Intelligent bedside table system suitable for aging
By designing a smart bedside table system for aging, it integrates health monitoring and safety protection modules, solving the shortcomings of existing smart bedside tables in user interaction, fault repair, health monitoring and security measures, and achieving comprehensive guarantees for the safety of the elderly at home and diversity of health monitoring.
Patent Information
- Application Number
- CN202510096507.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2025-05-16
AI Technical Summary
The existing smart bedside tables have shortcomings in the design of aging-friendly, the user interaction interface is complex, the fault repair is difficult, the health monitoring function is not comprehensive enough, the ability to analyze data and personalized suggestions is lacking, the security measures are single, the timely and effective assistance cannot be obtained, and the elderly cannot fully guarantee the safety of their homes.
A smart bedside table system suitable for aging is designed, including a health monitoring module, a safety protection module, a sensing unit module, a human-computer interaction unit, a network communication unit, a data storage unit and a power supply module. Through the combination of these modules, a comprehensive monitoring and analysis of human sign parameters and environmental parameters is achieved, and a personalized health advice and an automatic response mechanism is provided to ensure the timely sending of help signals.
The monitoring scope and home safety of smart bedside tables have been improved, allowing the elderly to obtain physiological sign data and environmental parameters from multiple platforms, ensuring the diversity and reliability of the data, and improving the quality and safety of the elderly at home.
Smart Images

Figure CN120000014A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smart bedside tables, and in particular to an aging-friendly smart bedside table system. Background Art
[0002] With the intensification of the problem of population aging, smart furniture has become an important tool to assist the elderly in their home-based elderly care life. Among them, smart bedside tables, as an important component, have effectively improved the quality of life of the elderly in bed. At present, smart bedside tables are mainly used to provide users with entertainment, charging and life-assisting functions. However, in the actual use of the elderly, there are often problems such as insufficient aging-friendly design, which leads to weak practicality and inability to meet the needs of the elderly for health monitoring and safety protection functions. The existing smart bedside tables have obvious deficiencies in aging-friendly design, which are mainly reflected in the complexity of the user interaction interface and the difficulty of repairing faults; secondly, the health monitoring function is not comprehensive enough. Although some products have integrated vital sign parameter sensors, the monitoring range is not comprehensive enough, and there is a lack of the ability to analyze the data and give personalized suggestions based on the analysis results; in addition, the security measures are single, and most products only use buttons or pull ropes to trigger the sending of distress signals. There is a risk that effective rescue cannot be obtained in time in an emergency, and the safety of the elderly at home cannot be fully guaranteed. Summary of the invention
[0003] Therefore, the technical problem to be solved by the present invention is to overcome the defect that the existing smart bedside tables in the prior art are not comprehensive in monitoring and cannot ensure the safety of the elderly at home.
[0004] To this end, the present invention provides an aging-friendly smart bedside table system, comprising:
[0005] Cabinet,
[0006] A health monitoring module is arranged in the cabinet, and the health monitoring module uses a chip as a processing unit and is suitable for monitoring the vital signs parameters of the human body;
[0007] A safety protection module is arranged on the side of the cabinet, and the safety protection module uses a chip as a processing unit and is suitable for monitoring the environmental parameters of the room;
[0008] A sensor unit module is arranged on the cabinet, the sensor unit module is connected to the health monitoring module and the safety protection module, and the sensor unit module is suitable for collecting vital sign parameters and environmental parameters;
[0009] A human-machine interaction unit is arranged on the cabinet, the human-machine interaction unit is connected to the health monitoring module and the safety protection module, and the human-machine interaction unit is suitable for responding to abnormal conditions of the health monitoring module and the safety protection module;
[0010] A network communication unit is arranged on the cabinet, and the network communication unit is suitable for transmitting data and performing remote communication;
[0011] A data storage unit is arranged on the cabinet, and the data storage unit is suitable for local storage and cloud sharing of data;
[0012] A power module, arranged on the cabinet, and adapted to provide electrical energy to each module;
[0013] Vital sign data and environmental data are collected through the sensor unit module, the vital sign data is transmitted to the health monitoring module for data analysis and processing, and the processed results are fed back to the user through the human-computer interaction unit. At the same time, the environmental data is transmitted to the safety protection module for data analysis and processing, and the processed results are fed back to the user through the human-computer interaction unit.
[0014] Optionally, the cabinet includes:
[0015] A first cabinet, on which the health monitoring module, the safety protection module, the sensor unit module, the human-computer interaction unit, the network communication unit, and the data storage unit are arranged;
[0016] The second cabinet is arranged below the first cabinet, the second cabinet is detachably connected to the first cabinet, and the power module is arranged on the second cabinet.
[0017] Optionally, the first cabinet is provided with a drawer and a first handle, the second cabinet is provided with a flip cover and a second handle, and the first handle and the second handle are provided correspondingly.
[0018] Optionally, a heat dissipation hole and a power supply interface are provided on the side wall of the second cabinet, and the heat dissipation hole dissipates heat generated by each module.
[0019] Optionally, the sensor unit module includes:
[0020] A human body monitoring sensor is arranged on the outer surface of the first cabinet, and the human body monitoring sensor is suitable for collecting physiological parameters of the human body;
[0021] The environment monitoring sensor is arranged on the first cabinet and the second cabinet, and the environment monitoring sensor is suitable for collecting environmental parameters of the room.
[0022] Optionally, the human body monitoring sensor includes:
[0023] A physiological monitoring sensor is arranged on one side of the outer surface of the first cabinet, the physiological monitoring sensor is communicatively connected with the health monitoring module, and the physiological monitoring sensor collects vital sign parameters and transmits them to the health monitoring module;
[0024] The infrared body temperature sensor is arranged on the outer surface of the first cabinet and is located on the same side as the physiological monitoring sensor. The infrared body temperature sensor is communicatively connected to the health monitoring module. The infrared body temperature sensor collects body temperature parameters and transmits them to the health monitoring module.
[0025] Optionally, the environmental monitoring sensor includes:
[0026] a knock sensor, which is arranged on the outer surface of the first cabinet and is located on the same side as the infrared body temperature sensor, the knock sensor is communicatively connected with the safety protection module, the knock sensor collects vibration signals, converts them into electrical signals, and transmits them to the safety protection module;
[0027] A smoke sensor is arranged on the outer surface of the first cabinet and is located on the same side as the knock sensor. The smoke sensor is communicatively connected with the safety protection module. The smoke sensor collects a smoke concentration signal and transmits it to the safety protection module.
[0028] A temperature and humidity sensor is arranged on the outer surface of the first cabinet and is located on the opposite side of the smoke sensor. The temperature and humidity sensor is communicatively connected with the safety protection module. The temperature and humidity sensor collects temperature and humidity data and transmits it to the safety protection module.
[0029] The human presence sensor is arranged at the bottom of the second cabinet, and the human presence sensor is suitable for detecting infrared signals emitted by a human body.
[0030] Optionally, the human-computer interaction unit includes:
[0031] A first display screen is arranged on the outer surface of the first cabinet and is located on the same side as the temperature and humidity sensor. The first display screen is communicatively connected to the health monitoring module, and the first display screen is suitable for displaying vital sign parameters in real time;
[0032] A PC display screen is connected to the health monitoring module and the safety protection module through the network communication unit, and the PC display screen is suitable for remote viewing;
[0033] A mobile phone APP, connected to the health monitoring module and the safety protection module through the network communication unit, and the mobile phone APP is suitable for remotely viewing various parameters;
[0034] A voice module is arranged on the inner surface of the first cabinet, the voice module is connected to the health monitoring module and the safety protection module, and the voice module is suitable for broadcasting real-time data and warning information in real time.
[0035] Optionally, the network communication unit includes:
[0036] A WIFI wireless communication module is arranged on the inner surface of the first cabinet, and the WIFI wireless communication module realizes all network connections through the health monitoring module and the safety protection module;
[0037] The mobile network communication module is arranged on the inner surface of the first cabinet, and the mobile network communication module is suitable for dialing a preset number.
[0038] Optionally, the data storage unit includes:
[0039] A storage card, disposed inside the first cabinet, the storage card is connected to the health monitoring module, and the storage card is suitable for local storage of vital sign parameters;
[0040] The PC-side storage is connected to the health monitoring module and the safety protection module through the network communication unit to achieve data cloud uploading and sharing.
[0041] The technical solution of the present invention has the following advantages:
[0042] 1. The present invention provides an aging-friendly smart bedside cabinet system, comprising a cabinet, a health monitoring module, a safety protection module, a sensor unit module, a human-computer interaction unit, a network communication unit, a data storage unit, and a power supply module. The health monitoring module is arranged in the cabinet, and the health monitoring module uses a chip as a processing unit, which is suitable for monitoring the vital signs parameters of the human body; the safety protection module is arranged on the side of the cabinet, and the safety protection module uses a chip as a processing unit, which is suitable for monitoring the environmental parameters of the room; the sensor unit module is arranged on the cabinet, and the sensor unit module is connected to the health monitoring module and the safety protection module The sensing unit module is suitable for collecting vital sign parameters and environmental parameters; the human-computer interaction unit is arranged on the cabinet, the human-computer interaction unit is connected with the health monitoring module and the safety protection module, and the human-computer interaction unit is suitable for responding to abnormal conditions of the health monitoring module and the safety protection module; the network communication unit is arranged on the cabinet, and the network communication unit is suitable for transmitting data and conducting remote communication; the data storage unit is arranged on the cabinet, and the data storage unit is suitable for local storage and cloud sharing of data; the power supply module is arranged on the cabinet, and the power supply module is suitable for providing power to each module.
[0043] Existing smart bedside tables have obvious deficiencies in aging-friendly design, which are mainly reflected in the complex user interaction interface and the difficulty of repairing faults; secondly, the health monitoring function is not comprehensive enough. Although some products have integrated vital sign parameter sensors, the monitoring range is not comprehensive enough, and they lack the ability to analyze data and give personalized suggestions based on the analysis results; in addition, the security measures are single, and most products only use buttons or pull ropes to trigger the sending of distress signals, which poses a risk of not being able to obtain effective rescue in time in an emergency, and cannot fully guarantee the safety of the elderly at home. In the present invention, by setting the health monitoring module and the safety protection module, it is possible to monitor the physiological vital sign parameters and surrounding environment parameters of the human body, thereby making the monitoring range of the smart bedside table more comprehensive and improving the safety of the elderly at home.
[0044] 2. The present invention provides an aging-friendly smart bedside cabinet system, wherein the human-computer interaction unit includes a first display screen, a PC-side display screen, a mobile phone APP, and a voice module. The first display screen is arranged on the outer surface of the first cabinet and is located on the same side as the temperature and humidity sensor. The first display screen is connected to the health monitoring module for communication, and the first display screen is suitable for real-time display of vital sign parameters; the PC-side display screen is connected to the health monitoring module and the safety protection module through the network communication unit, and the PC-side display screen is suitable for remote viewing; the mobile phone APP is connected to the health monitoring module and the safety protection module through the network communication unit, and the mobile phone APP is suitable for remote viewing of various parameters; the voice module is arranged on the inner surface of the first cabinet, and the voice module is connected to the health monitoring module and the safety protection module, and the voice module is suitable for real-time broadcasting of real-time data and warning information. In the present invention, by setting the first display screen, the PC-side display screen, the mobile phone APP, and the voice module, the elderly can obtain physiological vital sign data and environmental parameters from different platforms, thereby ensuring the diversity of data obtained by the elderly.
[0045] 3. The present invention provides an aging-friendly smart bedside cabinet system, wherein the human body detection sensor includes a physiological monitoring sensor and an infrared body temperature sensor, wherein the physiological monitoring sensor is arranged on one side of the outer surface of the first cabinet, the physiological monitoring sensor is communicatively connected to the health monitoring module, and the physiological monitoring sensor collects body sign parameters and transmits them to the health monitoring module; the infrared body temperature sensor is arranged on the outer surface of the first cabinet and is located on the same side as the physiological monitoring sensor, the infrared body temperature sensor is communicatively connected to the health monitoring module, and the infrared body temperature sensor collects body temperature parameters and transmits them to the health monitoring module. In the present invention, by arranging the physiological monitoring sensor and the infrared body temperature sensor, a variety of different physiological sign parameters of the elderly can be collected, and the data can be analyzed and processed by the health monitoring module, and then personalized suggestions can be provided to the elderly according to preset rules to help the elderly fully understand their physical health conditions.
[0046] 4. The present invention provides an aging-friendly smart bedside cabinet system, wherein the environmental detection sensor includes a knock sensor, a smoke sensor, a temperature and humidity sensor, and a human presence sensor. The knock sensor and the smoke sensor are both arranged on the outer surface of the first cabinet body and are located on the same side as the infrared body temperature sensor. The knock sensor and the smoke sensor are both connected to the safety protection module in communication. The knock sensor collects vibration signals, converts them into electrical signals, and transmits them to the safety protection module. The smoke sensor collects smoke concentration signals and transmits them to the safety protection module. The temperature and humidity sensor is arranged on the outer surface of the first cabinet body and is located on the opposite side of the smoke sensor. The temperature and humidity sensor is connected to the safety protection module in communication. The temperature and humidity sensor collects temperature and humidity data and transmits them to the safety protection module. The human presence sensor is arranged at the bottom of the second cabinet body, and the human presence sensor is suitable for detecting infrared signals emitted by the human body. In the present invention, by setting the knock sensor, the smoke sensor, the temperature and humidity sensor, and the human presence sensor, the environmental conditions can be fully monitored, and the response mechanism can be automatically triggered by combining multiple ways such as threshold breakthrough, event response, and timer, and the dual communication ways of WIFI wireless communication and mobile network communication are used to ensure the sending of help signals, and comprehensively protect the safety of the elderly.
[0047] 5. The present invention provides an aging-friendly smart bedside table system, wherein the cabinet body comprises a first cabinet body and a second cabinet body, wherein the second cabinet body is arranged below the first cabinet body, and the second cabinet body is detachably connected to the first cabinet body, and the first cabinet body, the second cabinet body and each functional module are all modularly configured. Through such a configuration, the first cabinet body, the second cabinet body and each functional module can be repaired and replaced more conveniently, and at the same time, each functional module is installed in a PCB modular integration manner, which can ensure that each module operates independently and stably. BRIEF DESCRIPTION OF THE DRAWINGS
[0048] In order to more clearly illustrate the specific implementation methods of the present invention or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0049] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention;
[0050] Figure 2 It is a front view structural schematic diagram of the present invention;
[0051] Figure 3 It is a side view structural schematic diagram of the present invention;
[0052] Figure 4 It is a schematic diagram of the top view of the structure of the present invention;
[0053] Figure 5 It is a schematic diagram of the internal structure of the present invention;
[0054] Figure 6 It is a schematic diagram of the process of the present invention.
[0055] Description of the accompanying drawings in the embodiments:
[0056] 1. Cabinet; 2. Health monitoring module; 3. Safety protection module; 4. Sensor unit module; 5. Human-computer interaction unit; 6. Network communication unit; 7. Data storage unit; 8. Power supply module;
[0057] 11. First cabinet; 12. Second cabinet; 13. Legs;
[0058] 111, drawer; 112, first handle;
[0059] 121. Flip cover; 122. Second handle; 123. Heat dissipation hole;
[0060] 21. Second display screen;
[0061] 41. Human monitoring sensor; 42. Environmental monitoring sensor;
[0062] 411. Physiological monitoring sensor; 412. Infrared body temperature sensor;
[0063] 421. Knock sensor; 422. Smoke sensor; 423. Temperature and humidity sensor; 424. Human presence sensor;
[0064] 51. a first display screen; 52. a voice module;
[0065] 521. Offline speech module; 522. Speech synthesis module. DETAILED DESCRIPTION
[0066] The technical solution of the present invention will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0067] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.
[0068] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0069] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0070] Example
[0071] like Figures 1 to 6As shown, this embodiment provides an aging-friendly smart bedside cabinet system, including a cabinet 1, a health monitoring module 2, a safety protection module 3, a sensor unit module 4, a human-computer interaction unit 5, a network communication unit 6, a data storage unit 7, and a power supply module 8. The health monitoring module 2 is arranged in the cabinet 1, and the health monitoring module 2 uses a chip as a processing unit, which is suitable for monitoring the vital signs parameters of the human body; the safety protection module 3 is arranged on the side of the cabinet 1, and the safety protection module 3 uses a chip as a processing unit, which is suitable for monitoring the environmental parameters of the room; the sensor unit module 4 is arranged on the cabinet 1, and the sensor unit module 4 is connected to the health monitoring module 2 and the safety protection module 3 The sensor unit module 4 is suitable for collecting vital sign parameters and environmental parameters; the human-computer interaction unit 5 is arranged on the cabinet 1, and the human-computer interaction unit 5 is connected to the health monitoring module 2 and the safety protection module 3, and the human-computer interaction unit 5 is suitable for responding to abnormal conditions of the health monitoring module 2 and the safety protection module 3; the network communication unit 6 is arranged on the cabinet 1, and the network communication unit 6 is suitable for transmitting data and conducting remote communication; the data storage unit 7 is arranged on the cabinet 1, and the data storage unit 7 is suitable for local storage and cloud sharing of data; the power supply module 8 is arranged on the cabinet 1, and the power supply module 8 is suitable for providing power to each module.
[0072] In an embodiment of the present invention, the vital sign data and environmental data of the elderly are first collected through the sensor unit module 4, and then the vital sign data is transmitted to the health monitoring module 2, and the health monitoring module 2 analyzes and processes the vital sign data and gives personalized health advice, and then the real-time vital sign data is fed back to the user through the human-computer interaction unit 5; at the same time, the environmental data is transmitted to the safety protection module 3, and the real-time body and environment data is analyzed and processed by the safety protection module 3 and an automatic response is achieved using a threshold algorithm, and then the real-time environment data is fed back to the user through the human-computer interaction unit 5.
[0073] Existing smart bedside tables have obvious deficiencies in aging-friendly design, which are mainly reflected in the complex user interaction interface and the difficulty of repairing faults; secondly, the health monitoring function is not comprehensive enough. Although some products have integrated vital sign parameter sensors, the monitoring range is not comprehensive enough, and they lack the ability to analyze data and give personalized suggestions based on the analysis results; in addition, the security measures are single, and most products only use buttons or pull ropes to trigger the sending of distress signals. There is a risk of not being able to obtain effective rescue in time in an emergency, and it is impossible to fully guarantee the safety of the elderly at home. In the present invention, by setting the health monitoring module 2 and the safety protection module 3, it is possible to monitor the physiological vital sign parameters and surrounding environment parameters of the human body, thereby making the monitoring range of the smart bedside table more comprehensive and improving the safety of the elderly at home.
[0074] Specifically, the cabinet 1 includes a first cabinet 11 and a second cabinet 12. The first cabinet 11 is provided with the health monitoring module 2, the safety protection module 3, the sensor unit module 4, the human-computer interaction unit 5, the network communication unit 6, and the data storage unit 7; the second cabinet 12 is arranged below the first cabinet 11, and the second cabinet 12 is detachably connected to the first cabinet 11, and the power module 8 is arranged on the second cabinet 12. Among them, four through holes are evenly arranged at the four corners of the bottom of the first cabinet 11, and four cylindrical fixing blocks are arranged at the corresponding positions of the four corners of the top of the second cabinet 12. The fixing blocks are connected to the through holes one by one, thereby forming the cabinet 1, and realizing the combination and disassembly of the cabinet 1. In addition, the edges of the first cabinet 11 and the second cabinet 12 are provided with arc chamfers to prevent the elderly from bumping into them. In an embodiment of the present invention, the second cabinet 12 is detachably connected to the first cabinet 11, and the first cabinet 11, the second cabinet 12 and each functional module are all modularly configured, so that the first cabinet 11, the second cabinet 12 and each functional module can be repaired and replaced more conveniently. At the same time, each functional module is installed in a PCB modular integration manner, which can ensure that each module can operate independently and stably.
[0075] Furthermore, if Figure 2As shown, the first cabinet 11 is provided with a drawer 111 and a first handle 112, the first handle 112 is provided on the drawer 111, the second cabinet 12 is provided with a flip cover 121 and a second handle 122, the second handle 122 is provided on the flip cover 121, the flip cover 121 is suitable for being separated from the second cabinet 12, and the first handle 112 and the second handle 122 are provided correspondingly. The side wall of the second cabinet 12 is provided with a heat dissipation hole 123 and a power interface, and the heat dissipation hole 123 dissipates the heat generated by each module. In addition, the bottom of the second cabinet 12 is provided with four legs 13, and the legs 13 are suitable for supporting the cabinet 1. The bottom of the second cabinet 12 is also provided with an LED lamp, and the LED lamp is suitable for lighting. The upper surface of the first cabinet 11 is provided with a second display screen 21, and the second display screen 21 is suitable for displaying the data of the health monitoring module 2.
[0076] Furthermore, the health monitoring module 2 uses the ESP-WROOM-32 chip as the core processing unit, and the health monitoring module 2 is connected to the sensor unit module 4 and the human-computer interaction unit 5 respectively. The health monitoring module 2 receives the vital sign parameters transmitted by the sensor unit module 4, and feeds back the vital sign parameters to the user through the human-computer interaction unit 5. In addition, the network communication unit 6 and the data storage unit 7 are used to realize local storage, cloud sharing and statistical analysis of data. Combined with the threshold control algorithm, when vital sign parameters such as heart rate and blood oxygen exceed the normal value range, the system will automatically determine it as an abnormal situation, and give personalized suggestions according to preset rules, including but not limited to medical guidance, and use the human-computer interaction unit 5 to send feedback information to the user; the safety protection module 3 uses the ESP32-CAM chip as the core processing The management unit is embedded in the upper front part of the first cabinet 11, and the safety protection module 3 is connected with the sensor unit module 4 and the human-computer interaction unit 5 respectively. The safety protection module 3 receives the environmental parameters transmitted by the sensor unit module 4, and feeds back the vital sign parameters to the user through the human-computer interaction unit 5. When the value sent by the sensor unit module 4 exceeds the set threshold, the alarm response mechanism will be automatically triggered, and the dual communication path of the network communication unit 6 will be used to ensure the sending of the help signal, including but not limited to dialing a preset number and pushing a mobile phone APP message; at the same time, the network communication unit 6, the data storage unit 7, the timer mechanism and the built-in camera of the core processing unit of the safety protection module 3 are used to jointly realize the cloud sharing of monitoring images, local storage and analysis of data, and send warning information to the human-computer interaction unit 5.
[0077] Specifically, the sensing unit module 4 includes a human monitoring sensor 41 and an environmental monitoring sensor 42. The human monitoring sensor 41 is arranged on the outer surface of the first cabinet 11, and the human monitoring sensor 41 is suitable for collecting physiological parameters of the human body; the environmental monitoring sensor 42 is arranged on the first cabinet 11 and the second cabinet 12, and the environmental monitoring sensor 42 is suitable for collecting environmental parameters in the room.
[0078] Furthermore, if Figure 3 As shown, the human body monitoring sensor 41 includes a physiological monitoring sensor 411 and an infrared body temperature sensor 412. The physiological monitoring sensor 411 is arranged on one side of the outer surface of the first cabinet 11, that is, located on the right side of the outer surface of the first cabinet 11. The physiological monitoring sensor 411 is communicatively connected with the health monitoring module 2. The physiological monitoring sensor 411 collects body sign parameters and transmits them to the health monitoring module 2, and then feeds back to the user through the human-computer interaction unit 5; the infrared body temperature sensor 412 is arranged on the outer surface of the first cabinet 11 and is located on the same side as the physiological monitoring sensor 411, that is, located on the right side of the outer surface of the first cabinet 11. The infrared body temperature sensor 412 is communicatively connected with the health monitoring module 2. The infrared body temperature sensor 412 collects body temperature parameters, transmits them to the health monitoring module 2, and then feeds back to the user through the human-computer interaction unit 5. In the embodiment of the present invention, by setting the physiological monitoring sensor 411 and the infrared body temperature sensor 412, a variety of different physiological sign parameters of the elderly can be collected, and the data can be analyzed and processed through the health monitoring module 2, and then personalized suggestions can be provided to the elderly according to preset rules to help the elderly fully understand their physical health conditions.
[0079] Among them, the physiological monitoring sensor 411 can utilize the characteristic of oxygenated hemoglobin to absorb infrared light, collect heart rate, blood oxygen saturation, blood pressure, fatigue and other vital sign parameters in real time, and send the real-time data to the health monitoring module 2 through serial communication. The infrared body temperature sensor 412 is set to be non-contact, and can complete body temperature data collection by utilizing the principle of thermal radiation, and send the real-time data to the health monitoring module 2 through IIC digital communication.
[0080] Furthermore, if Figure 4As shown, the environmental monitoring sensor 42 includes a knock sensor 421, a smoke sensor 422, a temperature and humidity sensor 423 and a human presence sensor 424. The knock sensor 421 is arranged on the outer surface of the first cabinet 11 and is located on the same side as the infrared body temperature sensor 412, that is, located on the right side of the outer surface of the first cabinet 11. The knock sensor 421 is communicatively connected with the safety protection module 3. The knock sensor 421 collects vibration signals, converts them into electrical signals, and transmits them to the safety protection module 3; the smoke sensor 422 is arranged on the outer surface of the first cabinet 11 and is located on the same side as the knock sensor 421, that is, located on the right side of the outer surface of the first cabinet 11. The sensor 422 is connected to the safety protection module 3 in communication, and the smoke sensor 422 collects smoke concentration signals and transmits them to the safety protection module 3; the temperature and humidity sensor 423 is arranged on the outer surface of the first cabinet 11, and is located on the opposite side of the smoke sensor 422, that is, on the left side of the outer surface of the first cabinet 11, and the temperature and humidity sensor 423 is connected to the safety protection module 3 in communication, and the temperature and humidity sensor 423 collects temperature and humidity data and transmits them to the safety protection module 3; the human presence sensor 424 is arranged at the bottom of the second cabinet 12, and the human presence sensor 424 is suitable for detecting infrared signals emitted by the human body, and controlling the opening and closing of the LED light according to the infrared signals. In the embodiment of the present invention, by setting the knock sensor 421, the smoke sensor 422, the temperature and humidity sensor 423 and the human presence sensor 424, it is possible to comprehensively monitor the environmental conditions, and automatically trigger the response mechanism by combining multiple ways such as threshold breakthrough, event response and timer, and use the dual communication ways of WIFI wireless communication and mobile network communication to ensure the sending of the help signal, and comprehensively protect the safety of the elderly.
[0081] Among them, the knock sensor 421 collects vibration signals, and uses the principle of piezoelectric effect to convert the voltage changes generated by the vibration into electrical signals, and transmits them to the safety protection module 3 through the digital communication interface. The smoke sensor 422 uses the principle of metal oxide semiconductor technology to complete real-time monitoring of environmental smoke concentration by collecting resistance changes caused by gas molecule adsorption, and transmits them to the safety protection module 3 through the digital communication interface. The temperature and humidity sensor 423 collects temperature and humidity data, and transmits the temperature and humidity data to the safety protection module 3 through the digital communication interface.
[0082] Specifically, the human-computer interaction unit 5 includes a first display screen 51, a PC display screen, a mobile phone APP, and a voice module 52. The first display screen 51 is arranged on the outer surface of the first cabinet 11 and is located on the same side as the temperature and humidity sensor 423, that is, on the left side of the outer surface of the first cabinet 11. The first display screen 51 is connected to the health monitoring module 2 through the IIC digital communication interface, and the first display screen 51 is suitable for displaying physical sign parameters in real time; the PC display screen is connected to the health monitoring module 2 and the safety protection module 3 through the network communication unit 6, and the PC display screen uses the data storage unit 7 to display the data monitored by the sensor unit module 4, and then remotely view various data; the mobile phone APP is connected to the health monitoring module 2 and the safety protection module 3 through the network communication unit 6, and the mobile phone APP is suitable for remotely viewing the physical sign parameters, environmental parameters and health recommendations in the data storage unit 7; the voice module 52 is arranged on the inner surface of the first cabinet 11, and the voice module 52 is connected to the health monitoring module 2 and the safety protection module 3, and the voice module 52 is suitable for real-time broadcasting of real-time data and warning information. In the embodiment of the present invention, by setting the first display screen 51, the PC display screen, the mobile phone APP, and the voice module 52, the elderly can obtain physiological sign data and environmental parameters from different platforms, thereby ensuring the diversity of data obtained by the elderly.
[0083] Furthermore, if Figure 5 As shown, the voice module 52 includes an offline voice module 521 and a voice synthesis module 522. The offline voice module 521 and the voice synthesis module 522 are both installed on the lower surface of the desktop of the first cabinet 11, and are respectively connected to the health monitoring module 2 and the safety protection module 3 through the serial port, and are responsible for voice broadcasting the real-time data monitored by the sensor unit module 4 and the warning information transmitted by the safety protection module 3 to the user.
[0084] Specifically, the network communication unit 6 includes a WIFI wireless communication module and a mobile network communication module. The WIFI wireless communication module is arranged on the inner surface of the first cabinet 11. The WIFI wireless communication module realizes the connection between the device and the network, data interaction and cloud platform API service call through the health monitoring module 2 and the security protection module 3; the mobile network communication module is arranged on the inner surface of the first cabinet 11, and the mobile network communication module is suitable for realizing the call to the preset number.
[0085] Furthermore, the mobile network communication module includes a 2G cellular network communication module and a 4G mobile network communication module. The 2G cellular network communication module is installed inside the first cabinet 11, and the 2G cellular network communication module is suitable for sending text messages and making phone calls to preset numbers; the 4G mobile network communication module is implemented by relying on the built-in 4G LTE module of the mobile phone. As a component of the redundant network connection mechanism, it ensures that when the WIFI network fails, it can quickly replace the connection network to ensure the continuity and stability of data transmission.
[0086] Specifically, the data storage unit 7 includes a storage card and a PC-side memory. The storage card is arranged inside the first cabinet 11. The storage card is connected to the health monitoring module 2 via an SPI communication interface. The storage card is suitable for local storage of vital sign parameters; the PC-side memory is connected to the health monitoring module 2 and the safety protection module 3 via the network communication unit 6 to realize data cloud uploading and sharing. The PC-side memory can also be connected to the health monitoring module 2 via a serial port to realize local data storage.
[0087] The specific working process of the aging-friendly smart bedside table system provided by the present invention is as follows:
[0088] First, the physiological monitoring sensor 411 and the infrared body temperature sensor 412 collect vital sign parameters such as heart rate, blood oxygen saturation, blood pressure, fatigue, body temperature, etc., and then transfer the vital sign parameters to the health monitoring module 2, and simultaneously store the vital sign parameters in the data storage unit 7, and analyze and process the vital sign data through the health monitoring module 2 and give personalized health suggestions, and then transmit the suggestions to the first display screen 51, the PC display screen, and the mobile phone APP, and broadcast them through the offline voice module 521 and the voice synthesis module 522, and at the same time, various environmental parameters are collected through the knock sensor 421, the smoke sensor 422, the temperature and humidity sensor 423, and the human presence sensor 424, and then the environmental parameters are transferred to the safety protection module 3, and the environmental parameters are analyzed and processed by the safety protection module 3 and automatic response is achieved using the threshold algorithm, and then the real-time environmental data is fed back to the user through the human-computer interaction unit 5, so that the user can obtain data and complete the working process of the smart bedside table system.
[0089] Obviously, the above embodiments are merely examples for the purpose of clear explanation, and are not intended to limit the implementation methods. For those skilled in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation methods here. The obvious changes or modifications derived therefrom are still within the scope of protection of the invention.
Claims
1. An aging-friendly smart bedside table system, characterized in that: include: Cabinet (1), A health monitoring module (2) is arranged in the cabinet (1); the health monitoring module (2) uses a chip as a processing unit and is suitable for monitoring vital sign parameters of a human body; A safety protection module (3) is arranged on a side of the cabinet (1); the safety protection module (3) uses a chip as a processing unit and is suitable for monitoring environmental parameters of the room; A sensor unit module (4) is arranged on the cabinet (1), the sensor unit module (4) is connected to the health monitoring module (2) and the safety protection module (3), and the sensor unit module (4) is suitable for collecting vital sign parameters and environmental parameters; A human-machine interaction unit (5) is arranged on the cabinet (1), the human-machine interaction unit (5) is connected to the health monitoring module (2) and the safety protection module (3), and the human-machine interaction unit (5) is suitable for responding to abnormal conditions of the health monitoring module (2) and the safety protection module (3); A network communication unit (6) is arranged on the cabinet (1), and the network communication unit (6) is suitable for transmitting data and performing remote communication; A data storage unit (7) is arranged on the cabinet (1), and the data storage unit (7) is suitable for local storage and cloud sharing of data; A power module (8) is arranged on the cabinet (1), and the power module (8) is suitable for providing electric energy to each module; Vital sign data and environmental data are collected through the sensor unit module (4), the vital sign data is transmitted to the health monitoring module (2) for data analysis and processing, and the processed results are fed back to the user through the human-computer interaction unit (5), and at the same time, the environmental data is transmitted to the safety protection module (3) for data analysis and processing, and the processed results are fed back to the user through the human-computer interaction unit (5).
2. The aging-friendly smart bedside table system according to claim 1 is characterized in that: The cabinet (1) comprises: A first cabinet (11), wherein the health monitoring module (2), the safety protection module (3), the sensor unit module (4), the human-computer interaction unit (5), the network communication unit (6), and the data storage unit (7) are arranged on the first cabinet (11); The second cabinet (12) is arranged below the first cabinet (11); the second cabinet (12) is detachably connected to the first cabinet (11); and the power module (8) is arranged on the second cabinet (12).
3. The aging-friendly smart bedside table system according to claim 2 is characterized in that: The first cabinet (11) is provided with a drawer (111) and a first handle (112), the second cabinet (12) is provided with a flip cover (121) and a second handle (122), and the first handle (112) and the second handle (122) are provided correspondingly.
4. The aging-friendly smart bedside table system according to claim 3 is characterized in that: The side wall of the second cabinet (12) is provided with heat dissipation holes (123) and a power supply interface, and the heat dissipation holes (123) dissipate heat generated by each module.
5. The aging-friendly smart bedside table system according to claim 2, characterized in that: The sensor unit module (4) comprises: A human body monitoring sensor (41) is arranged on the outer surface of the first cabinet (11), and the human body monitoring sensor (41) is suitable for collecting physiological parameters of the human body; An environmental monitoring sensor (42) is arranged on the first cabinet (11) and the second cabinet (12), and the environmental monitoring sensor (42) is suitable for collecting environmental parameters of a room.
6. The aging-friendly smart bedside table system according to claim 5, characterized in that: The human body monitoring sensor (41) comprises: A physiological monitoring sensor (411) is arranged on one side of the outer surface of the first cabinet (11), the physiological monitoring sensor (411) is communicatively connected with the health monitoring module (2), and the physiological monitoring sensor (411) collects vital sign parameters and transmits them to the health monitoring module (2); An infrared body temperature sensor (412) is arranged on the outer surface of the first cabinet (11) and is located on the same side as the physiological monitoring sensor (411). The infrared body temperature sensor (412) is communicatively connected with the health monitoring module (2). The infrared body temperature sensor (412) collects body temperature parameters and transmits them to the health monitoring module (2).
7. The aging-friendly smart bedside table system according to claim 6, characterized in that: The environmental monitoring sensor (42) comprises: a knock sensor (421), arranged on the outer surface of the first cabinet (11) and located on the same side as the infrared body temperature sensor (412); the knock sensor (421) is communicatively connected with the safety protection module (3); the knock sensor (421) collects vibration signals, converts them into electrical signals, and transmits them to the safety protection module (3); a smoke sensor (422) disposed on the outer surface of the first cabinet (11) and located on the same side as the knock sensor (421); the smoke sensor (422) is communicatively connected to the safety protection module (3); the smoke sensor (422) collects a smoke concentration signal and transmits it to the safety protection module (3); a temperature and humidity sensor (423), arranged on the outer surface of the first cabinet (11) and located on a side opposite to the smoke sensor (422); the temperature and humidity sensor (423) is communicatively connected to the safety protection module (3); the temperature and humidity sensor (423) collects temperature and humidity data and transmits it to the safety protection module (3); A human presence sensor (424) is arranged at the bottom of the second cabinet (12), and the human presence sensor (424) is suitable for detecting infrared signals emitted by a human body.
8. The aging-friendly smart bedside table system according to claim 7, characterized in that: The human-computer interaction unit (5) comprises: A first display screen (51) is arranged on the outer surface of the first cabinet (11) and is located on the same side as the temperature and humidity sensor (423); the first display screen (51) is communicatively connected to the health monitoring module (2); and the first display screen (51) is suitable for displaying vital sign parameters in real time; A PC display screen is connected to the health monitoring module (2) and the safety protection module (3) via the network communication unit (6), and the PC display screen is suitable for remote viewing; A mobile phone APP is connected to the health monitoring module (2) and the safety protection module (3) via the network communication unit (6), and the mobile phone APP is suitable for remotely viewing various parameters; A voice module (52) is arranged on the inner surface of the first cabinet (11), the voice module (52) is connected to the health monitoring module (2) and the safety protection module (3), and the voice module (52) is suitable for real-time broadcasting of real-time data and warning information.
9. The aging-friendly smart bedside table system according to any one of claims 2 to 8, characterized in that: The network communication unit (6) comprises: A WIFI wireless communication module is arranged on the inner surface of the first cabinet (11), and the WIFI wireless communication module realizes all network connections through the health monitoring module (2) and the safety protection module (3); A mobile network communication module is arranged on the inner surface of the first cabinet (11), and the mobile network communication module is suitable for making a call to a preset number.
10. The aging-friendly smart bedside table system according to claim 9, characterized in that: The data storage unit (7) comprises: a storage card, arranged inside the first cabinet (11), the storage card being connected to the health monitoring module (2), and the storage card being suitable for locally storing vital sign parameters; The PC-side storage is connected to the health monitoring module (2) and the safety protection module (3) via the network communication unit (6) to achieve data cloud uploading and sharing.