更新、移动终端需获得一定时间内的活动轨迹以及移动终端对其进行设置的时候才需要两者的交互,其余时间智能定位器可独立工作。
图22是根据本发明实施例的定位流程图三,如图22所示,该流程包括如下步骤:
步骤S2202,在移动终端中设置受控区域:安全区域、接近危险区域和危险区域。
步骤S2204,移动终端和智能定位终端通过蓝牙建立连接,移动终端将设置好的受控区域的坐标信息传送至智能定位终端。
步骤S2206,智能定位终端开启时以最低频率来获取位置信息。并根据当前位置所在的区域和移动速度来调整获取位置信息的频率,以尽可能的降低功耗。
步骤S2208,智能定位终端对获得的位置信息进行分析,如移动速度、根据受控区域信息判断当前区域的安全等级、根据上一位置信息判断位置变化情况等。
步骤S2210,根据受控区域信息判断当前处于什么区域。
步骤S2212,若从其它区域跳转到安全区域,则调整获取位置信息的频率为低频,关闭警报器;若一直处于安全区域,则维持状态不变。
步骤S2214,若从其它区域跳转到准危险区域,则调整获取位置信息的频率为中频,警报器进入准危险警告模式。若一直处于准危险区域,则维持状态不变。
步骤S2216,若从其它区域跳转到危险区域,则调整获取位置信息的频率为高频,警报器进入危险警告模式。若一直处于危险区域,则维持状态不变。
通过上述实施例,移动终端用户可以对智能定位器用户的活动区域的安全等级进行快捷而形象的设置,用户体验会很好。在智能终端用户处于准危险区和危险区时实现及时报警的 功能。大大降低受监护的小孩或老人发生危险的情况,监护人还可以实时获知受监护人的位置信息和一段时间内的活动轨迹。是现在上班族父母的必备佳品,同时可以协助警方对走丢或被拐小孩的破案。
需要说明的是,上述各个模块是可以通过软件或硬件来实现的,对于后者,可以通过以下方式实现,但不限于此:上述模块均位于同一处理器中;或者,上述模块分别位于多个处理器中。
本发明的实施例还提供了一种存储介质。可选地,在本实施例中,上述存储介质可以被设置为存储用于执行以下步骤的程序代码:
S11,确定被监控终端的当前位置信息;
S12,根据监控区域与危险等级的对应关系确定上述当前位置信息所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。
可选地,存储介质还被设置为存储用于执行以下步骤的程序代码:
S21,确定监控区域与危险等级的对应关系;
S22,将上述对应关系发送给中间网络设备和/或被监控终端,其中,该对应关系用于中间网络设备和/或被监控终端确定上述被监控终端所位于的当前监控区域的危险等级,其中,包括上述当前监控区域在内的监控区域中至少两个监控区域的危险等级不同。
可选地,在本实施例中,上述存储介质可以包括但不限于:U盘、只读存储器(Read-Only Memory,简称为ROM)、随机存取存储器(Random Access Memory,简称为RAM)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
可选地,在本实施例中,处理器根据存储介质中已存储的程序代码执行上述的步骤S11-S12。
可选地,在本实施例中,处理器根据存储介质中已存储的程序代码执行上述的步骤S21-S22。
可选地,本实施例中的具体示例可以参考上述实施例及可选实施方式中所描述的示例,本实施例在此不再赘述。
显然,本领域的技术人员应该明白,上述的本发明的各模块或各步骤可以用通用的计算装置来实现,它们可以集中在单个的计算装置上,或者分布在多个计算装置所组成的网络上,可选地,它们可以用计算装置可执行的程序代码来实现,从而,可以将它们存储在存储装置中由计算装置来执行,并且在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤,或者将它们分别制作成各个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。这样,本发明不限制于任何特定的硬件和软件结合。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
工业实用性
如上所述,本发明实施例提供的一种危险等级的确定方法及装置具有以下有益效果:解决相关技术中存在的无法界定监控区域的危险等级,从而无法实现针对不同等级的监控区域进行区别监控,导致定位效率低的问题,实现了确定监控区域的危险等级,进而针对不同等级的监控区域进行区别监控,提高定位效率的效果。

Claims (26)

  1. 一种危险等级的确定方法,包括:
    确定被监控终端的当前位置信息;
    根据监控区域与危险等级的对应关系确定所述当前位置信息所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
  2. 根据权利要求1所述的方法,其中,在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之前,还包括:
    确定所述监控区域与危险等级的对应关系。
  3. 根据权利要求2所述的方法,其中,确定所述监控区域与危险等级的对应关系包括:
    接收用于监控所述被监控终端的监控终端发送的所述监控区域与危险等级的对应关系。
  4. 根据权利要求1所述的方法,其中,在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,还包括:
    在确定所述当前监控区域对应的危险等级大于预定值后,进行告警。
  5. 根据权利要求1所述的方法,其中,在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,还包括:
    确定所述当前监控区域的危险等级对应的用于获取所述被监控终端的位置信息的频率,其中,包括所述当前监控区域在内的至少两个危险等级不同的监控区域分别对应不同的获取所述被监控终端的位置信息的频率;
    按照确定的所述频率获取所述被监控终端的位置信息。
  6. 根据权利要求5所述的方法,其中,所述监控区域的危险等级越高,对应的获取所述被监控终端的位置信息的频率越大。
  7. 根据权利要求5所述的方法,其中,在按照确定的所述频率获取所述被监控终端的位置信息之后,还包括:
    记录获取所述被监控终端的位置信息的获取时间。
  8. 根据权利要求7所述的方法,其中,在记录获取所述被监控终端的位置信息的获取时间之后,还包括:
    根据获取的所述被监控终端的位置信息和获取所述位置信息的获取时间确定所述被监控终端的运动轨迹。
  9. 根据权利要求8所述的方法,其中,在确定所述运动轨迹之后,还包括:
    将确定的所述运动轨迹发送给用于监控所述被监控终端的监控终端。
  10. 一种危险等级的确定方法,包括:
    确定监控区域与危险等级的对应关系;
    将所述对应关系发送给中间网络设备和/或被监控终端,其中,所述对应关系用于所述中间网络设备和/或被监控终端确定所述被监控终端所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
  11. 根据权利要求10所述的方法,其中,确定监控区域与危险等级的对应关系包括:
    接收输入的用于标识所述监控区域的区域信息和用于标识所述监控区域的危险等级的等级信息;
    利用所述区域信息和所述等级信息确定所述监控区域与所述危险等级的对应关系。
  12. 根据权利要求10所述的方法,其中,在将所述对应关系发送给中间网络设备和/或被监控终端之后,还包括:
    接收所述中间网络设备和/或被监控终端在确定所述当前监控区域对应的危险等级大于预定值后,发送的告警信息。
  13. 根据权利要求10所述的方法,其中,在将所述对应关系发送给中间网络设备和/或被监控终端之后,还包括:
    向所述中间网络设备和/或被监控终端发送轨迹请求信息,其中,所述轨迹请求信息用于请求获取所述被监控终端的运动轨迹;
    接收所述中间网络设备和/或被监控终端返回的所述运动轨迹。
  14. 一种危险等级的确定装置,包括:
    第一确定模块,设置为确定被监控终端的当前位置信息;
    第二确定模块,设置为根据监控区域与危险等级的对应关系确定所述当前位置信息所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
  15. 根据权利要求14所述的装置,其中,还包括:
    第三确定模块,设置为在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之前,确定所述监控区域与危险等级的对应关系。
  16. 根据权利要求15所述的装置,其中,所述第三确定模块包括:
    第一接收单元,设置为接收用于监控所述被监控终端的监控终端发送的所述监控区 域与危险等级的对应关系。
  17. 根据权利要求14所述的装置,其中,还包括:
    告警模块,设置为在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,在确定所述当前监控区域对应的危险等级大于预定值后,进行告警。
  18. 根据权利要求14所述的装置,其中,还包括:
    第四确定模块,设置为在根据监控区域与危险等级的对应关系确定所述当前监控区域的危险等级之后,确定所述当前监控区域的危险等级对应的用于获取所述被监控终端的位置信息的频率,其中,包括所述当前监控区域在内的至少两个危险等级不同的监控区域分别对应不同的获取所述被监控终端的位置信息的频率;
    获取模块,设置为按照确定的所述频率获取所述被监控终端的位置信息。
  19. 根据权利要求18所述的装置,其中,所述监控区域的危险等级越高,对应的获取所述被监控终端的位置信息的频率越大。
  20. 根据权利要求18所述的装置,其中,还包括:
    记录模块,设置为在按照确定的所述频率获取所述被监控终端的位置信息之后,记录获取所述被监控终端的位置信息的获取时间。
  21. 根据权利要求20所述的装置,其中,还包括:
    第五确定模块,设置为在记录获取所述被监控终端的位置信息的获取时间之后,根据获取的所述被监控终端的位置信息和获取所述位置信息的获取时间确定所述被监控终端的运动轨迹。
  22. 根据权利要求21所述的装置,其中,还包括:
    第一发送模块,设置为在确定所述运动轨迹之后,将确定的所述运动轨迹发送给用于监控所述被监控终端的监控终端。
  23. 一种危险等级的确定装置,包括:
    第六确定模块,设置为确定监控区域与危险等级的对应关系;
    第二发送模块,设置为将所述对应关系发送给中间网络设备和/或被监控终端,其中,所述对应关系用于所述中间网络设备和/或被监控终端确定所述被监控终端所位于的当前监控区域的危险等级,其中,包括所述当前监控区域在内的所述监控区域中至少两个监控区域的危险等级不同。
  24. 根据权利要求23所述的装置,其中,所述第六确定模块包括:
    第二接收单元,设置为接收输入的用于标识所述监控区域的区域信息和用于标识所 述监控区域的危险等级的等级信息;
    确定单元,设置为利用所述区域信息和所述等级信息确定所述监控区域与所述危险等级的对应关系。
  25. 根据权利要求23所述的装置,其中,还包括:
    第一接收模块,设置为在将所述对应关系发送给中间网络设备和/或被监控终端之后,接收所述中间网络设备和/或被监控终端在确定所述当前监控区域对应的危险等级大于预定值后,发送的告警信息。
  26. 根据权利要求23所述的装置,其中,还包括:
    第三发送模块,设置为在将所述对应关系发送给中间网络设备和/或被监控终端之后,向所述中间网络设备和/或被监控终端发送轨迹请求信息,其中,所述轨迹请求信息用于请求获取所述被监控终端的运动轨迹;
    第二接收模块,设置为接收所述中间网络设备和/或被监控终端返回的所述运动轨迹。
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