WO2019141188A1 - 一种设备控制方法、装置、系统、电子设备及存储介质 - Google Patents

一种设备控制方法、装置、系统、电子设备及存储介质 Download PDF

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Publication number
WO2019141188A1
WO2019141188A1 PCT/CN2019/071970 CN2019071970W WO2019141188A1 WO 2019141188 A1 WO2019141188 A1 WO 2019141188A1 CN 2019071970 W CN2019071970 W CN 2019071970W WO 2019141188 A1 WO2019141188 A1 WO 2019141188A1
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Prior art keywords
target
working state
monitoring result
image
monitoring
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PCT/CN2019/071970
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English (en)
French (fr)
Inventor
孟坚鑫
沈林杰
Original Assignee
杭州海康威视数字技术股份有限公司
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Publication of WO2019141188A1 publication Critical patent/WO2019141188A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • H04L67/125Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks involving control of end-device applications over a network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast

Definitions

  • the present application relates to the field of computer technology, and in particular, to a device control method, apparatus, system, electronic device, and storage medium.
  • the present application provides a device control method, device, system, electronic device and storage medium, so as to realize intelligent control of the working state of basic devices such as street lamps, traffic lights, electronic signs, etc., to achieve the problem of reducing energy consumption.
  • the specific technical solutions are as follows:
  • an embodiment of the present application provides a device control method, where the method includes:
  • the step of obtaining the target monitoring result of the monitoring object under the target monitoring area includes:
  • the step of receiving the target monitoring result of the monitoring object in the target monitoring area sent by the receiving image collecting device includes:
  • the receiving image acquisition device has a target monitoring result of the monitoring object under the target monitoring area sent by the NB-IOT communication.
  • the step of obtaining the target monitoring result of the monitoring object under the target monitoring area includes:
  • the target monitoring result is obtained: the monitoring object exists under the target monitoring area;
  • the target monitoring result is obtained: there is no monitoring object under the target monitoring area.
  • the step of obtaining the image to be detected collected from the target monitoring area includes:
  • the image to be detected collected from the target monitoring area sent by the image collection device is obtained.
  • the step of obtaining the image to be detected collected from the target monitoring area includes:
  • the image to be detected is collected from the target monitoring area.
  • the method further includes:
  • the method further includes:
  • Determining a current working state of the target device is: a working state corresponding to a previous control instruction for the target device.
  • the step of determining whether the working state of the target device needs to be adjusted according to the current working state of the target device and the target monitoring result includes:
  • the step of sending the target control instruction to the target device includes:
  • the target control command is sent to the target device based on NB-IOT communication.
  • an embodiment of the present application provides another device control method, where the method includes:
  • the embodiment of the present application provides another device control method, where the method includes:
  • the step of sending the pending monitoring result to a central server for controlling a target device includes:
  • the pending monitoring result is transmitted to a central server for controlling the target device based on the NB-IOT communication.
  • an embodiment of the present application provides a device control apparatus, where the device includes:
  • Obtaining a module configured to obtain a target monitoring result of the monitored object under the target monitoring area
  • a determining module configured to determine, according to a current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted
  • a generating module configured to generate, in a case that the determination result of the determining module is YES, a target control instruction that works in a target working state corresponding to the target monitoring result;
  • a first sending module configured to send the target control instruction to the target device, to control the target device to adjust its working state to the target working state.
  • the obtaining module is specifically configured to:
  • the obtaining module is specifically configured to:
  • the receiving image acquisition device has a target monitoring result of the monitoring object under the target monitoring area sent by the NB-IOT communication.
  • the obtaining module includes:
  • a detection sub-module configured to detect whether there is a monitoring object in the image to be detected; if yes, obtain a target monitoring result: a monitoring object exists in the target monitoring area; if not, a target monitoring result is obtained: the target monitoring area There is no monitoring object underneath.
  • the obtaining the submodule is specifically configured to:
  • the image to be detected collected from the target monitoring area sent by the image collection device is obtained.
  • the obtaining the submodule is specifically configured to:
  • the image to be detected is collected from the target monitoring area.
  • the device further includes:
  • an identification module configured to identify a current working state of the target device in the image to be detected that is under the target monitoring area.
  • the device further includes:
  • the determining module is configured to determine that the current working state of the target device is: a working state corresponding to a previous control instruction for the target device.
  • the determining module includes:
  • Determining a sub-module configured to determine, according to a preset relationship between the preset monitoring result and the working state of the device, a target working state corresponding to the target monitoring result;
  • a determining sub-module configured to determine whether a current working state of the target device is the same as the target working state; if the same, determining that the working state of the target device does not need to be adjusted; if different, determining a working state of the target device Need to adjust.
  • the first sending module is specifically configured to:
  • the target control command is sent to the target device based on NB-IOT communication.
  • an embodiment of the present application provides another device control apparatus, where the device includes:
  • a first collecting module configured to collect an image to be detected from a target monitoring area
  • a second sending module configured to send the image to be detected to a central server for controlling the target device, so that the central server detects, after receiving the image to be detected, whether the image to be detected exists Monitoring the pending monitoring result of the object, and determining whether the working state of the target device needs to be adjusted according to the current working state of the target device and the pending monitoring result, and if necessary, generating the target working state corresponding to the to-be-determined monitoring result
  • the target control instruction of the work and then sending the target control instruction to the target device, to control the target device to adjust its working state to the target working state.
  • the embodiment of the present application provides another device control apparatus, where the apparatus includes:
  • a second collecting module configured to collect an image to be detected from a target monitoring area
  • a detecting module configured to detect whether a pending monitoring result of the monitoring object exists in the image to be detected
  • a third sending module configured to send the pending monitoring result to a central server for controlling the target device, so that the central server receives the pending monitoring result, according to a current working state of the target device, and Determining a monitoring result, determining whether the working state of the target device needs to be adjusted, and if necessary, generating a target control instruction that works in a target working state corresponding to the target monitoring result, and then sending the target control command to the
  • the target device is configured to control the target device to adjust its working state to the target working state.
  • the third sending module is specifically configured to:
  • the pending monitoring result is transmitted to a central server for controlling the target device based on the NB-IOT communication.
  • the embodiment of the present application provides a device control system, where the system includes a central server and a target device controlled by the central server: wherein
  • the central server is configured to obtain a target monitoring result of the monitoring object under the target monitoring area; and determine, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted; And generating, by the target control instruction working in the target working state corresponding to the target monitoring result; sending the target control instruction to the target device;
  • the target device is configured to receive the target control instruction sent by the central server, and adjust a working state of the target to the target working state.
  • the system further includes an image acquisition device,
  • the image capturing device is configured to collect an image to be detected from a target monitoring area; detect whether there is a monitoring object in the image to be detected; if yes, obtain a target monitoring result: a monitoring object exists in the target monitoring area; Existing, obtaining a target monitoring result: the monitoring object does not exist under the target monitoring area; and the obtained target monitoring result is sent to the central server;
  • the central server obtains the target monitoring result of the monitoring object under the target monitoring area, specifically:
  • the central server obtains a target monitoring result of the monitored object under the target monitoring area, specifically:
  • the target monitoring result is obtained: the monitoring object exists under the target monitoring area;
  • the target monitoring result is obtained: there is no monitoring object under the target monitoring area.
  • the system further includes an image acquisition device,
  • the image capturing device is configured to collect an image to be detected from a target monitoring area; and send the image to be detected to the central server;
  • the central server obtains an image to be detected collected from the target monitoring area, specifically:
  • the central server obtains an image to be detected collected from the target monitoring area, specifically:
  • the image to be detected is collected from the target monitoring area.
  • the central server is further configured to: before determining whether the working state of the target device needs to be adjusted, identify a current working state of the target device in the to-be-detected image that is under the target monitoring area.
  • the central server is further configured to: before determining whether the working state of the target device needs to be adjusted, determining that a current working state of the target device is: a corresponding work of a control instruction for the target device status.
  • the center server determines, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted, specifically:
  • the central server is connected to the target device based on an NB-IOT communication.
  • an embodiment of the present application provides an electronic device, including a first processor and a first memory, where:
  • a first memory for storing a computer program
  • a processor when used to execute the program stored on the first memory, implementing the method steps described in the device control method provided in the first aspect.
  • the embodiment of the present application provides another electronic device, including a second processor and a second memory, where:
  • a second memory for storing a computer program
  • processor when used to execute the program stored on the second memory, implements the method steps described in the device control method provided in the second aspect.
  • an embodiment of the present application provides an electronic device, including a third processor and a third memory, where:
  • a third memory for storing a computer program
  • a processor when used to execute the program stored on the third memory, implementing the method steps described in the device control method provided in the third aspect.
  • the embodiment of the present application provides a computer readable storage medium, where the computer readable storage medium stores a computer program, and when the computer program is executed by the processor, implements the device control provided by the first aspect. Method steps as described.
  • the embodiment of the present application provides a computer readable storage medium, where the computer readable storage medium stores a computer program, and when the computer program is executed by the processor, implements the device control provided by the second aspect. Method steps as described.
  • the embodiment of the present application provides a computer readable storage medium, where the computer readable storage medium stores a computer program, and when the computer program is executed by the processor, implements the device control provided by the third aspect. Method steps as described.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is achieved, and the target device can be reduced in the non-effective working time.
  • the solution provided by the embodiment of the present application determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, thereby avoiding generating useless control commands, thereby avoiding generating and transmitting unnecessary control commands. Consumption.
  • FIG. 1 is a schematic flowchart of a first device control method according to an embodiment of the present application
  • FIG. 2 is a schematic diagram of an application scenario of a device control method according to an embodiment of the present disclosure
  • FIG. 3 is a schematic flowchart of a first device control method according to another embodiment of the present application.
  • FIG. 4 is a schematic diagram of another application scenario of a device control method according to an embodiment of the present disclosure.
  • FIG. 5 is a schematic diagram of still another application scenario of a device control method according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic flowchart of a second device control method according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic flowchart diagram of a third device control method according to an embodiment of the present application.
  • FIG. 8 is a schematic structural diagram of a device control apparatus according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of a first device control apparatus according to another embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of a second device control apparatus according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of a third device control apparatus according to an embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of a device control system according to an embodiment of the present disclosure.
  • FIG. 13 is a schematic structural diagram of a device control system according to another embodiment of the present disclosure.
  • FIG. 14 is a schematic structural diagram of an electronic device according to an embodiment of the present disclosure.
  • FIG. 15 is a schematic structural diagram of another electronic device according to an embodiment of the present disclosure.
  • FIG. 16 is a schematic structural diagram of still another electronic device according to an embodiment of the present disclosure.
  • the embodiment of the present application provides a device control method, device, system, electronic device, and storage medium.
  • the following describes the device control method provided by the embodiment of the present application in detail.
  • the device control method provided by the embodiment of the present application can be applied to a control device for controlling a target device in a device control system.
  • the control device can be a central server, and the central server controls the work of the target device.
  • the controller may also be an image collection device, such as a camera.
  • the embodiment of the present application does not limit the specific type of the central server.
  • the target device may be a street lamp, a traffic light, or an electronic indicator mentioned in the foregoing background art.
  • the embodiment of the present application does not limit the specific type of the target device.
  • the control device there may be more than one device controlled by the control device in the device control system.
  • the target device in the embodiment of the present application may be at least one of multiple devices controlled by the control device. It can be understood that multiple devices controlled by the control device are Any one of them can be used as the target device of the embodiment of the present application.
  • the device control system provided by the embodiment of the present application is described by using the target device as a representative.
  • the device control method provided by the embodiment of the present application is as shown in FIG. 1 , and the method includes:
  • the monitoring object may be a person and/or a vehicle.
  • the control device obtains the target monitoring result of the monitoring object under the target monitoring area, and may obtain the target monitoring result sent by the other monitoring device.
  • the device control system may further include a radar device, where the radar device is configured to monitor whether a monitoring object exists in the target monitoring area, and if yes, obtain a target monitoring area. There is a target monitoring result of the monitored object. If not, the target monitoring result of the monitoring object does not exist in the target monitoring area.
  • the radar device also sends the monitored target monitoring result to the control device. It can be understood that, in this case, the control device obtains the target monitoring result of the monitoring object under the target monitoring area, and may be: the control device obtains the target monitoring result sent by the radar device.
  • the radar device monitors in real time whether there is a target monitoring result of the monitoring object under the target monitoring area, and enters a vehicle in the target monitoring area at a certain time, so that the monitoring result radar device obtains the target monitoring result of the monitoring object under the target monitoring area, and The target monitoring result is sent to the control device, and the control device receives the target monitoring result.
  • the device control system may further include an image capturing device, and the image capturing device may be a common camera or the like.
  • the image capturing device may be configured to collect an image to be detected from the target monitoring area; detect whether there is a monitoring object in the image to be detected; if yes, obtain a target monitoring result: the monitoring object exists in the target monitoring area; The target monitoring result is obtained: the monitoring object does not exist under the target monitoring area; and the obtained target monitoring result is sent to the central server.
  • the step of obtaining the target monitoring result of the monitoring object (S101) under the target monitoring area may include:
  • the image capturing device can continuously collect images from the monitoring scene, and any image captured by the image capturing device can be used as the image to be detected in the embodiment of the present application; for example, the image collecting device collects Each frame of the image is taken as the image to be detected; or, the image acquired by the image acquisition device is taken as the image to be detected every interval of the preset number of frames, such as an image of 500 frames per interval.
  • the image capturing device detects whether there is a monitoring object in the image to be detected, and can be understood as: performing target detection on the detected image by using a preset monitoring object such as a person or a vehicle as a target, wherein the target detecting method is adopted.
  • the target detection method based on the depth learning, the object detection method using the image segmentation technology, or the object detection method using the feature matching technology, etc., the embodiment of the present application does not limit the specific type of the target detection method, and the target detection method The specific implementation is not described in detail.
  • the image capturing device detects that the monitoring object exists in the image to be detected, it indicates that the monitoring object exists in the target monitoring area, that is, the target monitoring result at this time is the monitoring result of the monitoring object under the monitoring area; when the image collecting device detects When there is no monitoring object in the image to be detected, it indicates that there is no monitoring object under the target monitoring area. That is, the target monitoring result at this time is the monitoring result of the monitoring object in the monitoring area.
  • the target monitoring result is sent to the central server, and the central server receives the target monitoring result sent by the image collecting device.
  • the target monitoring and monitoring result obtained by the control device is sent by the other monitoring device, and as a third optional implementation manner of the embodiment of the present application, the target monitoring result may also be controlled.
  • the step of obtaining the target monitoring result of the monitoring object (S101) in the target monitoring area is as follows:
  • the central server may obtain an image to be detected sent by the image collection device; that is, the device control system may also be
  • the image capturing device is configured to collect an image to be detected from a target monitoring area; and send the image to be detected to the central server; that is, in this case, obtaining the target monitoring area
  • the step of collecting the image to be detected may include: obtaining an image to be detected collected from the target monitoring area and sent by the image collecting device.
  • the image acquisition device in the device control system collects the image to be detected, it may not directly detect whether the monitoring object exists in the image to be detected, but directly send the collected image to the central server.
  • the step of obtaining the image to be detected collected from the target monitoring area may include: collecting the image to be detected from the target monitoring area.
  • the target device is a plurality of street lights
  • the central server is a camera in the same monitoring area as the plurality of street lights here.
  • control device obtains the image to be detected, detecting whether there is a monitoring object in the image to be detected; if yes, obtaining a target monitoring result: the monitoring object exists in the target monitoring area; if not, The target monitoring result is obtained: there is no monitoring object under the target monitoring area.
  • control device detecting whether the monitoring object exists in the to-be-detected image may refer to the image acquisition device in the second implementation manner to detect whether there is monitoring in the image to be detected.
  • the method of operation of the object is not described in detail in the embodiment of the present application.
  • the target monitoring result obtained by the control device is sent by other monitoring devices, and the target monitoring result is used as data transmitted between the control device and the monitoring device, and the data thereof.
  • the image capturing device needs to send the image to be detected to the control device, and the amount of data transmitted between the control device and the image capturing device is extremely large.
  • the control device and the radar device can be connected based on the low-traffic communication technology.
  • the central server and the image acquisition device can also be connected based on the low-traffic communication technology.
  • the low-traffic communication technology may be a NB-IOT (Narrow Band Internet of Things).
  • the central server and the image collection device are embedded with an NB-IOT chip.
  • the step of the NB-IOT communication connection between the central server and the image collection device; that is, the step of receiving the target monitoring result of the monitoring object under the target monitoring area sent by the receiving image collecting device may include:
  • the receiving image acquisition device has a target monitoring result of the monitoring object under the target monitoring area sent by the NB-IOT communication.
  • the low-traffic communication technology such as the NB-IOT-based communication technology
  • S102 determining, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted.
  • the current working state of the target device may refer to the working state of the target device at the current moment.
  • the working state may include “open state” and “off state”, for example, the target device is an electronic sign, and the electronic indication
  • the working status of the card may include “open state” and “off state”; its working state may also include “normally bright state” and “extinguished state”, for example, the target device is a traffic light, and the working state of the traffic light may include “always on” "Status", "extinguished state”; its working state may also include brightness or working power, for example, the target device is a street light, the working state of the street light may be included in a high brightness state and a low brightness state, or the working state of the street lamp may It is included in the power working state and low power working state.
  • the specific type of the working state of the target device may be various, and the embodiment of the present application is not limited herein.
  • the target device is an electronic sign
  • the working state of the electronic sign may include “open state” and “closed state”; "It can correspond to the monitoring result of the monitoring object under the target monitoring area, and the "closed state” can correspond to the monitoring result of the monitoring object in the target monitoring area. Therefore, it can be determined whether the working state of the target device needs to be adjusted by determining whether the current working state of the target device corresponds to the target monitoring result.
  • the step of determining whether the working state of the target device needs to be adjusted (S102) according to the current working state of the target device and the target monitoring result may include:
  • control device may first determine the target working state corresponding to the target monitoring result. If the target working state is different from the current working state of the target device, it indicates that the working state of the target device needs to be adjusted.
  • the target monitoring result is: there is a monitoring object under the target monitoring area, and the target working state is "open state”.
  • the target working state is "open state”.
  • the step of determining whether the working state of the target device needs to be adjusted (S102) according to the current working state of the target device and the target monitoring result may include:
  • control device may first determine candidate monitoring results corresponding to the current working state of the target device. If the candidate monitoring result is different from the target monitoring result, it indicates that the working state of the target device needs to be adjusted.
  • the candidate monitoring result is: there is a monitoring object under the target monitoring area; at this time, if the target monitoring result is: there is a monitoring object under the target monitoring area, the target is determined. The working state of the device does not need to be adjusted. If the target monitoring result is: there is no monitoring object under the target monitoring area, it is determined that the working state of the target device needs to be adjusted.
  • the correspondence between the preset monitoring result and the working state of the device may be a correspondence table between the monitoring result locally recorded in the control device and the working state of the device.
  • the current working state and target of the target device are indicated.
  • the working state is the same, so there is no need to generate control commands to adjust the working state of the target device; avoid generating useless control commands, thereby avoiding the energy consumption caused by generating and transmitting useless control commands.
  • step S103 is executed: generating a target control instruction that operates in the target operating state corresponding to the target monitoring result.
  • the target control command is a control command for controlling the target device in the target working state, and the specific embodiment of the target control command is not limited in the embodiment of the present application.
  • S104 Send the target control instruction to the target device, to control the target device to adjust its working state to the target working state.
  • the target control command is sent to the target device; and after the target device receives the target control command, the target control command is the target corresponding to the target monitoring result.
  • the control command of the working state so the target control device can adjust its current working state to the target working state at this time, and work in the target working state.
  • the target device is a traffic light, and the current working state of the traffic light is off. If the target control command received by the traffic light is a control command that works in a always-on state, the traffic light can adjust its current working state to be always on. .
  • the target device is a street light, and the current working state of the street light is a steady state. If the target control command received by the street lamp is a control command that works in a closed state, the traffic light can adjust its current working state to a closed state. .
  • the control device and the target device can also be connected based on the low-traffic communication technology.
  • the low-traffic communication technology may be an NB-IOT.
  • the control device and the target device may be connected based on the NB-IOT communication.
  • the control device and the target device are embedded with the NB.
  • the IOT chip, the control device and the target device may be based on the NB-IOT communication connection, that is, the step of transmitting the target control command to the target device (S104), which may include:
  • the target control command is sent to the target device based on NB-IOT communication.
  • the control device and the target device are based on the NB-IOT communication connection, so no additional network cable networking is required between the control device and the target device, and the NB-IOT technology networking is directly adopted, thereby greatly reducing the construction cost of the entire system.
  • the image capturing device may send the target monitoring result only to the central server, so as to facilitate the image capturing device and the central server.
  • the networking method can further reduce the system construction cost; as shown in FIG.
  • the image acquisition device can be configured with The NB-IOT chip, the image acquisition device and the central server can be based on the NB-IOT communication connection.
  • the target device is also provided with the NB-IOT chip, and the target device and the central server can be connected based on the NB-IOT communication.
  • the working state of the target device when there is a monitoring object in the target monitoring area, the working state of the target device is a normal working state, such as a steady state of a street light or an electronic sign; and when there is no monitoring object in the target monitoring area, the target device The working state can be adjusted to a low-energy or non-energy working state, such as a low-power working state or a closed state of the street lamp, thereby reducing or even reducing the energy consumption of the target device during non-effective working hours.
  • a low-energy or non-energy working state such as a low-power working state or a closed state of the street lamp
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device can be achieved, and the energy consumption of the target device in the non-effective working time can be reduced.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • control device may also obtain the current working state of the target device before performing the above step S102.
  • An optional implementation manner of obtaining, by the control device, the current working state of the target device in the embodiment of the present application, where the control device obtains the image to be detected, in the foregoing, according to the current working state of the target device and the target monitoring may further include:
  • the image recognition technology may be used to extract feature information, such as brightness, contrast, and the like in a preset range area around the target device in the image to be detected, thereby identifying the current working state of the target device.
  • the control device may use an image recognition technology to extract an average brightness value in a preset range area around the street light in the image to be detected, and determine whether the average brightness value is greater than a preset threshold. Determine that the current working state of the street light is on. If it is not greater than, determine that the current working state of the street light is off.
  • the above device control method may include:
  • S201 Obtain an image to be detected collected from a target monitoring area.
  • S202 Detecting whether there is a monitoring object in the image to be detected; if yes, obtaining a target monitoring result: a monitoring object exists in the target monitoring area; if not, obtaining a target monitoring result: there is no monitoring under the target monitoring area Object.
  • S203 Identify a current working state of the target device in the image to be detected that is under the target monitoring area.
  • S204 Determine, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted.
  • step S205 is executed: generating a target control instruction that operates in the target operating state corresponding to the target monitoring result.
  • S206 Send the target control instruction to the target device, to control the target device to adjust its working state to the target working state.
  • step S201 and the step S202 are the specific implementations of the step S101 in the foregoing method embodiment, and the steps S204 to S206 are respectively the same as the steps S102 to S104 in the method embodiment of the foregoing FIG. Therefore, the specific content and explanation of the steps S201, S202, and S204-S206 can be referred to the method embodiment shown in FIG. 1.
  • the embodiment of the present application is not described in detail herein.
  • the method may further include:
  • Determining a current working state of the target device is: a working state corresponding to a previous control instruction for the target device.
  • the working state of the target device is controlled by the control device with the control command, so after the previous control command for the target device is issued, the working state of the target device is always the corresponding control command for the target device.
  • Working status For example, if the previous control instruction for the target device is a control command that operates in an open state, the target device is in an open state from the time when the target device receives the previous control command for the target device to the current time. That is, the current working state of the target device is open.
  • the last control instruction for the target device may be recorded locally in the control device, for example, a database is set in the control device, and each time the control device generates a control instruction for the target device, the control command and the control command are generated. The time is stored in the database; or, the control device is configured with a log system, and the control device can query the log to obtain the previous control instruction for the target device generated by itself, which is feasible and reasonable.
  • the device control method provided by the embodiment of the present application is briefly introduced through a specific example.
  • the device control system includes an image collection device, a central server, and a target device.
  • the central server and the image collection device are connected by a network switch, and the target device is a traffic light, and the target device is embedded.
  • the image collection device collects the image to be detected under the target monitoring area; and sends the collected image to be detected to the central server.
  • the device control process is: after receiving the to-be-detected image, detecting whether there is a monitoring object in the image to be detected; if it is detected that the monitoring object exists in the image to be detected, the target monitoring is obtained. Result: There is a monitoring object under the target monitoring area.
  • the central server identifies the current working state of the target device under the target monitoring area in the image to be detected, and obtains the recognition result as “extinguished state”.
  • the target working state corresponding to the target monitoring result is “normally bright state”.
  • the central server because the current working state of the traffic light is different from the target working state, the central server generates a target control command that works in the "normally lit state", and sends the target control command to the traffic light based on the NB-IOT communication technology.
  • the traffic light After receiving the target control command, the traffic light adjusts its current working state to “normally bright state”, that is, operates in a always-on state.
  • the foregoing device control method is applied to an image acquisition device, that is, the device control system includes an image acquisition device and a target device, and the target device is a street light; the central server and the target device are embedded.
  • the target device and the image acquisition device communicate with each other through NB-IOT.
  • the device control process performed by the image acquisition device is: the image acquisition device collects the image to be detected under the target monitoring area; and then detects whether there is a monitoring object in the image to be detected; and if it detects that the monitoring object exists in the image to be detected, the target monitoring result is obtained. : There is a monitoring object under the target monitoring area.
  • the image acquisition device locally searches for the previous control instruction for the target device, and assumes that the previous control instruction for the target device is: a control instruction that works in the off state, and then the current working state of the target device is determined to be low.
  • the operating state of the illumination is performed under the power W1; in addition, the target working state corresponding to the target monitoring result is an operating state of lighting under the high power W2 (where W2>W1), at which time the current working state of the target device is If the target working state is different, the central server generates a target control instruction that operates at high power W2 and transmits the target control command to the target device. After receiving the target control command, the target device adjusts its current working state to an operating state of lighting at high power W2.
  • An embodiment of the present application further provides another device control method. As shown in FIG. 6, the method includes:
  • S301 Collect an image to be detected from the target monitoring area.
  • S302 Send the to-be-detected image to a central server for controlling the target device, so that the central server detects, after receiving the image to be detected, whether there is a pending monitoring of the monitored object in the image to be detected. a result, and determining, according to the current working state of the target device and the pending monitoring result, whether the working state of the target device needs to be adjusted, and if necessary, generating a target control instruction that works in the target working state corresponding to the to-be-determined monitoring result And sending the target control instruction to the target device to control the target device to adjust its working state to the target working state.
  • the device control method provided by the embodiment of the present application can be applied to an image capturing device, and the image capturing device can be a camera.
  • the device control method provided in the embodiment of the present application is the same as the embodiment in which the image collection device in the method embodiment of the present invention sends the image to be detected to the central server.
  • the specific implementation manner and the explanation of the device control method in the embodiment of the present application can be referred to.
  • the image acquisition device detects whether there is a pending monitoring result of the monitoring object in the image to be detected, which indicates that the pending monitoring result may be: a monitoring result of the monitoring object in the image to be detected, that is, corresponding to the foregoing FIG. 1
  • the target monitoring result of the monitoring object exists in the target monitoring area.
  • the pending monitoring result may also be: the monitoring result of the monitoring object does not exist in the image to be detected, that is, the method shown in FIG. 1 is implemented. In the example, there is no target monitoring result of the monitored object under the target monitoring area.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides another device control method. As shown in FIG. 7, the method includes:
  • S401 Collect an image to be detected from the target monitoring area.
  • S402 Detect whether there is a pending monitoring result of the monitoring object in the image to be detected.
  • S403 Send the pending monitoring result to a central server for controlling the target device, so that after receiving the pending monitoring result, the central server is configured according to the current working state of the target device and the pending monitoring result. Determining whether the working state of the target device needs to be adjusted, if necessary, generating a target control instruction that works in a target working state corresponding to the target monitoring result, and then sending the target control command to the target device, Controlling the target device to adjust its working state to the target working state.
  • the step of sending the pending monitoring result to a central server for controlling a target device includes:
  • the pending monitoring result is transmitted to a central server for controlling the target device based on the NB-IOT communication.
  • the device control method provided by the embodiment of the present application can be applied to an image capturing device, and the image capturing device can be a camera.
  • the device control method provided by the embodiment of the present application is the same as the embodiment in which the image acquisition device sends the target monitoring result to the central server in the method embodiment shown in FIG. 1 , and the specific implementation manner and explanation of the device control method in the embodiment of the present application can be referred to.
  • the image acquisition device detects whether there is a pending monitoring result of the monitoring object in the image to be detected, which indicates that the pending monitoring result may be: a monitoring result of the monitoring object in the image to be detected, that is, corresponding to the method shown in FIG.
  • the target monitoring result of the monitoring object exists in the target monitoring area.
  • the pending monitoring result may also be: the monitoring result of the monitoring object does not exist in the image to be detected, that is, the target monitoring in the method embodiment shown in FIG. 1 is corresponding. There is no target monitoring result of the monitored object under the area.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides a device control apparatus.
  • the apparatus includes:
  • the obtaining module 110 is configured to obtain whether a target monitoring result of the monitoring object exists under the target monitoring area.
  • the determining module 120 is configured to determine, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted.
  • the generating module 130 is configured to generate, when the determination result of the determining module 120 is YES, a target control instruction that works in a target working state corresponding to the target monitoring result.
  • the first sending module 140 is configured to send the target control instruction to the target device, to control the target device to adjust its working state to the target working state.
  • the obtaining module 110 may be specifically configured to:
  • the obtaining module 110 may be specifically configured to:
  • the receiving image acquisition device has a target monitoring result of the monitoring object under the target monitoring area sent by the NB-IOT communication.
  • the obtaining module 110 may also include:
  • a detection sub-module configured to detect whether there is a monitoring object in the image to be detected; if yes, obtain a target monitoring result: a monitoring object exists in the target monitoring area; if not, a target monitoring result is obtained: the target monitoring area There is no monitoring object underneath.
  • the obtaining the submodule may be specifically used to:
  • the image to be detected collected from the target monitoring area sent by the image collection device is obtained.
  • the obtaining the submodule may also be specifically used to:
  • the image to be detected is collected from the target monitoring area.
  • the apparatus may further include:
  • the identification module 150 is configured to identify a current working state of the target device in the image to be detected that is under the target monitoring area.
  • the device may further include:
  • the determining module is configured to determine that the current working state of the target device is: a working state corresponding to a previous control instruction for the target device.
  • the determining module 120 may include:
  • the determining submodule is configured to determine, according to a preset relationship between the preset monitoring result and the working state of the device, a target working state corresponding to the target monitoring result.
  • a determining sub-module configured to determine whether a current working state of the target device is the same as the target working state; if the same, determining that the working state of the target device does not need to be adjusted; if different, determining a working state of the target device Need to adjust.
  • the first sending module 140 may be specifically configured to:
  • the target control command is sent to the target device based on NB-IOT communication.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is achieved, and the energy consumption of the target device in the non-effective working time can be reduced.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides another device control apparatus, where the apparatus includes:
  • the first collection module 210 is configured to collect an image to be detected from the target monitoring area.
  • a second sending module 220 configured to send the image to be detected to a central server for controlling a target device, so that the central server detects, after receiving the image to be detected, whether the image to be detected is obtained. Having a pending monitoring result of the monitoring object, and determining whether the working state of the target device needs to be adjusted according to the current working state of the target device and the pending monitoring result, and if necessary, generating a target working state corresponding to the to-be-determined monitoring result And the target control instruction is sent to the target device to control the target device to adjust its working state to the target working state.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides another device control apparatus, where the apparatus includes:
  • the second collection module 310 is configured to collect an image to be detected from the target monitoring area.
  • the detecting module 320 is configured to detect whether a pending monitoring result of the monitoring object exists in the image to be detected.
  • a third sending module 330 configured to send the pending monitoring result to a central server for controlling the target device, so that the central server receives the pending monitoring result, according to the current working state of the target device And the pending monitoring result, determining whether the working state of the target device needs to be adjusted, and if necessary, generating a target control instruction that works in a target working state corresponding to the target monitoring result, and then sending the target control command to The target device controls the target device to adjust its working state to the target working state.
  • the third sending module 330 may be specifically configured to:
  • the pending monitoring result is transmitted to a central server for controlling the target device based on the NB-IOT communication.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides a device control system.
  • the system includes a central server and a target device controlled by the central server:
  • the central server is configured to obtain a target monitoring result of the monitoring object under the target monitoring area; and determine, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted; If necessary, generating a target control instruction that operates in a target working state corresponding to the target monitoring result; and transmitting the target control instruction to the target device.
  • the target device is configured to receive the target control instruction sent by the central server, and adjust a working state of the target to the target working state.
  • the system may further include an image collection device.
  • the image capturing device is configured to collect an image to be detected from a target monitoring area; detect whether there is a monitoring object in the image to be detected; if yes, obtain a target monitoring result: a monitoring object exists in the target monitoring area; The target monitoring result is obtained: the monitoring object does not exist under the target monitoring area; and the obtained target monitoring result is sent to the central server.
  • the central server obtains the target monitoring result of the monitoring object under the target monitoring area, specifically:
  • the central server and the image collection device are connected based on an NB-IOT communication.
  • the central server obtains a target monitoring result of the monitoring object under the target monitoring area, which may be specifically:
  • the image to be detected collected from the target monitoring area is obtained.
  • the target monitoring result is obtained: the monitoring object exists under the target monitoring area.
  • the target monitoring result is obtained: there is no monitoring object under the target monitoring area.
  • the system may further include an image capturing device, where the image capturing device is configured to collect an image to be detected from the target monitoring area; and send the image to be detected to the central server.
  • an image capturing device configured to collect an image to be detected from the target monitoring area; and send the image to be detected to the central server.
  • the central server obtains the to-be-detected image collected from the target monitoring area, which may be specifically: obtaining the to-be-detected image sent by the image collection device.
  • the central server obtains the to-be-detected image collected from the target monitoring area, and may specifically: collect the image to be detected from the target monitoring area.
  • the central server may be further configured to identify a current working state of the target device in the to-be-detected image that is in the target monitoring area before determining whether the working state of the target device needs to be adjusted.
  • the central server may be further configured to: before determining whether the working state of the target device needs to be adjusted, determining that the current working state of the target device is: corresponding to a previous control instruction for the target device Working status.
  • the central server determines, according to the current working state of the target device and the target monitoring result, whether the working state of the target device needs to be adjusted, which may be specifically:
  • the central server and the target device may be connected based on an NB-IOT communication.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is achieved, and the energy consumption of the target device in the non-effective working time can be reduced.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides an electronic device, as shown in FIG. 14, including a first processor 410 and a first memory 420, wherein the first memory 420 is configured to store a computer program; the first processor 410 is configured to use When executing the program stored on the first memory 420, the following steps are implemented:
  • the step of obtaining the target monitoring result of the monitoring object under the target monitoring area includes:
  • the step of receiving the target monitoring result of the monitoring object in the target monitoring area sent by the receiving image collecting device includes:
  • the receiving image acquisition device has a target monitoring result of the monitoring object under the target monitoring area sent by the NB-IOT communication.
  • the step of obtaining the target monitoring result of the monitoring object under the target monitoring area includes:
  • the step of obtaining the image to be detected collected from the target monitoring area includes:
  • the image to be detected collected from the target monitoring area sent by the image collection device is obtained.
  • the step of obtaining the image to be detected collected from the target monitoring area includes:
  • the image to be detected is collected from the target monitoring area.
  • the first processor before performing the step of determining whether the working state of the target device needs to be adjusted according to the current working state of the target device and the target monitoring result, the first processor is further configured to perform the following steps:
  • the first processor before performing the step of determining whether the working state of the target device needs to be adjusted according to the current working state of the target device and the target monitoring result, the first processor is further configured to perform the following steps:
  • Determining a current working state of the target device is: a working state corresponding to a previous control instruction for the target device.
  • the step of determining whether the working state of the target device needs to be adjusted according to the current working state of the target device and the target monitoring result includes:
  • the step of sending the target control instruction to the target device includes:
  • the target control command is sent to the target device based on NB-IOT communication.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is achieved, and the energy consumption of the target device in the non-effective working time can be reduced.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides another electronic device, as shown in FIG. 15, including a second processor 510 and a second memory 520, wherein the second memory 520 is configured to store a computer program; the second processor 510, When the program stored on the second memory 520 is executed, the following steps are implemented:
  • the target control instruction working in the working state, and then sending the target control instruction to the target device, to control the target device to adjust its working state to the target working state.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • the embodiment of the present application further provides another electronic device, as shown in FIG. 16, including a third processor 610 and a third memory 620, wherein the third memory 620 is configured to store a computer program; the third processor 610, When the program stored on the third memory 620 is executed, the following steps are implemented:
  • the step of sending the pending monitoring result to a central server for controlling a target device includes:
  • the pending monitoring result is transmitted to a central server for controlling the target device based on the NB-IOT communication.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • one or more of the above three electronic devices may be provided with a communication interface for implementing communication between the electronic device and other devices.
  • the above-mentioned processor, communication interface, and memory complete communication with each other through a communication bus.
  • the communication bus mentioned here may be a Peripheral Component Interconnect (PCI) bus or an extended industry standard structure (Extended Industry) Standard Architecture, EISA) bus, etc.
  • PCI Peripheral Component Interconnect
  • EISA Extended Industry Standard Architecture
  • the communication bus can be divided into an address bus, a data bus, a control bus, and the like.
  • the memory may include a random access memory (RAM), and may also include a non-volatile memory (NVM), such as at least one disk storage.
  • RAM random access memory
  • NVM non-volatile memory
  • the memory may also be at least one storage device located away from the aforementioned processor.
  • the above processor may be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; or may be a digital signal processing (DSP), dedicated integration.
  • CPU central processing unit
  • NP network processor
  • DSP digital signal processing
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array
  • FIG. 1 and FIG. 2 A device control method as described in any of the illustrated embodiments.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is achieved, and the energy consumption of the target device in the non-effective working time can be reduced.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • a computer readable storage medium having instructions stored therein, when executed on a computer, causing the computer to perform the implementation shown in FIG. 5 above.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .
  • a computer readable storage medium having instructions stored therein, when executed on a computer, causing the computer to perform the implementation shown in FIG.
  • the working state of the target device is set according to the target monitoring result, and the purpose of intelligently controlling the working state of the target device is completed by the image collecting device, thereby reducing the target device in the non-effective working time. Energy consumption, and thus achieve environmental goals.
  • the solution provided by the embodiment determines whether the working state of the target device needs to be adjusted according to the current working state of the target device, and can avoid generating useless control commands, thereby avoiding energy consumption caused by generating and transmitting useless control commands. .

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Abstract

一种设备控制方法、装置、系统、电子设备及存储介质,可以获得目标监控区域下是否存在监控对象的目标监控结果;并根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。本申请实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,达到智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。

Description

一种设备控制方法、装置、系统、电子设备及存储介质
本申请要求于2018年01月18日提交中国专利局、申请号为201810049325.7申请名称为“一种设备控制方法、装置、系统、电子设备及存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及计算机技术领域,特别是涉及一种设备控制方法、装置、系统、电子设备及存储介质。
背景技术
随着经济的快速发展以及城镇化的快速推进,路灯、红绿灯、电子指示牌等基础设备建设日益完善,大力保障了社会秩序,并大幅提升了人们的生活质量;通常情况下,这些基础设备都是正常工作状态下长时间不间断工作的,例如,路灯在晚上一直处于常亮状态。
上述这些基础设备在给人们生活带来好处的同时,也会带来极大的能源消耗,更有甚者,在深夜时候或者地广人稀的偏远地区,行人和车辆极少,这些基础设备实际的有效工作时间占比极低,这些基础设备在非有效工作时间内消耗了大量能源,存在着严重的能源浪费问题。
发明内容
本申请提供了一种设备控制方法、装置、系统、电子设备及存储介质,以实现对路灯、红绿灯、电子指示牌等基础设备的工作状态的智能控制,达到降低能源消耗的问题。具体技术方案如下:
为达上述目的,第一方面,本申请实施例提供了一种设备控制方法,所述方法包括:
获得目标监控区域下是否存在监控对象的目标监控结果;
根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;
如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;
将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
获得从目标监控区域下采集的待检测图像;
检测所述待检测图像中是否存在监控对象;
如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;
如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
可选的,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
获得图像采集设备发送的从目标监控区域下采集的待检测图像。
可选的,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
从目标监控区域下采集待检测图像。
可选的,在所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述方法还包括:
识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
可选的,在所述根据目标设备的当前工作状态以及所述目标监控结果, 判断所述目标设备的工作状态是否需要调整的步骤之前,所述方法还包括:
确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可选的,所述根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤,包括:
按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;
判断所述目标设备的当前工作状态是否与所述目标工作状态相同;
如果相同,判定所述目标设备的工作状态不需要调整;
如果不同,判定所述目标设备的工作状态需要调整。
可选的,所述将所述目标控制指令发送给所述目标设备的步骤,包括:
基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
第二方面,本申请实施例提供了另一种设备控制方法,所述方法包括:
从目标监控区域下采集待检测图像;
将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
第三方面,本申请实施例提供了再一种设备控制方法,所述方法包括:
从目标监控区域下采集待检测图像;
检测得到所述待检测图像中是否存在监控对象的待定监控结果;
将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所 述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述将所述待定监控结果发送给用于控制目标设备的中心服务器的步骤,包括:
基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
第四方面,本申请实施例提供了一种设备控制装置,所述装置包括:
获得模块,用于获得目标监控区域下是否存在监控对象的目标监控结果;
判断模块,用于根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;
生成模块,用于在所述判断模块的判断结果为是的情况下,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;
第一发送模块,用于将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述获得模块,具体用于:
接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述获得模块,具体用于:
接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述获得模块,包括:
获得子模块,用于获得从目标监控区域下采集的待检测图像;
检测子模块,用于检测所述待检测图像中是否存在监控对象;如果存在, 得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
可选的,所述获得子模块,具体用于:
获得图像采集设备发送的从目标监控区域下采集的待检测图像。
可选的,所述获得子模块,具体用于:
从目标监控区域下采集待检测图像。
可选的,所述装置还包括:
识别模块,用于识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
可选的,所述装置还包括:
确定模块,用于确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可选的,所述判断模块,包括:
确定子模块,用于按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;
判断子模块,用于判断所述目标设备的当前工作状态是否与所述目标工作状态相同;如果相同,判定所述目标设备的工作状态不需要调整;如果不同,判定所述目标设备的工作状态需要调整。
可选的,所述第一发送模块,具体用于:
基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
第五方面,本申请实施例提供了另一种设备控制装置,所述装置包括:
第一采集模块,用于从目标监控区域下采集待检测图像;
第二发送模块,用于将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工 作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
第六方面,本申请实施例提供了再一种设备控制装置,所述装置包括:
第二采集模块,用于从目标监控区域下采集待检测图像;
检测模块,用于检测得到所述待检测图像中是否存在监控对象的待定监控结果;
第三发送模块,用于将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述第三发送模块,具体用于:
基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
第七方面,本申请实施例提供了一种设备控制系统,所述系统包括中心服务器以及所述中心服务器所控制的目标设备:其中,
所述中心服务器,用于获得目标监控区域下是否存在监控对象的目标监控结果;根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;将所述目标控制指令发送给所述目标设备;
所述目标设备,用于接收所述中心服务器发送的所述目标控制指令,并调整自身工作状态为所述目标工作状态。
可选的,所述系统还包括图像采集设备,
所述图像采集设备,用于从目标监控区域下采集待检测图像;检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象;将所得到的目标监控结果发送给所述中心服务器;
相应的,所述中心服务器获得目标监控区域下是否存在监控对象的目标监控结果,具体为:
接收所述图像采集设备发送的所述目标监控结果。
可选的,所述中心服务器获得目标监控区域下是否存在监控对象的目标监控结果,具体为:
获得从目标监控区域下采集的待检测图像;
检测所述待检测图像中是否存在监控对象;
如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;
如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
可选的,所述系统还包括图像采集设备,
所述图像采集设备,用于从目标监控区域下采集待检测图像;并将所述待检测图像发送给所述中心服务器;
相应的,所述中心服务器获得从目标监控区域下采集的待检测图像,具体为:
获得所述图像采集设备发送的所述待检测图像。
可选的,所述中心服务器获得从目标监控区域下采集的待检测图像,具体为:
从目标监控区域下采集待检测图像。
可选的,所述中心服务器,还用于在判断所述目标设备的工作状态是否需要调整之前,识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
可选的,所述中心服务器,还用于在判断所述目标设备的工作状态是否需要调整之前,确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可选的,所述中心服务器根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整,具体为:
按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;
判断所述目标设备的当前工作状态是否与所述目标工作状态相同;
如果相同,判定所述目标设备的工作状态不需要调整;
如果不同,判定所述目标设备的工作状态需要调整。
可选的,所述中心服务器与所述目标设备之间基于NB-IOT通信连接。
第八方面,本申请实施例提供了一种电子设备,包括第一处理器和第一存储器,其中:
第一存储器,用于存放计算机程序;
处理器,用于执行第一存储器上所存放的程序时,实现上述第一方面所提供设备控制方法所述的方法步骤。
第九方面,本申请实施例提供了另一种电子设备,包括第二处理器和第二存储器,其中:
第二存储器,用于存放计算机程序;
处理器,用于执行第二存储器上所存放的程序时,实现上述第二方面所提供设备控制方法所述的方法步骤。
第十方面,本申请实施例提供了一种电子设备,包括第三处理器和第三存储器,其中:
第三存储器,用于存放计算机程序;
处理器,用于执行第三存储器上所存放的程序时,实现上述第三方面所 提供设备控制方法所述的方法步骤。
第十一方面,本申请实施例提供了一种计算机可读存储介质,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现上述第一方面所提供设备控制方法所述的方法步骤。
第十二方面,本申请实施例提供了一种计算机可读存储介质,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现上述第二方面所提供设备控制方法所述的方法步骤。
第十三方面,本申请实施例提供了一种计算机可读存储介质,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现上述第三方面所提供设备控制方法所述的方法步骤。
由以上可知,本申请实施例提供的方案中,可以获得目标监控区域下是否存在监控对象的目标监控结果;并根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。与现有技术相比,本申请实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,达到智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本申请实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
附图说明
为了更清楚地说明本申请实施例和现有技术的技术方案,下面对实施例和现有技术中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请一实施例提供的第一种设备控制方法的流程示意图;
图2为本申请实施例提供的设备控制方法的一种应用场景示意图;
图3为本申请另一实施例提供的第一种设备控制方法的流程示意图;
图4为本申请实施例提供的设备控制方法的另一种应用场景示意图;
图5为本申请实施例提供的设备控制方法的再一种应用场景示意图;
图6为本申请实施例提供的第二种设备控制方法的流程示意图;
图7为本申请实施例提供的第三种设备控制方法的流程示意图;
图8为本申请一实施例提供的第一种设备控制装置的结构示意图;
图9为本申请另一实施例提供的第一种设备控制装置的结构示意图;
图10为本申请实施例提供的第二种设备控制装置的结构示意图;、
图11为本申请实施例提供的第三种设备控制装置的结构示意图;
图12为本申请一实施例提供的一种设备控制系统的结构示意图;
图13为本申请另一实施例提供的一种设备控制系统的结构示意图;
图14为本申请实施例提供的一种电子设备的结构示意图;
图15为本申请实施例提供的另一种电子设备的结构示意图;
图16为本申请实施例提供的再一种电子设备的结构示意图。
具体实施方式
为使本申请的目的、技术方案、及优点更加清楚明白,以下参照附图并举实施例,对本申请进一步详细说明。显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
为了解决前述技术问题,本申请实施例提供了一种设备控制方法、装置、系统、电子设备及存储介质,下面首先针对本申请实施例提供的设备控制方法进行详细说明。
本申请实施例提供的一种设备控制方法可以应用于一个设备控制系统中用以控制目标设备的控制设备上,本申请实施例中该控制设备可以为中心服 务器,中心服务器控制着目标设备的工作状态,该控制器还可以为图像采集设备,如摄像机等,本申请实施例并不限定中心服务器的具体种类;同样的,目标设备可以是前述背景技术中所提及的路灯、红绿灯、电子指示牌等基础设备,本申请实施例并不限定该目标设备的具体种类。
另外,设备控制系统中控制设备所控制的设备可以不止一个,本申请实施例中的目标设备可以是控制设备所控制的多个设备中的至少一个,可以理解,控制设备所控制的多个设备中的任何一个都可以作为本申请实施例的目标设备。为了清楚起见,本申请实施例仅以目标设备为代表,对本申请实施例所提供的设备控制系统进行说明。
本申请实施例提供的设备控制方法,如图1所示,所述方法包括:
S101:获得目标监控区域下是否存在监控对象的目标监控结果。
本申请实施例中,监控对象可以是人和/或车辆等;控制设备获得目标监控区域下是否存在监控对象的目标监控结果,可以是获得由其他监控设备发送的上述目标监控结果。
作为本申请实施例中的第一种可选实现方式,上述设备控制系统中还可以包括有雷达设备,该雷达设备用于监控目标监控区域下是否存在监控对象,如果存在,得到目标监控区域下存在监控对象的目标监控结果,相对的,如果不存在,得到目标监控区域下不存在监控对象的目标监控结果;另外,雷达设备还会将监控得到的目标监控结果发送给控制设备。可以理解,此情况下,控制设备获得目标监控区域下是否存在监控对象的目标监控结果,可以为:控制设备获得雷达设备发送的目标监控结果。
示例性的,雷达设备实时监控目标监控区域下是否存在监控对象的目标监控结果,某时刻目标监控区域中进入一车辆,导致监控结果雷达设备得到目标监控区域下存在监控对象的目标监控结果,并将该目标监控结果发送给控制设备,则控制设备接收获得该目标监控结果。
作为本申请实施例中的第二种可选实现方式,当上述设备控制方法应用于上述中心服务器时,上述设备控制系统还可以包括图像采集设备,该图像采集设备可以是常见的摄像机等。
所述图像采集设备可以用于从目标监控区域下采集待检测图像;检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象;将所得到的目标监控结果发送给所述中心服务器。
即本实现方式中,上述获得目标监控区域下是否存在监控对象的目标监控结果(S101)的步骤,可以包括:
接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
在本实现方式中,图像采集设备可以连续不断的从监控场景下采集图像,图像采集设备所采集的任一帧图像都可以作为本申请实施例中的待检测图像;例如,图像采集设备所采集的每一帧图像都被作为待检测图像;或者,每间隔预设帧数,如每间隔500帧图像,将图像采集设备采集的图像作为待检测图像。
其中,图像采集设备检测所述待检测图像中是否存在监控对象,可以理解为:将预设的监控对象如人、车辆等作为目标,对待检测图像进行目标检测,其中,所采用的目标检测方法可以是:基于深度学习的目标检测方法、利用图像分割技术的目标检测方法或利用特征匹配技术的目标检测方法等,本申请实施例并不限定该目标检测方法的具体种类,并且对于目标检测方法的具体实现方式不做详细介绍。
可以理解,当图像采集设备检测到待检测图像中存在监控对象时,表明目标监控区域下存在监控对象,即此时的目标监控结果为监控区域下存在监控对象的监控结果;当图像采集设备检测到待检测图像中不存在监控对象时,表明目标监控区域下不存在监控对象,即此时的目标监控结果为监控区域下不存在监控对象的监控结果。图像采集设备得到目标监控结果后,将目标监控结果发送给中心服务器,则中心服务器接收获得图像采集设备发送的目标监控结果。
在前述两个实现方式中,控制设备所获得的目标监控监控结果都是由其他监控设备发送过来的,而作为本申请实施例的第三种可选实现方式,该目 标监控结果也可以是控制设备自身所生成的,在本实现方式中,上述获得目标监控区域下是否存在监控对象的目标监控结果(S101)的步骤,可以包括:
获得从目标监控区域下采集的待检测图像;检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
对于中心服务器获得上述待检测图像的具体方式,一种情况下,当上述设备控制方法应用于上述中心服务器时,中心服务器可以获得图像采集设备所发送的待检测图像;即上述设备控制系统还可以包括图像采集设备,其中,该图像采集设备,用于从目标监控区域下采集待检测图像;并将所述待检测图像发送给所述中心服务器;即在此情况下,上述获得从目标监控区域下采集的待检测图像的步骤,可以包括:获得图像采集设备发送的从目标监控区域下采集的待检测图像。
可以理解,在此情况下,设备控制系统中的图像采集设备采集到待检测图像后,可以不用检测该待检测图像中是否存在监控对象,而是直接将所采集的图像发送给中心服务器。
另一种情况下,当上述设备控制方法应用于上述图像采集设备时,上述获得从目标监控区域下采集的待检测图像的步骤,可以包括:从目标监控区域下采集待检测图像。例如,目标设备为多个路灯,中心服务器为与此处的多个路灯处于同一监控区域的摄像机。
在第三种实现方式中,控制设备获得待检测图像后,检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
需要说明的是,上述第三种实现方式中控制设备检测所述待检测图像中是否存在监控对象的具体实现可以参照上述第二种实现方式中图像采集设备检测所述待检测图像中是否存在监控对象的操作方法,本申请实施例中不再赘述。
在上述第一种实现方式和第二种实现方式中,控制设备所获得的目标监控结果都是由其他监控设备发送过来的,目标监控结果作为控制设备与监控设备之间传输的数据,其数据量极小;而第三种实现方式中,图像采集设备需要向控制设备发送待检测图像,控制设备与图像采集设备之间传输的数据量极大。
所以,在上述第一种实现方式,控制设备和雷达设备之间可以基于低流量通信技术通信连接,第二种实现方式中,中心服务器和图像采集设备之间同样可以基于低流量通信技术通信连接。可选的,该低流量通信技术可以是NB-IOT(Narrow Band Internet of Things,基于蜂窝的窄带物联网),例如,所述中心服务器与所述图像采集设备上均嵌有NB-IOT芯片,所述中心服务器与所述图像采集设备之间可以基于NB-IOT通信连接;即前述接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果的步骤,可以包括:
接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
类如基于NB-IOT的通信技术等低流量通信技术,具有功耗低、穿透性强且可接入广域网的特点,这可以使得本申请实施例中的监控设备的安装条件更低,适用范围更广。监控设备与控制设备之间不需要拉设网线,也不需要利用交换机等路由设备,不但使得监控系统的结构更加简单,还大大减少了构建系统的成本;另一方面,监控设备与控制设备之间直接通信,减少了中间网络传输延时,系统反应时间减少,速度快。
如图1所示,S102:根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整。
目标设备的当前工作状态可以是指目标设备当前时刻的工作状态,对于目标设备而言,其工作状态可以是包括“打开状态”、“关闭状态”,例如,目标设备为电子指示牌,电子指示牌的工作状态可以包括“打开状态”、“关闭状态”;其工作状态也可以是包括“常亮状态”、“熄灭状态”,例如,目标设备为红绿灯,红绿灯的工作状态可以包括“常亮状态”、“熄灭状态”;其工作状态也可以是包括亮度或工作功率,例如,目标设备为路灯,路灯的工作状态可以包括在高亮度状态和低亮度状态等,或者,路灯的工作状态可以包括 在功率工作状态和低功率工作状态。可以理解,本申请实施例中,目标设备的工作状态的具体种类可以多种多样,本申请实施例在此不做限定。
可以理解,目标设备的各种工作状态都是与监控结果存在对应关系的,例如目标设备为电子指示牌,电子指示牌的工作状态可以包括“打开状态”、“关闭状态”;则“打开状态”可以与目标监控区域下存在监控对象的监控结果相对应,而“关闭状态”可以与目标监控区域下不存在监控对象的监控结果相对应。所以,可以通过判断目标设备的当前工作状态与目标监控结果是否对应,来判断目标设备的工作状态是否需要调整。
即,作为本申请实施例的一种可选实现方式,上述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整(S102)的步骤,可以包括:
按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;判断所述目标设备的当前工作状态是否与所述目标工作状态相同;如果相同,判定所述目标设备的工作状态不需要调整;如果不同,判定所述目标设备的工作状态需要调整。
可以理解,在本实现方式中,控制设备可以首先确定目标监控结果所对应的目标工作状态,如果目标工作状态与目标设备的当前工作状态不同,则表明目标设备的工作状态需要调整。
例如,目标监控结果为:目标监控区域下存在监控对象,目标工作状态为“打开状态”。此时,如果目标设备的当前工作状态不是“打开状态”,则判定所述目标设备的工作状态需要调整,如果目标设备的当前工作状态是“打开状态”,则判定所述目标设备的工作状态不需要调整。
在本申请实施例的一种可选实现方式中,上述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整(S102)的步骤,可以包括:
按照预设的监控结果与设备工作状态的对应关系,确定所述目标设备的当前工作状态所对应的候选监控结果;判断所述目标监控结果是否与所述候选监控结果相同;如果相同,判定所述目标设备的工作状态不需要调整;如 果不同,判定所述目标设备的工作状态需要调整。
可以理解,在本实现方式中,控制设备可以首先确定目标设备的当前工作状态所对应的候选监控结果,如果候选监控结果与目标监控结果不同,则表明目标设备的工作状态需要调整。
例如,目标设备的当前工作状态为“打开状态”,则候选监控结果为:目标监控区域下存在监控对象;此时,如果目标监控结果为:目标监控区域下存在监控对象,则判定所述目标设备的工作状态不需要调整,如果目标监控结果为:目标监控区域下不存在监控对象,则判定所述目标设备的工作状态需要调整。
需要说明的是,上述预设的监控结果与设备工作状态的对应关系可以是预先记录在控制设备本地的监控结果与设备工作状态的对应关系表。
另外,如果上述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整(S102)的判断结果为否时,此时表明目标设备的当前工作状态与目标工作状态相同,所以不需要生成控制命令来调整目标设备的工作状态;避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
如图1所示,如果步骤S102的判断结果为是,执行步骤S103:生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令。
该目标控制指令即是控制目标设备在目标工作状态下的一个控制指令,本申请实施例并不限定该目标控制指令的具体形式。
S104:将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
在本申请实施例中,在生成上述目标控制指令后,即将该目标控制指令发送给目标设备;而目标设备接收到该目标控制指令后,由于该目标控制指令为在目标监控结果所对应目标工作状态下工作的控制指令,所以目标控制设备此时可以调整自身的当前工作状态为该目标工作状态,并在该目标工作状态下工作。
例如,目标设备为红绿灯,该红绿灯的当前工作状态为熄灭状态,假设该红绿灯接收到的目标控制指令为在常亮状态下工作的控制指令,则该红绿灯可以调整自身当前工作状态为常亮状态。再如,目标设备为路灯,该路灯的当前工作状态为常亮状态,假设该路灯接收到的目标控制指令为在关闭状态下工作的控制指令,则该红绿灯可以调整自身当前工作状态为关闭状态。
其中,由于控制设备与目标设备需要传输的数据极少,所以控制设备和目标设备之间同样可以基于低流量通信技术通信连接。可选的,该低流量通信技术可以是NB-IOT,本申请实施例中,控制设备与目标设备之间可以基于NB-IOT通信连接,例如,所述控制设备与目标设备上均嵌有NB-IOT芯片,所述控制设备与目标设备之间可以基于NB-IOT通信连接,即,上述将所述目标控制指令发送给所述目标设备(S104)的步骤,可以包括:
基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
控制设备与目标设备之间基于NB-IOT通信连接,所以控制设备与目标设备之间不需要额外的网线组网,直接通过NB-IOT技术组网,大大减小整个系统的构建成本。可选的,当上述监控设备为前述中心服务器时,在设备控制系统中还包括图像采集设备的情况下,图像采集设备可以仅向中心服务器发送上述目标监控结果,以便于图像采集设备与中心服务器之间同样基于NB-IOT通信连接,这样的组网方式,除了可以减少图像采集设备的能耗外,还可以进一步减小系统的构建成本;如图2所示,图像采集设备中可以设置有NB-IOT芯片,图像采集设备与中心服务器之间可以基于NB-IOT通信连接,同样的,目标设备上也设置有NB-IOT芯片,目标设备与中心服务器之间可以基于NB-IOT通信连接。
可以理解,在目标监控区域中存在监控对象时,目标设备的工作状态为正常的工作状态,如路灯、电子指示牌的常亮状态;而在目标监控区域中不存在监控对象时,目标设备的工作状态可以被调整为低能耗或者无能耗的工作状态,如路灯的低功率工作状态或者关闭状态,进而降低甚至减少目标设备在非有效工作时间内的能源消耗。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,能够达到智能控制目标设备工作状态的目的,可以降 低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
可以理解,在执行上述步骤S102之前,控制设备还可以先获得目标设备的当前工作状态。
作为本申请实施例中控制设备获得目标设备的当前工作状态的一种可选实现方式,在控制设备获得有上述待检测图像的情况下,在上述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整(S102)的步骤之前,所述方法还可以包括:
识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
在本实现方式中,可以利用图像识别技术提取待检测图像中目标设备周围预设范围区域内的特征信息,如亮度、对比度等,进而识别出目标设备的当前工作状态。示例性的,目标设备为一个路灯,则控制设备可以利用图像识别技术提取待检测图像中路灯周围预设范围区域内的平均亮度值,并判断该平均亮度值是否大于预设阈值,如果大于,确定路灯的当前工作状态为打开状态,如果不大于,确定路灯的当前工作状态为关闭状态。
例如,如图3所示,上述设备控制方法可以包括:
S201:获得从目标监控区域下采集的待检测图像。
S202:检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
S203:识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
S204:根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整。
如果步骤S204的判断结果为是,执行步骤S205:生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令。
S206:将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
其中,步骤S201与步骤S202为前述图1所述方法实施例中的步骤S101的一个具体实现方式,而步骤S204~S206分别与前述图1所述方法实施例中的步骤S102~S104对应相同,所以步骤S201、S202、S204~S206的具体内容和解释说明可参照图1所示方法实施例,本申请实施例在此不再详细介绍。
在本申请实施例的控制设备获得目标设备的当前工作状态的另一种可选实现方式中,在上述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整(S102)的步骤之前,所述方法还可以包括:
确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可以理解,目标设备的工作状态是由控制设备用控制指令所控制的,所以从上一针对目标设备的控制指令发出后,目标设备的工作状态一直都是上一针对目标设备的控制指令所对应的工作状态。例如,上一针对目标设备的控制指令为在打开状态下工作的控制指令,则目标设备从接收到上一针对目标设备的控制指令的时刻至当前时刻,目标设备的工作状态都是打开状态,即目标设备的当前工作状态为打开状态。
可选的,上一针对目标设备的控制指令可以记录在控制设备本地,例如,控制设备中设置一个数据库,控制设备针对目标设备每生成一个控制指令,就会将该控制指令以及该控制指令生成的时间存储在数据库中;或者,控制设备配置有日志系统,控制设备可以查询日志获得自身所生成的上一针对目标设备的控制指令,这都是可行合理的。
下面通过具体实例来对本申请实施例提供的设备控制方法进行简单介绍。
第一个实例,如图4所示,设备控制系统包含有图像采集设备、中心服务 器以及目标设备,中心服务器与图像采集设备之间通过网络交换机通信连接,该目标设备为红绿灯,目标设备上嵌有NB-IOT芯片,目标设备与中心服务器之间通过NB-IOT通信。
其中,图像采集设备在目标监控区域下采集待检测图像;并将所采集的待检测图像发送给中心服务器。
则对于中心服务器而言,其执行的设备控制过程为:在接收到该待采检测图像后,检测待检测图像中是否存在监控对象;假设检测到待检测图像中存在监控对象,则得到目标监控结果:目标监控区域下存在监控对象。
然后,中心服务器识别待检测图像中处于目标监控区域下的目标设备的当前工作状态,并得到识别结果为“熄灭状态”,另外,该目标监控结果所对应的目标工作状态为“常亮状态”,此时由于红绿灯的当前工作状态与目标工作状态不同,则中心服务器生成在“常亮状态”下工作的目标控制指令,并基于NB-IOT通信技术将该目标控制指令发送给该红绿灯。
该红绿灯接收到该目标控制指令后,调整自身的当前工作状态为“常亮状态”,即在常亮状态下工作。
第二个实例,如图5所示,前述设备控制方法应用于图像采集设备,即设备控制系统包含有图像采集设备以及目标设备,另外,该目标设备为路灯;中心服务器与目标设备上均嵌有NB-IOT芯片,目标设备与图像采集设备之间通过NB-IOT通信。
图像采集设备执行的设备控制过程为:图像采集设备在目标监控区域下采集待检测图像;再检测待检测图像中是否存在监控对象;假设检测到待检测图像中存在监控对象,则得到目标监控结果:所述目标监控区域下存在监控对象。
然后,图像采集设备在本地查找上一针对目标设备的控制指令,假设该上一针对目标设备的控制指令为:在关闭状态下工作的控制指令,则可以确定目标设备的当前工作状态为在低功率W1下进行照明的工作状态;另外,该目标监控结果所对应的目标工作状态为在高功率W2下进行照明的工作状态(其中,W2>W1),此时由于目标设备的当前工作状态与目标工作状态不同, 则中心服务器生成在高功率W2下工作的目标控制指令,并将该目标控制指令发送给该目标设备。该目标设备接收到该目标控制指令后,调整自身的当前工作状态为在高功率W2下进行照明的工作状态。
本申请实施例还提供了另一种设备控制方法,如图6所示,所述方法包括:
S301:从目标监控区域下采集待检测图像。
S302:将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可以理解,本申请实施例提供的设备控制方法可以应用于图像采集设备,该图像采集设备可以是摄像机。本申请实施例提供的设备控制方法与图1所示方法实施例中图像采集设备向中心服务器发送待检测图像的实施方式相同,本申请实施例的设备控制方法的具体实现方式以及解释说明可以参照图1所示方法实施例。
其中需要说明的是,图像采集设备检测得到所述待检测图像中是否存在监控对象的待定监控结果,表明该待定监控结果可以为:待检测图像中存在监控对象的监控结果,即对应前述图1所示方法实施例中目标监控区域下存在监控对象的目标监控结果;同样的,该待定监控结果还可以为:待检测图像中不存在监控对象的监控结果,即对应前述图1所示方法实施例中目标监控区域下不存在监控对象的目标监控结果。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免 生成并发送无用的控制指令所造成的能源消耗。
本申请实施例还提供了再一种设备控制方法,如图7所示,所述方法包括:
S401:从目标监控区域下采集待检测图像。
S402:检测得到所述待检测图像中是否存在监控对象的待定监控结果。
S403:将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述将所述待定监控结果发送给用于控制目标设备的中心服务器的步骤,包括:
基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
可以理解,本申请实施例提供的设备控制方法可以应用于图像采集设备,该图像采集设备可以是摄像机。本申请实施例提供的设备控制方法与图1所示方法实施例中图像采集设备向中心服务器发送目标监控结果的实施方式相同,本申请实施例的设备控制方法的具体实现方式以及解释说明可以参照图1所示方法实施例。
其中,图像采集设备检测得到所述待检测图像中是否存在监控对象的待定监控结果,表明该待定监控结果可以为:待检测图像中存在监控对象的监控结果,即对应前述图1所示方法实施例中目标监控区域下存在监控对象的目标监控结果;同样的,该待定监控结果还可以为:待检测图像中不存在监控对象的监控结果,即对应前述图1所示方法实施例中目标监控区域下不存在监控对象的目标监控结果。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的 目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
相应于图1所示的方法实施例,本申请实施例还提供了一种设备控制装置,如图8所示,所述装置包括:
获得模块110,用于获得目标监控区域下是否存在监控对象的目标监控结果。
判断模块120,用于根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整。
生成模块130,用于在所述判断模块120的判断结果为是的情况下,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令。
第一发送模块140,用于将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述获得模块110,可以具体用于:
接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述获得模块110,可以具体用于:
接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述获得模块110,也可以包括:
获得子模块,用于获得从目标监控区域下采集的待检测图像。
检测子模块,用于检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
可选的,所述获得子模块,可以具体用于:
获得图像采集设备发送的从目标监控区域下采集的待检测图像。
可选的,所述获得子模块,也可以具体用于:
从目标监控区域下采集待检测图像。
可选的,相应于图3所示方法实施例,如图9所示,所述装置还可以包括:
识别模块150,用于识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
可选的,所述装置也还可以包括:
确定模块,用于确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可选的,所述判断模块120,可以包括:
确定子模块,用于按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态。
判断子模块,用于判断所述目标设备的当前工作状态是否与所述目标工作状态相同;如果相同,判定所述目标设备的工作状态不需要调整;如果不同,判定所述目标设备的工作状态需要调整。
可选的,所述第一发送模块140,可以具体用于:
基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,达到智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
相应于图6所示方法实施例,如图10所示,本申请实施例还提供了另一种设备控制装置,所述装置包括:
第一采集模块210,用于从目标监控区域下采集待检测图像。
第二发送模块220,用于将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
相应于图7所示方法实施例,如图11所示,本申请实施例还提供了再一种设备控制装置,所述装置包括:
第二采集模块310,用于从目标监控区域下采集待检测图像。
检测模块320,用于检测得到所述待检测图像中是否存在监控对象的待定监控结果。
第三发送模块330,用于将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
可选的,所述第三发送模块330,可以具体用于:
基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标 监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
相应于图1和图2所示方法实施例,本申请实施例还提供了一种设备控制系统,如图12所示,所述系统包括中心服务器以及所述中心服务器所控制的目标设备:其中,所述中心服务器,用于获得目标监控区域下是否存在监控对象的目标监控结果;根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;将所述目标控制指令发送给所述目标设备。
所述目标设备,用于接收所述中心服务器发送的所述目标控制指令,并调整自身工作状态为所述目标工作状态。
作为本申请实施例的一种可选实现方式,如图13所示,所述系统还可以包括图像采集设备,
所述图像采集设备,用于从目标监控区域下采集待检测图像;检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象;将所得到的目标监控结果发送给所述中心服务器。
相应的,所述中心服务器获得目标监控区域下是否存在监控对象的目标监控结果,具体为:
接收所述图像采集设备发送的所述目标监控结果。
可选的,所述中心服务器与所述图像采集设备之间基于NB-IOT通信连接。
作为本申请实施例的另一种可选实现方式,所述中心服务器获得目标监控区域下是否存在监控对象的目标监控结果,可以具体为:
获得从目标监控区域下采集的待检测图像。
检测所述待检测图像中是否存在监控对象。
如果存在,得到目标监控结果:所述目标监控区域下存在监控对象。
如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
可选的,所述系统还可以包括图像采集设备,所述图像采集设备,用于从目标监控区域下采集待检测图像;并将所述待检测图像发送给所述中心服务器。
相应的,所述中心服务器获得从目标监控区域下采集的待检测图像,可以具体为:获得所述图像采集设备发送的所述待检测图像。
可选的,所述中心服务器获得从目标监控区域下采集的待检测图像,可以具体为:从目标监控区域下采集待检测图像。
可选的,所述中心服务器,还可以用于在判断所述目标设备的工作状态是否需要调整之前,识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
可选的,所述中心服务器,还可以用于在判断所述目标设备的工作状态是否需要调整之前,确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可选的,所述中心服务器根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整,可以具体为:
按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;判断所述目标设备的当前工作状态是否与所述目标工作状态相同;如果相同,判定所述目标设备的工作状态不需要调整;如果不同,判定所述目标设备的工作状态需要调整。
可选的,所述中心服务器与所述目标设备之间可以基于NB-IOT通信连接。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,达到智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态 是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
本申请实施例还提供了一种电子设备,如图14所示,包括第一处理器410和第一存储器420,其中,第一存储器420,用于存放计算机程序;第一处理器410,用于执行第一存储器420上所存放的程序时,实现如下步骤:
获得目标监控区域下是否存在监控对象的目标监控结果;根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
关于该方法各个步骤的具体实现以及相关解释内容可以参见上述图1和图2所示的方法实施例,在此不做赘述。
可选的,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
可选的,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
获得从目标监控区域下采集的待检测图像;检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
可选的,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
获得图像采集设备发送的从目标监控区域下采集的待检测图像。
可选的,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
从目标监控区域下采集待检测图像。
可选的,在执行所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述第一处理器还用于执行如下步骤:
识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
可选的,在执行所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述第一处理器还用于执行如下步骤:
确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
可选的,所述根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤,包括:
按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;判断所述目标设备的当前工作状态是否与所述目标工作状态相同;如果相同,判定所述目标设备的工作状态不需要调整;如果不同,判定所述目标设备的工作状态需要调整。
可选的,所述将所述目标控制指令发送给所述目标设备的步骤,包括:
基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,达到智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
本申请实施例还提供了另一种电子设备,如图15所示,包括第二处理器510和第二存储器520,其中,第二存储器520,用于存放计算机程序;第二处理器510,用于执行第二存储器520上所存放的程序时,实现如下步骤:
从目标监控区域下采集待检测图像;将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
关于该方法各个步骤的具体实现以及相关解释内容可以参见上述图5所示的方法实施例,在此不做赘述。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
本申请实施例还提供了再一种电子设备,如图16所示,包括第三处理器610和第三存储器620,其中,第三存储器620,用于存放计算机程序;第三处理器610,用于执行第三存储器620上所存放的程序时,实现如下步骤:
从目标监控区域下采集待检测图像;检测得到所述待检测图像中是否存在监控对象的待定监控结果;将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
关于该方法各个步骤的具体实现以及相关解释内容可以参见上述图6所示的方法实施例,在此不做赘述。
可选的,所述将所述待定监控结果发送给用于控制目标设备的中心服务器的步骤,包括:
基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
可选的,上述三种电子设备中的一种或多种可以具备有实现上述电子设备与其他设备之间通信的通信接口。
上述的处理器,通信接口,存储器通过通信总线完成相互间的通信,此处所提到的通信总线可以是外设部件互连标准(Peripheral Component Interconnect,PCI)总线或扩展工业标准结构(Extended Industry Standard Architecture,EISA)总线等。该通信总线可以分为地址总线、数据总线、控制总线等。
存储器可以包括随机存取存储器(Random Access Memory,RAM),也可以包括非易失性存储器(Non-Volatile Memory,NVM),例如至少一个磁盘存储器。可选的,存储器还可以是至少一个位于远离前述处理器的存储装置。
上述的处理器可以是通用处理器,包括中央处理器(Central Processing Unit,CPU)、网络处理器(Network Processor,NP)等;还可以是数字信号处理器(Digital Signal Processing,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件。
在本申请提供的又一实施例中,还提供了一种计算机可读存储介质,该计算机可读存储介质中存储有指令,当其在计算机上运行时,使得计算机执行上述图1和图2所示实施例中任一所述的设备控制方法。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,达到智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
在本申请提供的又一实施例中,还提供了一种计算机可读存储介质,该计算机可读存储介质中存储有指令,当其在计算机上运行时,使得计算机执行上述图5所示实施例中任一所述的设备控制方法。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
在本申请提供的又一实施例中,还提供了一种计算机可读存储介质,该计算机可读存储介质中存储有指令,当其在计算机上运行时,使得计算机执行上述图6所示实施例中任一所述的设备控制方法。
由以上可知,本实施例提供的方案中,目标设备的工作状态是根据目标监控结果进行设置的,通过图像采集设备完成智能控制目标设备工作状态的目的,可以降低目标设备在非有效工作时间内的能源消耗,进而达到环保目的。并且,本实施例提供的方案结合目标设备的当前工作状态来判断所述目标设备的工作状态是否需要调整,可以避免生成无用的控制指令,进而避免生成并发送无用的控制指令所造成的能源消耗。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来 将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
本说明书中的各个实施例均采用相关的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于装置、系统、电子设备以及计算机可读存储介质实施例而言,由于其基本相似于方法实施例,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
以上所述仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本申请保护的范围之内。

Claims (46)

  1. 一种数据传输的方法,其特征在于,所述方法包括:
    获得目标监控区域下是否存在监控对象的目标监控结果;
    根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;
    如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;
    将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  2. 根据权利要求1所述的方法,其特征在于,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
    接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
  3. 根据权利要求2所述的方法,其特征在于,所述接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
    接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
  4. 根据权利要求1所述的方法,其特征在于,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
    获得从目标监控区域下采集的待检测图像;
    检测所述待检测图像中是否存在监控对象;
    如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;
    如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
  5. 根据权利要求4所述的方法,其特征在于,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
    获得图像采集设备发送的从目标监控区域下采集的待检测图像。
  6. 根据权利要求4所述的方法,其特征在于,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
    从目标监控区域下采集待检测图像。
  7. 根据权利要求4~6任一项所述的方法,其特征在于,在所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述方法还包括:
    识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
  8. 根据权利要求1~6任一项所述的方法,其特征在于,在所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述方法还包括:
    确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
  9. 根据权利要求1~6任一项所述的方法,其特征在于,所述根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤,包括:
    按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;
    判断所述目标设备的当前工作状态是否与所述目标工作状态相同;
    如果相同,判定所述目标设备的工作状态不需要调整;
    如果不同,判定所述目标设备的工作状态需要调整。
  10. 根据权利要求1~6任一项所述的方法,其特征在于,所述将所述目标控制指令发送给所述目标设备的步骤,包括:
    基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
  11. 一种设备控制方法,其特征在于,所述方法包括:
    从目标监控区域下采集待检测图像;
    将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  12. 一种设备控制方法,其特征在于,所述方法包括:
    从目标监控区域下采集待检测图像;
    检测得到所述待检测图像中是否存在监控对象的待定监控结果;
    将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  13. 根据权利要求12所述的方法,其特征在于,所述将所述待定监控结果发送给用于控制目标设备的中心服务器的步骤,包括:
    基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
  14. 一种设备控制装置,其特征在于,所述装置包括:
    获得模块,用于获得目标监控区域下是否存在监控对象的目标监控结果;
    判断模块,用于根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;
    生成模块,用于在所述判断模块的判断结果为是的情况下,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;
    第一发送模块,用于将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  15. 根据权利要求14所述的装置,其特征在于,所述获得模块,具体用于:
    接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
  16. 根据权利要求15所述的装置,其特征在于,所述获得模块,具体用于:
    接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
  17. 根据权利要求14所述的装置,其特征在于,所述获得模块,包括:
    获得子模块,用于获得从目标监控区域下采集的待检测图像;
    检测子模块,用于检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
  18. 根据权利要求17所述的装置,其特征在于,所述获得子模块,具体用于:
    获得图像采集设备发送的从目标监控区域下采集的待检测图像。
  19. 根据权利要求17所述的装置,其特征在于,所述获得子模块,具体用于:
    从目标监控区域下采集待检测图像。
  20. 根据权利要求17~19任一项所述的装置,其特征在于,所述装置还包括:
    识别模块,用于识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
  21. 根据权利要求14~19任一项所述的装置,其特征在于,所述装置还包 括:
    确定模块,用于确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
  22. 根据权利要求14~19任一项所述的装置,其特征在于,所述判断模块,包括:
    确定子模块,用于按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;
    判断子模块,用于判断所述目标设备的当前工作状态是否与所述目标工作状态相同;如果相同,判定所述目标设备的工作状态不需要调整;如果不同,判定所述目标设备的工作状态需要调整。
  23. 根据权利要求14~19任一项所述的装置,其特征在于,所述第一发送模块,具体用于:
    基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
  24. 一种设备控制装置,其特征在于,所述装置包括:
    第一采集模块,用于从目标监控区域下采集待检测图像;
    第二发送模块,用于将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  25. 一种设备控制装置,其特征在于,所述装置包括:
    第二采集模块,用于从目标监控区域下采集待检测图像;
    检测模块,用于检测得到所述待检测图像中是否存在监控对象的待定监控结果;
    第三发送模块,用于将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  26. 根据权利要求25所述的装置,其特征在于,所述第三发送模块,具体用于:
    基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
  27. 一种设备控制系统,其特征在于,所述系统包括中心服务器以及所述中心服务器所控制的目标设备:其中,
    所述中心服务器,用于获得目标监控区域下是否存在监控对象的目标监控结果;根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;将所述目标控制指令发送给所述目标设备;
    所述目标设备,用于接收所述中心服务器发送的所述目标控制指令,并调整自身工作状态为所述目标工作状态。
  28. 根据权利要求27所述的系统,其特征在于,所述系统还包括图像采集设备,
    所述图像采集设备,用于从目标监控区域下采集待检测图像;检测所述待检测图像中是否存在监控对象;如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象;将所得到的目标监控结果发送给所述中心服务器;
    相应的,所述中心服务器获得目标监控区域下是否存在监控对象的目标监控结果,具体为:
    接收所述图像采集设备发送的所述目标监控结果。
  29. 根据权利要求28所述的系统,其特征在于,
    所述中心服务器与所述图像采集设备之间基于NB-IOT通信连接。
  30. 根据权利要求27~29任一项所述的系统,其特征在于,所述中心服务器与所述目标设备之间基于NB-IOT通信连接。
  31. 一种电子设备,其特征在于,包括第一处理器和第一存储器,其中:
    第一存储器,用于存放计算机程序;
    第一处理器,用于执行第一存储器上所存放的程序时,实现如下步骤:
    获得目标监控区域下是否存在监控对象的目标监控结果;
    根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整;
    如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令;
    将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  32. 根据权利要求31所述的电子设备,其特征在于,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
    接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果。
  33. 根据权利要求32所述的电子设备,其特征在于,所述接收图像采集设备发送的目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
    接收图像采集设备基于NB-IOT通信发送的目标监控区域下是否存在监控对象的目标监控结果。
  34. 根据权利要求31所述的电子设备,其特征在于,所述获得目标监控区域下是否存在监控对象的目标监控结果的步骤,包括:
    获得从目标监控区域下采集的待检测图像;
    检测所述待检测图像中是否存在监控对象;
    如果存在,得到目标监控结果:所述目标监控区域下存在监控对象;
    如果不存在,得到目标监控结果:所述目标监控区域下不存在监控对象。
  35. 根据权利要求34所述的电子设备,其特征在于,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
    获得图像采集设备发送的从目标监控区域下采集的待检测图像。
  36. 根据权利要求34所述的电子设备,其特征在于,所述获得从目标监控区域下采集的待检测图像的步骤,包括:
    从目标监控区域下采集待检测图像。
  37. 根据权利要求34~36任一项所述的电子设备,其特征在于,在执行所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述第一处理器还用于执行如下步骤:
    识别所述待检测图像中处于所述目标监控区域下的目标设备的当前工作状态。
  38. 根据权利要求31~36任一项所述的电子设备,其特征在于,在执行所述根据目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤之前,所述第一处理器还用于执行如下步骤:
    确定所述目标设备的当前工作状态为:上一针对所述目标设备的控制指令所对应工作状态。
  39. 根据权利要求31~36任一项所述的电子设备,其特征在于,所述根据所述目标设备的当前工作状态以及所述目标监控结果,判断所述目标设备的工作状态是否需要调整的步骤,包括:
    按照预设的监控结果与设备工作状态的对应关系,确定所述目标监控结果所对应的目标工作状态;
    判断所述目标设备的当前工作状态是否与所述目标工作状态相同;
    如果相同,判定所述目标设备的工作状态不需要调整;
    如果不同,判定所述目标设备的工作状态需要调整。
  40. 根据权利要求31~36任一项所述的电子设备,其特征在于,所述将所述目标控制指令发送给所述目标设备的步骤,包括:
    基于NB-IOT通信将所述目标控制指令发送给所述目标设备。
  41. 一种电子设备,其特征在于,包括第二处理器和第二存储器,其中:
    第二存储器,用于存放计算机程序;
    第二处理器,用于执行第二存储器上所存放的程序时,实现如下步骤:
    从目标监控区域下采集待检测图像;
    将所述待检测图像发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待检测图像后,检测得到所述待检测图像中是否存在监控对象的待定监控结果,并根据目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述待定监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调整自身工作状态为所述目标工作状态。
  42. 一种电子设备,其特征在于,包括第三处理器和第三存储器,其中:
    第三存储器,用于存放计算机程序;
    第三处理器,用于执行第三存储器上所存放的程序时,实现如下步骤:
    从目标监控区域下采集待检测图像;
    检测得到所述待检测图像中是否存在监控对象的待定监控结果;
    将所述待定监控结果发送给用于控制目标设备的中心服务器;以使得所述中心服务器在接收到所述待定监控结果后,根据所述目标设备的当前工作状态以及所述待定监控结果,判断所述目标设备的工作状态是否需要调整,如果需要,生成在所述目标监控结果所对应目标工作状态下工作的目标控制指令,再将所述目标控制指令发送给所述目标设备,以控制所述目标设备调 整自身工作状态为所述目标工作状态。
  43. 根据权利要求42所述的电子设备,其特征在于,所述将所述待定监控结果发送给用于控制目标设备的中心服务器的步骤,包括:
    基于NB-IOT通信将所述待定监控结果发送给用于控制目标设备的中心服务器。
  44. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现权利要求1~10任一所述的方法步骤。
  45. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现权利要求11所述的方法步骤。
  46. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现权利要求12或13所述的方法步骤。
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