WO2018040125A1 - 一种智能物联网设备 - Google Patents

一种智能物联网设备 Download PDF

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Publication number
WO2018040125A1
WO2018040125A1 PCT/CN2016/098650 CN2016098650W WO2018040125A1 WO 2018040125 A1 WO2018040125 A1 WO 2018040125A1 CN 2016098650 W CN2016098650 W CN 2016098650W WO 2018040125 A1 WO2018040125 A1 WO 2018040125A1
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Prior art keywords
internet
things
terminal
iot
system server
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PCT/CN2016/098650
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English (en)
French (fr)
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刘杰
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刘杰
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Publication of WO2018040125A1 publication Critical patent/WO2018040125A1/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
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications

Definitions

  • the invention belongs to the field of Internet of Things, and in particular relates to a smart Internet of Things device.
  • the current Internet of Things system includes independent Internet of Things terminals, and the Internet of Things terminals are connected to the connected network cloud servers through wired or wireless forms.
  • the IoT terminal can be directly controlled by the controller, or the mobile terminal can be connected to the cloud server corresponding to each IoT terminal through the mobile terminal, and an instruction is sent to the cloud server. To achieve control of the IoT terminal.
  • the terminal devices of different manufacturers in the IoT system are relatively independent, the operating system and the communication protocol are separate, and the devices cannot directly interconnect and communicate with each other.
  • the linkage performance is poor, the data analysis and processing capability of each device is low, and the collected data is dispersed. It is not conducive to the centralized analysis, processing and application of IoT data.
  • the construction cost and operation cost of the IoT system are high, and a large amount of resources are wasted, which ultimately affects the popularity and development of the entire IoT system.
  • the invention provides a smart Internet of Things device, which aims to solve the problem that the construction cost and operation cost of the existing IoT system are high, resulting in a large amount of waste of resources, and finally seriously affecting the popularization and development of the entire IoT system.
  • a smart Internet of Things device includes:
  • each communication interface being connected to an execution device in an IoT terminal, or an acquisition device in an IoT terminal;
  • a system server configured to receive data collected by the collection device through the communication interface, analyze and process the data, and send an operation control instruction to the execution device through the communication interface, where a plurality of objects can be centrally controlled The operation of the networked terminal.
  • the smart Internet of Things device provided by the embodiment of the invention is provided with a system server, and the system server is connected with the execution device or the collection device of the plurality of IoT terminals through the communication interface, thereby realizing centralized collection of the Internet of Things data and concentration of the Internet of Things terminals.
  • Control, and the IoT system can operate independently and intelligently, which fundamentally solves the bottleneck that the IoT system is difficult to popularize and develop.
  • FIG. 1 is a schematic structural diagram of an Internet of Things system in the prior art
  • FIG. 2 is a schematic structural diagram of an Internet of Things system according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a smart Internet of Things device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of an application scenario of an Internet of Things provided by an embodiment of the present invention.
  • the IoT terminal is centrally and uniformly controlled, and each IoT terminal only needs to execute the received running instruction, realizes centralized collection of the Internet of Things data, centralized control of the Internet of Things terminal, and the Internet of Things system can be independent. Intelligent operation fundamentally solves the bottleneck that the IoT system is difficult to popularize and develop.
  • FIG. 2 shows the structure of the Internet of Things system provided by the embodiment of the present invention. For the convenience of description, only the content related to the embodiment of the present invention is shown.
  • the Internet of Things system comprises a smart IoT device 1 and at least one IoT terminal 2 comprising an acquisition device 21 and at least one IoT terminal 3 comprising an execution device 31 connected to the smart IoT device 1.
  • the Internet of Things terminal 2 and the Internet of Things terminal 3 may be various Internet of Things terminals having the collection device 21 or the execution device 31, such as an air conditioner, a sensor, a fan, an electric lamp, etc., or connected to the Internet of Things device.
  • the type of the Internet of Things terminal is not limited in the embodiment of the present invention.
  • the smart Internet of Things device 1 includes a plurality of communication interfaces 11, each of which is connected to an acquisition device 21 in an Internet of Things terminal 2, or an execution device 31 in an Internet of Things terminal 3.
  • the system server 12 is configured to receive data collected by the collection device 21 through the communication interface 11, analyze and process the data, and send an operation control instruction to the execution device 31 through the communication interface 11, so as to centrally control the operation of the plurality of Internet of Things terminals.
  • the communication interface 11 may be a wired interface using a wired connection, or may be a wireless interface using a wireless connection.
  • the communication interface 11 may be connected to the execution device 31 or the collection device 21 in the Internet of Things terminal by a separate cable, the cable including a signal for signal data transmission with the system server 12.
  • the signal line can be used to implement the signal data transmission function between the system server 12 and the Internet of Things terminal.
  • the cable may further include a power supply cable for powering the Internet of Things terminal 2 or the Internet of Things terminal 3, and the system server 12 supplies power to the Internet of Things terminal 2 or the Internet of Things terminal 3 through the power supply cable. Therefore, the Internet of Things terminal 2 or the Internet of Things terminal 3 can operate independently without an external power supply, thereby avoiding the problem that the Internet of Things terminal 2 or the Internet of Things terminal 3 is inoperable due to external power failure.
  • the communication interface 11 can also communicate with the system server 12 by using a wireless connection manner, and the wireless connection mode can adopt a wireless connection form such as wifi, zigbee, or Bluetooth, as long as the system server 12 can be
  • a wireless connection manner such as wifi, zigbee, or Bluetooth
  • the wireless connection mode can adopt a wireless connection form such as wifi, zigbee, or Bluetooth, as long as the system server 12 can be
  • a specific implementation manner of implementing a wireless communication connection between the Internet of Things terminal 2 or the Internet of Things terminal 3 is the protection scope of the present invention.
  • the wireless connection method can be used in the process of networking the Internet of Things system, without considering the wiring problem, and the networking cost between the system server 12 and the Internet of Things terminal 2 or the Internet of Things terminal 3 is greatly reduced. .
  • system server 12 may be one. It can be understood that the system server 12 may also be multiple.
  • FIG. 3 shows the structure of a system server according to an embodiment of the present invention. For the convenience of description, only the content related to the embodiment of the present invention is shown.
  • the system server 12 includes:
  • a main control board 121 connected to the communication interface 11;
  • a central processing unit 1211 disposed on the main control board 121;
  • a power interface 122 connected to the main control board 121.
  • the main control board 121 is mainly used for connecting the respective module units by wires, and may be implemented by using a PCB or an FPC, etc., which is not limited by the embodiment of the present invention.
  • a central processing unit 121 is disposed on the main control board 121, and the central processing unit 1211 is configured to analyze and process data collected by the collection device 21, and send operation control to the execution device 31 through the communication interface 11.
  • the instruction can centrally control the operation of multiple IoT terminals.
  • the central processing unit 1211 can integrate a storage module having a function of storing data to store data collected by the collection device 21.
  • the power interface 122 may be connected to an external power source through a pin, or may be connected to an external power source in the form of a power supply cable to obtain power from the power supply.
  • the smart Internet of Things device 1 further includes a storage interface 123 connected to the main control board 121.
  • the storage interface 123 is configured to connect to an external storage device, which may include, but is not limited to, a storage device such as a flash disk or a mechanical hard disk, so that the Internet of Things terminal 2 or the Internet of Things terminal 3 can pass through a storage device connected to the storage interface 123.
  • the storage includes, but is not limited to, data collected by the acquisition device 21, information analyzed by the central processing unit 1211, and results generated by the processing, so as to implement more intelligent control and application of big data for the Internet of Things terminal.
  • the smart Internet of Things device 1 further includes a network interface 124 connected to the main control board 121.
  • the network interface 124 is used to connect to an external network, and may include devices such as but not limited to routing devices, modems, etc., so that the smart IoT device 1 can connect to an external cloud server through the network interface 124.
  • the cloud server is configured to receive a user command sent by the mobile communication client connected thereto, and send it to the smart Internet of Things device 1.
  • the cloud server can be one or a cloud server cluster composed of multiple cloud servers.
  • the cloud server may collect, store, analyze, and process the data analyzed and processed by the at least one smart Internet of Things device 1 connected thereto, and form applicable big data.
  • the user can use the mobile communication client to send an instruction to the cloud server, and forward the instruction to the smart Internet of Things device through the cloud server.
  • the Internet of Things terminals can be interconnected, greatly Reduce the manufacturing cost of IoT terminals, as well as the construction and operating costs of IoT systems.
  • the smart Internet of Things device 1 includes a backup power interface 122 connected to the main control board 121.
  • the backup power interface 122 can be connected to an external power source through a pin, or can be connected to an external power source in the form of a power supply cable to obtain power from the backup power source.
  • the backup power interface 122 is used to connect an independent backup power source, such as a battery, and can be used to supply power when the external power source cannot be powered, and when the external power supply of the device is suddenly disconnected. It affects the normal and uninterrupted operation of equipment and IoT terminals.
  • an independent backup power source such as a battery
  • the mobile communication client can be applied to a device including but not limited to a smart phone, a tablet computer, a notebook computer, etc., which is not limited by the embodiment of the present invention.
  • the mobile communication client can send an instruction to turn on the air conditioner to the cloud server, and after receiving the instruction, the cloud server forwards the instruction to the smart Internet of Things device 1, and the smart Internet of Things device 1 according to the The air conditioner command sent by the user directly activates the air conditioner connected to it.
  • the user needs to control another IoT terminal, only the instruction is sent to the smart IoT device 1, and the user can directly control the terminal through the smart IoT device 1 to achieve the user's control purpose.
  • the intelligent Internet of Things device 1 realizes centralized control and unified management of the Internet of Things terminal 2 or the Internet of Things terminal 3 in the Internet of Things system by setting a unified operating system and communication protocol, and each Internet of Things terminal 2 Or the Internet of Things terminal 3 only needs to execute the running instruction, and the Internet of Things terminal 2 or the Internet of Things terminal 3 can be interconnected, which greatly reduces the manufacturing cost of the Internet of Things terminal 2 or the Internet of Things terminal 3, and the Internet of Things system. Construction costs and operating costs.
  • the intelligent Internet of Things device 1 can directly collect the environmental data acquired by the Internet of Things terminals such as air conditioners and fans connected thereto, and can uniformly collect the environmental data, reduce the data collection cost, and improve the correlation and completeness of the collected data. Sex, the acquisition speed is faster and more reliable, and it is more suitable for big data analysis and processing of the collected data, so as to realize more intelligent control and big data application for the Internet of Things terminal 2 or the Internet of Things terminal 3.
  • FIG. 4 shows an application scenario of the Internet of Things system provided by the embodiment of the present invention, which is described in detail as follows:
  • the user identity can be identified by the smart bracelet worn by the user or the fingerprint recognition terminal device.
  • the Internet of Things terminal passes the data to the system server 12. After the system server 12 identifies the user, it performs an intelligent voice greeting and automatically switches to the corresponding user mode.
  • the system server 12 When the system server 12 detects the illumination sensor at the window, it autonomously determines whether it is necessary to turn on the illumination. If the lighting is turned on, the system server 12 can turn on the ambient lights of different colors and brightness according to the user's habits.
  • the system server 12 When the system server 12 obtains the data sent by the temperature and humidity sensor, the system will determine the indoor temperature and humidity by analyzing the data autonomously, control the opening or closing of the indoor air conditioner according to the judgment result, and adjust the temperature of the air conditioner to make the temperature of the room Humidity meets user comfort standards.
  • the user can also interact with the artificial intelligence of the system server 12 by voice commands to change the operating state of the execution device 31, such as adjusting the color of the light, the brightness, or the temperature of the air conditioner.
  • the smart Internet of Things device provided by the embodiment of the invention is provided with a system server, and the system server is connected with the execution device or the collection device of the plurality of IoT terminals through the communication interface, thereby realizing centralized collection of the Internet of Things data and concentration of the Internet of Things terminals.
  • Control, and the IoT system can operate independently and intelligently, which fundamentally solves the bottleneck that the IoT system is difficult to popularize and develop.
  • a unified operating system and communication protocol are adopted to reduce the data collection cost, improve the correlation and integrity of the collected data, and the acquisition speed is faster and more reliable, and is more suitable for the collected data. Big data analysis and processing facilitates more intelligent control and big data applications for IoT terminals.
  • the Internet of Things system does not depend on external factors such as external network and human, and can operate independently and independently, and realizes independent intelligent analysis, processing and execution of the collected data.

Abstract

本发明适用于物联网领域,提供了一种智能物联网设备,包括:多个通信接口,每个通信接口连接一个物联网终端中的执行设备,或者一个物联网终端中的采集设备;以及系统服务器,用于通过所述通信接口接收所述采集设备采集的数据,对所述数据进行分析和处理,并通过所述通信接口向所述执行设备发送运行控制指令,可集中控制多个物联网终端的运行。本发明提供的智能物联网设备设置有系统服务器,系统服务器通过通信接口与多个物联网终端中的执行设备或者采集设备进行连接,实现了物联网数据的集中采集,物联网终端的集中控制,且物联网系统可独立智能运行,从根本上解决了物联网系统难以普及和发展的瓶颈。

Description

一种智能物联网设备 技术领域
本发明属于物联网领域,尤其涉及一种智能物联网设备。
背景技术
参见图1,以家庭物联网为例,目前的物联网系统包括各自独立的物联网终端,该物联网终端通过有线或无线的形式接入至各自连接的网络云服务器。当用户需要对某个物联网终端进行控制时,只能直接通过控制器控制各个物联网终端,或者通过移动终端,使用网络连接至各个物联网终端对应的云服务器,并向该云服务器发送指令来实现对该物联网终端进行控制。
显然,目前物联网系统中不同厂家的终端设备之间相对独立,运行系统及通信协议各自为政,设备之间不能直接实现互联互通,联动性差,各设备的数据分析处理能力低,所采集的数据分散,不利于物联网数据的集中分析、处理和应用,物联网系统的建设成本和运行成本很高,并造成大量的资源浪费,最终严重影响了整个物联网系统的普及和发展。
技术问题
本发明提供一种智能物联网设备,旨在解决现有的物联网系统的建设成本和运行成本很高,造成大量的资源浪费,最终严重影响了整个物联网系统的普及和发展的问题。
技术解决方案
本发明是这样实现的,一种智能物联网设备,包括:
多个通信接口,每个通信接口连接一个物联网终端中的执行设备,或者一个物联网终端中的采集设备;以及
系统服务器,用于通过所述通信接口接收所述采集设备采集的数据,对所述数据进行分析和处理,并通过所述通信接口向所述执行设备发送运行控制指令,可集中控制多个物联网终端的运行。
有益效果
本发明实施例提供的智能物联网设备设置有系统服务器,系统服务器通过通信接口与多个物联网终端中的执行设备或者采集设备进行连接,实现了物联网数据的集中采集,物联网终端的集中控制,且物联网系统可独立智能运行,从根本上解决了物联网系统难以普及和发展的瓶颈。
附图说明
图1是现有技术中物联网系统的结构示意图;
图2是本发明实施例提供的物联网系统的结构示意图;
图3是本发明实施例提供的智能物联网设备的结构示意图;
图4是本发明实施例提供的物联网应用场景示意图。
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仅用以解释本发明,并不用于限定本发明。
本发明实施例对物联网终端进行集中统一控制,各物联网终端只需执行接收到的运行指令,实现了对物联网数据的集中采集,对物联网终端的集中控制,且物联网系统可独立智能运行,从根本上解决了物联网系统难以普及和发展的瓶颈。
以下结合具体实施例对本发明的具体实现进行详细描述。
图2示出了本发明实施例提供的物联网系统的结构,为了便于说明,仅示出了与本发明实施例相关的内容。
物联网系统包括一个智能物联网设备1,以及与智能物联网设备1连接的包含采集设备21的至少一个物联网终端2和包含执行设备31的至少一个物联网终端3。
在本发明实施例中,物联网终端2和物联网终端3可以是具有采集设备21或执行设备31的各种物联网终端,例如空调、传感器、风扇、电灯等,或者与物联网设备连接、并受其控制的终端设备,本发明实施例对物联网终端的种类不作限定。
在本发明实施例中,智能物联网设备1包括多个通信接口11,每个通信接口11连接一个物联网终端2中的采集设备21,或者一个物联网终端3中的执行设备31。
系统服务器12用于通过通信接口11接收采集设备21采集的数据,对数据进行分析和处理,并通过通信接口11向执行设备31发送运行控制指令,可集中控制多个物联网终端的运行。
在本发明实施例中,通信接口11可以是使用有线连接的有线接口,也可以是使用无线连接的无线接口。
作为本发明的一个实施例,通信接口11可以采用独立的线缆与该物联网终端中的执行设备31或采集设备21进行连接,该线缆包括用于与系统服务器12进行信号数据传输的信号线,该信号线可以使用铜绞线、光纤等材料,实现系统服务器12与物联网终端之间的信号数据传输功能,具体实现方式本发明实施例在此不作限定。
在本发明实施例中,该线缆还可以包括为物联网终端2或物联网终端3进行供电的供电线缆,系统服务器12通过供电线缆对物联网终端2或物联网终端3进行供电,以使物联网终端2或物联网终端3可无需外接电源即可独立运行,避免因外部断电导致物联网终端2或物联网终端3不可工作的问题。
作为本发明的另一个实施例,通信接口11还可以采用无线连接方式与系统服务器12进行连接通信,该无线连接方式可以采用wifi、zigbee、蓝牙等无线连接形式,只要是可使系统服务器12与物联网终端2或物联网终端3之间实现无线通信连接的具体实现方式,均为本发明的保护范围。
在本发明实施例中,采用无线连接方式可以在物联网系统组网的过程中,无需考虑布线的问题,大大降低了系统服务器12与物联网终端2或物联网终端3之间的组网成本。
在本发明实施例中,系统服务器12可以为一个,可以理解的是,系统服务器12也可以为多个。
图3示出了本发明实施例提供的系统服务器的结构,为了便于说明,仅示出了与本发明实施例相关的内容。
作为本发明的一个实施例,系统服务器12包括:
与通信接口11连接的主控板121;
设置于主控板121上的中央处理器1211;以及
与主控板121连接的电源接口122。
作为本发明的一个实施例,可以理解的是,主控板121主要是用于通过导线连接各个模块单元,可以采用PCB或者FPC等实现形式,本发明实施例对此不作限定。
作为本发明的一个实施例,主控板121上设置有中央处理器1211,中央处理器1211用于将采集设备21采集的数据进行分析和处理,并通过通信接口11向执行设备31发送运行控制指令,可集中控制多个物联网终端的运行。
中央处理器1211可以集成具有存储数据功能的存储模块,以对采集设备21采集的数据进行存储。
需要说明的是,本发明实施例并不对中央处理器1211的型号、规格进行限定。
作为本发明的一个实施例,电源接口122可以通过针脚与外部电源进行连接,或者,也可以采用供电线缆的形式与外部电源进行连接,以从供电电源上获取电能。
作为本发明的一种实施例,智能物联网设备1还包括与主控板121连接的存储接口123。
存储接口123用于连接外部的存储设备,该存储设备可以包括但不限于闪存盘、机械硬盘等存储设备,以使物联网终端2或物联网终端3可以通过与存储接口123连接的存储设备,存储包括但不限于采集设备21采集的数据、中央处理器1211对采集的数据进行分析、处理后产生的结果等信息,以便于对物联网终端实现更加智能化的控制和大数据的应用。
作为本发明的一种实施例,智能物联网设备1还包括与主控板121连接的网络接口124。
网络接口124用于连接外部的网络,可以连接包括但不限于路由装置、调制解调器等设备,以使智能物联网设备1通过网络接口124与外部的云服务器进行连接。
作为本发明的一个实施例,云服务器用于接收与之连接的移动通信客户端发送的用户指令,下发给智能物联网设备1。云服务器可以是一个,也可以是多个云服务器组成的云服务器集群。
在本发明实施例中,云服务器也可以将与之连接的至少一个智能物联网设备1所分析、处理的数据进行收集、存储、分析、处理,并形成可应用的大数据。
作为本发明的一个实施例,智能物联网设备1通过网络接口124连接至云服务器以后,用户可以使用移动通信客户端向云服务器发送指令,并通过云服务器将该指令转发至智能物联网设备1,以使智能物联网设备1根据用户发送的指令,对与该用户指令所指向的物联网终端进行直接控制,从而无需对各个物联网终端进行单独控制,物联网终端之间可以互联互通,大大降低了物联网终端的制造成本,以及物联网系统的建设成本和运行成本。
作为本发明的一种实施例,智能物联网设备1包括与主控板121连接的备用电源接口122。
备用电源接口122可以通过针脚与外部电源进行连接,或者,也可以采用供电线缆的形式与外部电源进行连接,以从备用电源上获取电能。
作为本发明的一个实施例,备用电源接口122用于连接独立的备用电源,例如蓄电池,可以在外部电源不能供电时,不停机转换使用备用电源进行供电,避免在设备的外部供电突然断掉时,影响设备与物联网终端的正常不间断运作。
作为本发明的一个实施例,移动通信客户端可以应用在包括但不限于智能手机、平板电脑、笔记本电脑等设备上,本发明实施例对此不作限定。
例如,当用户需要对空调进行开启,可以通过移动通信客户端向云服务器发送一个开启空调的指令,云服务器接收到该指令后,转发给智能物联网设备1,智能物联网设备1会根据该用户发送的开启空调指令,直接启动与之连接的空调。可以理解的是,当用户需要对另外一台物联网终端进行控制时,只需将指令发送至智能物联网设备1中,均可通过智能物联网设备1直接控制终端来实现用户的控制目的。
在本发明实施例中,智能物联网设备1通过设置统一的操作系统及通信协议,实现了对物联网系统中物联网终端2或物联网终端3的集中控制和统一管理,各物联网终端2或物联网终端3只需要执行下发的运行指令,物联网终端2或物联网终端3之间可以互联互通,大大降低了物联网终端2或物联网终端3的制造成本,以及物联网系统的建设成本和运行成本。
同时,智能物联网设备1可直接采集与之连接的空调、风扇等物联网终端所获取的环境数据,可以对该环境数据进行统一采集,降低数据采集成本,提高了采集数据的关联性、完整性,采集的速度更快、更可靠,更适合对所采集的数据进行大数据分析和处理,便于对物联网终端2或物联网终端3实现更加智能化的控制和大数据的应用。
图4示出了本发明实施例提供的物联网系统的应用场景,详述如下:
当用户进入房间时,可通过用户佩戴的智能手环或者指纹识别终端设备,识别用户身份。物联网终端将数据传入到系统服务器12,系统服务器12识别用户后,进行智能语音问候,并自动切换到相应的用户模式。
当系统服务器12检测窗户处的光照传感器时,自主判断是否需要开启照明灯。若开启照明灯,系统服务器12可按照用户的习惯开启不同颜色及亮度的氛围灯。
当系统服务器12获取到温湿度传感器发送来的数据,系统会通过自主分析该数据来判断室内温湿度,根据判断结果控制室内空调的开启或关闭,并可调节该空调的温度来使室内的温湿度符合用户的舒适度标准。
用户也可通过语音指令和系统服务器12的人工智能进行交互,以改变执行设备31的运行状态,如:调节灯光颜色、亮度或空调温度等。
本发明实施例提供的智能物联网设备设置有系统服务器,系统服务器通过通信接口与多个物联网终端中的执行设备或者采集设备进行连接,实现了物联网数据的集中采集,物联网终端的集中控制,且物联网系统可独立智能运行,从根本上解决了物联网系统难以普及和发展的瓶颈。
具体起到如下效果:
(1)数据集中采集:采用了统一的操作系统及通信协议,降低数据采集成本,提高了采集数据的关联性、完整性,采集的速度更快、更可靠,更适合对所采集的数据进行大数据分析和处理,便于对物联网终端实现更加智能化的控制和大数据的应用。
(2)终端集中控制:采用了统一的操作系统及通信协议,实现了对物联网系统中各个终端设备的集中控制和统一管理,各物联网终端只需要执行下发的运行指令,物联网终端之间可以直接互联互通,大大降低了物联网终端的制造成本,以及物联网系统的建设成本和运行成本。
(3)系统独立智能运行:物联网系统不依赖于外部网络、人为等外部因素,可自主独立运行,并实现对所采集的数据进行自主智能分析、处理和执行。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (7)

  1. 一种智能物联网设备,其特征在于,所述设备包括:
    多个通信接口,每个通信接口连接一个物联网终端中的执行设备,或者一个物联网终端中的采集设备;以及
    系统服务器,用于通过所述通信接口接收所述采集设备采集的数据,对所述数据进行分析和处理,并通过所述通信接口向所述执行设备发送运行控制指令,可集中控制多个物联网终端的运行。
  2. 如权利要求1所述的智能物联网设备,其特征在于,所述系统服务器包括:
    与所述通信接口连接的主控板;
    设置于所述主控板上的中央处理器;以及
    与所述主控板连接的电源接口。
  3. 如权利要求2所述的智能物联网设备,其特征在于,所述系统服务器还包括:
    与所述主控板连接的存储接口。
  4. 如权利要求2所述的智能物联网设备,其特征在于,所述系统服务器还包括:
    与所述主控板连接的网络接口。
  5. 如权利要求2所述的智能物联网设备,其特征在于,所述系统服务器还包括:
    与所述主控板连接的备用电源接口。
  6. 如权利要求1所述的智能物联网设备,其特征在于,所述通信接口通过无线或者线缆与所述执行设备、采集设备连接。
  7. 如权利要求6所述的智能物联网设备,其特征在于,所述系统服务器通过所述线缆向所述执行设备、采集设备集中供电。
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