CN113315887A - Government affair service center management system - Google Patents
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- H—ELECTRICITY
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- G08B13/00—Burglar, theft or intruder alarms
- G08B13/02—Mechanical actuation
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- G08B13/122—Mechanical actuation by the breaking or disturbance of stretched cords or wires for a perimeter fence
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Abstract
The present disclosure relates to a government affairs service center management system, the system comprising: the system comprises a regional monitoring subsystem, an out-of-range detection subsystem and a security control subsystem, wherein the regional monitoring subsystem comprises an image acquisition device and an image display device connected with the image acquisition device, and the image display device is used for displaying image information acquired by the image acquisition device; the border crossing detection subsystem comprises detection equipment and an alarm unit connected with the detection equipment; the security control subsystem comprises a security control module and a position detection module in communication connection with the security control module, and the position detection module is used for detecting position information of a security unit.
Description
Technical Field
The disclosure relates to the technical field of safety, in particular to a government affair service center management system.
Background
Along with the rapid development of internet technology and big data, government affairs service centers are continuously upgraded, and the problems follow although the current government affairs service centers provide more humanized services.
For example, for a 24-hour administrative service center self-service area which is not closed for 24 hours, although the service area facilitates the handling process of the masses and enterprises and also improves the service level of the government, some potential safety hazards are brought.
Disclosure of Invention
An object of the present disclosure is to provide a government affairs service center management system to solve the above-mentioned related art problems.
In order to achieve the above object, the present disclosure provides a government affairs service center management system, including:
a region monitoring subsystem, an out-of-range detection subsystem and a security control subsystem,
the area monitoring subsystem comprises an image acquisition device and an image display device connected with the image acquisition device, and the image display device is used for displaying image information acquired by the image acquisition device;
the border crossing detection subsystem comprises detection equipment and an alarm unit connected with the detection equipment;
the security control subsystem comprises a security control module and a position detection module in communication connection with the security control module, and the position detection module is used for detecting position information of a security unit.
Optionally, the area monitoring subsystem is configured to, when a monitoring area adjustment instruction is received, adjust an image acquisition range of the image acquisition device according to the monitoring area adjustment instruction.
Optionally, the area monitoring subsystem is configured to, when receiving a monitoring adjustment instruction of a target control end, obtain permission information of the target control end;
and when the authority information represents that the target control end has the monitoring and adjusting authority, executing the action corresponding to the monitoring and adjusting instruction.
Optionally, the border-crossing detection subsystem is configured to obtain detection data of the detection device for a target area of a government affair service center; and determining whether the target area is invaded or not according to the detection data.
Optionally, the out-of-range detection subsystem is specifically configured to,
determining the time length of the detection data in an abnormal state according to the detection data and preset target detection data representing that the target area is not invaded;
and when the duration is greater than a first preset threshold value, determining that the target area is invaded.
Optionally, the detection device comprises an electronic fence, the out-of-range detection subsystem is further configured to,
when the duration is greater than a first preset threshold, controlling the electronic fence to release voltage pulses; and the number of the first and second electrodes,
and when the duration is greater than a second preset threshold, controlling the alarm unit to execute an alarm action, wherein the second preset threshold is greater than the first preset threshold.
Optionally, the location detection module is disposed at a plurality of preset location nodes in a government affair service central area, and configured to identify identity information of the security unit when a distance between the security unit and the preset location node is smaller than a preset range.
Optionally, the security control module is configured to,
acquiring the position information of the security unit acquired by the position detection module and time information corresponding to the position information;
and determining the position of the security unit based on the time information, the position information of the security unit and the position information of the position detection module.
Optionally, the security control subsystem is configured to, when receiving an alarm instruction, sent by the area monitoring subsystem, for indicating that a target area of the government affair service center is abnormal, determine a target security unit according to the alarm instruction and the location of the security unit;
and sending a task instruction to the target security unit so that the target security unit reaches the target area according to the task instruction.
Optionally, the security control subsystem is configured to, when receiving an alarm instruction sent by the border-crossing detection subsystem and indicating that a target area of a government affair service center is invaded, determine a target security unit according to the alarm instruction and the location of the security unit;
and sending a task instruction to the target security unit so that the target security unit reaches the target area according to the task instruction.
In the technical scheme, the government center management system comprises an area monitoring subsystem, an out-of-range detection subsystem and a security control subsystem. Thus, the image data of the government affair service center can be acquired and displayed through the region monitoring subsystem; detecting whether an intrusion phenomenon exists in a related area through the border-crossing detection subsystem; and the position of a security unit (such as security personnel) is detected in real time through the security control subsystem, so that the security unit can be called in abnormal situations. By adopting the technical scheme, the safety of the government center can be improved.
Additional features and advantages of the disclosure will be set forth in the detailed description which follows.
Drawings
The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate embodiments of the disclosure and together with the description serve to explain the disclosure without limiting the disclosure. In the drawings:
fig. 1 is a schematic diagram of a government service center management system according to an exemplary embodiment of the present disclosure.
Fig. 2 is a schematic diagram of a government service center management system according to an exemplary embodiment of the present disclosure.
Detailed Description
The following detailed description of specific embodiments of the present disclosure is provided in connection with the accompanying drawings. It should be understood that the detailed description and specific examples, while indicating the present disclosure, are given by way of illustration and explanation only, not limitation.
Before introducing the government affairs service center management system provided by the present disclosure, an application scenario of embodiments of the present disclosure will be described first. Along with the rapid development of internet technology and big data, government affairs service centers are continuously upgraded, and the problems follow although the current government affairs service centers provide more humanized services.
For example, for a 24-hour administrative service center self-service area which is not closed for 24 hours, although the service area facilitates the handling process of the masses and enterprises and also improves the service level of the government, some potential safety hazards are brought.
To this end, the present disclosure provides a government affairs service center management system, referring to a schematic diagram of a government affairs service center management system shown in fig. 1, the system including: the system comprises a region monitoring subsystem, an out-of-range detection subsystem and a security control subsystem.
The area monitoring subsystem can comprise an image acquisition device and an image display device connected with the image acquisition device. The image acquisition device may, for example, include one or more cameras, such as digital cameras, analog cameras, and the like, or a combination thereof. When the image acquisition device comprises a plurality of cameras, each camera may be distributed in a preset area of the government affairs service center, for example.
The image display device may be, for example, one or more displays for displaying the image information acquired by the image acquisition apparatus. When the image acquisition device is further connected with a sound reception unit, the image display device can also play audio signals acquired by the sound reception unit through a loudspeaker, for example. In addition, in some implementation scenarios, the image display device may be disposed in a monitoring center, for example, so that monitoring personnel can acquire the status of each area of the government affairs service center.
Of course, as shown in fig. 1, in some possible embodiments, the area monitoring subsystem may also include a storage device, for example. The storage device may be connected to the image capturing apparatus by wired or wireless communication, for example, so as to store the image information captured by the image capturing apparatus. The storage mode may be performed according to parameters such as the number of the camera, time, and content title, for example, to store different image data in a classified manner.
In some embodiments, the storage device may further be connected to the image display device, so that the image display device can obtain relevant image information stored in the storage device, such as historical monitoring data and the like.
In addition, referring to the schematic diagram of a government affairs service center management system shown in fig. 2, the storage device may further include a server, for example. Thus, the image display apparatus can realize a monitor review function by storing the image data by the server.
In a possible implementation manner, the area monitoring subsystem is configured to, when receiving a monitoring area adjustment instruction, adjust an image acquisition range of the image acquisition device according to the monitoring area adjustment instruction.
The monitoring area adjustment instruction may be sent by other devices or generated by the area monitoring subsystem in response to an operation of a user. For example, in some embodiments, when receiving the monitoring area adjustment instruction, the area monitoring subsystem may adjust an image capturing angle and direction of a camera and/or adjust parameters such as an aperture size, a focal length, and a zoom factor of a lens of the camera in response to the monitoring area adjustment instruction, thereby adjusting an image capturing range of the image capturing device. In this way, the control end (for example, a monitoring person) can remotely adjust the image acquisition range of the image acquisition device.
Of course, the area monitoring subsystem may also define programmatically a sequence of cameras that need to be walked around, each camera including, for example, one or more programmably set preset scenes, images, or auxiliary touch actions. For example, the image capture area during the work period may be a service area where government workers are located to supervise the behavior of the government workers; the image acquisition regions in the late-night time period may then be relevant regions with safety risks, thereby detecting potential safety hazards.
In another possible implementation manner, the area monitoring subsystem may be further configured to, when receiving a monitoring adjustment instruction of a target control end, obtain permission information of the target control end;
and when the authority information represents that the target control end has the monitoring and adjusting authority, executing the action corresponding to the monitoring and adjusting instruction.
The area monitoring subsystem may maintain a corresponding call permission list, for example, and is configured to record various kinds of identity information of a control terminal capable of calling the area monitoring subsystem. Therefore, whether the target control end has the monitoring and adjusting authority of the area monitoring subsystem or not can be determined by comparing the identity information of the target control end with the calling permission list, and the monitoring and adjusting instruction is refused to be responded when the target control end does not have the monitoring and adjusting authority.
In some optional schemes, the call permission list may further include corresponding hierarchy information, for example, may include different levels of distinguishing instruction information, so as to establish priority operation and prevent illegal use, thereby ensuring the safety of system operation.
By adopting the technical scheme, the regional monitoring subsystem system can realize functions of monitoring and examining window workers and office regional monitoring in the service center, and the like, and improves the safety of the government affair service center.
Still referring to fig. 1, the government center management system further includes an out-of-range detection subsystem, and the out-of-range detection subsystem includes a detection device and an alarm unit connected to the detection device. The detection device can be arranged in a target area to be monitored, and a user detects an object invading the target area. In particular, the detection device may be, for example, a relevant sensor, such as a pyroelectric sensor or a radar, etc. In some implementations, the detection device can also include an electronic fence, which can be disposed on a wall of the target area, for example.
The alarm unit may, for example, include a speaker to facilitate playing of a corresponding alarm audio in response to an alarm instruction of the out-of-range detection subsystem. The alarm unit can also comprise an alarm lamp for responding to the alarm instruction of the border-crossing detection subsystem and displaying corresponding alarm light.
In some possible embodiments, the border crossing detection subsystem is configured to obtain detection data of the detection device for a target area of a government affairs service center; and determining whether the target area is invaded or not according to the detection data.
That is, whether the target area is invaded may be determined based on the detection data detected by the detection device. For example, in one possible embodiment, the out-of-range detection subsystem is specifically configured to,
determining the time length of the detection data in an abnormal state according to the detection data and preset target detection data representing that the target area is not invaded;
and when the duration is greater than a first preset threshold value, determining that the target area is invaded.
For example, the detection device may be an electronic fence, and the voltage value and the current value of the electronic fence can be maintained within a preset range during normal operation. When there is intrusion, there can be corresponding variation in the voltage and current values of the electronic fence, such as voltage and current variation caused by open circuit or short circuit. Therefore, whether the electronic fence is abnormal or not can be determined by comparing the voltage value and the current value of the electronic fence and the voltage value and the current value of the electronic fence in normal operation, and whether the target area is invaded or not can be further determined.
Of course, in some implementation scenarios, the voltage and current variation of the electronic fence may also be a transient sudden change caused by environmental factors, i.e. the target area is not invaded. In this case, a duration of the detection data being in an abnormal state may be determined according to the detection data and preset target detection data representing that the target area is not invaded, and when the duration is greater than a first preset threshold, it may be determined that the target area is invaded. The first preset threshold may be set according to an application requirement, which is not limited in this disclosure.
Following the above example, in some possible embodiments, the out-of-range detection subsystem is further configured to,
and when the duration is greater than a first preset threshold value, controlling the electronic fence to release the voltage pulse so as to drive the invading object. In addition, when the duration is greater than a second preset threshold, the alarm unit can be controlled to execute an alarm action. Wherein the second preset threshold is greater than the first preset threshold.
Thus, the safety of the target area can be improved through the border-crossing detection subsystem.
Referring to fig. 1, the government affair service center management system further includes a security control subsystem, where the security control subsystem includes a security control module and a position detection module in communication connection with the security control module, and the position detection module is used to detect position information of a security unit.
Where the security control module may be used, for example, to control the overall operation of the security control subsystem, in particular implementations, the security control module may be any type of stationary or mobile computing device, including a mobile computer or mobile computing device (e.g., tablet, personal digital assistant, laptop, notebook, netbook, etc.), a mobile phone, a wearable computing device (e.g., smart watch, smart glasses, etc.), or other type of mobile device, or a stationary computing device such as a desktop computer.
The location detection module may be disposed on a security unit, for example, and in some possible embodiments, the location detection module may include a communication module and a positioning module. The positioning module may be configured to obtain location information of the security unit, and the communication module may be, for example, a WIFI (Wireless Fidelity ) module, a cellular communication module, and the like, and is configured to establish a communication connection with the security control module, so as to send the location information obtained by the positioning module to the security control module through the communication connection.
The security unit may be, for example, a security person or a related detection device, such as an unmanned vehicle, an unmanned aerial vehicle, or the like, which is not limited in this disclosure.
In another possible implementation manner, the location detection module may also be disposed at a plurality of preset location nodes in a government affair service central area, and is configured to identify the identity information of the security unit when a distance between the security unit and the preset location node is smaller than a preset range.
For example, the security unit may be provided with an associated electronic identification unit, such as a radio frequency module, an NFC (Near Field Communication) module, and the like. Taking radio frequency as an example, a radio frequency tag can be set on a security personnel, and a corresponding card reader and a radio frequency antenna are set on the node at the preset position. Therefore, when the distance between the security personnel and the preset position node is smaller than the preset range, the card reader can sense and identify the radio frequency tag on the security personnel, and accordingly the identity information of the security personnel in the radio frequency tag is obtained.
The security control module can send the acquired position information of the security personnel to the security control module, the security control module is used for,
acquiring the position information of the security unit acquired by the position detection module and time information corresponding to the position information;
and determining the position of the security unit based on the time information, the position information of the security unit and the position information of the position detection module.
Therefore, the position detection module can acquire the patrol condition of a security unit (such as patrol personnel) in real time, and by means of the mode, the management of the security unit can be enhanced, and the safety of a government affair service center can be improved.
Because the security control module can acquire the position information of each security unit, when the government affair service center is abnormal, the security control subsystem can also send corresponding instruction information to the security units.
For example, in a possible implementation manner, the security control subsystem is configured to, when receiving an alarm instruction, sent by the area monitoring subsystem, for indicating that a target area of a government affair service center is abnormal, determine a target security unit according to the alarm instruction and a location of the security unit;
and sending a task instruction to the target security unit so that the target security unit reaches the target area according to the task instruction.
The target security unit may be, for example, a security unit whose distance from the target area is smaller than a preset distance threshold. When the security unit comprises the unmanned aerial vehicle, the unmanned vehicle and other equipment, the target security unit can also be comprehensively determined according to the residual electric quantity of the unmanned aerial vehicle or the unmanned vehicle and the distance value between the unmanned aerial vehicle or the unmanned vehicle and the target area, and the disclosure does not limit the same.
In another possible implementation manner, the security control subsystem is configured to, when receiving an alarm instruction sent by the border-crossing detection subsystem and indicating that a target area of a government affair service center is invaded, determine a target security unit according to the alarm instruction and the location of the security unit;
and sending a task instruction to the target security unit so that the target security unit reaches the target area according to the task instruction.
For the determination of the target security unit, please refer to the above embodiments, which is not described in detail in this disclosure. Of course, in some implementation scenarios, the security unit may also perform actions such as alarming, etc. according to the different task instructions, which is not limited by the present disclosure.
In the technical scheme, the government center management system comprises an area monitoring subsystem, an out-of-range detection subsystem and a security control subsystem. Thus, the image data of the government affair service center can be acquired and displayed through the region monitoring subsystem; detecting whether an intrusion phenomenon exists in a related area through the border-crossing detection subsystem; and the position of a security unit (such as security personnel) is detected in real time through the security control subsystem, so that the security unit can be called in abnormal situations. By adopting the technical scheme, the safety of the government center can be improved.
The preferred embodiments of the present disclosure are described in detail with reference to the accompanying drawings, however, the present disclosure is not limited to the specific details of the above embodiments, and various simple modifications may be made to the technical solution of the present disclosure within the technical idea of the present disclosure, and these simple modifications all belong to the protection scope of the present disclosure.
It should be noted that, in the foregoing embodiments, various features described in the above embodiments may be combined in any suitable manner, and in order to avoid unnecessary repetition, various combinations that are possible in the present disclosure are not described again.
In addition, any combination of various embodiments of the present disclosure may be made, and the same should be considered as the disclosure of the present disclosure, as long as it does not depart from the spirit of the present disclosure.
Claims (10)
1. A government affairs service center management system, comprising:
a region monitoring subsystem, an out-of-range detection subsystem and a security control subsystem,
the area monitoring subsystem comprises an image acquisition device and an image display device connected with the image acquisition device, and the image display device is used for displaying image information acquired by the image acquisition device;
the border crossing detection subsystem comprises detection equipment and an alarm unit connected with the detection equipment;
the security control subsystem comprises a security control module and a position detection module in communication connection with the security control module, and the position detection module is used for detecting position information of a security unit.
2. The government affairs service center management system according to claim 1, wherein the region monitoring subsystem is configured to, upon receiving a monitoring region adjustment instruction, adjust an image acquisition range of the image acquisition device according to the monitoring region adjustment instruction.
3. The government affair service center management system according to claim 1, wherein the region monitoring subsystem is configured to, upon receiving a monitoring adjustment instruction of a target control terminal, obtain authority information of the target control terminal;
and when the authority information represents that the target control end has the monitoring and adjusting authority, executing the action corresponding to the monitoring and adjusting instruction.
4. The government service center management system according to claim 1, wherein the out-of-range detection subsystem is configured to,
acquiring detection data of the detection equipment aiming at a target area of a government affair service center;
and determining whether the target area is invaded or not according to the detection data.
5. A government service center management system according to claim 4, wherein the out-of-range detection subsystem is specifically configured to,
determining the time length of the detection data in an abnormal state according to the detection data and preset target detection data representing that the target area is not invaded;
and when the duration is greater than a first preset threshold value, determining that the target area is invaded.
6. A government service center management system according to claim 5, wherein the detection device includes an electronic fence, the out-of-range detection subsystem further operable to,
when the duration is greater than a first preset threshold, controlling the electronic fence to release voltage pulses; and the number of the first and second electrodes,
and when the duration is greater than a second preset threshold, controlling the alarm unit to execute an alarm action, wherein the second preset threshold is greater than the first preset threshold.
7. The government affair service center management system according to claim 1, wherein the location detection module is disposed at a plurality of preset location nodes in a government affair service center area, and configured to identify the identity information of the security unit when a distance between the security unit and the preset location node is smaller than a preset range.
8. The government service center management system according to claim 7, wherein said security control module is for,
acquiring the position information of the security unit acquired by the position detection module and time information corresponding to the position information;
and determining the position of the security unit based on the time information, the position information of the security unit and the position information of the position detection module.
9. The government affair service center management system according to claim 1, wherein the security control subsystem is configured to, upon receiving an alarm instruction indicating that a target area of the government affair service center is abnormal, sent by the area monitoring subsystem, determine a target security unit according to the alarm instruction and a location of the security unit;
and sending a task instruction to the target security unit so that the target security unit reaches the target area according to the task instruction.
10. The government affair service center management system according to claim 1, wherein the security control subsystem is configured to, upon receiving an alarm instruction indicating that a target area of the government affair service center is intruded, sent by the border-crossing detection subsystem, determine a target security unit according to the alarm instruction and a location of the security unit;
and sending a task instruction to the target security unit so that the target security unit reaches the target area according to the task instruction.
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