Sleep quality monitoring room

By integrating a monitoring mechanism, an environmental adjustment mechanism, and a data processing module into the sleep quality monitoring room, the patient environment can be monitored and adjusted in real time. This solves the problems of simple structure and poor detection effect of existing equipment, and achieves efficient sleep quality monitoring and environmental adjustment, reducing the need for medication.

CN120918569APending Publication Date: 2025-11-11KANGSHI JIAYUAN (JIANGSU) TECH CO LTD
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Patent Information

Application Number
CN202510831516.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-11-11

AI Technical Summary

Technical Problem

Existing sleep quality monitoring equipment has a simple structure, poor detection effect, difficulty in adjusting sleep quality during the patient's sleep process, and poor practicality of treatment plans.

Method used

A sleep quality monitoring room is provided, comprising a monitoring mechanism, an environmental adjustment mechanism, and a data processing module. It monitors the patient's sleep quality and processes the data in real time, adjusts the patient's surrounding environment to improve sleep quality, and derives a treatment plan based on the monitoring results.

Benefits of technology

It improves the accuracy and practicality of sleep quality monitoring, reduces patients' medication needs, provides a suitable sleep environment for patients, and enhances the space utilization efficiency of the equipment.

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Abstract

The invention relates to the technical field of sleep quality monitoring, in particular to a sleep quality monitoring room which comprises a monitoring room. The system further comprises a monitoring mechanism, an environment adjusting mechanism and a data processing module, and the monitoring mechanism, the environment adjusting mechanism and the data processing module are all installed in the monitoring room. A patient enters the monitoring room to sleep, the sleep quality of the patient is monitored through the monitoring mechanism, the data processing module processes the monitoring result in real time, the environment in the monitoring room is monitored through the environment adjusting mechanism, and the sleep quality of the patient is improved by adjusting the surrounding environment of the patient. A treatment scheme can be obtained according to factors capable of improving the sleep quality of the patient, the patient can conveniently adjust the environment at home according to the treatment scheme, medicine use of the patient is reduced, and therefore the practicability of the equipment is improved.
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Description

Technical Field

[0001] This invention relates to the technical field of sleep quality monitoring, and in particular to a sleep quality monitoring room. Background Technology

[0002] As people's pace of life accelerates, so does their stress, leading to poor sleep quality for many. This severely impacts their daily lives and work. When people seek sleep quality adjustments at hospitals, doctors often recommend using home sleep apnea monitoring devices and control methods disclosed in patent CN117942476B and patent CN112244773B, to monitor their sleep quality. Based on the monitoring results, doctors then treat the patients using appropriate treatment methods.

[0003] However, most treatments rely on medication, which has a significant impact on patients' health. Furthermore, existing sleep quality monitoring devices are relatively simple in structure, merely monitoring the user's sleep patterns with poor detection results. They struggle to adjust the patient's sleep quality during sleep and derive treatment or sleep quality improvement plans based on the adjustment effects, resulting in poor practicality. Therefore, there is an urgent need for a sleep quality monitoring device to address these issues. Summary of the Invention

[0004] To address the aforementioned technical problems, this invention provides a sleep quality monitoring room where a patient enters a monitoring room to sleep, while a monitoring mechanism monitors the patient's sleep quality. Simultaneously, a data processing module processes the monitoring results in real time, and an environmental adjustment mechanism monitors the environment within the monitoring room. By adjusting the patient's surrounding environment, the invention aims to improve the patient's sleep quality and derive a treatment plan based on factors that enhance sleep quality. This allows patients to easily adjust their environment at home according to the treatment plan, reducing medication use and thus improving the practicality of the equipment.

[0005] The present invention provides a sleep quality monitoring room, comprising a monitoring room; and further comprising a monitoring mechanism, an environmental control mechanism, and a data processing module, wherein the monitoring mechanism, the environmental control mechanism, and the data processing module are all installed in the monitoring room; The monitoring room provides a sleep environment for patients, the monitoring agency monitors the patients' sleep quality, the environmental control agency adjusts the environment in the monitoring room, and the data processing module processes the data generated during the operation of the monitoring agency and the environmental control agency. The patient enters the monitoring room to sleep, and the monitoring device monitors the patient's sleep quality. At the same time, the data processing module processes the monitoring results in real time, and the environmental adjustment device monitors the environment in the monitoring room. By adjusting the patient's surrounding environment, the device can improve the patient's sleep quality. Based on the factors that can improve the patient's sleep quality, a treatment plan is derived, which allows the patient to adjust the environment at home according to the treatment plan, reducing the patient's medication and thus improving the practicality of the equipment.

[0006] Preferably, the monitoring room includes a soundproof room, a soundproof door, a soundproof roof, an electric cylinder, and a sealing mechanism. The soundproof door is installed on the soundproof room, the soundproof roof is installed on the top of the soundproof room via the electric cylinder, the sealing mechanism is installed on the electric cylinder, and a bed is installed inside the soundproof room. An exhaust pipe is installed at the bottom of the soundproof room. After the patient enters the soundproof room, the soundproof door is closed, and the patient lies on the bed to sleep. According to the patient's needs, the electric cylinder can be extended or retracted to adjust the height of the multiple sets of soundproof roofs. Then, the sealing mechanism seals the gap between the soundproof room and the soundproof roof, thereby improving the practicality of the equipment.

[0007] Preferably, the sealing mechanism includes a strip-shaped airbag, an exhaust pipe, a piston, a second electric cylinder, a first solenoid valve, and a delivery pipe. The strip-shaped airbag is fitted onto the soundproof roof and is located between the soundproof roof and the soundproof room. A sound-insulating layer is provided on the surface of the strip-shaped airbag. The exhaust pipe is installed on the top of the soundproof roof. The piston is slidably installed in the exhaust pipe. The second electric cylinder is fixedly installed in the piston, and one end of the second electric cylinder is connected to the piston. One end of the delivery pipe is installed on the exhaust pipe through the first solenoid valve, and the other end of the delivery pipe communicates with the interior of the strip-shaped airbag. After the height of the soundproof roof is adjusted, the second electric cylinder extends, and the first solenoid valve opens, causing the piston to move backward, expelling air from the exhaust pipe into the strip-shaped airbag, causing the strip-shaped airbag to expand and seal the gap between the soundproof roof and the soundproof room, providing a quiet sleeping environment for the patient, thereby improving the practicality of the equipment.

[0008] Preferably, the monitoring mechanism includes a guide rail and an electric slider. The guide rail is installed at the bottom of the soundproof roof, and the electric slider is slidably installed on the guide rail. The electric slider is equipped with a temperature sensor, a humidity sensor, a high-definition camera, an infrared camera, and a millimeter-wave radar. Several pressure sensors are installed on the bed, and a sound sensor is installed inside the soundproof room. By sliding the electric slider on the guide rail, the positions of the temperature sensor, humidity sensor, high-definition camera, infrared camera, and millimeter-wave radar are adjusted. Then, the temperature sensor monitors the temperature inside the soundproof room, the humidity sensor monitors the humidity inside the soundproof room, the high-definition camera monitors the patient's facial expressions, the millimeter-wave radar monitors the patient's breathing, the infrared camera monitors changes in the patient's body temperature, the pressure sensors on the bed monitor the patient's movements, and the sound sensor monitors the patient's snoring, thereby improving the practicality of the equipment.

[0009] Preferably, the environmental control mechanism includes a lifting platform, a slide rail, an oxygen cylinder, an exhaust pump, a mixing mechanism, and an exhaust mechanism. The lifting platform is slidably mounted on the soundproof roof via the slide rail. The oxygen cylinder is mounted on top of the lifting platform and is equipped with an electrically controlled valve. The exhaust pump and mixing mechanism are both mounted on top of the soundproof roof, and the exhaust mechanism is mounted in the side wall of the soundproof room. Both the oxygen cylinder and the exhaust pump are connected to the interior of the mixing mechanism. By opening the electrically controlled valve on the oxygen cylinder, oxygen is discharged into the mixing mechanism. Simultaneously, the exhaust pump discharges air into the mixing mechanism, where the air and oxygen are mixed to form a mixed gas. The mixed gas is then discharged to the top of the soundproof room through the mixing mechanism. Subsequently, the mixed gas at the top of the soundproof room is slowly discharged to the bottom of the soundproof room through the exhaust mechanism, providing patients with oxygen of different concentrations. Excess gas in the soundproof room is discharged through the exhaust pipe at the bottom of the soundproof room, thereby improving the practicality of the equipment.

[0010] Preferably, the mixing mechanism includes a mixing tank, two sets of jet pipes, multiple sets of mesh panels, and a second solenoid valve. The mixing tank is installed on the top of the soundproof roof, both sets of jet pipes are installed on the top of the mixing tank, and the electric control valve on the oxygen cylinder and the exhaust port of the exhaust pump are each connected to one set of jet pipes. The multiple sets of mesh panels are installed inside the mixing tank, and the second solenoid valve is installed at the bottom of the mixing tank. Oxygen and air are sprayed into the mixing tank through the two sets of jet pipes, causing the oxygen and air to collide with each other. Then, the multiple sets of mesh panels block the oxygen and air, causing them to mix and form a mixed gas. Finally, the second solenoid valve discharges the mixed gas to the top of the soundproof room, thereby improving the practicality of the equipment.

[0011] Preferably, the exhaust mechanism includes an exhaust pipe, a one-way valve, a spiral blade, a heating element, a semiconductor cooling plate, an atomizer, and a liquid container. The exhaust pipe is installed in the side wall of the soundproof room, with one end communicating with the top of the soundproof room and the other end communicating with the bottom of the soundproof room. The one-way valve is installed at the other end of the exhaust pipe. The spiral blade is installed inside the exhaust pipe. The heating element is fitted onto the exhaust pipe. The semiconductor cooling plate is installed on the soundproof room, with its cooling end extending into the exhaust pipe and its heat dissipation end extending outside the soundproof room. A heat sink is provided on the heat dissipation end of the semiconductor cooling plate. The atomizer is installed on the top of the soundproof roof. The liquid container is installed on the inlet of the nebulizer and is located below the soundproof roof. The spray nozzle of the nebulizer is connected to the interior of the exhaust pipe through a hose. The mixed gas from the top of the soundproof room enters the exhaust pipe, and at the same time, the aromatherapy in the liquid container is atomized and sprayed into the exhaust pipe through the operation of the nebulizer. The mixed gas and atomized aromatherapy are guided by the spiral blades, so that the mixed gas and atomized aromatherapy are mixed. Then, the gas in the exhaust pipe is heated by the heating element or cooled by the semiconductor cooling plate. Finally, the mixed gas and atomized aromatherapy are discharged into the soundproof room to adjust the patient's sleep environment, thereby improving the practicality of the equipment.

[0012] Preferably, the data processing module includes a data receiving unit, a data processing unit, a data analysis unit, a data storage unit, and a command transmission unit, and the data receiving unit, data processing unit, data analysis unit, data storage unit, and command transmission unit are electrically connected to each other; The data analysis unit employs a BP neural network. It receives information transmitted from the monitoring and environmental control mechanisms via a data receiving unit, blurs information related to human privacy in the monitoring data via a data processing unit, and then analyzes the processed data to determine the patient's sleep quality in different environments. The data analysis unit then generates control commands, which are transmitted to the environmental control mechanism via a command transmission unit. Simultaneously, the data storage unit stores the data acquired by the monitoring mechanism, the operational data of the environmental control mechanism, the analysis process of the data analysis unit, and the control commands generated by the data analysis unit, thereby improving the device's usability.

[0013] Preferably, an oxygen concentration monitor is installed on the top of the soundproof roof to monitor the oxygen concentration at the top of the soundproof room.

[0014] Preferably, the exhaust pump is equipped with an air filter, and the air filter is equipped with a hydraulic cylinder air supply pipe, one end of which extends to the outside of the soundproof room. When the exhaust pump is running, air is discharged into the air filter through the air supply pipe, so that the air filter filters out odors and impurities in the air. The filtered air is then discharged into a set of jet pipes by the exhaust pump, thereby improving the practicality of the equipment.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. By using multiple monitoring methods and combining them with neural networks to analyze the acquired monitoring information, the accuracy of monitoring patients' sleep quality can be improved, making it easier to judge the sleep quality of patients at different time periods; 2. By combining monitoring with environmental regulation and using neural networks, a suitable sleep environment can be found for patients, thereby reducing their medication use; 3. Adopting a modular and compact structural design reduces the space occupied by the equipment. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the isometric structure of the present invention; Figure 2 This is a schematic diagram of the isometric cross-sectional structure of the present invention; Figure 3 This is a frontal cross-sectional structural diagram of the present invention; Figure 4 This is a schematic diagram of the right-side cross-sectional structure of the present invention; Figure 5 This is the present invention. Figure 4 A magnified structural diagram of part A in the diagram; Figure 6 This is an isometric structural schematic diagram of the environmental control mechanism of the present invention; Figure 7 This is a schematic diagram of the right-side cross-sectional structure of the exhaust pipe of the present invention; Figure 8 This is an isometric schematic diagram of the environmental control mechanism and electric slider of the present invention; Figure 9 This is a front view structural schematic diagram of the environmental control mechanism of the present invention; Figure 10 This is a front view cross-sectional structural schematic diagram of the environmental control mechanism of the present invention; Figure 11 This is a schematic diagram of the data processing module of the present invention.

[0017] The attached diagram is labeled as follows: 1. Soundproof room; 2. Soundproof door; 3. Soundproof roof; 4. Electric cylinder one; 5. Bed; 6. Strip-shaped airbag; 7. Exhaust pipe; 8. Piston; 9. Electric cylinder two; 10. Solenoid valve one; 11. Delivery pipe; 12. Guide rail; 13. Electric slider; 14. Lifting platform; 15. Slide rail; 16. Oxygen cylinder; 17. Exhaust pump; 18. Mixing tank; 19. Jet pipe; 20. Mesh plate; 21. Solenoid valve two; 22. Exhaust pipe; 23. One-way valve; 24. Spiral blade; 25. Heating element; 26. Semiconductor cooling plate; 27. Atomizer; 28. Liquid container; 29. ​​Data receiving unit; 30. Data processing unit; 31. Data analysis unit; 32. Data storage unit; 33. Command transmission unit; 34. Air filter; 35. Gas delivery pipe. Detailed Implementation

[0018] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.

[0019] Example 1: As Figures 1 to 11 As shown, a sleep quality monitoring room includes a monitoring room; it also includes a monitoring mechanism, an environmental control mechanism, and a data processing module, all of which are installed in the monitoring room. The monitoring room provides a sleep environment for patients, the monitoring agency monitors the patients' sleep quality, the environmental control agency adjusts the environment in the monitoring room, and the data processing module processes the data generated during the operation of the monitoring agency and the environmental control agency. The monitoring room includes a soundproof room 1, a soundproof door 2, a soundproof roof 3, an electric cylinder 4, and a sealing mechanism. The soundproof door 2 is installed on the soundproof room 1. The soundproof roof 3 is installed on the top of the soundproof room 1 through the electric cylinder 4. The sealing mechanism is installed on the electric cylinder 4. A bed 5 is provided inside the soundproof room 1, and an exhaust pipe is provided at the bottom of the soundproof room 1. The sealing mechanism includes a strip-shaped airbag 6, an exhaust pipe 7, a piston 8, an electric cylinder 9, a solenoid valve 10, and a delivery pipe 11. The strip-shaped airbag 6 is fitted onto the soundproof roof 3 and is located between the soundproof roof 3 and the soundproof room 1. A sound insulation layer is provided on the surface of the strip-shaped airbag 6. The exhaust pipe 7 is installed on the top of the soundproof roof 3. The piston 8 is slidably installed in the exhaust pipe 7. The electric cylinder 9 is fixedly installed in the piston 8, and one end of the electric cylinder 9 is connected to the piston 8. One end of the delivery pipe 11 is installed on the exhaust pipe 7 through the solenoid valve 10, and the other end of the delivery pipe 11 communicates with the interior of the strip-shaped airbag 6. The monitoring mechanism includes a guide rail 12 and an electric slider 13. The guide rail 12 is installed at the bottom of the soundproof roof 3, and the electric slider 13 is slidably installed on the guide rail 12. The electric slider 13 is equipped with a temperature sensor, a humidity sensor, a high-definition camera, an infrared camera, and a millimeter-wave radar. The bed 5 is equipped with several pressure sensors, and the soundproof room 1 is equipped with a sound sensor. The environmental control mechanism includes a lifting platform 14, a slide rail 15, an oxygen cylinder 16, an exhaust pump 17, a mixing mechanism, and an exhaust mechanism. The lifting platform 14 is slidably installed on the soundproof roof 3 via the slide rail 15. The oxygen cylinder 16 is installed on the top of the lifting platform 14 and is equipped with an electric control valve. The exhaust pump 17 and the mixing mechanism are both installed on the top of the soundproof roof 3. The exhaust mechanism is installed in the side wall of the soundproof room 1. The oxygen cylinder 16 and the exhaust pump 17 are both connected to the interior of the mixing mechanism. The mixing mechanism includes a mixing tank 18, two sets of jet pipes 19, multiple sets of mesh plates 20, and a second solenoid valve 21. The mixing tank 18 is installed on the top of the soundproof roof 3. Both sets of jet pipes 19 are installed on the top of the mixing tank 18. The electric control valve on the oxygen cylinder 16 and the exhaust port of the exhaust pump 17 are each connected to a set of jet pipes 19. The multiple sets of mesh plates 20 are installed inside the mixing tank 18. The second solenoid valve 21 is installed at the bottom of the mixing tank 18. The exhaust mechanism includes an exhaust pipe 22, a one-way valve 23, a spiral blade 24, a heating element 25, a semiconductor cooling plate 26, an atomizer 27, and a liquid container 28. The exhaust pipe 22 is installed in the side wall of the soundproof room 1, with one end of the exhaust pipe 22 communicating with the top of the soundproof room 1 and the other end communicating with the bottom of the soundproof room 1. The one-way valve 23 is installed at the other end of the exhaust pipe 22, the spiral blade 24 is installed inside the exhaust pipe 22, and the heating element 25 is fitted into the exhaust pipe 28. 2. A semiconductor cooling plate 26 is installed on the soundproof room 1, and the cooling end of the semiconductor cooling plate 26 extends into the exhaust pipe 22. The heat dissipation end of the semiconductor cooling plate 26 extends outside the soundproof room 1. A heat sink is provided on the heat dissipation end of the semiconductor cooling plate 26. An atomizer 27 is installed on the top of the soundproof roof 3. A liquid container 28 is installed on the liquid inlet of the atomizer 27 and is located below the soundproof roof 3. The spray nozzle of the atomizer 27 is connected to the interior of the exhaust pipe 22 through a hose. An oxygen concentration monitor is installed on the top of the soundproof roof 3; An air filter 34 is provided on the exhaust pump 17, and an air supply pipe 35 is provided on the air filter 34, with one end of the air supply pipe 35 extending to the outside of the soundproof room 1. After the patient enters the soundproof room 1, the soundproof door 2 is closed. The patient then lies on the bed 5 to sleep. According to the patient's needs, the electric cylinder 4 extends or retracts, adjusting the height of the multiple soundproof roof sections 3. Then, the electric cylinder 9 extends, simultaneously opening the solenoid valve 10, causing the piston 8 to move backward, expelling air from the exhaust pipe 7 into the strip-shaped airbag 6. This inflates the airbag 6, sealing the gap between the soundproof roof 3 and the soundproof room 1, providing a quiet sleeping environment for the patient. Then, the electric slider 13 slides on the guide rail 12, adjusting the positions of the temperature sensor, humidity sensor, high-definition camera, infrared camera, and millimeter-wave radar. Finally, the temperature sensor controls the soundproof room's temperature. Temperature within the soundproof room 1 is monitored, humidity is monitored using a humidity sensor, facial expressions of the patient are monitored using a high-definition camera, respiratory status is monitored using millimeter-wave radar, body temperature changes are monitored using an infrared camera, patient movements are monitored using several pressure sensors on bed 5, and snoring is monitored using a sound sensor. The data processing module analyzes and processes the acquired patient data and environmental data within the soundproof room 1. Based on the analysis results, an appropriate amount of oxygen is released into the mixing tank 18 by opening the electronically controlled valve on oxygen cylinder 16, while simultaneously, an exhaust pump 17 releases an appropriate amount of air into the empty space of the mixing tank 18. The gas mixes with oxygen to form a mixed gas. Multiple mesh plates 20 then block the oxygen and air, further mixing them to form a mixed gas. Solenoid valve 21 then discharges the mixed gas to the top of the soundproof room 1, reducing its flow rate and further mixing it. The mixed gas at the top of the soundproof room 1 then enters the exhaust pipe 22. Simultaneously, the atomizer 27 atomizes the aromatherapy in the liquid container 28 and sprays it into the exhaust pipe 22. Spiral blades 24 guide the mixed gas and atomized aromatherapy, ensuring they mix. The gas in the exhaust pipe 22 is then heated by a heating element 25, or by a semiconductor cooling plate 26. The air inside chamber 22 is cooled, and then the mixed gas and atomized aromatherapy are discharged into soundproof room 1 to adjust the patient's sleep environment. Different concentrations of oxygen and different plant aromatherapy are provided to the patient. Excess gas in soundproof room 1 is then discharged through the exhaust pipe at the bottom of soundproof room 1. The patient is monitored in real time by a monitoring device, and the concentrations of oxygen, air, and aromatherapy are adjusted to determine the impact of different concentrations of oxygen, air, and aromatherapy at different times on the patient's sleep quality. Finally, the optimal ratio of oxygen, air, and aromatherapy to improve the patient's sleep quality is determined, allowing the patient to adjust their home environment according to the determined ratio, thereby improving the patient's sleep quality and enhancing the practicality of the equipment.

[0020] Example 2: As Figures 1 to 11 As shown, a sleep quality monitoring room, based on Example 1, further includes: The data processing module includes a data receiving unit 29, a data processing unit 30, a data analysis unit 31, a data storage unit 32, and a command transmission unit 33. The data receiving unit 29, the data processing unit 30, the data analysis unit 31, the data storage unit 32, and the command transmission unit 33 are electrically connected. The data analysis unit 31 employs a BP neural network; After the patient enters the soundproof room 1, the soundproof door 2 is closed. The patient then lies on the bed 5 to sleep. According to the patient's needs, the electric cylinder 4 extends or retracts, adjusting the height of the multiple soundproof roof sections 3. Then, the electric cylinder 9 extends, simultaneously opening the solenoid valve 10, causing the piston 8 to move backward, expelling air from the exhaust pipe 7 into the strip-shaped airbag 6. This inflates the airbag 6, sealing the gap between the soundproof roof 3 and the soundproof room 1, providing a quiet sleeping environment for the patient. Then, the electric slider 13 slides on the guide rail 12, adjusting the positions of the temperature sensor, humidity sensor, high-definition camera, infrared camera, and millimeter-wave radar. The temperature sensor monitors the temperature inside the soundproof room 1, and the humidity sensor... The system monitors humidity within the soundproof room 1, monitors the patient's facial expressions using a high-definition camera, monitors the patient's breathing using millimeter-wave radar, monitors changes in the patient's body temperature using an infrared camera, monitors the patient's movements using several pressure sensors on the bed 5, monitors the patient's snoring using a sound sensor, and receives information transmitted from the monitoring and environmental control mechanisms via a data receiving unit 29. A data processing unit 30 blurs information related to human privacy in the monitoring system, and then a data analysis unit 31 analyzes the processed data to determine the patient's sleep quality in different environments. The data analysis unit 31 then generates control commands, which are transmitted via a single command transmission unit. Yuan 33 transmits control commands to the environmental control mechanism. Based on the analysis results, it opens the electronically controlled valve on oxygen cylinder 16 to release an appropriate amount of oxygen into mixing tank 18. Simultaneously, exhaust pump 17 releases an appropriate amount of air into mixing tank 18, where the air and oxygen mix to form a mixed gas. Multiple mesh plates 20 then block the oxygen and air, further mixing them. Solenoid valve 21 then discharges the mixed gas to the top of the soundproof room 1, reducing its flow rate and further mixing it. The mixed gas at the top of the soundproof room 1 then enters exhaust pipe 22. Simultaneously, atomizer 27 atomizes the aromatherapy in liquid container 28 and sprays it into exhaust pipe 22. The mixture is then further atomized by spiral blades 24. The system guides the atomized aromatherapy diffuser to mix the gas mixture with the diffused aromatherapy. The gas in the exhaust pipe 22 is then heated by the heating element 25 or cooled by the semiconductor cooling plate 26. The mixture and diffused aromatherapy are then discharged into the soundproof room 1 to adjust the patient's sleep environment, providing different concentrations of oxygen and various plant aromatherapy. Excess gas in the soundproof room 1 is then discharged through the exhaust pipe at the bottom. Real-time monitoring of the patient's sleep is conducted, and the concentrations of oxygen, air, and aromatherapy are adjusted accordingly. The effects of different concentrations of oxygen, air, and aromatherapy at different times on the patient's sleep quality are determined, ultimately identifying the optimal ratio of oxygen, air, and aromatherapy to improve sleep quality.This allows patients to adjust their home environment according to the calculated proportions, thereby improving their sleep quality and enhancing the device's practicality.

[0021] The main functions achieved by this invention are: 1. By using multiple monitoring methods and combining them with neural networks to analyze the acquired monitoring information, the accuracy of monitoring patients' sleep quality can be improved, making it easier to judge the sleep quality of patients at different time periods; 2. By combining monitoring with environmental regulation and using neural networks, a suitable sleep environment can be found for patients, thereby reducing their medication use; 3. Adopting a modular and compact structural design reduces the space occupied by the equipment.

[0022] The sleep quality monitoring room of this invention uses common mechanical methods for installation, connection, or setup, and any method that achieves the desired beneficial effect can be implemented. The exhaust mechanism consists of multiple sets; during use, the plant aromatherapy on some exhaust mechanisms can be replaced with distilled water to adjust the humidity within the soundproof room 1. The soundproof room 1, soundproof door 2, soundproof roof 3, electric cylinder one 4, electric cylinder two 9, electric slider 13, oxygen cylinder 16, exhaust pump 17, heating element 25, semiconductor cooling plate 26, atomizer 27, data receiving unit 29, data processing unit 30, data analysis unit 31, data storage unit 32, command transmission unit 33, and air filter 34 of this sleep quality monitoring room are commercially available. Those skilled in the art only need to install and operate them according to the accompanying instruction manual, without requiring any creative effort from those skilled in the art.

[0023] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. A sleep quality monitoring room, comprising a monitoring room; characterized in that, It also includes a monitoring agency, an environmental control agency, and a data processing module, all of which are installed in the monitoring house; The monitoring room provides a sleep environment for patients, the monitoring agency monitors the patients' sleep quality, the environmental control agency adjusts the environment in the monitoring room, and the data processing module processes the data generated by the monitoring agency and the environmental control agency during operation.

2. The sleep quality monitoring room as described in claim 1, characterized in that, The monitoring room includes a soundproof room (1), a soundproof door (2), a soundproof roof (3), an electric cylinder (4), and a sealing mechanism. The soundproof door (2) is installed on the soundproof room (1), the soundproof roof (3) is installed on the top of the soundproof room (1) through the electric cylinder (4), the sealing mechanism is installed on the electric cylinder (4), and a bed (5) is provided inside the soundproof room (1). An exhaust pipe is provided at the bottom of the soundproof room (1).

3. A sleep quality monitoring room as described in claim 2, characterized in that, The sealing mechanism includes a strip-shaped airbag (6), an exhaust pipe (7), a piston (8), an electric cylinder (9), a solenoid valve (10), and a delivery pipe (11). The strip-shaped airbag (6) is fitted onto the soundproof roof (3) and is located between the soundproof roof (3) and the soundproof room (1). The surface of the strip-shaped airbag (6) is provided with a sound insulation layer. The exhaust pipe (7) is installed on the top of the soundproof roof (3). The piston (8) is slidably installed in the exhaust pipe (7). The electric cylinder (9) is fixedly installed in the piston (8), and one end of the electric cylinder (9) is connected to the piston (8). One end of the delivery pipe (11) is installed on the exhaust pipe (7) through the solenoid valve (10), and the other end of the delivery pipe (11) is connected to the interior of the strip-shaped airbag (6).

4. A sleep quality monitoring room as described in claim 2, characterized in that, The monitoring mechanism includes a guide rail (12) and an electric slider (13). The guide rail (12) is installed at the bottom of the soundproof roof (3). The electric slider (13) is slidably installed on the guide rail (12). The electric slider (13) is equipped with a temperature sensor, a humidity sensor, a high-definition camera, an infrared camera and a millimeter-wave radar. The bed (5) is equipped with several pressure sensors. The soundproof room (1) is equipped with a sound sensor.

5. A sleep quality monitoring room as described in claim 2, characterized in that, The environmental control mechanism includes a lifting platform (14), a slide rail (15), an oxygen cylinder (16), an exhaust pump (17), a mixing mechanism, and an exhaust mechanism. The lifting platform (14) is slidably installed on the soundproof roof (3) via the slide rail (15). The oxygen cylinder (16) is installed on the top of the lifting platform (14) and is equipped with an electric control valve. The exhaust pump (17) and the mixing mechanism are both installed on the top of the soundproof roof (3). The exhaust mechanism is installed in the side wall of the soundproof room (1). The oxygen cylinder (16) and the exhaust pump (17) are both connected to the interior of the mixing mechanism.

6. A sleep quality monitoring room as described in claim 5, characterized in that, The mixing mechanism includes a mixing tank (18), two sets of jet pipes (19), multiple sets of mesh plates (20), and a second solenoid valve (21). The mixing tank (18) is installed on the top of the soundproof roof (3). Both sets of jet pipes (19) are installed on the top of the mixing tank (18). The electric control valve on the oxygen cylinder (16) and the exhaust port of the exhaust pump (17) are each connected to a set of jet pipes (19). Multiple sets of mesh plates (20) are installed inside the mixing tank (18). The second solenoid valve (21) is installed at the bottom of the mixing tank (18).

7. A sleep quality monitoring room as described in claim 5, characterized in that, The exhaust mechanism includes an exhaust pipe (22), a one-way valve (23), a spiral blade (24), a heating element (25), a semiconductor cooling plate (26), an atomizer (27), and a liquid container (28). The exhaust pipe (22) is installed in the side wall of the soundproof room (1), with one end of the exhaust pipe (22) communicating with the top of the soundproof room (1) and the other end communicating with the bottom of the soundproof room (1). The one-way valve (23) is installed at the other end of the exhaust pipe (22), the spiral blade (24) is installed inside the exhaust pipe (22), and the heating element (25) is fitted onto the exhaust pipe. On the pipe (22), a semiconductor cooling plate (26) is installed on the soundproof room (1), and the cooling end of the semiconductor cooling plate (26) extends into the exhaust pipe (22), and the heat dissipation end of the semiconductor cooling plate (26) extends outside the soundproof room (1). A heat sink is provided on the heat dissipation end of the semiconductor cooling plate (26). The atomizer (27) is installed on the top of the soundproof roof (3). The liquid container (28) is installed on the liquid inlet of the atomizer (27), and the liquid container (28) is located below the soundproof roof (3). The spray nozzle of the atomizer (27) is connected to the interior of the exhaust pipe (22) through a hose.

8. A sleep quality monitoring room as described in claim 1, characterized in that, The data processing module includes a data receiving unit (29), a data processing unit (30), a data analysis unit (31), a data storage unit (32), and a command transmission unit (33), and the data receiving unit (29), the data processing unit (30), the data analysis unit (31), the data storage unit (32), and the command transmission unit (33) are electrically connected; The data analysis unit (31) uses a BP neural network.

9. A sleep quality monitoring room as described in claim 2, characterized in that, An oxygen concentration monitor is installed on the top of the soundproof roof (3).

10. A sleep quality monitoring room as described in claim 5, characterized in that, An air filter (34) is provided on the exhaust pump (17), and an air cylinder supply pipe (35) is provided on the air filter (34), with one end of the supply pipe (35) extending to the outside of the soundproof room (1).

Citation Information

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