WO2020186654A1 - 基于cdn的智能设备调控方法、系统及节点设备、服务器 - Google Patents

基于cdn的智能设备调控方法、系统及节点设备、服务器 Download PDF

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Publication number
WO2020186654A1
WO2020186654A1 PCT/CN2019/094600 CN2019094600W WO2020186654A1 WO 2020186654 A1 WO2020186654 A1 WO 2020186654A1 CN 2019094600 W CN2019094600 W CN 2019094600W WO 2020186654 A1 WO2020186654 A1 WO 2020186654A1
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Prior art keywords
smart
devices
node
smart devices
data
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PCT/CN2019/094600
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English (en)
French (fr)
Inventor
蒋海明
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深圳市网心科技有限公司
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Publication of WO2020186654A1 publication Critical patent/WO2020186654A1/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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/54Presence management, e.g. monitoring or registration for receipt of user log-on information, or the connection status of the users

Definitions

  • This application relates to the field of Internet of Things, and in particular to CDN-based smart device control methods, systems, node devices, and servers.
  • the main purpose of the present invention is to provide a CDN-based smart device control method, system, node device, and server, aiming to solve the problem of occupying a large amount of storage, bandwidth, and computing resources in the existing Internet of Things system to achieve smart device control.
  • the CDN-based smart device control method provided by the present invention is applied to a node device, and the node device is communicatively connected with one or more smart devices; the node device is also connected to control the one or The central control server of a plurality of smart devices communicates with each other, and the method includes: acquiring the data required for regulation and control uploaded by the one or more smart devices; and calling a corresponding data processing program to perform a communication connection on the received regulation and control station. Processing the required data, wherein each of the one or more smart devices corresponds to one of the data processing programs; the processed data is sent to the central control server for the central control server The control server performs corresponding regulation on the one or more smart devices according to the processed data.
  • each of the one or more smart devices corresponds to one of the data processing programs.
  • the data processing program corresponding to each of the one or more smart devices is the same.
  • the method further includes: obtaining an installation package of the data processing program sent by the deployment and scheduling server; and installing the data processing program in response to the installation instruction input by the user program.
  • the method further includes: obtaining a connection request for processing data sent by the one or more smart devices; and responding to the connection request with the smart device Establish the communication connection.
  • the method further includes: sending a control instruction to the one or more smart devices according to the processed data to control the one or more smart devices.
  • the method further includes: detecting the operating state of the node device, the operating state including a normal state and an abnormal state; when the node device is in a normal state, sending a message to the central control unit at a preset time interval
  • the server sends heartbeat information.
  • the present invention further provides a node device, including a first memory and a first processor, the first memory stores a first computer readable program that can run on the first processor, When the first computer-readable program is executed by the first processor, the foregoing method is implemented.
  • the present invention further provides a CDN-based smart device control method, which is applied to a deployment and scheduling server, which is respectively connected to multiple smart devices and multiple node devices in communication;
  • Each node device of the plurality of node devices is in communication connection with one or more of the plurality of smart devices; the plurality of node devices also communicate with a central control server that regulates the plurality of smart devices Connecting, the method includes: obtaining address information of the plurality of smart devices and the plurality of node devices; deploying corresponding data processing program installation packages in the plurality of node devices according to the address information, In order to allow the multiple node devices to install the corresponding data processing programs respectively; according to the address information, respectively send corresponding scheduling instructions to the multiple smart devices to control the multiple smart devices and the multiple smart devices.
  • Corresponding node devices in the device communicate with each other and upload the data needed for regulation to the corresponding node device; the data needed for regulation is provided to the corresponding node device after invoking the corresponding data processing program for processing
  • the central control server is provided for the central control server to perform corresponding regulation on the multiple smart devices according to the processed data.
  • the method further includes: acquiring data transmission abnormal information sent by any one of the multiple smart devices; and sending another scheduling instruction to the multiple smart devices according to the data transmission abnormal information
  • Any smart device controls any smart device among the plurality of smart devices to communicate with the corresponding node device and upload data required for regulation to the corresponding node device.
  • the present invention further provides a deployment and scheduling server, including a second memory and a second processor, the second memory stores a second computer readable that can run on the second processor A program, when the second computer-readable program is executed by the second processor, the foregoing method is implemented.
  • the present invention further provides a CDN-based smart device control method, which is applied to smart devices, the smart device communicates with a node device, and the node device is installed with the smart device According to the corresponding data processing program, the smart device and the node device are both in communication connection with a central control server, and the method includes: uploading the data required for regulation to the node device, and the data required for regulation is controlled by the The node device calls the data processing program for processing and sends it to the central control server; obtains the control instruction sent by the central control server.
  • the method before uploading the data required for regulation to the node device, the method further includes: obtaining a scheduling instruction sent by a deployment and scheduling server; and communicating with the node device according to the scheduling instruction.
  • the present invention further provides a smart device, including a third memory and a third processor, the third memory stores a third computer readable program that can run on the third processor, When the third computer-readable program is executed by the third processor, the foregoing method is implemented.
  • the present invention further provides a CDN-based smart device control method, which is applied to a CDN-based smart device control system.
  • the system includes multiple smart devices, multiple node devices, and multiple A deployment and scheduling server for communication connection between a smart device and the multiple node devices, and a central control server connected with the multiple node devices and the multiple smart communication devices, each node of the multiple node devices.
  • the device is in communication connection with one or more of the plurality of smart devices; the method includes: each smart device of the plurality of smart devices uploads data required for regulation to the plurality of node devices The corresponding node device; the corresponding node device invokes the corresponding data processing program to process the data required for the regulation; the corresponding node device sends the processed data to the central control server; the middle The control server performs corresponding regulation on the multiple smart devices according to the processed data.
  • the method further includes: the deployment and scheduling server obtains the plurality of smart devices And the address information of the multiple node devices; the deployment and scheduling server deploys the installation packages of the corresponding data processing programs in the multiple node devices respectively according to the address information, so as to provide the multiple node devices Respectively install the corresponding data processing program; the deployment and scheduling server sends corresponding scheduling instructions to the multiple smart devices according to the address information to control the multiple smart devices and the multiple smart devices Corresponding node devices are connected in communication and upload the data required for regulation to the corresponding node devices.
  • the method further includes: any node device among the plurality of node devices sends the data to all the nodes according to the processed data.
  • the one or more smart devices send control instructions to control the one or more smart devices.
  • the method further includes: the deployment and scheduling server obtains data transmission abnormal information sent by any one of the multiple smart devices; the deployment and scheduling server sends another data transmission abnormal information according to the data transmission abnormal information.
  • a scheduling instruction is given to any one of the plurality of smart devices to control any one of the plurality of smart devices to communicate with the corresponding node device and upload the data required for regulation to the corresponding Node device.
  • the present invention further provides a CDN-based smart device control system, which includes a plurality of smart devices, a plurality of the above-mentioned node devices communicatively connected with the plurality of smart devices, and a plurality of the smart devices A central control server communicatively connected with a plurality of said node devices, and the above-mentioned deployment and scheduling server.
  • the node device is a mobile terminal.
  • the present invention obtains the data required for regulation and control uploaded by the smart device through the node device, calls the corresponding data processing program to process the data required for regulation, and sends the processed data to the central control server, which is based on the processed data Regulate smart devices.
  • the node device processes the data required for regulation and then sends it to the central control server, which saves the data storage space of the smart device and reduces the resources occupied by the central server for data processing, thereby reducing equipment costs.
  • Figure 1 is a schematic diagram of a CDN-based smart device control system provided by an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a CDN-based smart device control method provided by the first embodiment of the present invention
  • FIG. 3 is a schematic flowchart of a CDN-based smart device control method provided by the second embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a deployment and scheduling server provided by an embodiment of the present invention.
  • FIG. 5 is a schematic flowchart of a CDN-based smart device control method provided by the third embodiment of the present invention.
  • FIG. 6 is a schematic flowchart of a CDN-based smart device control method provided by the fourth embodiment of the present invention.
  • FIG. 7 is a schematic flowchart of a CDN-based smart device control method provided by the fifth embodiment of the present invention.
  • Figure 8 is a schematic diagram of a node device provided by an embodiment of the present invention.
  • FIG. 9 is a schematic flowchart of a CDN-based smart device control method provided by the sixth embodiment of the present invention.
  • FIG. 10 is a schematic flowchart of a CDN-based smart device control method provided by the seventh embodiment of the present invention.
  • Fig. 11 is a schematic diagram of a smart device provided by an embodiment of the present invention.
  • FIG. 12 is a schematic flowchart of a CDN-based smart device control method provided by the eighth embodiment of the present invention.
  • FIG. 13 is a schematic flowchart of a CDN-based smart device control method provided by the ninth embodiment of the present invention.
  • FIG. 14 is a schematic flowchart of a CDN-based smart device control method provided by the tenth embodiment of the present invention.
  • FIG. 1 is a schematic diagram of a CDN-based smart device control system provided by an embodiment of the present invention.
  • the control system includes multiple node devices 1, multiple smart devices 2, a central control server 3, and a deployment and scheduling server.
  • the dispatch server may be one server or two servers.
  • the deployment and dispatch server includes a deployment server 4 and a dispatch server 5 that are in communication connection for description.
  • Multiple node devices 1 and multiple smart devices 2 are all communicatively connected to the central control server 3.
  • Each node device 1 is communicatively connected to one or more smart devices 2
  • the deployment server 4 is communicatively connected to multiple node devices 1, and the dispatch server 5Communicate and connect with multiple smart devices 2.
  • the node device 1 is a mobile terminal
  • the mobile terminal may be, but not limited to, a personal computer, a notebook computer, a smart phone, a tablet computer, and a portable wearable device.
  • the user can use an idle mobile terminal to join the system to obtain corresponding rewards, thereby making full use of idle resources.
  • the CDN-based smart device control method provided by the first embodiment of the present invention is executed on a deployment and scheduling server, and the method includes:
  • the address information can be the geographic location information of the smart device and the node device, or the network address of the smart device and the node device. After smart devices and node devices join the system, they send address information to the deployment and scheduling server.
  • S20 Deploy installation packages of corresponding data processing programs in the multiple node devices respectively according to the address information, so that the multiple node devices can install the corresponding data processing programs respectively.
  • the deployment and scheduling server deploys the data processing installation package in multiple node devices respectively according to the geographic location information of the smart device and the node device. For example, according to the smart device in the area where the node device is located, the node device is allocated a data processing program corresponding to the smart device in the area, so that the smart device can access the node device nearby to increase the data receiving rate.
  • S30 respectively send corresponding scheduling instructions to the multiple smart devices to control the multiple smart devices to communicate with the corresponding node devices of the multiple smart devices and upload the data required for regulation to The corresponding node device; the data required for regulation is provided to the central control server by the corresponding node device invoking the corresponding data processing program for processing, so that the central control server can perform processing according to The data on the multiple smart devices are adjusted accordingly.
  • the smart device may be a smart home appliance such as a smart refrigerator, a smart air conditioner, and a smart water flow detection device.
  • the data required for regulation is data collected by smart devices in real time, such as temperature, flow, and abnormal information, which are used to regulate smart devices.
  • the deployment and scheduling server allocates a node device to each smart device according to the data processing program stored on the node device and the address information of the node device to ensure optimal scheduling of the node device and the smart device.
  • the node device processes the received data required for regulation according to the assigned data processing program, and sends the processed data to the central control server for the central control server to control the smart device.
  • the node device can also process the data according to the processed data. Data regulates part of smart devices.
  • the deployment and scheduling server deploys the data installation program on the node device according to the address information of the node device and the smart device, and sends a scheduling instruction to the smart device to control the communication connection between multiple smart devices and the corresponding node device.
  • Make the smart device upload the data needed for regulation to the corresponding node device.
  • the node device processes the received data required for regulation and sends it to the central control server, saving the storage cost of the smart device and the data processing cost of the central control server.
  • the CDN-based smart device control method provided by the second embodiment of the present invention differs from the first embodiment in that the method further includes:
  • the data transmission abnormality information is sent.
  • S21 Send another scheduling instruction to any one of the multiple smart devices according to the data transmission abnormal information to control any one of the multiple smart devices to communicate with the corresponding node device And upload the data required for regulation to the corresponding node device.
  • the deployment and scheduling server when the deployment and scheduling server receives the abnormal data transmission information, it resends another scheduling instruction to the smart device to control the communication connection between the smart device and the normal node device, and send the data required for regulation to ensure system performance normal operation.
  • the deployment and scheduling server provided by an embodiment of the present invention includes a second memory 21, a second processor 22, and a second bus 23.
  • the second memory 21 includes at least one type of readable storage medium, and the readable storage medium includes flash memory, hard disk, multimedia card, card-type memory (for example, SD or DX memory, etc.), magnetic memory, magnetic disk, and optical disk. Wait.
  • the second storage 21 may be an internal storage unit of the deployment and scheduling server, such as a hard disk of the deployment and scheduling server.
  • the second storage 21 may also be an external storage device of the deployment and dispatch server, such as a plug-in hard disk equipped on the deployment and dispatch server, and a smart memory card (Smart Media Card, SMC), Secure Digital (Secure Digital, SD) card, flash card (Flash Card), etc.
  • the second storage 21 may also include both an internal storage unit of the deployment and scheduling server and an external storage device.
  • the second memory 21 can be used not only to store application software and various data installed on the deployment and scheduling server, such as the code of the second computer readable program 02, but also to temporarily store data that has been output or will be output.
  • the second processor 22 may be a central processing unit (Central Processing Unit) in some embodiments.
  • Central Processing Unit CPU
  • CPU Central Processing Unit
  • controller a controller
  • microcontroller a microprocessor
  • other data processing chips are used to run the program code or processing data stored in the memory 21, for example, to execute the second computer-readable program 02.
  • the second computer readable program 02 is executed by the second processor 22, the above method executed on the deployment and scheduling server is realized.
  • the second bus 23 may be a peripheral component interconnection standard (peripheral Component interconnect (PCI for short) bus or extended industry standard architecture (EISA for short) bus, etc.
  • PCI peripheral Component interconnect
  • EISA extended industry standard architecture
  • the bus can be divided into address bus, data bus, control bus, etc. For ease of representation, only one thick line is used in FIG. 4 to represent it, but it does not mean that there is only one bus or one type of bus.
  • the deployment and scheduling server may also include a second network interface 24.
  • the second network interface 24 may optionally include a wired interface and/or a wireless interface (such as a Wi-Fi interface, a Bluetooth interface, etc.). Establish a communication connection between the deployment and dispatch server and other electronic devices.
  • the deployment and scheduling server may also include a user interface.
  • the user interface may include a display (Display) and an input unit such as a keyboard (Keyboard).
  • the user interface may also include a standard wired interface and a wireless interface.
  • the display may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, and an OLED (Organic Light-Emitting Diode, organic light-emitting diode) touch device, etc.
  • the display can also be appropriately called a display screen or a display unit, which is used to display the information processed in the deployment and scheduling server and to display a visual user interface.
  • Figure 4 only shows the deployment and scheduling server with components 21-24 and the first computer readable program 02. Those skilled in the art will understand that the structure shown in Figure 4 does not constitute a limitation on the deployment and scheduling server It may include fewer or more components than shown, or a combination of some components, or a different component arrangement.
  • the CDN-based smart device control method provided by the third embodiment of the present invention is executed on a node device, and the method includes:
  • smart devices may be smart home appliances such as smart refrigerators, smart air conditioners, and smart flow detection devices.
  • the smart device reports the data collected in real time, such as temperature, flow, abnormal information and other data required for regulation to the node device.
  • each of the one or more smart devices corresponds to a data processing program.
  • the node device uses a data processing program to process the received operation information and real-time monitoring information of a smart device. , which can simplify the data processing process and save hardware resources. It should be noted that in other embodiments, different data processing programs can be used to process different data of each smart device.
  • the data processing program corresponding to each smart device in one or more smart devices is the same.
  • a node device only receives one smart device or one brand of smart device, thereby increasing the data processing speed .
  • the processing of the data required for regulation by the node device is preprocessing.
  • the node device counts the data of the node at a certain time of the smart device, for example, counts the data generated by the smart device every day.
  • the node device counts the smart devices in a certain area. For example, a node device receives data of smart air conditioners of the same brand in a cell and performs statistics on the data of a cell.
  • S32 Send the processed data to the central control server, so that the central control server performs corresponding regulation on the one or more smart devices according to the processed data.
  • the central control server receives the processed data
  • further statistical processing is performed.
  • the data received by the central control server is the daily statistical data, and each of the statistics is calculated based on the daily statistical data. Statistics for the month.
  • the central control server sends a control instruction to the smart device. For example, if it detects that the temperature in the smart refrigerator is lower than the historical value, it sends a temperature reduction instruction to the smart refrigerator.
  • the node device after the node device processes the data, according to the processed data, it can send control instructions to one or more smart devices that are in communication with the node device to regulate one or more smart devices.
  • the node device can Execute part of the regulation commands to better manage and control smart devices.
  • the smart device sends the collected data required for regulation to the node device, reducing the data stored in the chip of the smart device and reducing the cost of chip storage; the node device processes the data needed for regulation and sends it to the central
  • the control server reduces the data processing cost of the central control server, thereby reducing equipment manufacturing costs.
  • control method provided by the fourth embodiment of the present invention differs from the first embodiment in that the method further includes before step S12:
  • the deployment server allocates an installation package of the data processing program to the node device, and the user inputs the installation instruction to install the data processing program.
  • the node device after the user installs the data processing program, the node device obtains a data processing connection request sent by one or more smart devices corresponding to the data processing program, and establishes the communication connection with the smart device in response to the connection request. After the node device establishes a communication connection with the smart device, it can receive real-time data from the smart device.
  • control method provided by the fifth embodiment of the present invention differs from the third and fourth embodiments in that the method further includes:
  • S14 Detect an operating state of the node device, where the operating state includes a normal state and an abnormal state.
  • the abnormal state includes that the node device and the smart device are in an abnormal connection state, for example, the node device is exhausted, the node device cannot be connected to the network, the node device is not normally installed with a data processing program, and so on.
  • the node device after the node device normally runs the data processing program, it sends heartbeat information to the central control server every preset time, so that the central control server can monitor the running status of the node device.
  • the central control server does not receive the heartbeat information within the preset time .
  • the node device is in an abnormal state, and the central control server re-schedules the system. For example, it controls the smart device to send data directly to the central control server, or the central control server sends instructions to the deployment and dispatch server to control the deployment and dispatch server Establish a communication connection between the smart device and the normal node device.
  • the central control server monitors the running status of the node device in real time, so as to realize effective management of the smart device and the node device.
  • the node device provided by an embodiment of the present invention includes a first memory 11, a first processor 12, and a first bus 13.
  • the first memory 11 includes at least one type of readable storage medium, and the readable storage medium includes flash memory, hard disk, multimedia card, card-type memory (for example, SD or DX memory, etc.), magnetic memory, magnetic disk, and optical disk. Wait.
  • the first memory 11 may be an internal storage unit of the node device, for example, the hard disk of the node device.
  • the first memory 11 may also be an external storage device of the node device, for example, a plug-in hard disk equipped on the node device, a smart memory card (Smart Media Card, SMC), Secure Digital (SD) card, Flash Card, etc.
  • the first memory 11 may also include both an internal storage unit of the node device and an external storage device.
  • the first memory 11 can be used not only to store application software and various data installed on the node device, such as the code of the first computer readable program 01, etc., but also to temporarily store data that has been output or will be output.
  • the first processor 12 may be a central processing unit (Central Processing Unit) in some embodiments.
  • Central Processing Unit CPU
  • controller a controller
  • microcontroller a microprocessor
  • other data processing chips are used to run the program code or processing data stored in the first memory 11, for example, to execute the first computer-readable program 01.
  • the first computer-readable program 01 is executed by the first processor 12, the above method executed on the node device is realized.
  • the first bus 13 may be a peripheral component interconnection standard (peripheral Component interconnect (PCI for short) bus or extended industry standard architecture (EISA for short) bus, etc.
  • PCI peripheral Component interconnect
  • EISA extended industry standard architecture
  • the bus can be divided into address bus, data bus, control bus, etc. For ease of representation, only one thick line is used in FIG. 2, but it does not mean that there is only one bus or one type of bus.
  • the node device may also include a first network interface 14.
  • the first network interface 14 may optionally include a wired interface and/or a wireless interface (such as a WI-FI interface, a Bluetooth interface, etc.), which is usually used to connect to the node device Establish a communication connection with other electronic devices.
  • the node device may also include a user interface.
  • the user interface may include a display (Display) and an input unit such as a keyboard (Keyboard).
  • the optional user interface may also include a standard wired interface and a wireless interface.
  • the display may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, and an OLED (Organic Light-Emitting Diode, organic light-emitting diode) touch device, etc.
  • the display can also be appropriately called a display screen or a display unit, which is used to display the information processed in the node device and to display a visualized user interface.
  • FIG. 8 only shows the node device with the components 11-14 and the first computer readable program 01. Those skilled in the art will understand that the structure shown in FIG. 8 does not constitute a limitation on the node device, and may include Fewer or more parts are shown, or some parts are combined, or different parts are arranged.
  • the sixth embodiment of the present invention provides a schematic flowchart of a CDN-based smart device control method; the method is executed in a smart device, and the method includes:
  • Step S15 Upload the data required for regulation to the node device, and the data required for regulation is sent to the central control server after being processed by the node device invoking the data processing program.
  • the smart device communicates with the node device
  • the node device is equipped with a data processing program corresponding to the smart device
  • both the smart device and the node device are in communication connection with the central control server.
  • the data required for regulation may be data collected in real time, such as temperature, flow, abnormal information, etc.
  • Step S25 Obtain the control instruction sent by the central control server.
  • control instruction is an instruction generated by the central control server according to the data required for control. For example, if it is detected that the temperature in the smart refrigerator is lower than the historical value, an instruction to lower the temperature is sent to the smart refrigerator.
  • the smart device sends the collected data required for regulation to the node device, reducing the data stored in the chip of the smart device and reducing the cost of chip storage; the node device processes the data needed for regulation and sends it to the central
  • the control server reduces the data processing cost of the central control server, thereby reducing equipment manufacturing costs.
  • the seventh embodiment of the present invention provides a schematic flow chart of a CDN-based smart device regulation method; the difference from the sixth embodiment is that the method also uploads the data required for regulation to the node device include:
  • Step S16 Obtain the scheduling instruction sent by the deployment and scheduling server.
  • Step S26 communicating with the node device according to the scheduling instruction.
  • the deployment server allocates an installation package of the data processing program for the node device according to the installation package of the data processing program for the node device.
  • the deployment and scheduling server sends a scheduling instruction to the smart device according to the data processing program assigned by each node device, the smart device sends a data processing connection request to the node device according to the scheduling instruction, and the node device responds to the connection request to establish the communication connection with the smart device, thereby Make the node device receive the data required for the regulation of the smart device, and process the data required for the regulation.
  • the smart device provided by an embodiment of the present invention includes a third memory 31, a third processor 32, and a third bus 33.
  • the third storage 31 includes at least one type of readable storage medium, and the readable storage medium includes flash memory, hard disk, multimedia card, card-type memory (for example, SD or DX memory, etc.), magnetic memory, magnetic disk, and optical disk. Wait.
  • the third memory 31 may be an internal storage unit of the smart device in some embodiments, such as the hard disk of the smart device. In other embodiments, the third storage 31 may also be an external storage device of the smart device, such as a plug-in hard disk equipped on the smart device, a smart memory card (Smart Media Card, SMC), Secure Digital (SD) card, Flash Card, etc. Further, the third storage 31 may also include both an internal storage unit of the smart device and an external storage device.
  • the third memory 31 can be used not only to store application software and various data installed in the smart device, such as the code of the third computer readable program 03, etc., but also to temporarily store data that has been output or will be output.
  • the third processor 32 may be a central processing unit (Central Processing Unit) in some embodiments.
  • Central Processing Unit CPU
  • CPU Central Processing Unit
  • controller a controller
  • microcontroller a microprocessor
  • microprocessor or other data processing chips are used to run the program code or processing data stored in the third memory 31, for example, execute the third computer-readable program 03.
  • the third computer readable program 03 is executed by the third processor 32, the above method executed on the node device is realized.
  • the third bus 13 may be a peripheral component interconnection standard (peripheral Component interconnect (PCI for short) bus or extended industry standard architecture (EISA for short) bus, etc.
  • PCI peripheral Component interconnect
  • EISA extended industry standard architecture
  • the bus can be divided into address bus, data bus, control bus, etc. For ease of representation, only one thick line is used in FIG. 2, but it does not mean that there is only one bus or one type of bus.
  • the smart device may also include a third network interface 34.
  • the third network interface 34 may optionally include a wired interface and/or a wireless interface (such as a WI-FI interface, a Bluetooth interface, etc.), which is usually used in the smart device Establish a communication connection with other electronic devices.
  • the smart device may also include a user interface.
  • the user interface may include a display (Display) and an input unit such as a keyboard (Keyboard).
  • the optional user interface may also include a standard wired interface and a wireless interface.
  • the display may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, and an OLED (Organic Light-Emitting Diode, organic light-emitting diode) touch device, etc.
  • the display can also be appropriately called a display screen or a display unit, which is used to display information processed in the smart device and to display a visualized user interface.
  • FIG. 11 only shows the smart device with components 31-34 and the third computer readable program 03. Those skilled in the art can understand that the structure shown in FIG. 11 does not constitute a limitation on the smart device, and may include Fewer or more parts are shown, or some parts are combined, or different parts are arranged.
  • the CDN-based smart device control method provided by the eighth embodiment of the present invention includes:
  • Each smart device of the plurality of smart devices uploads data required for regulation to a corresponding node device of the plurality of node devices;
  • the central control server performs corresponding regulation on the multiple smart devices according to the processed data.
  • any one of the multiple node devices sends a control instruction to the one or more smart devices according to the processed data, so as to control the one or more smart devices .
  • the smart device sends the data required for regulation to the node device, which is processed by the node device and sent to the central control server, thereby saving the data storage cost of the smart device and the data processing cost of the central control server.
  • the ninth embodiment of the present invention provides a CDN-based smart device control system regulation method, which is different from the eighth embodiment in that the method further includes:
  • the deployment and scheduling server obtains address information of the multiple smart devices and the multiple node devices;
  • the deployment and scheduling server deploys the installation packages of the corresponding data processing programs in the multiple node devices respectively according to the address information, so that the multiple node devices can install the corresponding data processing programs respectively ;
  • the deployment and dispatch server respectively sends corresponding dispatch instructions to the multiple smart devices according to the address information to control the multiple smart devices to communicate with and upload corresponding node devices among the multiple smart devices
  • the data required for regulation is given to the corresponding node device.
  • the deployment and scheduling server deploys the data processing program on the node device according to the address information of the smart device and the node device, and schedules the smart device to establish a communication connection with the best node device to ensure normal data processing get on.
  • the regulation method of a CDN-based smart device regulation system provided by the tenth embodiment of the present invention differs from the ninth embodiment in that the method further includes:
  • the deployment and scheduling server acquires data transmission abnormal information sent by any one of the multiple smart devices;
  • the deployment and scheduling server sends another scheduling instruction to any one of the multiple smart devices according to the data transmission abnormal information to control any one of the multiple smart devices and the Corresponding node devices are connected in communication and upload the data required for regulation to the corresponding node devices.
  • the deployment and scheduling server when the data is sent abnormally, the deployment and scheduling server sends another scheduling instruction to reselect the best node device for the smart device to ensure the normal operation of the system.
  • the computer program product includes one or more computer instructions.
  • the computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices.
  • the computer instructions may be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another computer-readable storage medium.
  • the computer instructions may be transmitted from a website, computer, server, or data center. Transmission to another website site, computer, server or data center via wired (such as coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.).
  • wired such as coaxial cable, optical fiber, digital subscriber line (DSL)
  • wireless such as infrared, wireless, microwave, etc.
  • the computer-readable storage medium may be any available medium that can be stored by a computer or a data storage device such as a server or data center integrated with one or more available media.
  • the usable medium may be a magnetic medium, (for example, a floppy disk, a hard disk, a magnetic tape), an optical medium (for example, a DVD), or a semiconductor medium (for example, a solid state hard disk (SSD)), etc.
  • the disclosed system, device, and method may be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the units is only a logical function division, and there may be other divisions in actual implementation, for example, multiple units or components can be combined or It can be integrated into another system, or some features can be ignored or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
  • each unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated unit can be implemented in the form of hardware or software functional unit.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
  • the technical solution of this application essentially or the part that contributes to the existing technology or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium , Including several instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disks or optical disks and other media that can store program codes.

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Abstract

公开了一种基于CDN的智能设备调控方法,方法应用于节点设备,节点设备与一个或者多个智能设备通讯连接;节点设备还与调控一个或者多个智能设备的中控服务器进行通讯连接,方法包括:获取一个或者多个智能设备上传的调控所需的数据;调用相对应的数据处理程序对所接收到的调控所需的数据进行处理;将处理后的数据发送到中控服务器,以供中控服务器根据处理后的数据对一个或者多个智能设备进行相应的调控。本发明还公开了一种基于CDN的智能设备调控系统及节点设备、服务器。本发明可以节省智能设备的数据存储空间,降低中心服务器处理数据所占用的资源,从而降低设备成本。

Description

基于CDN的智能设备调控方法、系统及节点设备、服务器
  本申请基于巴黎公约申明享有2019年03月15日递交的申请号为CN201910197814.1、名称为“基于CDN的智能设备调控方法、系统及节点设备、服务器”的中国专利申请的优先权,该中国专利申请的整体内容以参考的方式结合在本申请中。
技术领域
本申请涉及物联网领域,尤其涉及基于CDN的智能设备调控方法、系统及节点设备、服务器。
背景技术
随着物联网的发展,越来越多的设备开始智能化,如智能冰箱、智能空调、智能工业部件等,这些设备已初步具备态势感知、数据分析和智能调控等功能,但伴随的潜在问题也在逐步凸显。比如如何解决海量数据的采集分析,在传统方式中设备传感器不断采集数据后上报中心服务器,然后由中心服务器集中存储、分析,进而下发智能决策指令,最终实现设备的智能调控。但这种方式需要大量的存储、带宽、计算资源为设备提供智能化服务,成本非常高,影响物联网的发展。
技术问题
本发明的主要目的在于提供基于CDN的智能设备调控方法、系统及节点设备、服务器,旨在解决现有物联网系统中实现设备的智能调控需要占用中大量的存储、带宽、计算资源的问题。
技术解决方案
为实现上述目的,本发明提供的基于CDN的智能设备调控方法,所述方法应用于节点设备,所述节点设备与一个或者多个智能设备通讯连接;所述节点设备还与调控所述一个或者多个智能设备的中控服务器进行通讯连接,所述方法包括:获取所述一个或者多个智能设备上传的调控所需的数据;调用相对应的数据处理程序对所接收到的所述调控所需的数据进行处理,其中,所述一个或者多个智能设备中的每一智能设备与一个所述数据处理程序相对应;将处理后的数据发送到所述中控服务器,以供所述中控服务器根据所述处理后的数据对所述一个或者多个智能设备进行相应的调控。
优选地,所述一个或者多个智能设备中的每一智能设备与一个所述数据处理程序相对应。
优选地,所述一个或者多个智能设备中的每一智能设备所对应的数据处理程序相同。
优选地,获取所述一个或者多个智能设备上传的调控所需的数据之前还包括:获取部署与调度服务器发送的所述数据处理程序的安装包;响应用户输入的安装指令安装所述数据处理程序。
优选地,获取所述一个或者多个智能设备上传的调控所需的数据之前还包括:获取所述一个或者多个智能设备发送的处理数据的连接请求;响应所述连接请求与所述智能设备建立所述通讯连接。
优选地,所述方法还包括:根据所述处理后的数据向所述一个或者多个智能设备发送控制指令,以对所述一个或者多个智能设备进行调控。
优选地,所述方法还包括:检测所述节点设备的运行状态,所述运行状态包括正常状态和异常状态;当所述节点设备处于正常状态时,按照预设的时间间隔向所述中控服务器发送心跳信息。
为实现上述目的,本发明进一步提供一种节点设备,包括第一存储器和第一处理器,所述第一存储器上存储有可在所述第一处理器上运行的第一计算机可读程序,所述第一计算机可读程序被所述第一处理器执行时实现上述的方法。
为实现上述目的,本发明进一步提供一种基于CDN的智能设备调控方法,该方法应用于部署与调度服务器中,所述部署与调度服务器分别与多个智能设备和多个节点设备通讯连接;所述多个节点设备中的每一节点设备与所述多个智能设备中的一个或者多个智能设备通讯连接;所述多个节点设备还与调控所述多个智能设备的中控服务器进行通讯连接,所述方法包括:获取所述多个智能设备和所述多个节点设备的地址信息;根据所述地址信息将相应的数据处理程序的安装包分别部署于所述多个节点设备中,以供所述多个节点设备分别安装所述相应的数据处理程序;根据所述地址信息分别发送相应的调度指令给所述多个智能设备以控制所述多个智能设备与所述多个智能设备中相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备;所述调控所需的数据由所述相应的节点设备调用所述相应的数据处理程序进行处理后提供给所述中控服务器,以供所述中控服务器根据处理后的数据对所述多个智能设备进行相应的调控。
优选地,所述方法还包括:获取所述多个智能设备中的任一智能设备发送的数据发送异常信息;根据所述数据发送异常信息发送另一调度指令给所述多个智能设备中的任一智能设备以控制所述多个智能设备中的任一智能设备与所述相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
为实现上述目的,本发明进一步提供一种部署与调度服务器,包括第二存储器和第二处理器,所述第二存储器上存储有可在所述第二处理器上运行的第二计算机可读程序,所述第二计算机可读程序被所述第二处理器执行时实现上述的方法。
为实现上述目的,本发明进一步提供一种基于CDN的智能设备调控方法,该方法应用于智能设备中,所述智能设备与节点设备进行通讯连接,所述节点设备上安装有与所述智能设备所对应的数据处理程序,所述智能设备和所述节点设备均与中控服务器通讯连接,所述方法包括:上传调控所需的数据至所述节点设备,所述调控所需的数据由所述节点设备调用所述数据处理程序进行处理后发送到所述中控服务器;获取所述中控服务器发送的调控指令。
优选的,上传调控所需的数据至所述节点设备之前还包括:获取部署与调度服务器发送的调度指令;根据所述调度指令与所述节点设备通讯连接。
为实现上述目的,本发明进一步提供一种智能设备,包括第三存储器和第三处理器,所述第三存储器上存储有可在所述第三处理器上运行的第三计算机可读程序,所述第三计算机可读程序被所述第三处理器执行时实现上述的方法。
为实现上述目的,本发明进一步提供一种基于CDN的智能设备调控方法,该方法应用于基于CDN的智能设备调控系统中,所述系统包括多个智能设备、多个节点设备、与所述多个智能设备和所述多个节点设备通讯连接的部署与调度服务器、以及与所述多个节点设备和所述多个智能通讯连接的中控服务器,所述多个节点设备中的每一节点设备与所述多个智能设备中的一个或者多个智能设备通讯连接;所述方法包括:所述多个智能设备中的每一智能设备上传调控所需的数据给所述多个节点设备中相应的节点设备;所述相应的节点设备调用相应的数据处理程序对所述调控所需的数据进行处理;所述相应的节点设备将处理后的数据发送给所述中控服务器;所述中控服务器根据所述处理后的数据对所述多个智能设备进行相应的调控。
优选地,所述多个智能设备中的每一智能设备上传调控所需的数据给所述多个节点设备中相应的节点设备之前还包括:所述部署与调度服务器获取所述多个智能设备和所述多个节点设备的地址信息;所述部署与调度服务器根据所述地址信息将相应的数据处理程序的安装包分别部署于所述多个节点设备中,以供所述多个节点设备分别安装所述相应的数据处理程序;所述部署与调度服务器根据所述地址信息分别发送相应的调度指令给所述多个智能设备以控制所述多个智能设备与所述多个智能设备中相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
优选地,所述相应的节点设备调用相应的数据处理程序对所述调控所需的数据进行处理之后还包括:所述多个节点设备中的任一节点设备根据所述处理后的数据向所述一个或者多个智能设备发送控制指令,以对所述一个或者多个智能设备进行调控。
优选地,所述方法还包括:所述部署与调度服务器获取所述多个智能设备中的任一智能设备发送的数据发送异常信息;所述部署与调度服务器根据所述数据发送异常信息发送另一调度指令给所述多个智能设备中的任一智能设备以控制所述多个智能设备中的任一智能设备与所述相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
为实现上述目的,本发明进一步提供一种基于CDN的智能设备调控系统,包括多个智能设备、与所述多个智能设备对应通讯连接的多个上述的节点设备、与多个所述智能设备和多个所述节点设备通讯连接的中控服务器、以及上述的部署与调度服务器。
优选地,所述节点设备为移动终端。
有益效果
本发明通过节点设备获取智能设备上传的调控所需的数据,调用对应的数据处理程序对调控所需的数据进行处理,将处理后的数据发送到中控服务器,中控服务器根据处理后的数据对智能设备进行调控。节点设备对调控所需的数据进行处理后再发送到中控服务器,节省智能设备的数据存储空间,降低中心服务器处理数据所占用的资源,从而降低设备成本。
附图说明
图1为本发明实施例提供的基于CDN的智能设备调控系统示意图;
图2为本发明第一实施例提供的基于CDN的智能设备调控方法流程示意图;
图3为本发明第二实施例提供的基于CDN的智能设备调控方法流程示意图;
图4为本发明一实施例提供的部署与调度服务器的示意图;
图5为本发明第三实施例提供的基于CDN的智能设备调控方法流程示意图;
图6为本发明第四实施例提供的基于CDN的智能设备调控方法流程示意图;
图7为本发明第五实施例提供的基于CDN的智能设备调控方法流程示意图;
图8为本发明实施例提供的节点设备的示意图;
图9为本发明第六实施例提供的基于CDN的智能设备调控方法流程示意图;
图10为本发明第七实施例提供的基于CDN的智能设备调控方法流程示意图;
图11为本发明实施例提供的智能设备的示意图。
图12为本发明第八实施例提供的基于CDN的智能设备调控方法流程示意图;
图13为本发明第九实施例提供的基于CDN的智能设备调控方法流程示意图;
图14为本发明第十实施例提供的基于CDN的智能设备调控方法流程示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”、“第三”、“第四”等(如果存在)是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的实施例能够以除了在这里图示或描述的内容以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
需要说明的是,在本发明中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本发明要求的保护范围之内。
参照图1,图1为本发明实施例提供的基于CDN的智能设备调控系统示意图,该调控系统包括多个节点设备1、多个智能设备2、中控服务器3及部署与调度服务器,部署与调度服务器可以是一个服务器,也可以是两个服务器,本实施例中,以部署与调度服务器包括通讯连接的部署服务器4和调度服务器5为例来进行说明。多个节点设备1和多个智能设备2均与中控服务器3通讯连接,每个节点设备1与一个或者多个智能设备2通讯连接,部署服务器4与多个节点设备1通讯连接,调度服务器5与多个智能设备2通讯连接。
在一实施例中,节点设备1为移动终端,移动终端可以但不限于是个人计算机、笔记本电脑、智能手机、平板电脑和便携式可穿戴设备。在本实施例中,用户可以使用闲置的移动终端加入系统中来获取相应的奖励,从而充分利用闲置资源。
如图2所示,本发明第一实施例提供的基于CDN的智能设备调控方法,该方法执行于部署与调度服务器,该方法包括:
S10,获取所述多个智能设备和所述多个节点设备的地址信息。
其中,地址信息可以是智能设备和节点设备的地理位置信息,也可以是智能设备和节点设备的网络地址。智能设备和节点设备加入系统后,向部署与调度服务器发送地址信息。
S20,根据所述地址信息将相应的数据处理程序的安装包分别部署于所述多个节点设备中,以供所述多个节点设备分别安装所述相应的数据处理程序。
在一种实施方式中,部署与调度服务器根据智能设备和节点设备的地理位置信息,将数据处理安装包分别部署于多个节点设备中。例如,根据节点设备所在的区域内的智能设备,为节点设备分配所在区域内的智能设备所对应的数据处理程序,以便智能设备就近接入节点设备,提高数据接收速率。
S30,根据所述地址信息分别发送相应的调度指令给所述多个智能设备以控制所述多个智能设备与所述多个智能设备中相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备;所述调控所需的数据由所述相应的节点设备调用所述相应的数据处理程序进行处理后提供给所述中控服务器,以供所述中控服务器根据处理后的数据对所述多个智能设备进行相应的调控。
继续上述实施方式,智能设备可以为智能冰箱、智能空调、智能用水流量检测设备等智能家电设备。调控所需的数据为智能设备实时采集的数据,如温度、流量、异常信息等用于调控智能设备所需的数据。部署与调度服务器根据节点设备上存储的数据处理程序和节点设备的地址信息为每个智能设备对应分配一个节点设备,保证节点设备和智能设备的最佳调度。节点设备根据分配的数据处理程序对接收到的调控所需的数据进行处理,将处理后的数据发送到中控服务器,以供中控服务器对智能设备进行调控,节点设备也可以根据处理后的数据对智能设备进行部分调控。
上述实施例中,部署与调度服务器根据节点设备和智能设备的地址信息,将数据安装程序部署于节点设备上,发送调度指令给智能设备以控制多个智能设备与对应的节点设备通讯连接,以使智能设备上传调控所需的数据给相应的节点设备。节点设备将接收到的调控所需的数据进行处理后发送到中控服务器,节省智能设备的存储成本和中控服务器的数据处理成本。
如图3所示,本发明第二实施例提供的基于CDN的智能设备调控方法,其与第一实施例的区别在于,所述方法还包括:
S11,获取所述多个智能设备中的任一智能设备发送的数据发送异常信息。
其中,当智能设备的调控所需的数据发送异常时,发送数据发送异常信息。
S21,根据所述数据发送异常信息发送另一调度指令给所述多个智能设备中的任一智能设备以控制所述多个智能设备中的任一智能设备与所述相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
上述实施例中,当部署与调度服务器接收到数据发送异常信息时,重新发送另一调度指令给智能设备,以控制智能设备与正常的节点设备通讯连接,并发送调控所需数据,保证系统的正常运行。
如图4所示,本发明一实施例提供的部署与调度服务器,包括第二存储器21和第二处理器22和第二总线23。
其中,第二存储器21至少包括一种类型的可读存储介质,所述可读存储介质包括闪存、硬盘、多媒体卡、卡型存储器(例如,SD或DX存储器等)、磁性存储器、磁盘、光盘等。第二存储器21在一些实施例中可以是部署与调度服务器的内部存储单元,例如该部署与调度服务器的硬盘。第二存储器21在另一些实施例中也可以是部署与调度服务器的外部存储设备,例如部署与调度服务器上配备的插接式硬盘,智能存储卡(Smart Media Card, SMC),安全数字(Secure Digital, SD)卡,闪存卡(Flash Card)等。进一步地,第二存储器21还可以既包括部署与调度服务器的内部存储单元也包括外部存储设备。第二存储器21不仅可以用于存储安装于部署与调度服务器的应用软件及各类数据,例如第二计算机可读程序02的代码等,还可以用于暂时地存储已经输出或者将要输出的数据。
第二处理器22在一些实施例中可以是一中央处理器(Central Processing Unit, CPU)、控制器、微控制器、微处理器或其他数据处理芯片,用于运行存储器21中存储的程序代码或处理数据,例如执行第二计算机可读程序02等。第二计算机可读程序02被第二处理器22执行时实现上述执行于部署与调度服务器的方法。
该第二总线23可以是外设部件互连标准(peripheral component interconnect,简称PCI)总线或扩展工业标准结构(extended industry standard architecture,简称EISA)总线等。该总线可以分为地址总线、数据总线、控制总线等。为便于表示,图4中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
进一步地,部署与调度服务器还可以包括第二网络接口24,第二网络接口24可选的可以包括有线接口和/或无线接口(如WI-FI接口、蓝牙接口等),通常用于在该部署与调度服务器与其他电子设备之间建立通信连接。
可选地,该部署与调度服务器还可以包括用户接口,用户接口可以包括显示器(Display)、输入单元比如键盘(Keyboard),可选的,用户接口还可以包括标准的有线接口、无线接口。可选地,在一些实施例中,显示器可以是LED显示器、液晶显示器、触控式液晶显示器以及OLED(Organic Light-Emitting Diode,有机发光二极管)触摸器等。其中,显示器也可以适当的称为显示屏或显示单元,用于显示在部署与调度服务器中处理的信息以及用于显示可视化的用户界面。
图4仅示出了具有组件21-24以及第一计算机可读程序02的部署与调度服务器,本领域技术人员可以理解的是,图4示出的结构并不构成对部署与调度服务器的限定,可以包括比图示更少或者更多的部件,或者组合某些部件,或者不同的部件布置。
如图5所示,本发明第三实施例提供的基于CDN的智能设备调控方法,该方法执行于节点设备,该方法包括:
S12,获取所述一个或者多个智能设备上传的调控所需的数据。
其中,智能设备可以为智能冰箱、智能空调、智能流量检测设备等智能家电设备。智能设备将实时采集的数据,如温度、流量、异常信息等调控所需的数据上报到节点设备。
S22,调用相对应的数据处理程序对所接收到的所述调控所需的数据进行处理。
在一种实施方式中,一个或者多个智能设备中的每一智能设备与一个数据处理程序相对应,例如,节点设备采用一个数据处理程序处理接收到的一个智能设备的操作信息和实时监控信息,从而可以简化数据处理流程,且节省硬件资源。需要说明的是,在其他实施方式中,对于每一智能设备的不同数据,可以采用不同的数据处理程序进行处理。
在一种实施方式中,一个或者多个智能设备中的每一智能设备所对应的数据处理程序相同,例如,一个节点设备仅接收一个智能设备或者一种品牌的智能设备,从而提高数据处理速度。
节点设备对调控所需的数据进行的处理为预处理,在一种实施方式中,节点设备统计智能设备某个时间节点的数据,例如,统计智能设备每天产生的数据。在另一种实施方式中,节点设备统计某个区域的智能设备,例如,一个节点设备接收一个小区的同种品牌的智能空调的数据,对一个小区的数据进行统计。
S32,将处理后的数据发送到所述中控服务器,以供所述中控服务器根据所述处理后的数据对所述一个或者多个智能设备进行相应的调控。
在一种实施方式中,中控服务器接收到处理后的数据后,再进行进一步的统计处理,例如,中控服务器接收到的数据为每天的统计数据,再根据每天的统计数据统计中每个月的统计数据。中控服务器对接收到的处理后的数据进一步处理后,将调控指令发送给智能设备,例如,若检测到智能冰箱内的温度低于历史值,则发送降低温度的指令到智能冰箱。
在一种实施方式中,节点设备处理数据后,根据处理后的数据可以向与节点设备通讯连接的一个或者多个智能设备发送控制指令,以对一个或者多个智能设备进行调控,节点设备可以执行一部分调控指令,以更好的对智能设备进行管理和控制。
本实施例中,智能设备将采集到的调控所需的数据发送到节点设备,减少智能设备的芯片中存储的数据,降低芯片存储成本;节点设备将调控所需的数据进行处理后发送到中控服务器,减小中控服务器的数据处理成本,从而降低设备制造成本。
如图6所示,本发明第四实施例提供的调控方法,其与第一实施例的区别在于,该方法在步骤S12之前还包括:
S13,获取部署与调度服务器发送的所述数据处理程序的安装包。
S23,响应用户输入的安装指令安装所述数据处理程序。
在一种实施方式中,节点设备加入系统后,部署服务器根据为节点设备分配数据处理程序的安装包,用户输入安装指令后安装数据处理程序。
在一种实施方式中,用户安装数据处理程序后,节点设备获取与数据处理程序对应的一个或者多个智能设备发送的处理数据的连接请求,响应连接请求与智能设备建立所述通讯连接。节点设备与智能设备建立通讯连接后,即可接收智能设备的实时数据。
如图7所示,本发明第五实施例提供的调控方法,其与第三实施例和第四实施例的区别在于,该方法还包括:
S14,检测所述节点设备的运行状态,所述运行状态包括正常状态和异常状态。
其中,异常状态包括节点设备与智能设备处于异常连接状态,例如节点设备电量耗尽、节点设备无法连接到网络、节点设备未正常安装数据处理程序等。
S24,当所述节点设备处于正常状态时,按照预设的时间间隔向所述中控服务器发送心跳信息。
其中,节点设备正常运行数据处理程序后,每隔预设时间向中控服务器发送心跳信息,以便中控服务器对节点设备的运行状态进行监控,当预设时间内中控服务器没有接收到心跳信息,则说明节点设备处于异常状态,中控服务器对系统进行重新调度,例如,控制智能设备将数据直接发送到中控服务器,或者中控服务器发送指令到部署与调度服务器,控制部署与调度服务器重新建立智能设备与正常的节点设备之间的通讯连接。
上述实施例中,中控服务器实时监控节点设备的运行状态,实现对智能设备和节点设备的有效管理。
如图8所示,本发明一实施例提供的节点设备,包括第一存储器11和第一处理器12和第一总线13。
其中,第一存储器11至少包括一种类型的可读存储介质,所述可读存储介质包括闪存、硬盘、多媒体卡、卡型存储器(例如,SD或DX存储器等)、磁性存储器、磁盘、光盘等。第一存储器11在一些实施例中可以是节点设备的内部存储单元,例如该节点设备的硬盘。第一存储器11在另一些实施例中也可以是节点设备的外部存储设备,例如节点设备上配备的插接式硬盘,智能存储卡(Smart Media Card, SMC),安全数字(Secure Digital, SD)卡,闪存卡(Flash Card)等。进一步地,第一存储器11还可以既包括节点设备的内部存储单元也包括外部存储设备。第一存储器11不仅可以用于存储安装于节点设备的应用软件及各类数据,例如第一计算机可读程序01的代码等,还可以用于暂时地存储已经输出或者将要输出的数据。
第一处理器12在一些实施例中可以是一中央处理器(Central Processing Unit, CPU)、控制器、微控制器、微处理器或其他数据处理芯片,用于运行第一存储器11中存储的程序代码或处理数据,例如执行第一计算机可读程序01等。第一计算机可读程序01被第一处理器12执行时实现上述执行于节点设备的方法。
该第一总线13可以是外设部件互连标准(peripheral component interconnect,简称PCI)总线或扩展工业标准结构(extended industry standard architecture,简称EISA)总线等。该总线可以分为地址总线、数据总线、控制总线等。为便于表示,图2中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
进一步地,节点设备还可以包括第一网络接口14,第一网络接口14可选的可以包括有线接口和/或无线接口(如WI-FI接口、蓝牙接口等),通常用于在该节点设备与其他电子设备之间建立通信连接。
可选地,该节点设备还可以包括用户接口,用户接口可以包括显示器(Display)、输入单元比如键盘(Keyboard),可选的用户接口还可以包括标准的有线接口、无线接口。可选地,在一些实施例中,显示器可以是LED显示器、液晶显示器、触控式液晶显示器以及OLED(Organic Light-Emitting Diode,有机发光二极管)触摸器等。其中,显示器也可以适当的称为显示屏或显示单元,用于显示在节点设备中处理的信息以及用于显示可视化的用户界面。
图8仅示出了具有组件11-14以及第一计算机可读程序01的节点设备,本领域技术人员可以理解的是,图8示出的结构并不构成对节点设备的限定,可以包括比图示更少或者更多的部件,或者组合某些部件,或者不同的部件布置。
如图9所示,本发明第六实施例提供的基于CDN的智能设备调控方法流程示意图;该方法执行于智能设备中,该方法包括:
步骤S15,上传调控所需的数据至所述节点设备,所述调控所需的数据由所述节点设备调用所述数据处理程序进行处理后发送到所述中控服务器。
其中,智能设备与节点设备进行通讯连接,节点设备上安装有与智能设备所对应的数据处理程序,智能设备和节点设备均与中控服务器通讯连接。调控所需的数据可以是实时采集的数据,如温度、流量、异常信息等。
步骤S25,获取所述中控服务器发送的调控指令。
其中,调控指令为中控服务器根据调控所需的数据产生的指令。例如,若检测到智能冰箱内的温度低于历史值,则发送降低温度的指令到智能冰箱。
本实施例中,智能设备将采集到的调控所需的数据发送到节点设备,减少智能设备的芯片中存储的数据,降低芯片存储成本;节点设备将调控所需的数据进行处理后发送到中控服务器,减小中控服务器的数据处理成本,从而降低设备制造成本。
如图10所示,本发明第七实施例提供的基于CDN的智能设备调控方法流程示意图;其与第六实施例的区别在于,该方法在上传调控所需的数据至所述节点设备之前还包括:
步骤S16,获取部署与调度服务器发送的调度指令。
步骤S26,根据所述调度指令与所述节点设备通讯连接。
在一种实施方式中,节点设备加入系统后,部署服务器根据为节点设备分配数据处理程序的安装包,节点设备安装数据处理程序后。部署与调度服务器根据各节点设备分配的数据处理程序向智能设备发送调度指令,智能设备根据调度指令向节点设备发送处理数据的连接请求,节点设备响应连接请求与智能设备建立所述通讯连接,从而使节点设备接收智能设备的调控所需的数据,对调控所需的数据进行处理。
如图11所示,本发明一实施例提供的智能设备,包括第三存储器31和第三处理器32和第三总线33。
其中,第三存储器31至少包括一种类型的可读存储介质,所述可读存储介质包括闪存、硬盘、多媒体卡、卡型存储器(例如,SD或DX存储器等)、磁性存储器、磁盘、光盘等。第三存储器31在一些实施例中可以是智能设备的内部存储单元,例如该智能设备的硬盘。第三存储器31在另一些实施例中也可以是智能设备的外部存储设备,例如智能设备上配备的插接式硬盘,智能存储卡(Smart Media Card, SMC),安全数字(Secure Digital, SD)卡,闪存卡(Flash Card)等。进一步地,第三存储器31还可以既包括智能设备的内部存储单元也包括外部存储设备。第三存储器31不仅可以用于存储安装于智能设备的应用软件及各类数据,例如第三计算机可读程序03的代码等,还可以用于暂时地存储已经输出或者将要输出的数据。
第三处理器32在一些实施例中可以是一中央处理器(Central Processing Unit, CPU)、控制器、微控制器、微处理器或其他数据处理芯片,用于运行第三存储器31中存储的程序代码或处理数据,例如执行第三计算机可读程序03等。第三计算机可读程序03被第三处理器32执行时实现上述执行于节点设备的方法。
该第三总线13可以是外设部件互连标准(peripheral component interconnect,简称PCI)总线或扩展工业标准结构(extended industry standard architecture,简称EISA)总线等。该总线可以分为地址总线、数据总线、控制总线等。为便于表示,图2中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
进一步地,智能设备还可以包括第三网络接口34,第三网络接口34可选的可以包括有线接口和/或无线接口(如WI-FI接口、蓝牙接口等),通常用于在该智能设备与其他电子设备之间建立通信连接。
可选地,该智能设备还可以包括用户接口,用户接口可以包括显示器(Display)、输入单元比如键盘(Keyboard),可选的用户接口还可以包括标准的有线接口、无线接口。可选地,在一些实施例中,显示器可以是LED显示器、液晶显示器、触控式液晶显示器以及OLED(Organic Light-Emitting Diode,有机发光二极管)触摸器等。其中,显示器也可以适当的称为显示屏或显示单元,用于显示在智能设备中处理的信息以及用于显示可视化的用户界面。
图11仅示出了具有组件31-34以及第三计算机可读程序03的智能设备,本领域技术人员可以理解的是,图11示出的结构并不构成对智能设备的限定,可以包括比图示更少或者更多的部件,或者组合某些部件,或者不同的部件布置。
如图12所示,本发明第八实施例提供的基于CDN的智能设备调控方法,包括:
S17,所述多个智能设备中的每一智能设备上传调控所需的数据给所述多个节点设备中相应的节点设备;
S27,所述相应的节点设备调用相应的数据处理程序对所述调控所需的数据进行处理;
S37,所述相应的节点设备将处理后的数据发送给所述中控服务器;
S47,所述中控服务器根据所述处理后的数据对所述多个智能设备进行相应的调控。
在一实施例中,所述多个节点设备中的任一节点设备根据所述处理后的数据向所述一个或者多个智能设备发送控制指令,以对所述一个或者多个智能设备进行调控。
上述实施例中,智能设备将调控所需的数据发送到节点设备,由节点设备进行处理后发送到中控服务器,从而节省智能设备的数据存储成本和中控服务器的数据处理成本。
如图13所示,本发明第九实施例提供的基于CDN的智能设备调控系统的调控方法,其与第八实施例的区别在于,该方法还包括:
S18,所述部署与调度服务器获取所述多个智能设备和所述多个节点设备的地址信息;
S28,所述部署与调度服务器根据所述地址信息将相应的数据处理程序的安装包分别部署于所述多个节点设备中,以供所述多个节点设备分别安装所述相应的数据处理程序;
S38,所述部署与调度服务器根据所述地址信息分别发送相应的调度指令给所述多个智能设备以控制所述多个智能设备与所述多个智能设备中相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
上述实施例中,部署与调度服务器根据智能设备和节点设备的地址信息,将数据处理程序部署于节点设备上,对智能设备进行调度以与最佳的节点设备建立通讯连接,保证数据处理的正常进行。
如图14所示,本发明第十实施例提供的基于CDN的智能设备调控系统的调控方法,其与第九实施例的区别在于,该方法还包括:
S19,所述部署与调度服务器获取所述多个智能设备中的任一智能设备发送的数据发送异常信息;
S29,所述部署与调度服务器根据所述数据发送异常信息发送另一调度指令给所述多个智能设备中的任一智能设备以控制所述多个智能设备中的任一智能设备与所述相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
上述实施例中,当数据发送异常时,部署与调度服务器发送另一调度指令,重新为智能设备选取最佳的节点设备,保证系统正常运行。
在上述实施例中,可以全部或部分地通过软件、硬件、固件或者其任意组合来实现。当使用软件实现时,可以全部或部分地以计算机程序产品的形式实现。
所述计算机程序产品包括一个或多个计算机指令。在计算机上加载和执行所述计算机程序指令时,全部或部分地产生按照本发明实施例所述的流程或功能。所述计算机可以是通用计算机、专用计算机、计算机网络、或者其他可编程装置。所述计算机指令可以存储在计算机可读存储介质中,或者从一个计算机可读存储介质向另一计算机可读存储介质传输,例如,所述计算机指令可以从一个网站站点、计算机、服务器或数据中心通过有线(例如同轴电缆、光纤、数字用户线(DSL))或无线(例如红外、无线、微波等)方式向另一个网站站点、计算机、服务器或数据中心进行传输。所述计算机可读存储介质可以是计算机能够存储的任何可用介质或者是包含一个或多个可用介质集成的服务器、数据中心等数据存储设备。所述可用介质可以是磁性介质,(例如,软盘、硬盘、磁带)、光介质(例如,DVD)、或者半导体介质(例如固态硬盘Solid State Disk(SSD))等
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统,装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
需要说明的是,上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。并且本文中的术语“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、装置、物品或者方法不仅包括那些要素,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、装置、物品或者方法所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、装置、物品或者方法中还存在另外的相同要素。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (20)

  1. 一种基于CDN的智能设备调控方法,其特征在于,所述方法应用于节点设备,所述节点设备与一个或者多个智能设备通讯连接;所述节点设备还与调控所述一个或者多个智能设备的中控服务器进行通讯连接,所述方法包括:
    获取所述一个或者多个智能设备上传的调控所需的数据;
    调用相对应的数据处理程序对所接收到的所述调控所需的数据进行处理;
    将处理后的数据发送到所述中控服务器,以供所述中控服务器根据所述处理后的数据对所述一个或者多个智能设备进行相应的调控。
  2. 如权利要求1所述的方法,其特征在于,所述一个或者多个智能设备中的每一智能设备与一个所述数据处理程序相对应。
  3. 如权利要求2所述的方法,其特征在于,所述一个或者多个智能设备中的每一智能设备所对应的数据处理程序相同。
  4. 如权利要求1所述的方法,其特征在于,获取所述一个或者多个智能设备上传的调控所需的数据之前还包括:
    获取部署与调度服务器发送的所述数据处理程序的安装包;
    响应用户输入的安装指令安装所述数据处理程序。
  5. 如权利要求1所述的方法,其特征在于,获取所述一个或者多个智能设备上传的调控所需的数据之前还包括:
    获取所述一个或者多个智能设备发送的处理数据的连接请求;
    响应所述连接请求与所述智能设备建立所述通讯连接。
  6. 如权利要求1所述的方法,其特征在于,所述方法还包括:
    根据所述处理后的数据向所述一个或者多个智能设备发送控制指令,以对所述一个或者多个智能设备进行调控。
  7. 如权利要求1所述的方法,其特征在于,所述方法还包括:
    检测所述节点设备的运行状态,所述运行状态包括正常状态和异常状态;
    当所述节点设备处于正常状态时,按照预设的时间间隔向所述中控服务器发送心跳信息。
  8. 一种基于CDN的智能设备调控方法,其特征在于,该方法应用于部署与调度服务器中,所述部署与调度服务器分别与多个智能设备和多个节点设备通讯连接;所述多个节点设备中的每一节点设备与所述多个智能设备中的一个或者多个智能设备通讯连接;所述多个节点设备还与调控所述多个智能设备的中控服务器进行通讯连接,所述方法包括:
    获取所述多个智能设备和所述多个节点设备的地址信息;
    根据所述地址信息将相应的数据处理程序的安装包分别部署于所述多个节点设备中,以供所述多个节点设备分别安装所述相应的数据处理程序;
    根据所述地址信息分别发送相应的调度指令给所述多个智能设备以控制所述多个智能设备与所述多个智能设备中相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备;所述调控所需的数据由所述相应的节点设备调用所述相应的数据处理程序进行处理后提供给所述中控服务器,以供所述中控服务器根据处理后的数据对所述多个智能设备进行相应的调控。
  9. 如权利要求8所述的方法,其特征在于,所述方法还包括:
    获取所述多个智能设备中的任一智能设备发送的数据发送异常信息;
    根据所述数据发送异常信息发送另一调度指令给所述多个智能设备中的任一智能设备以控制所述多个智能设备中的任一智能设备与所述相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
  10. 一种基于CDN的智能设备调控方法,其特征在于,该方法应用于智能设备中,所述智能设备与节点设备进行通讯连接,所述节点设备上安装有与所述智能设备所对应的数据处理程序,所述智能设备和所述节点设备均与中控服务器通讯连接,所述方法包括:
    上传调控所需的数据至所述节点设备,所述调控所需的数据由所述节点设备调用所述数据处理程序进行处理后发送到所述中控服务器;
    获取所述中控服务器发送的调控指令。
  11. 如权利要求10所述的方法,其特征在于,上传调控所需的数据至所述节点设备之前还包括:
    获取部署与调度服务器发送的调度指令;
    根据所述调度指令与所述节点设备通讯连接。
  12. 一种基于CDN的智能设备调控方法,其特征在于,该方法应用于基于CDN的智能设备调控系统中,所述系统包括多个智能设备、多个节点设备、与所述多个智能设备和所述多个节点设备通讯连接的部署与调度服务器、以及与所述多个节点设备和所述多个智能通讯连接的中控服务器,所述多个节点设备中的每一节点设备与所述多个智能设备中的一个或者多个智能设备通讯连接;所述方法包括:
    所述多个智能设备中的每一智能设备上传调控所需的数据给所述多个节点设备中相应的节点设备;
    所述相应的节点设备调用相应的数据处理程序对所述调控所需的数据进行处理;
    所述相应的节点设备将处理后的数据发送给所述中控服务器;
    所述中控服务器根据所述处理后的数据对所述多个智能设备进行相应的调控。
  13. 如权利要求12所述的方法,其特征在于,所述多个智能设备中的每一智能设备上传调控所需的数据给所述多个节点设备中相应的节点设备之前还包括:
    所述部署与调度服务器获取所述多个智能设备和所述多个节点设备的地址信息;
    所述部署与调度服务器根据所述地址信息将相应的数据处理程序的安装包分别部署于所述多个节点设备中,以供所述多个节点设备分别安装所述相应的数据处理程序;
    所述部署与调度服务器根据所述地址信息分别发送相应的调度指令给所述多个智能设备以控制所述多个智能设备与所述多个智能设备中相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
  14. 如权利要求12所述的方法,其特征在于,所述相应的节点设备调用相应的数据处理程序对所述调控所需的数据进行处理之后还包括:
    所述多个节点设备中的任一节点设备根据所述处理后的数据向所述一个或者多个智能设备发送控制指令,以对所述一个或者多个智能设备进行调控。
  15. 如权利要求12所述的方法,其特征在于,所述方法还包括:
    所述部署与调度服务器获取所述多个智能设备中的任一智能设备发送的数据发送异常信息;
    所述部署与调度服务器根据所述数据发送异常信息发送另一调度指令给所述多个智能设备中的任一智能设备以控制所述多个智能设备中的任一智能设备与所述相应的节点设备通讯连接和上传调控所需的数据给所述相应的节点设备。
  16. 一种节点设备,其特征在于,包括第一存储器和第一处理器,所述第一存储器上存储有可在所述第一处理器上运行的第一计算机可读程序,所述第一计算机可读程序被所述第一处理器执行时实现如权利要求1-7任一项所述的方法。
  17. 一种部署与调度服务器,其特征在于,包括第二存储器和第二处理器,所述第二存储器上存储有可在所述第二处理器上运行的第二计算机可读程序,所述第二计算机可读程序被所述第二处理器执行时实现如权利要求8-9任一项所述的方法。
  18. 一种智能设备,其特征在于,包括第三存储器和第三处理器,所述第三存储器上存储有可在所述第三处理器上运行的第三计算机可读程序,所述第三计算机可读程序被所述第三处理器执行时实现如权利要求10-11任一项所述的方法。
  19. 一种基于CDN的智能设备调控系统,其特征在于,包括多个如权利要求18所述的智能设备、与多个所述智能设备对应通讯连接的多个如权利要求16所述的节点设备、与多个所述智能设备和多个所述节点设备通讯连接的中控服务器、以及如权利要求17所述的部署与调度服务器。
  20. 如权利要求19所述的系统,其特征在于,所述节点设备为移动终端。
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