An automatic power distribution and interruption intelligent control system based on human body sensing

The intelligent control system based on human body sensing solves the problem that automatic power distribution and disconnection systems cannot identify users and adjust the environment in real time, thus realizing personalized power management and improving user experience.

CN119781305BActive Publication Date: 2025-11-25ZHONGKE YUNCHUANG (ANHUI) INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411994517.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-25
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

Existing automatic power distribution and disconnection systems cannot effectively identify users, track user locations in real time, or adjust local temperature, humidity, and lighting based on user locations, resulting in energy waste and a poor user experience.

Method used

The system employs a human body sensing-based intelligent control system, which includes an identity recognition subsystem, an intelligent tracking subsystem, a human body status acquisition subsystem, a human body presence sensing subsystem, a building electronic system, and an intelligent learning subsystem. Through identity recognition, real-time tracking of user location, and monitoring of human body status, it can adjust local temperature and humidity and lighting, and manage power saving and power outages.

Benefits of technology

It accurately identifies users, tracks their location in real time, and adjusts local temperature, humidity, and lighting based on their location, improving user experience, reducing energy waste, and providing a personalized and comfortable environment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides an automatic power-off intelligent control system based on human body sensing, and belongs to the field of smart home, and solves the problems of poor recognition effect, inability to track user position in real time, monitoring of human body state, and suitability adjustment of the existing power-off intelligent control system. The system comprises an intelligent device subsystem, an identity recognition subsystem, an intelligent tracking subsystem, a human body state acquisition subsystem, a human body presence sensing subsystem, a house power-off subsystem, an intelligent learning subsystem, and a management system platform. The intelligent device subsystem comprises an intelligent gateway, an intelligent voice sound box housekeeper, intelligent lamps, intelligent curtains, an intelligent air conditioner, an intelligent humidifier, an intelligent adjusting curtain wall, and an intelligent sofa. The system further comprises a software APP of a terminal device, and the intelligent air conditioner and the intelligent humidifier are connected to the intelligent adjusting curtain wall and the intelligent sofa through pipelines. The application can accurately identify user identity, track user position in real time, monitor human body state, and adjust local suitable temperature and humidity and light.
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Description

Technical Field

[0001] This invention belongs to the field of smart home technology and relates to an intelligent control system, particularly an automatic power distribution and disconnection intelligent control system based on human body sensing. Background Technology

[0002] With social development, electrical equipment has become increasingly common, bringing people a comfortable living and working environment. Electrical equipment is widely installed in workplaces such as conference rooms, large event venues, and hotel multi-functional halls. Because people often leave hastily after meetings or events, they may forget to turn off the equipment, resulting in wasted electricity.

[0003] How to achieve intelligent management and automatic power cut-off when personnel leave a specific area, thereby effectively realizing energy conservation, emission reduction and improving safety, is an urgent problem to be solved.

[0004] The existing automatic power distribution and disconnection systems have limited monitoring methods and functions. Although they can achieve automatic shutdown of electrical equipment after it has been turned on to a certain extent;

[0005] However, it cannot effectively and reasonably implement automatic power distribution and cutoff, nor can it match users' more intelligent use of electrical appliances, so as to provide users with a more convenient, comfortable and personalized experience while saving energy, and thus better serve users.

[0006] Meanwhile, the lighting, temperature, and humidity cannot be adjusted in real time according to the user's location to ensure that the local temperature, local humidity, and local lighting around the user are suitable.

[0007] Therefore, we propose an intelligent control system for automatic power distribution and disconnection based on human body sensing. Summary of the Invention

[0008] The purpose of this invention is to address the aforementioned problems in existing technologies by proposing an automatic power distribution and disconnection intelligent control system based on human body sensing. The technical problem to be solved by this invention is: how to accurately identify the user's identity, track the user's location in real time, monitor the human body's state, and adjust the local temperature, humidity, and lighting accordingly.

[0009] The objective of this invention can be achieved through the following technical solutions:

[0010] An intelligent control system for automatic power distribution and disconnection based on human body sensing includes an intelligent device subsystem, an identity recognition subsystem, an intelligent tracking subsystem, a human body status acquisition subsystem, a human body presence sensing subsystem, a building power disconnection system, an intelligent learning subsystem, and a management system platform. The intelligent device subsystem includes an intelligent gateway, an intelligent voice speaker, intelligent lights, intelligent curtains, intelligent air conditioners, intelligent humidifiers, intelligent adjustable curtain walls, and an intelligent sofa. It also includes a software APP electrically connected to the terminal devices of the intelligent gateway. The intelligent gateway is electrically connected to the identity recognition subsystem, intelligent tracking subsystem, human body status acquisition subsystem, human body presence sensing subsystem, building power disconnection system, intelligent learning subsystem, management system platform, intelligent voice speaker, intelligent lights, intelligent curtains, intelligent air conditioners, intelligent humidifiers, intelligent adjustable curtain walls, and intelligent sofa. The intelligent air conditioner and intelligent humidifier are connected to the intelligent adjustable curtain wall and intelligent sofa respectively via pipes.

[0011] The working principle of this invention is as follows: The identity recognition subsystem quickly and accurately identifies the user's identity; the intelligent tracking subsystem intelligently tracks the user's location; the human body status acquisition subsystem monitors the human body's shape, heart rate, respiratory rate, body temperature, and posture; the human body presence sensing subsystem detects whether there is a person in the area and whether that person is active or stationary; the room's electronic system performs power saving, power outage, and voice interaction; the intelligent learning subsystem provides real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining; and the management system platform is used for remote monitoring and management, optimizing resource allocation, managing backend data, recording the customer's personalized habits, and entering them into the user database. When the user re-enters the room, the room automatically adjusts to the user's personalized settings.

[0012] The smart gateway uploads and controls the status of smart devices in real time. The smart voice speaker has a natural language interaction system that supports wake-up-free operation, streaming interaction, and multi-turn dialogue, achieving far-field long-distance response. Smart lights provide illumination through smart switches. Smart curtain motor track sets and curtain modules can automatically open and close curtains according to control. Smart air conditioners regulate temperature, smart humidifiers regulate humidity, and smart adjustable curtain walls can adjust local lighting, temperature, and humidity in real time according to the user's location. Smart sofas can adjust local temperature and humidity and can also monitor the user's heart rate, breathing, and posture. The software APP displays data in real time and controls the start and stop of various electrical devices, showing the user's current physical condition and correcting the user's current incorrect posture.

[0013] The identity recognition subsystem includes a password recognition module, a biometric recognition module, a magnetic card recognition module, a manual verification module, an ID card recognition module, and an infrared motion sensing module. The password recognition module verifies identity by comparing the user's input password with a preset password. The biometric recognition module uses inherent individual characteristics for identification, including but not limited to face, fingerprint, iris, and voiceprint. The magnetic card recognition module uses, but is not limited to, magnetic stripe bank cards and social security cards as media to read user information and compare it with information stored in the recording medium to verify identity. The manual verification module transforms the verification process into a manual review to confirm identity. The ID card recognition module quickly and accurately identifies the user's identity by reading and parsing the information on the ID card, which includes but is not limited to text, numbers, photos, and fingerprints.

[0014] The intelligent tracking subsystem includes an infrared motion sensing module, an inertial sensing module, an optical sensing module, and a UWB positioning module; the infrared motion sensing module is wired and powered by DC. The alarm is displayed as a red LED for 3 seconds, operating at 10.5-16V. The alarm output is normally open at 28VDC, 0.15A. The communication method is the ANNP IoT protocol. The inertial sensing module measures the three-dimensional motion state of an object, including acceleration, rotation speed, and direction. It mainly consists of sensors such as accelerometers, gyroscopes, and magnetometers. The optical sensing module includes an infrared detection sensor and a U-shaped photoelectric sensor. The infrared detection sensor detects the presence of obstacles by emitting infrared light and detecting the reflected signal. The U-shaped photoelectric sensor detects the passage or presence of an object by the relative positional relationship between the infrared emitter and receiver. The UWB positioning module determines the distance between the target object and the receiver by measuring the time of flight of the signal. When the UWB signal is sent from the base station to the target object and reflected back to the base station, the base station measures the time delay of the signal. The human body state acquisition subsystem includes a 3D scanning sensor, a heart rate sensor, a respiratory rate sensor, a body temperature infrared sensor, and a posture infrared sensor.

[0015] Using the above structure, a 3D scanning sensor scans and monitors the user's body shape, a heart rate sensor monitors the user's heart rate, a respiratory rate sensor monitors the user's respiratory rate, a body temperature infrared sensor monitors the user's body temperature, and a posture infrared sensor monitors the user's posture.

[0016] The human presence sensing subsystem includes several human presence sensors. The human presence sensors are wired, powered by DC 9.5-24V, operate at a frequency of 5.8GHz±75MHz in the ISM band, have a maximum transmit power of 0.5mW, an IP rating of IP20, and communicate using the ANNP IoT protocol. They employ millimeter-wave radar technology to detect whether there is a person in the area and whether that person is active or stationary.

[0017] The house power-off system includes an energy-saving module, a power-off module, and a voice reminder and interaction module. If the system detects that a user has left the house, the energy-saving module activates after 10 minutes, putting the entire house into energy-saving mode. If the system detects that a user has left the house, the power-off module activates after 30 minutes, cutting off power to the entire house. For rooms without an energy-saving module, the power-off module activates immediately after the user leaves the room, putting the room into power-off mode. The voice reminder module interacts with the user via voice, reminding them whether the power has been cut off.

[0018] The intelligent learning subsystem includes a self-learning module and a data mining module. These modules work together to provide real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining. The management system platform is used to remotely monitor and manage the overall system's operational status, including viewing human activity in guest rooms and the usage of electrical appliances. The management software platform provides data analysis to help hotel managers understand guest room usage and optimize resource allocation. The management backend data records and saves data, including the customer's personalized habits, which are then entered into the user database. When the user re-enters the room, the room automatically adjusts to the user's personalized settings.

[0019] The smart gateway is powered by DC 5-12V, has a transmission power of 4.5dBm, a wireless receiving sensitivity of ≤105dBm, connects to the internet via WiFi, and communicates using the ANNP IoT protocol. It uploads and controls the status of smart devices in real time. The smart voice speaker is a 24-hour online AI voice assistant with a natural language interaction system that supports wake-up-free operation, streaming interaction, and multi-turn dialogue, enabling far-field long-distance response. The smart curtains include a curtain motor track set and a curtain module.

[0020] The intelligent adjustable curtain wall includes a valve box, several multi-position solenoid valves and several valve control main boards installed inside the valve box, and several air guide cylinder components. The air guide cylinder components are all connected to the air outlets of the intelligent air conditioner and intelligent humidifier through pipes. The air guide cylinder components are connected to several solenoid valves at corresponding positions through pipes. The valve control main boards are all electrically connected to the intelligent gateway and several solenoid valves at corresponding positions. The curtain wall has an outer frame and a curtain wall frame fixed inside the outer frame. The curtain wall frame has several equidistant arrayed mounting light holes inside. The mounting light holes have arrayed LED lights inside. The arrayed LED lights are all electrically connected to the intelligent gateway. The curtain wall frame has several interconnected exhaust pipe holes. The exhaust pipe holes are respectively connected to the corresponding solenoid valves through pipes.

[0021] The array LED light includes a lamp holder, which is fixed inside the mounting hole at the corresponding position. The outside of the lamp holder is provided with a plurality of LED beads arranged in an array. The inside of the lamp holder is provided with an array main control board. A power terminal connector is fixed on the array main control board and is electrically connected to the smart gateway.

[0022] The valve box assembly includes a valve box body, with a mounting flange at the upper end of the valve box body. A main board cover is hinged to the lower end of the valve box body via several hinges. The valve box body has a valve box communication port at the lower end. The main board cover covers the lower end of the valve box communication port. A quick-connect buckle is provided between the main board cover and the valve box body. Several clearance holes are provided on the side of the valve box body. The valve control main board is fixed inside the corresponding main board cover.

[0023] The multi-position solenoid valve includes a solenoid valve body, which is fixed inside the valve box body. Several air outlet connectors of the solenoid valve body extend out from corresponding clearance holes. An air inlet connector is provided on the air inlet pipe of the solenoid valve body. The air outlet connectors are connected to the exhaust pipe holes at corresponding positions through pipes. The solenoid valve body is electrically connected to the valve control main board.

[0024] The air guide cylinder assembly includes an air guide cylinder body, on which several mounting brackets are provided. The mounting brackets are fixed inside the valve box body. The upper end of the air guide cylinder body is provided with an air inlet adapter and several air outlet adapters. The air inlet adapters are connected to the air outlets of the smart air conditioner and smart humidifier through pipes. The air outlet adapters are connected to the corresponding air inlet connectors through pipes. Both ends of the air guide cylinder body are provided with rubber sealing plates and end caps in sequence.

[0025] Using the above structure, the intelligent tracking subsystem, human body status acquisition subsystem, and human presence sensing subsystem track and monitor the user's location in real time, and transmit the location information to the intelligent gateway. The intelligent gateway controls the operation of the intelligent air conditioner and intelligent humidifier, injecting air and moisture at a suitable temperature into the air guide cylinder body through the intake adapter, and then into the corresponding intake connector through the outlet adapter, thereby injecting it into the solenoid valve body. The solenoid valve body is electrically connected to the valve control main board. The intelligent gateway transmits the location information to the valve control main board, and the valve control main board controls the solenoid valve connected to the exhaust pipe port facing the user. When the corresponding air outlet pipe of the main body opens, air and moisture of suitable temperature are discharged from the exhaust pipe hole at the corresponding position through the pipe, blowing around the user to regulate the local temperature and humidity. At the same time, the smart gateway transmits information to the array main control board through the power terminal connector. The array main control board controls the LED beads directly opposite the user's position to turn on, which can provide local supplemental lighting. The opening of the air outlet pipe of the solenoid valve main body and the change of position of the lights will change with the user's movement, adjusting the local temperature and humidity and local supplemental lighting around the user in real time. The responsive lighting also adds a playful element and enhances the user's enjoyment.

[0026] The smart sofa includes a sofa body with several storage holes at the bottom. The bottom of the sofa body also has a monitoring box and two symmetrically arranged air guide boxes. The monitoring box is located between the two air guide boxes. The two air guide boxes are connected to a smart air conditioner and a smart humidifier through pipes. Several status integration sensors are located on the upper part of the sofa seat of the sofa body. The status integration sensors are electrically connected to the smart gateway.

[0027] With the above structure, the monitoring box is used to house the monitoring equipment. Two air ducts are connected to a smart air conditioner and a smart humidifier through pipes, injecting air and moisture of suitable temperature into the two air ducts and discharging them into the room to ensure a suitable room temperature and humidity. The sensor is integrated with the user's posture while sitting on the upper part of the sofa, which can monitor the user's various physiological data at any time, such as heart rate, respiration and sitting posture, and transmit the data to the smart gateway. It can be transmitted to the software APP in real time, displaying the user's current physical condition and correcting the user's current incorrect sitting posture.

[0028] Compared with existing technologies, this intelligent control system for automatic power distribution and disconnection based on human body sensing has the following advantages:

[0029] The user's identity can be quickly and accurately identified through the identity recognition subsystem;

[0030] By working together with the intelligent tracking subsystem, the human body status acquisition subsystem and the human body presence sensing subsystem, the system can track the user's location in real time, monitor the human body shape, heart rate, respiratory rate, body temperature and posture, detect whether there is a person in the area, whether the person is active or stationary, and the time they left.

[0031] The system uses a home power-off system for energy saving, power cut-off, and voice interaction. If the system detects that a user has left the house, the energy-saving module activates after 10 minutes, putting the entire house into energy-saving mode. If the system detects that a user has left the house, the power-off module activates after 30 minutes, cutting off power to the entire house. For rooms without an energy-saving module, the power-off module activates immediately after the user leaves the house, putting the room into power-off mode. A voice reminder module interacts with the user during use, reminding them whether to cut off power.

[0032] The intelligent learning subsystem works in conjunction with the self-learning module and the data mining module to provide real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining.

[0033] By combining smart air conditioners and smart humidifiers with smart adjustable curtain walls and smart sofas, local lighting, temperature, and humidity can be adjusted in real time according to the user's location. The smart sofa can also monitor the user's heart rate, breathing, and posture. The software APP is used to display data in real time and control the start and stop of various electrical devices, displaying the user's current physical condition and correcting the user's current incorrect posture. Attached Figure Description

[0034] Figure 1 This is a system block diagram of the present invention.

[0035] Figure 2 This is a three-dimensional structural diagram of the intelligent adjustable curtain wall in this invention.

[0036] Figure 3 This is a partial cross-sectional schematic diagram of the intelligent adjustable curtain wall in this invention.

[0037] Figure 4 This is an exploded view of some components of the intelligent adjustable curtain wall in this invention.

[0038] Figure 5 This is a schematic diagram of the valve box assembly of the intelligent adjustable curtain wall in this invention.

[0039] Figure 6 This is a structural schematic diagram of the smart sofa in this invention.

[0040] In the diagram, 1. Curtain wall frame; 2. Curtain wall frame; 3. Array LED lights; 4. Valve box components; 5. Multi-position solenoid valve; 6. Valve control main board; 7. Air guide cylinder components; 8. Air outlet connector pipe; 9. Solenoid valve body; 10. Air inlet pipe; 11. Air inlet connector; 12. Mounting bracket; 13. Air guide cylinder body; 14. Air outlet adapter; 15. Air inlet adapter; 16. Rubber sealing plate; 17. End cover plate; 18. Lamp holder; 19. LED beads; 20. Array main control board; 21. Power terminal connector; 22. Light mounting hole; 23. Exhaust pipe hole; 24. Main board flip cover; 25. Hinge; 26. Valve box body; 27. Clearance hole; 28. Mounting flange; 29. ​​Valve box connection port; 30. Sofa body; 31. Storage hole; 32. Air guide box; 33. Monitoring box; 34. Sofa seat back; 35. Status integration sensor. Detailed Implementation

[0041] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0042] like Figures 1-6As shown, this intelligent control system for automatic power distribution and disconnection based on human body sensing includes an intelligent device subsystem, an identity recognition subsystem, an intelligent tracking subsystem, a human body status acquisition subsystem, a human body presence sensing subsystem, a building power disconnection system, an intelligent learning subsystem, and a management system platform. The intelligent device subsystem includes an intelligent gateway, an intelligent voice speaker, intelligent lights, intelligent curtains, intelligent air conditioners, intelligent humidifiers, intelligent adjustable curtain walls, and intelligent sofas. It also includes a software APP that is electrically connected to the terminal devices of the intelligent gateway. The intelligent gateway is electrically connected to the identity recognition subsystem, intelligent tracking subsystem, human body status acquisition subsystem, human body presence sensing subsystem, building power disconnection system, intelligent learning subsystem, management system platform, intelligent voice speaker, intelligent lights, intelligent curtains, intelligent air conditioners, intelligent humidifiers, intelligent adjustable curtain walls, and intelligent sofas, respectively. The intelligent air conditioner and intelligent humidifier are connected to the intelligent adjustable curtain wall and intelligent sofa, respectively, through pipes.

[0043] The identity recognition subsystem quickly and accurately identifies the user's identity; the intelligent tracking subsystem intelligently tracks the user's location; the human body status acquisition subsystem monitors the human body's shape, heart rate, respiratory rate, body temperature, and posture; the human body presence sensing subsystem detects whether there is a person in the area and whether that person is active or stationary; the building's electronic system performs power saving, power outages, and voice interaction; the intelligent learning subsystem provides real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining; and the management system platform is used for remote monitoring and management, optimizing resource allocation, managing backend data, recording the customer's personalized habits, and entering them into the user database. When the user re-enters the room, the room automatically adjusts to the user's personalized settings.

[0044] The smart gateway uploads and controls the status of smart devices in real time. The smart voice speaker has a natural language interaction system that supports wake-up-free operation, streaming interaction, and multi-turn dialogue, achieving far-field long-distance response. Smart lights provide illumination through smart switches. Smart curtain motor track sets and curtain modules can automatically open and close curtains according to control. Smart air conditioners regulate temperature, smart humidifiers regulate humidity, and smart adjustable curtain walls can adjust local lighting, temperature, and humidity in real time according to the user's location. Smart sofas can adjust local temperature and humidity and can also monitor the user's heart rate, breathing, and posture. The software APP displays data in real time and controls the start and stop of various electrical devices, showing the user's current physical condition and correcting the user's current incorrect posture.

[0045] The identity recognition subsystem includes a password recognition module, a biometric recognition module, a magnetic card recognition module, a manual verification module, an ID card recognition module, and an infrared motion sensing module. The password recognition module verifies identity by comparing the user's input password with a preset password. The biometric recognition module uses individual unique characteristics for identification, including but not limited to face, fingerprint, iris, and voiceprint. The magnetic card recognition module uses, but is not limited to, magnetic stripe bank cards and social security cards as media to read user information and compare it with information stored in the recording medium to verify identity. The manual verification module transforms the verification process into a manual review to confirm identity. The ID card recognition module quickly and accurately identifies the user's identity by reading and parsing the information on the ID card, which includes but is not limited to text, numbers, photos, and fingerprints.

[0046] The intelligent tracking subsystem includes an infrared motion sensing module, an inertial sensing module, an optical sensing module, and a UWB positioning module. The infrared motion sensing module is wired, powered by DC 10.5-16V, and displays an alarm using a red LED that illuminates continuously for 3 seconds. The alarm output is normally open at 28VDC, 0.15A, and the communication method is the ANNP IoT protocol. The inertial sensing module measures the three-dimensional motion state of an object, including acceleration, rotational speed, and direction, and mainly consists of sensors such as accelerometers, gyroscopes, and magnetometers. The optical sensing module includes an infrared detection sensor and a U-shaped photoelectric sensor. The infrared detection sensor detects the presence of obstacles by emitting infrared light and detecting the reflected signals. The U-shaped photoelectric sensor detects the passage or presence of an object by the relative positional relationship between the infrared emitter and receiver. The UWB positioning module determines the distance between the target object and the receiver by measuring the time of flight of the signal. When the UWB signal is sent from the base station to the target object and reflected back to the base station, the base station measures the time delay of the signal.

[0047] The human body status acquisition subsystem includes a 3D scanning sensor, a heart rate detection sensor, a respiratory rate sensor, a body temperature infrared sensor, and a posture infrared sensor.

[0048] 3D scanning sensors scan and monitor the user's body shape, heart rate sensors monitor the user's heart rate, respiratory rate sensors monitor the user's respiratory rate, body temperature infrared sensors monitor the user's body temperature, and posture infrared sensors monitor the user's posture.

[0049] The human presence sensing subsystem includes several human presence sensors. These sensors are wired, powered by DC 9.5-24V, operate at a frequency of 5.8GHz±75MHz in the ISM band, have a maximum transmit power of 0.5mW, an IP rating of IP20, and communicate using the ANNP IoT protocol. They employ millimeter-wave radar technology to detect the presence of people in the area and whether those people are active or stationary.

[0050] The home power-off system includes an energy-saving module, a power-off module, and a voice reminder and interaction module. If the system detects that a user has left the house, the energy-saving module activates after 10 minutes, putting the entire house into energy-saving mode. If the system detects that a user has left the house, the power-off module activates after 30 minutes, cutting off power to the entire house. For rooms without an energy-saving module, the power-off module activates immediately after the system detects that a user has left, putting the room into power-off mode. The voice reminder module interacts with the user via voice, reminding them whether the power should be cut off.

[0051] The intelligent learning subsystem includes a self-learning module and a data mining module. These modules work together to provide real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining. The management system platform is used to remotely monitor and manage the overall system's operational status, including viewing human activity in guest rooms and the usage of electrical appliances. The management software platform provides data analysis to help hotel managers understand guest room usage and optimize resource allocation. The management backend data records and saves data, including the customer's personalized habits, which are then entered into the user database. When the user re-enters the room, the room automatically adjusts to the user's personalized settings.

[0052] The smart gateway is powered by DC 5-12V, has a transmission power of 4.5dBm, a wireless receiving sensitivity of ≤105dBm, connects to the internet via WiFi, and communicates using the ANNP IoT protocol. It uploads and controls the status of smart devices in real time. The smart voice speaker is a 24-hour online AI voice assistant with a natural language interaction system that supports wake-up-free operation, streaming interaction, and multi-turn dialogue, enabling far-field long-distance response. The smart curtains include a curtain motor track set and a curtain module.

[0053] The intelligent adjustable curtain wall includes a valve box 4, several multi-position solenoid valves 5 and several valve control main boards 6 installed inside the valve box 4, and several air guide cylinder components 7. The air guide cylinder components 7 are all connected to the air outlet of the intelligent air conditioner and intelligent humidifier through pipes. The air guide cylinder components 7 are connected to several solenoid valves 5 at corresponding positions through pipes. The valve control main boards 6 are all electrically connected to the intelligent gateway and several solenoid valves 5 at corresponding positions. The curtain wall outer frame 1 and the curtain wall frame 2 fixed inside the curtain wall outer frame 1 are also included. The curtain wall frame 2 has several equidistant arrayed mounting light holes 22 inside. The mounting light holes 22 have arrayed LED lights 3 inside. The arrayed LED lights 3 are all electrically connected to the intelligent gateway. The curtain wall frame 2 has several interconnected exhaust pipe holes 23. The exhaust pipe holes 23 are respectively connected to the corresponding solenoid valves 5 through pipes.

[0054] The array LED light 3 includes a lamp holder 18, which is fixed inside the mounting hole 22 at the corresponding position. The outside of the lamp holder 18 is provided with a number of arrayed LED beads 19, and the inside of the lamp holder 18 is provided with an array main control board 20. A power terminal connector 21 is fixed on the array main control board 20 and is electrically connected to the smart gateway.

[0055] Valve box component 4 includes a valve box body 26. The upper end of the valve box body 26 is provided with a mounting flange 28. The lower end of the valve box body 26 is hinged to a main board cover 24 by several hinges 25. The lower end of the valve box body 26 has a valve box communication port 29. The main board cover 24 covers the lower end of the valve box communication port 29. A quick-connect buckle is provided between the main board cover 24 and the valve box body 26. Several clearance holes 27 are opened on the side of the valve box body 26. The valve control main board 6 is fixed inside the corresponding main board cover 24.

[0056] The multi-position solenoid valve 5 includes a solenoid valve body 9, which is fixed inside the valve box body 26. Several air outlet connectors 8 of the solenoid valve body 9 extend out from the corresponding clearance holes 27. An air inlet connector 11 is provided on the air inlet pipe 10 of the solenoid valve body 9. The air outlet connectors 8 are connected to the corresponding exhaust pipe holes 23 through pipes. The solenoid valve body 9 is electrically connected to the valve control main board 6.

[0057] The air guide cylinder assembly 7 includes an air guide cylinder body 13, on which several mounting brackets 12 are provided. The mounting brackets 12 are fixed inside the valve box body 26. The upper end of the air guide cylinder body 13 is provided with an air inlet adapter 15 and several air outlet adapters 14. The air inlet adapter 15 is connected to the air outlet of the smart air conditioner and smart humidifier through a pipe. The air outlet adapters 14 are connected to the corresponding air inlet connectors 11 through a pipe. Both ends of the air guide cylinder body 13 are provided with rubber sealing plates 16 and end caps 17 in sequence.

[0058] The intelligent tracking subsystem, human body status acquisition subsystem, and human presence sensing subsystem track and monitor the user's location in real time, and transmit the location information to the intelligent gateway. The intelligent gateway controls the operation of the intelligent air conditioner and intelligent humidifier, injecting air and moisture at a suitable temperature into the air guide cylinder body 13 through the air intake adapter 15, and then into the corresponding air intake connector 11 through the air outlet adapter 14, thereby injecting it into the solenoid valve body 9. The solenoid valve body 9 is electrically connected to the valve control main board 6. The intelligent gateway transmits the location information to the valve control main board 6, and the valve control main board 6 controls the solenoid valve body 9, which is connected to the exhaust pipe port 23 facing the user. When the corresponding air outlet pipe 8 is opened, air and moisture of suitable temperature are discharged from the corresponding exhaust pipe hole 23 through the pipe, blowing around the user to regulate the local temperature and humidity. At the same time, the smart gateway transmits information to the array main control board 20 through the power terminal connector 21. The array main control board 20 controls the LED beads 19 directly opposite the user's position to turn on, which can provide local supplementary lighting. The air outlet pipe 8 corresponding to the solenoid valve body 9 is opened and the light changes position as the user moves, adjusting the local temperature and humidity around the user in real time and providing local supplementary lighting. The light's movement also adds a playability and enhances the user's enjoyment.

[0059] The smart sofa includes a sofa body 30, with several storage holes 31 at the bottom. The bottom of the sofa body 30 is equipped with a monitoring box 33 and two symmetrically arranged air guide boxes 32. The monitoring box 33 is located between the two air guide boxes 32. The two air guide boxes 32 are connected to a smart air conditioner and a smart humidifier through pipes. Several status integration sensors 35 are provided on the sofa seat back 34 of the sofa body 30. The status integration sensors 35 are electrically connected to the smart gateway.

[0060] The monitoring box 33 houses the monitoring equipment. Two air ducts 32 are connected to a smart air conditioner and a smart humidifier via pipes, injecting air and moisture of suitable temperature into the two air ducts 32 and discharging it into the room to ensure a suitable room temperature and humidity. The user's sitting posture on the sofa backrest 34 is integrated with the sensor 35, which can monitor various physiological data of the user at any time, such as heart rate, respiration and sitting posture, and transmit the data to the smart gateway. It can be transmitted to the software APP in real time to display the user's current physical condition and correct the user's current incorrect sitting posture.

[0061] The working principle of this invention is as follows: The identity recognition subsystem quickly and accurately identifies the user's identity; the password recognition module confirms identity by comparing the user's input password with a preset password; the biometric recognition module uses inherent individual characteristics for identification; the magnetic card recognition module uses, but is not limited to, magnetic stripe bank cards and social security cards as media, reads user information and compares it with information stored in the recording medium to confirm identity; the manual review module transforms the verification process into manual review to confirm identity; and the ID card recognition module quickly and accurately identifies the user's identity by reading and parsing the information on the ID card.

[0062] The intelligent tracking subsystem intelligently tracks the user's location, while the human body status acquisition subsystem uses a 3D scanning sensor to scan and monitor the user's body shape, a heart rate sensor to monitor the user's heart rate, a respiratory rate sensor to monitor the user's respiratory rate, a body temperature infrared sensor to monitor the user's body temperature, and a posture infrared sensor to monitor the user's posture.

[0063] The human presence sensing subsystem detects whether there is a person in the area and whether that person is active or stationary. The house's electronic system then performs energy saving, power cutting, and voice interaction. Specifically, if the system detects that the user has left the house, the energy saving module activates after 10 minutes, putting the entire house into energy-saving mode; if the system detects that the user has left the house, the power cutting module activates, cutting off the power to the entire house. For rooms without energy saving modules, the power cutting module activates in those rooms after the system detects that the user has left, directly putting the room into power cutting mode. The voice reminder module interacts with the user during use, reminding them whether the power should be cut off.

[0064] The intelligent learning subsystem works in conjunction with the self-learning module and the data mining module to provide real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining.

[0065] The management system platform is used to remotely monitor and manage the operation status of the entire system, including viewing human activity in guest rooms and the usage of electrical equipment; the management software platform provides data analysis to help hotel managers understand the usage of guest rooms and optimize resource allocation; the management backend data records and saves data, records the customer's personalized habits, enters them into the user database, and when the user enters the room again, the room is automatically adjusted to the user's personalized settings.

[0066] The smart gateway uploads and controls the status of smart devices in real time; the smart voice speaker has a natural language interaction system that supports wake-up-free operation, streaming interaction and multi-turn dialogue, and achieves far-field ultra-distance response; the smart light provides lighting for smart switches; the smart curtain motor track set and curtain module can automatically open and close the curtains according to the control; the smart air conditioner adjusts the temperature; and the smart humidifier adjusts the humidity.

[0067] The intelligent tracking subsystem, human body status acquisition subsystem, and human presence sensing subsystem track and monitor the user's location in real time, and transmit the location information to the intelligent gateway. The intelligent gateway controls the operation of the intelligent air conditioner and intelligent humidifier, injecting air and moisture at a suitable temperature into the air guide cylinder body 13 through the air intake adapter 15, and then into the corresponding air intake connector 11 through the air outlet adapter 14, thereby injecting it into the solenoid valve body 9. The solenoid valve body 9 is electrically connected to the valve control main board 6. The intelligent gateway transmits the location information to the valve control main board 6, and the valve control main board 6 controls the solenoid valve body 9, which is connected to the exhaust pipe port 23 facing the user. When the corresponding air outlet pipe 8 is opened, air and moisture of suitable temperature are discharged from the corresponding exhaust pipe hole 23 through the pipe, blowing around the user to regulate the local temperature and humidity. At the same time, the smart gateway transmits information to the array main control board 20 through the power terminal connector 21. The array main control board 20 controls the LED beads 19 directly opposite the user's position to turn on, which can provide local supplementary lighting. The air outlet pipe 8 corresponding to the solenoid valve body 9 is opened and the light changes position as the user moves, adjusting the local temperature and humidity around the user in real time and providing local supplementary lighting. The light's movement also adds a playability and enhances the user's enjoyment.

[0068] The monitoring box 33 houses the monitoring equipment. Two air ducts 32 are connected to a smart air conditioner and a smart humidifier via pipes, injecting air and moisture of suitable temperature into the two air ducts 32 and discharging it into the room to ensure a suitable room temperature and humidity. The user's sitting posture on the sofa backrest 34 is integrated with the sensor 35, which can monitor various physiological data of the user at any time, such as heart rate, respiration and sitting posture, and transmit the data to the smart gateway. It can be transmitted to the software APP in real time to display the user's current physical condition and correct the user's current incorrect sitting posture.

[0069] In summary, the identity recognition subsystem can quickly and accurately identify the user's identity.

[0070] By working together with the intelligent tracking subsystem, the human body status acquisition subsystem and the human body presence sensing subsystem, the system can track the user's location in real time, monitor the human body shape, heart rate, respiratory rate, body temperature and posture, detect whether there is a person in the area, whether the person is active or stationary, and the time they left.

[0071] The system uses a home power-off system for energy saving, power cut-off, and voice interaction. If the system detects that a user has left the house, the energy-saving module activates after 10 minutes, putting the entire house into energy-saving mode. If the system detects that a user has left the house, the power-off module activates after 30 minutes, cutting off power to the entire house. For rooms without an energy-saving module, the power-off module activates immediately after the user leaves the house, putting the room into power-off mode. A voice reminder module interacts with the user during use, reminding them whether to cut off power.

[0072] The intelligent learning subsystem works in conjunction with the self-learning module and the data mining module to provide real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining.

[0073] By combining smart air conditioners and smart humidifiers with smart adjustable curtain walls and smart sofas, local lighting, temperature, and humidity can be adjusted in real time according to the user's location. The smart sofa can also monitor the user's heart rate, breathing, and posture. The software APP is used to display data in real time and control the start and stop of various electrical devices, displaying the user's current physical condition and correcting the user's current incorrect posture.

[0074] The specific embodiments described herein are merely illustrative of the spirit of the invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of the invention or exceeding the scope defined by the appended claims.

Claims

1. An intelligent control system for automatic power distribution and disconnection based on human body sensing, comprising an intelligent device subsystem, an identity recognition subsystem, an intelligent tracking subsystem, a human body status acquisition subsystem, a human body presence sensing subsystem, a building power disconnection system, an intelligent learning subsystem, and a management system platform, characterized in that, The intelligent device subsystem includes an intelligent gateway, an intelligent voice speaker, intelligent lights, intelligent curtains, intelligent air conditioners, intelligent humidifiers, intelligent adjustable curtain walls, and intelligent sofas; it also includes a software APP that is electrically connected to the terminal devices of the intelligent gateway. The intelligent gateway is electrically connected to the identity recognition subsystem, intelligent tracking subsystem, human body status collection subsystem, human body presence sensing subsystem, building electronic system, intelligent learning subsystem, management system platform, intelligent voice speaker, intelligent lights, intelligent curtains, intelligent air conditioners, intelligent humidifiers, intelligent adjustable curtain walls, and intelligent sofas, respectively. The intelligent air conditioners and intelligent humidifiers are connected to the intelligent adjustable curtain walls and intelligent sofas through pipes, respectively. The intelligent adjustable curtain wall includes a valve box (4), several multi-position solenoid valves (5) and several valve control main boards (6) set inside the valve box (4), and several air guide cylinder components (7). Several air guide cylinder components (7) are connected to the air outlet of the intelligent air conditioner and the intelligent humidifier through pipes. The air guide cylinder components (7) are connected to several solenoid valves (5) at corresponding positions through pipes. The valve control main boards (6) are electrically connected to the intelligent gateway and several solenoid valves (5) at corresponding positions. The curtain wall outer frame (1) and the curtain wall frame (2) fixed inside the curtain wall outer frame (1) are provided with several equidistant array mounting light holes (22) inside the curtain wall frame (2). The mounting light holes (22) are provided with array LED lights (3) inside the mounting light holes (22). The array LED lights (3) are electrically connected to the intelligent gateway. Several interconnected exhaust pipe holes (23) are opened on the curtain wall frame (2). Several exhaust pipe holes (23) are respectively connected to the corresponding solenoid valves (5) through pipes. The array LED lamp (3) includes a lamp holder (18), which is fixed inside the mounting hole (22) at the corresponding position. The outside of the lamp holder (18) is provided with a number of arrayed LED beads (19), and the inside of the lamp holder (18) is provided with an array main control board (20). The array main control board (20) is fixed with a power terminal connector (21), which is electrically connected to the smart gateway. The valve box component (4) includes a valve box body (26), with a mounting flange (28) at the upper end of the valve box body (26). The lower end of the valve box body (26) is hinged to a main board cover (24) via several hinges (25). The lower end of the valve box body (26) has a valve box connection port (29). The main board cover (24) covers the lower end of the valve box connection port (29). A quick-connect buckle is provided between the main board cover (24) and the valve box body (26). Several clearance holes (27) are provided on the side of the valve box body (26). The valve control main board (6) is fixed inside the corresponding main board cover (24). The multi-position solenoid valve (5) includes a solenoid valve body (9), which is fixed inside the valve box body (26). Several air outlet pipes (8) of the solenoid valve body (9) extend out from the corresponding clearance holes (27). An air inlet connector (11) is provided on the air inlet pipe (10) of the solenoid valve body (9). The air outlet pipe (8) is connected to the exhaust pipe hole (23) at the corresponding position through a pipe. The solenoid valve body (9) is electrically connected to the valve control main board (6). The air guide cylinder component (7) includes an air guide cylinder body (13), which is provided with several mounting brackets (12). The mounting brackets (12) are fixed inside the valve box body (26). The upper end of the air guide cylinder body (13) is provided with an air inlet adapter (15) and several air outlet adapters (14). The air inlet adapter (15) is connected to the air outlet of the smart air conditioner and the smart humidifier through a pipe. The air outlet adapter (14) is connected to the corresponding air inlet connector (11) through a pipe. Both ends of the air guide cylinder body (13) are provided with rubber sealing plates (16) and end caps (17) in sequence.

2. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 1, characterized in that, The identity recognition subsystem includes a password recognition module, a biometric recognition module, a magnetic card recognition module, a manual verification module, an ID card recognition module, and an infrared motion sensing module. The password recognition module verifies identity by comparing the user's input password with a preset password. The biometric recognition module uses inherent individual characteristics for identification, including but not limited to face, fingerprint, iris, and voiceprint. The magnetic card recognition module uses, but is not limited to, magnetic stripe bank cards and social security cards as media to read user information and compare it with information stored in the recording medium to verify identity. The manual verification module transforms the verification process into a manual review to confirm identity. The ID card recognition module quickly and accurately identifies the user's identity by reading and parsing the information on the ID card, which includes but is not limited to text, numbers, photos, and fingerprints.

3. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 2, characterized in that, The intelligent tracking subsystem includes an infrared motion sensing module, an inertial sensing module, an optical sensing module, and a UWB positioning module. The infrared motion sensing module is wired, powered by DC 10.5-16V, and displays an alarm using a red LED that illuminates continuously for 3 seconds. The alarm output is normally open at 28VDC, 0.15A, and uses the ANNP IoT protocol for communication. The inertial sensing module measures the three-dimensional motion of an object, including acceleration, rotational speed, and direction, and mainly consists of sensors such as accelerometers, gyroscopes, and magnetometers. The optical sensing module includes an infrared detection sensor and a U-shaped photoelectric sensor. The infrared detection sensor detects the presence of obstacles by emitting infrared light and detecting the reflected signals. The U-shaped photoelectric sensor detects the passage or presence of an object by the relative position of the infrared emitter and receiver. The UWB positioning module determines the distance between the target object and the receiver by measuring the signal's time of flight. When a UWB signal is sent from the base station to the target object and reflected back to the base station, the base station measures the time delay of the signal. The human body status acquisition subsystem includes a 3D scanning sensor, a heart rate detection sensor, a respiratory rate sensor, a body temperature infrared sensor, and a posture infrared sensor.

4. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 3, characterized in that, The human presence sensing subsystem includes several human presence sensors. The human presence sensors are wired, powered by DC 9.5-24V, operate at a frequency of 5.8GHz±75MHz in the ISM band, have a maximum transmit power of 0.5mW, an IP rating of IP20, and communicate using the ANNP IoT protocol. They employ millimeter-wave radar technology to detect whether there is a person in the area and whether that person is active or stationary.

5. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 4, characterized in that, The house power-off system includes an energy-saving module, a power-off module, and a voice reminder and interaction module. If the system detects that a user has left the house, the energy-saving module activates after 10 minutes, putting the entire house into energy-saving mode. If the system detects that a user has left the house, the power-off module activates after 30 minutes, cutting off power to the entire house. For rooms without an energy-saving module, the power-off module activates immediately after the user leaves the room, putting the room into power-off mode. The voice reminder module interacts with the user via voice, reminding them whether the power has been cut off.

6. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 5, characterized in that, The intelligent learning subsystem includes a self-learning module and a data mining module. These modules work together to provide real-time feedback, intelligent evaluation, reasonable suggestions, personalized expansion, and information mining. The management system platform is used to remotely monitor and manage the overall system's operational status, including viewing human activity in guest rooms and the usage of electrical appliances. The management software platform provides data analysis to help hotel managers understand guest room usage and optimize resource allocation. The management backend data records and saves data, including customer personalized habits, and inputs them into a user database. When a user re-enters the room, the room automatically adjusts to the user's personalized settings.

7. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 6, characterized in that, The smart gateway is powered by DC 5-12V, has a transmission power of 4.5dBm, a wireless receiving sensitivity of ≤105dBm, connects to the internet via WiFi, and communicates using the ANNP IoT protocol. It uploads and controls the status of smart devices in real time. The smart voice speaker is a 24-hour online AI voice assistant with a natural language interaction system that supports wake-up-free operation, streaming interaction, and multi-turn dialogue, enabling far-field long-distance response. The smart curtains include a curtain motor track set and a curtain module.

8. The intelligent control system for automatic power distribution and disconnection based on human body sensing according to claim 7, characterized in that, The smart sofa includes a sofa body (30), with several storage holes (31) at the bottom of the sofa body (30). The bottom of the sofa body (30) is provided with a monitoring box (33) and two symmetrically arranged air guide boxes (32). The monitoring box (33) is located between the two air guide boxes (32). The two air guide boxes (32) are connected to a smart air conditioner and a smart humidifier through pipes. Several status integration sensors (35) are provided on the sofa seat back (34) of the sofa body (30). The status integration sensors (35) are electrically connected to the smart gateway.

Citation Information

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