Portable communication device

Through portable communication devices, access network, Internet of Things, transmission and core network equipment are integrated, and 5G communication and multi-protocol access is supported, which solves the problem that the existing network communication system cannot meet the outdoor and mobile industrial environments, and realizes flexible communication service processing in any location.

CN223093771UActive Publication Date: 2025-07-11NEW SINGULARITY INT TECHN DEV
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Patent Information

Application Number
CN202422362460.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-11
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing network communication systems mainly rely on the Internet backbone network and cannot meet the application needs of outdoor or mobile industrial environments. The construction and maintenance costs of the dedicated network communication systems are high.

Method used

It provides a portable communication device, including a box cover and a box, with access network equipment, display, Internet of Things equipment, transmission equipment and host. The host integrates core network equipment and data processing equipment to realize information collection, transmission, processing and control functions, supports 5G communication and multi-protocol access, has power supply, DIDO, RJ45 and HDMI interfaces, and is suitable for a variety of detection equipment and execution equipment.

Benefits of technology

It realizes the convenience and flexibility of conducting communication services in any location, and improves the convenience and scalability of communication services processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic equipment, and discloses a portable communication device which comprises a box cover and a box body, the box cover is rotatably connected to one end of the top of the box body, and access network equipment and a display are arranged in the box cover; internet of Things equipment, transmission equipment and a host are arranged in the box body, and core network equipment and data processing equipment are integrated in the host; the Internet of Things equipment is connected with the transmission equipment, and the Internet of Things equipment is used for collecting detection information and transmitting the detection information to the transmission equipment; the transmission equipment is respectively connected with the access network equipment and the core network equipment and is used for transmitting detection information to the core network equipment through the access network equipment; the core network equipment is connected with the data processing equipment and is used for transmitting detection information to the data processing equipment; and the data processing equipment is used for processing the detection information and controlling the display to display the detection information and / or a processing result of the detection information. According to the utility model, the convenience of business processing can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic devices, and particularly relates to a portable communication device. Background Art

[0002] With the continuous development of communication technologies and the like, in order to meet the needs of internal organizational management, operation process monitoring, etc., some enterprises and units usually build dedicated network communication systems, which can provide customized network services for enterprises and units and ensure data security, and thus are widely used.

[0003] However, the existing network communication systems are mainly established based on the backbone network lines provided by the Internet, resulting in that the private network communication systems need to rely on specific Internet environments. For example, some Internet laboratories can only be established in laboratory environments and cannot meet the application requirements of outdoor or mobile industrial environments, and the construction and maintenance costs of the private network communication systems also increase accordingly. Summary of the Utility Model

[0004] In view of the above problems, the embodiments of the present utility model provide a portable communication device for solving the problem of inconvenient operation in different regions existing in the prior art.

[0005] According to one aspect of the embodiments of the present utility model, there is provided a portable communication device, including a box cover and a box body. The box cover is rotatably connected to one end of the top of the box body, and an access network device and a display are arranged in the box cover; an Internet of Things device, a transmission device and a host are arranged in the box body, and a core network device and a data processing device are integrated in the host; the Internet of Things device is connected to the transmission device, and the Internet of Things device is used for collecting detection information and transmitting the detection information to the transmission device; the transmission device is respectively connected to the access network device and the core network device, and is used for transmitting the detection information to the core network device through the access network device; the core network device is connected to the data processing device, and is used for transmitting the detection information to the data processing device; the data processing device is used for processing the detection information and controlling the display to display the detection information and / or the processing result of the detection information.

[0006] In some embodiments, the Internet of Things device includes a connection device, a first detection device and a second detection device. The first detection device is connected to the transmission device through the connection device. The first detection device is used for collecting the detection information. The connection device is used for transmitting the detection information to the transmission device. The second detection device is used for collecting the detection information, and the second detection device is connected to the transmission device.

[0007] In some embodiments, the Internet of Things device further includes a control device. The control device and the transmission device are connected through the connection device. The connection device is further configured to determine a target control process satisfied by the detection information according to a preset processing rule, and control the first detection device or the control device to execute the target control process according to the target control process.

[0008] In some embodiments, the connection device includes a gateway device and / or a PLC device. The first detection device includes a sensor. The gateway device is connected to the sensor. The PLC device is connected to the control device. The control device includes any one or more of a signal lamp, a fan, and a switch. The sensor includes any one or more of a temperature sensor, a gas sensor, a vibration sensor, a light sensor, and a distance sensor. The second detection device includes a camera and / or a network terminal device.

[0009] In some embodiments, the transmission device includes a 5G CPE, the access network device includes a 5G base station device, and the core network device includes a 5G core network device.

[0010] In some embodiments, the 5G core network device includes at least one 5G core network element. The 5G core network element includes any one or more of a UPF, an AMF, an SMF, an NSSF, an NRF, a UDM, a UDR, an AUSF, a NEF, and a PCF.

[0011] In some embodiments, the transmission device has at least one WIFI interface and at least one wired interface for accessing new Internet of Things devices.

[0012] In some embodiments, the portable communication device has any one or more of a power interface, a DIDO control interface, an RJ45 interface, and an HDMI interface. Among them, the power interface is used to supply power to the portable communication device. The DIDO control interface is used to access a switch device. The RJ45 interface is used to expand the connection to a network device. The HDMI interface is used to access an external display.

[0013] In some embodiments, the portable communication device includes a connecting component for connecting the lid and the box body and supporting the lid when the lid is opened.

[0014] In some embodiments, the Internet of Things device includes an execution device, and the data processing device is further configured to generate feedback information corresponding to the detection information based on device operation rules, where the feedback information is used to instruct the execution device to perform a control action; the core network device is further configured to receive the feedback information transmitted by the data processing device and transmit the feedback information to the access network device; the access network device is further configured to transmit the feedback information to the transmission device and transmit the feedback information to the execution device through the transmission device; the execution device is configured to perform the control action according to the feedback information when receiving the feedback information.

[0015] According to the portable communication device of the embodiments of the present invention, it can facilitate users to carry out services at any location and improve the convenience and flexibility of communication service processing.

[0016] The above description is only an overview of the technical solutions of the embodiments of the present invention. In order to be able to understand the technical means of the embodiments of the present invention more clearly, it can be implemented according to the content of the specification. And in order to make the above and other purposes, features and advantages of the embodiments of the present invention more obvious and understandable, the specific embodiments of the present invention are hereby exemplified below. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The drawings are only used to illustrate the embodiments and are not considered as a limitation of the present invention. Moreover, throughout the drawings, the same reference numerals are used to represent the same components. In the drawings:

[0018] Figure 1 shows a schematic structural diagram of a portable communication device provided by an embodiment of the present invention;

[0019] Figure 2 shows a plan view of a portable communication device provided by an embodiment of the present invention;

[0020] Figure 3 shows an architecture diagram of a portable communication device provided by an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The exemplary embodiments of the present invention will be described in more detail below with reference to the drawings. Although the exemplary embodiments of the present invention are shown in the drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein.

[0022] The embodiments of the present invention provide a portable communication device. By using this portable communication device, users can conveniently carry out communication services at any location, such as for Internet training teaching, industrial scenario simulation and applications, etc., which can improve the convenience and flexibility of communication service implementation.

[0023] Figure 1 shows a schematic structural diagram of a portable communication device provided by an embodiment of the present invention. As Figure 1 shown, the portable communication device 100 may include a lid 10 and a box body 20. The lid 10 is rotatably connected to one end of the top of the box body 20. The lid 10 can be rotated to cover the box body 20, and the two form a convenient-to-move whole.

[0024] In some embodiments, the portable communication device 100 may include a connecting component, which can be used to connect the lid 10 and the box body 20 and support the lid 10 when the lid 10 is opened.

[0025] As Figure 1 shown, an access network device 110 and a display 120 are provided inside the lid 10, and an Internet of Things device 210, a transmission device 220, and a host 230 are provided inside the box body 20. A core network device 231 and a data processing device 232 (the core network device 231 and the data processing device 232 are internal structures and are not shown in the figure) are integrated in the host 230.

[0026] The Internet of Things device 210 is connected to the transmission device 220. The Internet of Things device 210 is used to collect detection information and transmit the detection information to the transmission device 220.

[0027] The transmission device 220 is respectively connected to the access network device 110 and the core network device 231, and is used to transmit the detection information to the core network device 231 through the access network device 110. The core network device 231 is connected to the data processing device 232 and is used to transmit the detection information to the data processing device 232.

[0028] The data processing device 232 is used to process the detection information and control the display 120 to display the detection information and / or the processing result of the detection information.

[0029] Among them, the Internet of Things device 210 is a hardware device that can realize functions such as data collection, transmission, processing, and control, so as to realize intelligent perception, identification, and management. The transmission device 220 is a device that can receive mobile signals and forward them in a wireless signal or wired manner. It can convert the received mobile network signal into a WiFi (Wireless Fidelity) or Ethernet signal for multiple terminal devices to use simultaneously. Exemplarily, in the portable communication device 100, the transmission device 220 may be a 5G CPE (Customer Premises Equipment). As an industrial router compatible with multi-operator 5G networks, the 5G CPE can have a gigabit Ethernet port and a WiFi wireless interface, and can be used as a data network for multi-protocol access to the Internet of Things to transparently transmit the uplink data and downlink data of the Internet of Things.

[0030] The access network device 110 is a key infrastructure in the portable communication device 100, which is used for sending and receiving wireless signals. Exemplarily, in the portable communication device 100, the access network device 110 can be a 5G base station device. Specifically, it can be an indoor integrated small base station chip that supports the Sub 6G band, Ethernet, and SFP (Small Form-factor Pluggable) optical port backhaul.

[0031] The core network device 231 integrated in the host 230 is a network central device, which is responsible for managing and controlling user connections, data transmission, network services, etc. Taking the 5G core network device as an example, the core network device 231 can be a collection of various hardware and software combinations that make up the 5G core network.

[0032] The data processing device 231 integrated in the host 230 can be a hardware device with data processing capabilities, or a data processing platform established based on hardware devices. Exemplarily, the data processing device 231 can include an Internet of Things data platform, a network management platform, an edge computing management platform, a video recognition platform, etc.

[0033] In some embodiments, the Internet of Things device can include a connection device, a first detection device, and a second detection device. The first detection device is connected to the transmission device through the connection device. The first detection device is used to collect detection information, and the connection device is used to transmit the detection information to the transmission device. The second detection device can also be used to collect detection information, and the second detection device is connected to the transmission device.

[0034] The first detection device can be connected to the connection device in a wired manner. When the portable communication device is placed in the detection area, the first detection device can collect the detection information of the detection area and transmit the detection information to the connection device. The connection device and the transmission device can be connected in a wired or wireless manner, and the connection device can transmit the detection information to the transmission device. The second detection device can also be connected to the transmission device in a wired or wireless manner and can directly transmit the collected detection information to the transmission device.

[0035] By accessing the first detection device and the second detection device, the scalability of the portable communication device can be improved, enabling the data processing device to access the data transmitted by various detection devices.

[0036] In some embodiments, the Internet of Things device can further include a control device, and the control device and the transmission device can be connected through the connection device. Among them, the control device refers to a device that can perform certain actions or operations, such as a signal lamp, a fan, etc.

[0037] In order to improve the response speed of the device, the connecting device can also be used to determine the target control process satisfied by the detection information according to preset processing rules, and control the first detection device or the control device to execute the target control process according to the target control process.

[0038] Among them, the preset processing rules can be customized by the operator according to the type of the first detection device and actual needs. For example, the first detection device can be a temperature sensor, and the preset processing rules can include a control process when the temperature detected by the temperature sensor meets certain numerical conditions. For example, when the temperature is greater than a certain value, the control process can be to increase the detection frequency or set the control device, such as turning on the fan switch.

[0039] By processing the detection information through the connection device to realize the control of the first detection device or the control device, the processing speed of the detection information can be improved, thereby improving the response speed and reducing the dependence on the data processing device.

[0040] In some embodiments, the connection device may include a gateway device and a PLC (Programmable Logic Controller) device, the first detection device may include a sensor, the gateway device is connected to the sensor, and the PLC device is connected to the control device.

[0041] Among them, PLC equipment is a digital computing and operating electronic device used for industrial control. In order to access a variety of devices, PLC equipment can support multiple protocols and functions, such as S7 Ethernet protocol (a communication protocol), ModBus RTU / TCP protocol (an industrial communication protocol), and support 485 interface (a serial communication interface standard), and support multiple digital input and output.

[0042] Exemplarily, the control device may include any one or more of a signal light, a fan, and a switch, the sensor may include any one or more of a temperature sensor, a gas sensor, a vibration sensor, a light sensor, and a distance sensor, and the second detection device may include a camera and a network terminal device.

[0043] Among them, the fan can be a small exhaust fan that can support DC24V power supply, and for ease of installation, a smaller fan can be selected, such as less than 10cm and a speed greater than 3000RPM; the signal light can also support DC24V power supply, as well as red, green and yellow three colors always on and alarm, etc.; the vibration sensor can support the detection of speed, displacement and amplitude in three axes. According to actual needs, the sensor can also include an all-in-one sensor that can support the detection of various environmental information such as gas, temperature and humidity, and light. Network terminal devices can include terminal devices that support IP interfaces and devices such as smart phones.

[0044] As described above, the transmission device may include a 5G CPE, the access network device may include a 5G base station device, and the core network device may include a 5G core network device. Among them, the 5G base station device may be an indoor integrated small base station chip, and the 5G core network device refers to a miniaturized 5G core network system.

[0045] In some embodiments, the 5G core network device includes at least one 5G core network element. The 5G core network element includes any one or more of UPF (User Plane Function), AMF (Access and Mobility Management Function), SMF (Session Management Function), NSSF (Network Slice Selection Function), NRF (Network Repository Function), UDM (Unified Data Management), UDR (Unified Data Repository), AUSF (Authentication Server Function), NEF (Network Exposure Function), and PCF (Policy Control Function).

[0046] Among them, the 5G core network element refers to a network device or software module that undertakes specific functions in the 5G communication core network. Through their mutual cooperation, they can achieve core functions such as user access, authentication, authorization, mobility management, session management, and data transmission. According to the type, the UPF is a user plane network element and can be used for user access control and management. The AMF, SMF, NSSF, NRF, UDM, UDR, AUSF, NEF, and PCF are control plane network elements and can be used for access management and session management, etc.

[0047] In some embodiments, the transmission device has at least one WIFI (Wireless Fidelity) interface and at least one wired interface for accessing new Internet of Things devices. For example, when there is a device that needs to access the wireless network, it can access the network card through the WIFI interface.

[0048] In some embodiments, the portable communication device has any one or more of a power interface, a DIDO (Digital Input Digital Output) control interface, an RJ45 interface, and an HDMI interface (High Definition Multimedia Interface).

[0049] Among them, the power interface is used to supply power to the portable communication device. For example, the power interface can support two-way power outputs of 12V and 24V and has the capabilities of overload, overvoltage, and short-circuit protection; the DIDO control interface is used to access switch devices, the RJ45 interface is used to expand the connection to network devices, and the HDMI interface is used to access external displays.

[0050] It should be noted that according to actual requirements, the number of the above interfaces can be one or multiple, and this embodiment does not make specific limitations on this.

[0051] To facilitate the description of the structure of the portable communication device in this embodiment, Figure 2 a schematic plan view of a portable communication device provided in this embodiment is shown. As Figure 2 shown, the portable communication device 100 is a cuboid structure, and an access network device 110 and a display 120 are provided on the lid 10. The access network device 110 can be a 5G base station chip.

[0052] The power interface and the HDMI interface can be provided on the side panel on the front side of the portable communication device 100 to facilitate access to power and external displays.

[0053] The box body 20 is provided with a device area for setting Internet of Things devices 210, a transmission device 220, and a host 230. The Internet of Things devices 210 can include Figure 2 the cameras, PLC devices, signal lights, fans, and sensors shown in, and at the same time, to enhance expandability, multiple interfaces can be set, such as control interface 1, control interface 2, RS485 interface 1, and RS485 interface 2.

[0054] The transmission device 220 and the host 230 are located on the front side of the box body 20, and the transmission device 220 is connected to the host 230. The host 230 integrates a core network device 231 and a data processing device 232. The transmission device 220 can transmit detection information to the core network device 231 in the host 230, and the core network device 231 transmits the detection information to the data processing device 232 for processing. In addition, the transmission device 220 can be provided with multiple network ports to access other network devices.

[0055] To adapt to other devices, multiple expansion interfaces can be provided on the box body 20, such asFigure 2 The RS485 interface, RJ45 interface, and power interfaces shown, such as 12V power supply interface, 24V power supply interface, etc.

[0056] In some embodiments, the Internet of Things device may include an execution device. The data processing device may further generate feedback information corresponding to the detection information based on the device operation rules. The core network device may also receive the feedback information transmitted by the data processing device and transmit the feedback information to the access network device. The access network device may further transmit the feedback information to the transmission device and transmit the feedback information to the execution device through the transmission device. The execution device may execute a control action according to the feedback information when receiving the feedback information.

[0057] Among them, the feedback information may be used to instruct the execution device to execute a control action.

[0058] Exemplarily, the execution device may be a device in a portable communication device for converting a control signal into a physical movement or other operations, and may be a terminal device, a valve, a switch, a signal lamp, a speaker, etc.

[0059] The device operation rules may be pre-customized by an operator according to the service scenario and operation requirements, and may include the operation rules of each execution device in different situations. Taking the signal lamp as an example, the opening condition and closing condition of the signal lamp may be set. The opening condition may be that the light intensity is greater than the light threshold, and the closing condition may be that the light intensity is less than or equal to the light threshold.

[0060] It should be noted that the above device operation rules are only for exemplary illustration. According to the service content and the type of execution device, the device operation rules may include multiple different rules. For example, when there are multiple execution devices, the device operation rules may include the operation rules of each execution device, and each execution device may be configured with multiple operation rules.

[0061] When the data processing device receives the detection information, it may analyze the detection information and generate feedback information corresponding to the detection information according to the device operation rules. For example, the detection information may be the light intensity collected by a light sensor. At this time, according to the device operation rules, the data processing device may determine whether the current light intensity meets the opening condition or closing condition of the signal lamp. If it meets, it generates feedback information corresponding to the opening condition or closing condition.

[0062] Actually, the portable communication device provided in this embodiment can complete uplink and downlink data transmission. Specifically, transmitting the detection information collected by the Internet of Things device to the data processing device can be regarded as the uplink direction, and transmitting the feedback information from the data processing device to the execution device can be regarded as the downlink direction.

[0063] Therefore, after generating the feedback information, in the downlink transmission direction, the data processing device can transmit the feedback information to the core network device, so that the core network device can continue to transmit the feedback information to the access network device, and then the access network device sends the feedback information to the transmission device, and the transmission device transmits the feedback information to the execution device in the Internet of Things device, and the execution device executes the control action indicated by the feedback information, such as turning on or off a signal lamp.

[0064] By using the above devices to control the execution device, the automation degree of service processing can be improved.

[0065] To illustrate the connection relationships among the components in the portable communication device, Figure 3 FIG. shows a schematic architecture diagram of a portable communication device provided in this embodiment. As Figure 3 shown, the portable communication device 100 may include an access network device 110, a display 120, an Internet of Things device 210, a transmission device 220, and a host 230. A core network device 231 and a data processing device 232 are integrated in the host 230.

[0066] Among them, the Internet of Things device 210 and the transmission device 220 are located in the edge layer. The edge layer is close to the user side and can be used to converge the user network.

[0067] Exemplarily, the Internet of Things device 210 may include a connection device 211, a first detection device 212, a control device 213, and a second detection device 214. The connection device 211 may be the gateway device and the PLC device shown in the figure. As shown in the figure, the first detection device 212 may be sensors such as a gas sensor and a vibration sensor, and the control device 213 may be controllers such as a signal lamp and a fan. Among them, the gateway device can be connected to the sensors, and the PLC device can be connected to the controllers. As shown in the figure, the gateway device is respectively connected to the gas sensor and the vibration sensor, and the PLC device is respectively connected to the signal lamp and the fan.

[0068] The second detection device 214 may be a camera and a network terminal device, etc. Among them, the network terminal device may include devices supporting an IP interface. The second detection device 214 can be directly connected to the transmission device 120.

[0069] The Internet of Things device 210 is connected to the transmission device 220. Exemplarily, the first detection device 212 can be connected to the transmission device 220 through the connection device 211, and the second detection device 214, such as a camera and a network terminal device, are respectively directly connected to the transmission device 220.

[0070] In this embodiment, both the first detection device 212 and the second detection device 214 can collect detection information. The detection information collected by the first detection device 212 can be transmitted to the transmission device 220 through the connection device 211 connected thereto, and the detection information collected by the second detection device 114 can be directly transmitted to the transmission device 220.

[0071] The access network device 110 and the core network device 231 are located in the network layer. Among them, the transmission device 220 is connected to the access network device 110, and the access network device 110 is connected to the core network device 231. When the transmission device 220 receives the detection information, it can transmit the detection information to the access network device 110, and the access network device 110 continues to transmit the detection information to the core network device 231.

[0072] In some embodiments, the core network device 231 may include multiple network elements, which can be classified into user plane network elements and control plane network elements according to types. Among them, the user plane network elements may include UPF, and the control plane network elements may include AMF, SMF, NSSF, NRF, UDM, UDR, AUSF, NEF, PCF, etc.

[0073] When the core network device 231 receives the detection information, it can transmit the detection information to the data processing device 232. The data processing device 232 is the basic device of the platform layer and the application layer. The platform layer and the application layer built on the basis of the data processing device 232 can provide perfect service processing capabilities.

[0074] In some embodiments, multiple data platforms and processing modules may be deployed in the platform layer. For example, it may include an Internet of Things data platform, a network management platform, an edge computing management platform, a video recognition platform, etc.

[0075] Among them, the Internet of Things data platform can process and analyze the detection information collected by the Internet of Things device 210 to implement functions such as life cycle management, object model management, operation and maintenance monitoring, screen monitoring, scenario linkage, and service monitoring; the network management platform can monitor and manage the network operation situation, such as listening to the operation situation of the network layer, implementing screen monitoring, operation and maintenance monitoring, alarm management, slice and resource management, and performance collection of the device operation situation in the network layer; the edge computing management platform can be used to control the edge layer, such as the monitoring and management of the connection device 211 and the second detection device 214, to realize the monitoring, configuration, and edge index collection of edge services; when the second detection device 214, such as a camera, is accessed, the video recognition platform can perform video parsing, recognition, and file processing on the video data collected by the camera.

[0076] In some embodiments, the data processing device 232 can process the detection information, such as classifying the detection information and storing or visually displaying it.

[0077] According to the portable communication device provided by the embodiments of the present invention, it is convenient for users to conduct business at any location, improving the flexibility and scalability of communication service processing.

[0078] In the specification provided herein, a large number of specific details are set forth. It will be understood, however, that embodiments of the present invention may be practiced without these specific details. Similarly, in order to streamline the present invention and assist in understanding one or more of the various inventive aspects, in the above description of the exemplary embodiments of the present invention, the various features of the embodiments of the present invention are sometimes grouped together in a single embodiment, figure, or description thereof. Among them, the claims following the specific implementation manners are hereby expressly incorporated into the specific implementation manners, and each claim itself serves as a separate embodiment of the present invention.

[0079] Those skilled in the art will appreciate that the modules in the devices in the embodiments can be adaptively changed and disposed in one or more devices different from the embodiments. The modules or units or components in the embodiments can be combined into a module or unit or component, and in addition, they can be divided into multiple sub-modules or sub-units or sub-components. Except that at least some of such features and / or processes or units are mutually exclusive.

[0080] It should be noted that the above embodiments illustrate the present invention rather than limit the present invention, and those skilled in the art can design alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses shall not be construed as limiting the claim. The word "comprising" does not exclude the presence of elements or steps not listed in the claim. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The present invention can be implemented by means of hardware including several different elements and by means of a suitably programmed computer. In the unit claims listing several devices, several of these devices may be embodied by the same item of hardware. The use of the words first, second, and third, etc. does not denote any order. These words can be interpreted as names. The steps in the above embodiments, unless otherwise specifically stated, should not be construed as limiting the order of execution.

Claims

1. A portable communication device, comprising a lid and a box body, wherein the lid is rotatably connected to one end of the top of the box body, and is characterized in that: An access network device and a display are provided inside the lid; An Internet of Things device, a transmission device and a host are provided inside the box body, and a core network device and a data processing device are integrated in the host; The Internet of Things device is connected to the transmission device, and the Internet of Things device is used for collecting detection information and transmitting the detection information to the transmission device; The transmission device is respectively connected to the access network device and the core network device, and is used for transmitting the detection information to the core network device through the access network device; The core network device is connected to the data processing device, and is used for transmitting the detection information to the data processing device; The data processing device is used for processing the detection information and controlling the display to display the detection information and / or the processing result of the detection information.

2. The device according to claim 1, wherein The Internet of Things device includes a connection device, a first detection device and a second detection device. The first detection device is connected to the transmission device through the connection device. The first detection device is used for collecting the detection information. The connection device is used for transmitting the detection information to the transmission device. The second detection device is used for collecting the detection information, and the second detection device is connected to the transmission device.

3. The device according to claim 2, wherein The Internet of Things device further includes a control device. The control device and the transmission device are connected through the connection device. The connection device is further used for determining a target control process satisfied by the detection information according to a preset processing rule, and controlling the first detection device or the control device to execute the target control process according to the target control process.

4. The device according to claim 3, characterized in that, The connection device includes a gateway device and / or a PLC device. The first detection device includes a sensor. The gateway device is connected to the sensor. The PLC device is connected to the control device. The control device includes any one or more of a signal lamp, a fan and a switch. The sensor includes any one or more of a temperature sensor, a gas sensor, a vibration sensor, a light sensor and a distance sensor. The second detection device includes a camera and / or a network terminal device.

5. The device according to any one of claims 1-4, characterized in that, The transmission device includes a 5G CPE, the access network device includes a 5G base station device, and the core network device includes a 5G core network device.

6. The device according to claim 5, characterized in that The 5G core network device includes at least one 5G core network element, and the 5G core network element includes any one or more of UPF, AMF, SMF, NSSF, NRF, UDM, UDR, AUSF, NEF, PCF.

7. The device according to any one of claims 1 to 4, characterized in that The transmission device has at least one WIFI interface and at least one wired interface for accessing new Internet of Things devices.

8. The device according to any one of claims 1-4, characterized in that The portable communication device has any one or more of a power interface, a DIDO control interface, an RJ45 interface, and an HDMI interface. Among them, the power interface is used to supply power to the portable communication device, the DIDO control interface is used to access a switching device, the RJ45 interface is used to expand the connection to a network device, and the HDMI interface is used to access an external display.

9. The device according to any one of claims 1-4, characterized in that The portable communication device includes a connecting component, which is used to connect the lid and the box body and support the lid when the lid is opened.

10. The device according to any one of claims 1-4, characterized in that, The Internet of Things device includes an execution device. The data processing device is further configured to generate feedback information corresponding to the detection information based on device operation rules, and the feedback information is used to instruct the execution device to perform a control action. The core network device is further configured to receive the feedback information transmitted by the data processing device and transmit the feedback information to the access network device. The access network device is further configured to transmit the feedback information to the transmission device and transmit the feedback information to the execution device through the transmission device. The execution device is configured to perform the control action according to the feedback information when receiving the feedback information.