A bed lighting control method, system and storage medium for a square cabin hospital
By automatically adjusting the lighting and heating status according to the patient's operating function status and behavioral posture, the problems of patient discomfort and energy waste in the lighting control of beds in the square hospital are solved, and humanized and energy-saving lighting control is achieved.
Patent Information
- Application Number
- CN202210681847.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-15
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2042-06-15
AI Technical Summary
The existing bed lighting control methods for temporary hospitals have failed to effectively reduce patients' discomfort, and there is a problem of energy waste.
By switching the control mode according to the operating function status of the target object, and automatically adjusting the status of the lighting fixtures and heating units in combination with the object's behavioral attitude, autonomous or intelligent control is achieved, including voice, terminal and intelligent mode, to adapt to the needs of different patients.
It improves the care of patients, reduces discomfort, and at the same time achieves energy saving and avoids energy waste.
Smart Images

Figure CN115002981B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of modular hospitals, and in particular, to a bed lighting control method, system, and storage medium for modular hospitals. Background Art
[0002] A Fangcang hospital is a rapidly deployable field mobile medical platform that uses a medical cabin as a carrier and integrates medical and medical technical support functions. A Fangcang hospital is generally composed of medical function units, ward units, technical support units, etc. It is a modular health equipment with multiple functions such as emergency treatment, surgical treatment, and clinical testing. Due to its good mobility, rapid deployment, and strong environmental adaptability, it can adapt to sudden emergency medical rescue tasks.
[0003] Since the Fangcang Hospital ward is a special accommodation place, the patients admitted there will be more nervous than ordinary patients. How to scientifically and humanely control the independent beds in the ward to reduce patients' discomfort and achieve energy saving is an urgent problem to be solved. In view of this, it is necessary to propose a bed lighting control method for Fangcang Hospital to solve or at least alleviate the above defects. Summary of the Invention
[0004] The bed lighting control method for a square cabin hospital provided by the present invention solves the existing technical problem of not considering how to reduce the discomfort of patients admitted to the square cabin hospital.
[0005] To achieve the above object, the technical solution adopted by the present invention is as follows:
[0006] A bed lighting control method for a modular hospital comprises the following steps: S10, obtaining the operating function state of a target object corresponding to a target bed based on check-in information, the operating function state including the object autonomous operating function state and the object non-autonomous operating function state; S20, if the target object is in the object autonomous operating function state, entering an autonomous operation control mode; if the target object is in the object non-autonomous operating function state, entering an intelligent control mode; S30, after entering the intelligent control mode, obtaining the current state of an associated area associated with the target bed, the current state of the associated area including the current occupied state and the current vacant state; S40, if the associated area is in the current occupied state, obtaining the object behavior posture of the target object; S50, adjusting the current lamp state of a target lighting fixture corresponding to the target bed according to the object behavior posture, wherein the current lamp state includes the current lamp lighting level.
[0007] Furthermore, step S50 further includes: adjusting the current heating state of the target heating unit corresponding to the target bed according to the object's behavior posture, wherein the current heating state includes a current heating level.
[0008] Furthermore, step S10 specifically includes: S11, obtaining the check-in entry information of the target object corresponding to the target bed registered at the time of check-in, the check-in entry information including the finger activity information and voice information of the target object; S12, determining the operation function state of the target object based on the finger activity information and voice information of the target object, the operation function state including the object autonomous operation function state and the object non-autonomous operation function state, wherein the object autonomous operation function state includes the object voice operation state and the object finger operation state; step S20 specifically includes: S21, if the target object is in the object voice operation state, entering the voice control mode; S22, if the target object is in the object finger operation state, entering the terminal operation control mode; S23, if the target object is in the object non-autonomous operation function state, entering the intelligent control mode.
[0009] Furthermore, step S10 also includes: S13, after a preset time interval, obtaining historical diagnostic information and current physical condition information of the target object, determining the current functional state of the target object based on the historical diagnostic information and the current physical condition information, the current functional state of the object including the current vocal state of the object, the current finger activity state of the object and the current non-autonomous operation state of the object; updating the current functional state of the object to the operational functional state.
[0010] Furthermore, S30 specifically includes: S31, after entering the intelligent control mode, obtaining the current number of people in the associated area associated with the target bed; S32, if the current number of people is greater than the preset number, adjusting the current lighting level of the lamp to the first-level lighting state; S33, if the current number of people is less than the preset number, obtaining the current state of the associated area associated with the target bed, the current state includes the current occupied state and the current vacant state; S34, if the target object is in the associated area, determining the current state of the associated area as the current occupied state; S35, if the target object is not in the associated area, adjusting the current lighting level of the lamp to the fifth-level lighting state.
[0011] Furthermore, the behavioral postures include standing active posture, standing still posture with eyes closed, standing still posture with eyes not closed, lying flat posture with eyes closed, lying flat posture with eyes not closed, and sitting posture.
[0012] Furthermore, if the behavioral posture is a standing active posture, the current lamp lighting level is adjusted to the second-level lighting state; if the behavioral posture is a standing still posture with eyes closed, the current lamp lighting level is adjusted to the fourth-level lighting state; if the behavioral posture is a standing still posture with eyes not closed, the current lamp lighting level is adjusted to the third-level lighting state; if the behavioral posture is a lying posture with eyes closed, the current lamp lighting level is adjusted to the fourth-level lighting state; if the behavioral posture is a lying posture with eyes not closed, the current lamp lighting level is adjusted to the first-level lighting state; if the behavioral posture is a sitting posture, the current lamp lighting level is adjusted to the second-level lighting state or the third-level lighting state.
[0013] Furthermore, before adjusting the current lamp state of the target lighting fixture, obtain the current total lighting power of all target lighting fixtures and the current total heating power of all target heating units; calculate the current actual total power based on the current total lighting power of all target lighting fixtures and the current total heating power of all target heating units; calculate the required total power based on the target adjustment level, and if the system preset power is greater than the sum of the required total power and the current actual total power, adjust the current lamp state of the target lighting fixture corresponding to the target bed according to the object's behavior posture; if the system preset power is less than the sum of the required total power and the current actual total power, issue a prompt message.
[0014] The present invention also provides a bed lighting control system for a square cabin hospital, which is used in a square cabin hospital and includes multiple target beds, target lighting fixtures arranged in one-to-one correspondence with the target beds, and target heating units arranged in one-to-one correspondence with the target beds. The target lighting is provided with five lighting levels, and the target heating unit is provided with multiple heating levels. The mounting end of each target lighting fixture is provided with a rotatable first pan-tilt head, and the mounting end of each target heating unit is provided with a rotatable second pan-tilt head. The control system includes a memory, a processor, and a computer program stored in the memory and runnable on the processor, wherein the processor implements the above-mentioned bed lighting control method for the square cabin hospital when executing the computer program.
[0015] The present invention also provides a storage medium storing a computer program, which is characterized in that when the computer program is executed by a processor, the steps of the above-mentioned bed lighting control method for the square cabin hospital are implemented.
[0016] The present invention has the following beneficial effects:
[0017] The bed lighting control method of the square cabin hospital of the present invention can automatically switch the control mode and control scene according to the body function of the target object. When the target object is in the object autonomous operation function state, it enters the autonomous operation control mode, and when the target object is in the object non-autonomous operation function state, it enters the intelligent control mode, which is convenient to use; after entering the intelligent control mode, if the associated area is in the current occupied state, the object behavior posture of the target object is obtained; according to the object behavior posture, the current lamp state of the target lighting fixture corresponding to the target bed is adjusted, wherein the current lamp state includes the current lamp lighting level, and the current lighting level of the target lighting fixture can be automatically adjusted according to the behavior posture of the target object, thereby improving the care for the patient to reduce the discomfort of the patients admitted to the square cabin hospital. At the same time, scientific lighting is carried out, unnecessary energy waste is reduced, and energy saving is achieved.
[0018] In addition to the above-described objects, features and advantages, the present invention has other objects, features and advantages. The present invention will be further described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The accompanying drawings, which constitute part of this application, are intended to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are intended to explain the present invention and do not constitute an undue limitation of the present invention. In the accompanying drawings:
[0020] Figure 1 It is a schematic diagram of a flow chart in a preferred embodiment of the present invention;
[0021] Figure 2 This is an application scenario diagram in a preferred embodiment of the present invention. DETAILED DESCRIPTION
[0022] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention 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. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0024] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0025] In addition, the descriptions of "first", "second", etc. in the present invention are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" or "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the present invention.
[0026] Please refer to Figure 1 A bed lighting control method for a square cabin hospital comprises the following steps:
[0027] S10, based on the admission entry information, obtain the operational function state of the target object corresponding to the target bed, the operational function state includes the object's autonomous operational function state and the object's non-autonomous operational function state. It can be understood that when the patient is admitted to the Fangcang Hospital, the patient will be diagnosed and the admission entry information will be recorded. If the patient can make a sound and / or his fingers can move autonomously, the operational function state of the patient recorded in the admission entry information is the object's autonomous operational function state; if the patient cannot make a sound and / or his fingers cannot move autonomously, the operational function state of the patient recorded in the admission entry information is the object's non-autonomous operational function state. In the present invention, based on the admission entry information when admitting to the Fangcang Hospital, the operational function state of the target object corresponding to the target bed is obtained, which facilitates the target object's operational function state to enter different operational control modes, thereby realizing the entry of pre-made response operational control modes according to different target objects, and realizing humanized management.
[0028] S20: If the target object is in an autonomous operation state, the system enters an autonomous operation control mode; if the target object is in a non-autonomous operation state, the system enters an intelligent control mode. It is understood that the autonomous operation control mode may be controlled by a terminal, such as a remote control, a smartphone, or a tablet computer. The autonomous operation control mode may also be controlled by voice recognition, gesture recognition, or other methods. The intelligent control mode may be controlled by the state of the target object corresponding to the target bed and / or the state of the associated area corresponding to the target bed.
[0029] S30, after entering the intelligent control mode, obtain the current state of the associated area associated with the target bed, and the current state of the associated area includes the current occupied state and the current vacant state. It can be understood that due to the high mobility of the Fangcang Hospital and the large number of beds in the Fangcang Hospital, each target bed is provided with a corresponding associated area. For example, the area within one meter around the target bed can be selected as the corresponding associated area. During the specific operation, if there is a target object in the associated area, the current state of the associated area is determined to be the current occupied state; if there is no target object in the associated area, the current state of the associated area is determined to be the current vacant state. Optionally, the current state of the associated area associated with the target bed can be determined by a visual recognition function, by drawing an associated interval line on the periphery of the target bed, obtaining a current photo through a camera, and determining whether there is a target object in the associated area based on the current photo.
[0030] In specific implementations, after entering intelligent control mode, the current time is obtained. If the current time is within a preset time period, the current status of the associated area associated with the target bed is obtained after a preset interval. The current status of the associated area includes the current occupied state and the current vacant state. Optionally, the preset time period can be from 5:00 AM to 12:00 PM or from 5:00 AM to 3:00 AM the following day; the preset interval can be 20 minutes or 30 minutes.
[0031] S40: If the associated area is currently occupied, obtain the target object's behavior posture. Optionally, the behavior posture includes a standing active posture, a standing eyes-closed static posture, a standing eyes-not-closed static posture, a lying-down eyes-closed posture, a lying-down eyes-not-closed posture, and a sitting posture. In the present invention, the target object's behavior posture can be determined using a visual recognition function, or the target object's current body information can be obtained through a wearable device and the target object's behavior posture determined based on the current body information.
[0032] Furthermore, if the associated area is currently vacant, the target lighting fixture corresponding to the target bed is turned off.
[0033] S50: Adjust the current lamp state of the target lighting fixture corresponding to the target bed according to the object's behavior posture, wherein the current lamp state includes the current lamp lighting level.
[0034] Optionally, the current lighting fixture lighting level can be set to multiple levels, each with a different brightness. This facilitates adjusting the brightness of the target lighting fixture corresponding to the target bed based on the patient's behavior and posture, thereby reducing patient discomfort and improving patient care. Specifically, the current lighting fixture lighting level can be set to include a first lighting level, a second lighting level, a third lighting level, a fourth lighting level, and a fifth lighting level, with the brightness of the first lighting level, the second lighting level, the third lighting level, the fourth lighting level, and the fifth lighting level decreasing in sequence, with the fifth lighting level being off.
[0035] Please refer to Table 1, the correlation table between the current lighting level and lighting power of the present invention is as follows:
[0036]
[0037] Table 1
[0038] It can be understood that the output lighting power corresponding to the lighting level can be pre-adjusted according to the requirements of the temporary hospital, thereby improving convenience during use.
[0039] The bed lighting control method of the square cabin hospital of the present invention can automatically switch the control mode and control scene according to the body function of the target object. When the target object is in the object autonomous operation function state, it enters the autonomous operation control mode, and when the target object is in the object non-autonomous operation function state, it enters the intelligent control mode, which is convenient to use; after entering the intelligent control mode, if the associated area is in the current occupied state, the object behavior posture of the target object is obtained; according to the object behavior posture, the current lamp state of the target lighting fixture corresponding to the target bed is adjusted, wherein the current lamp state includes the current lamp lighting level, and the current lighting level of the target lighting fixture can be automatically adjusted according to the behavior posture of the target object, thereby improving the care for the patient to reduce the discomfort of the patients admitted to the square cabin hospital. At the same time, scientific lighting is carried out, unnecessary energy waste is reduced, and energy saving is achieved.
[0040] Furthermore, step S50 also includes: adjusting the current heating state of the target heating unit corresponding to the target bed according to the subject's behavior posture, wherein the current heating state includes the current heating level. Optionally, the current heating level can be set to multiple levels, and the heating power of each level of the current heating level is different, thereby facilitating the adjustment of the heating power of the target heating unit corresponding to the target bed according to the subject's behavior posture, so as to reduce the patient's discomfort and improve humanistic care for the patient. Specifically, the current heating level can be set to include a first heating level, a second heating level, a third heating level, a fourth heating level, and a fifth heating level, and the heating brightness of the first heating level, the second heating level, the third heating level, the fourth heating level, and the fifth heating level is reduced in sequence, wherein the fifth heating level is in the off state.
[0041] Please refer to Table 2, the correlation table between the current lighting level and lighting power of the present invention is as follows:
[0042]
[0043] Table 2
[0044] It can be understood that the output heating power corresponding to the heating level can be pre-adjusted according to the requirements of the temporary hospital, thereby improving the convenience of use.
[0045] Furthermore, step S10 specifically includes: S11, obtaining the check-in entry information of the target object corresponding to the target bed registered at the time of check-in, the check-in entry information including the finger activity information and voice information of the target object; S12, determining the operation function state of the target object based on the finger activity information and voice information of the target object, the operation function state including the object autonomous operation function state and the object non-autonomous operation function state, wherein the object autonomous operation function state includes the object voice operation state and the object finger operation state; step S20 specifically includes: S21, if the target object is in the object voice operation state, entering the voice control mode; S22, if the target object is in the object finger operation state, entering the terminal operation control mode; S23, if the target object is in the object non-autonomous operation function state, entering the intelligent control mode. In the present invention, the operation control mode is automatically adjusted by determining the target object's ability to move. If the target object can pronounce, the system enters the voice control mode. If the target object can operate the terminal, the system enters the terminal operation control mode. If the target object is difficult to control through its own actions, the system enters the intelligent control mode. After entering the intelligent control mode, the lighting brightness and heating power are intelligently controlled.
[0046] Furthermore, step S10 further includes: S13, after a preset time interval, obtaining historical diagnostic information and current physical condition information of the target subject, determining the target subject's current functional state based on the historical diagnostic information and current physical condition information, the target subject's current functional state including the target subject's current vocalization state, the target subject's current finger activity state, and the target subject's current involuntary operational state; and updating the target subject's current functional state to an operational functional state. It is understandable that due to the special conditions of patients admitted to the Fangcang Hospital, some patients may be physically weak upon admission (weak mobility and / or require oxygen from an oxygen concentrator), with the admission entry information indicating the target subject's involuntary operational functional state upon admission. After a certain period of time, their physical condition recovers (strong mobility and / or no longer requires oxygen). Alternatively, due to the special conditions of patients admitted to the Fangcang Hospital, some patients may be physically healthy upon admission (strong mobility and / or no longer require oxygen), with the admission entry information indicating the target subject's involuntary operational functional state upon admission. After a certain period of time, their physical condition deteriorates (weak mobility and / or requires oxygen from an oxygen concentrator), and they are unable to vocalize when they require oxygen from an oxygen concentrator. In order to facilitate the adjustment of the operation mode according to the actual condition of the patient and improve the convenience of use, after a preset time interval, the historical diagnostic information, current captured image and current physical condition information of the target object are obtained, and the current functional state of the target object is determined based on the historical diagnostic information, current captured image and current physical condition information. The current functional state of the object includes the current vocal state of the object, the current finger activity state of the object and the current non-autonomous operation state of the object; the current functional state of the object is updated to the operational functional state. Optionally, the preset time interval can be set to one hour. The current captured image can be obtained based on the camera and then the current physical condition information of the target object can be determined after analyzing the current captured image. The current functional state of the target object can be determined based on the doctor's follow-up record, and then the current functional state of the target object can be accurately corrected to facilitate timely change of the operating state, adjust the current lighting level of the lamp and the current heating level, and improve humanistic care for patients.
[0047] Furthermore, S30 specifically includes: S31, after entering the intelligent control mode, obtaining the current number of people in the associated area associated with the target bed; S32, if the current number of people is greater than the preset number of people, adjusting the current lighting level of the lamps to the first-level lighting state; S33, if the current number of people is less than the preset number of people, obtaining the current state of the associated area associated with the target bed, the current state includes the current occupied state and the current vacant state; S34, if the target object is in the associated area, determining the current state of the associated area as the current occupied state; S35, if the target object is not in the associated area, adjusting the current lighting level of the lamps to the fifth-level lighting state. It can be understood that the number of preset numbers can be 4, or six or other numbers. Specifically, when the current number of people in the associated area associated with the target bed reaches 5, the ward round state will be entered by default. At this time, the current lighting level of the lamps will be adjusted to the first-level lighting state, thereby facilitating the work of medical staff.
[0048] Furthermore, if the current number of people is greater than the preset number of people, it is adjusted to the first-level heating state. Further, if the target object is not in the associated area, it is adjusted to the fourth-level heating state or the fifth-level heating state.
[0049] Furthermore, the behavioral posture includes a standing active posture, a standing still posture with eyes closed, a standing still posture with eyes not closed, a lying posture with eyes closed, a lying posture with eyes not closed, and a sitting posture. Optionally, posture information is obtained according to the first wearable device and the second wearable device, the currently captured image information is obtained, and the behavioral posture is determined according to the posture information and the image information (the visual recognition function determines the behavioral posture). It can be understood that when the target object is in a standing active posture, it may be in a moving state; when the target object is in a standing still posture with eyes closed, it may be in a contemplative state; when the target object is in a standing still posture with eyes not closed, it may be in an observing state; when the target object is in a lying posture with eyes closed, it may be in a resting state; when the target object is in a lying posture with eyes not closed, it may be in a mobile phone viewing state; when the target object is in a sitting posture, it may be in a reading state.
[0050] Furthermore, if the behavioral posture is a standing active posture, the current lamp lighting level is adjusted to the second-level lighting state; if the behavioral posture is a standing still posture with eyes closed, the current lamp lighting level is adjusted to the fourth-level lighting state; if the behavioral posture is a standing still posture with eyes not closed, the current lamp lighting level is adjusted to the third-level lighting state; if the behavioral posture is a lying posture with eyes closed, the current lamp lighting level is adjusted to the fourth-level lighting state; if the behavioral posture is a lying posture with eyes not closed, the current lamp lighting level is adjusted to the first-level lighting state; if the behavioral posture is a sitting posture, the current lamp lighting level is adjusted to the second-level lighting state or the third-level lighting state.
[0051] Furthermore, if the behavioral posture is a standing active posture, the current heating level is adjusted to the fourth level heating state; if the behavioral posture is a standing eyes-closed still posture, the current heating level is adjusted to the second level heating state; if the behavioral posture is a standing eyes-open still posture, the current heating level is adjusted to the third level heating state; if the behavioral posture is a lying eyes-closed posture, the current heating level is adjusted to the first level heating state; if the behavioral posture is a lying eyes-open posture, the current heating level is adjusted to the first level heating state or the second level heating state; if the behavioral posture is a sitting posture, the current heating level is adjusted to the second level heating state or the third level heating state.
[0052] Furthermore, if the target person's posture is lying flat with eyes closed, the current heating level is adjusted to level 1. After a first time threshold, if the target person's posture is still lying flat with eyes closed, the lighting level is changed to level 5. Optionally, the first time threshold is 20 minutes. If the target person's posture is lying flat with eyes closed and remains so for 20 minutes, the target person is assumed to be asleep, and the lighting is turned off.
[0053] In the present invention, if the intelligent control mode is entered, the current lighting level of the target lighting fixture corresponding to the target bed is adjusted according to the object's behavior posture, and the current heating level of the target heating unit corresponding to the target bed is adjusted according to the object's behavior posture.
[0054] Furthermore, before adjusting the current lamp state of the target lighting fixture, obtain the current total lighting power of all target lighting fixtures and the current total heating power of all target heating units; calculate the current actual total power based on the current total lighting power of all target lighting fixtures and the current total heating power of all target heating units; calculate the required total power based on the target adjustment level, and if the system preset power is greater than the sum of the required total power and the current actual total power, adjust the current lamp state of the target lighting fixture corresponding to the target bed according to the object's behavior posture; if the system preset power is less than the sum of the required total power and the current actual total power, issue a prompt message.
[0055] Furthermore, the current lamp state includes the current lamp lighting angle, and the current heating state includes the current heating angle.
[0056] The present invention also provides a bed lighting control system for a square cabin hospital, which is used in a square cabin hospital and includes multiple target beds, target lighting fixtures arranged in one-to-one correspondence with the target beds, and target heating units arranged in one-to-one correspondence with the target beds. The target lighting is provided with five lighting levels, and the target heating unit is provided with multiple heating levels. The mounting end of each target lighting fixture is provided with a rotatable first pan-tilt head, and the mounting end of each target heating unit is provided with a rotatable second pan-tilt head. The control system includes a memory, a processor, and a computer program stored in the memory and runnable on the processor, wherein the processor implements the above-mentioned bed lighting control method for the square cabin hospital when executing the computer program.
[0057] The present invention also provides a storage medium storing a computer program, wherein the computer program, when executed by a processor, implements the steps of the bed lighting control method for a square cabin hospital as described above.
[0058] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A bed lighting control method for a square cabin hospital, characterized in that: The steps include: S10, obtaining the operating function state of the target subject corresponding to the target bed according to the admission entry information, wherein the operating function state includes the subject's autonomous operating function state and the subject's non-autonomous operating function state; Step S10 specifically includes: S11, obtaining check-in entry information of a target subject corresponding to a target bed registered at check-in, wherein the check-in entry information includes finger movement information and voice information of the target subject; S12, determining the operational function state of the target subject based on the finger movement information and the voice information of the target subject, wherein the operational function state includes an autonomous operational function state of the subject and an involuntary operational function state of the subject, wherein the autonomous operational function state of the subject includes an object voice operation state and an object finger operation state; S13, after a preset time interval, obtaining historical diagnosis information and current physical condition information of the target subject, and determining the current functional state of the target subject based on the historical diagnosis information and the current physical condition information; S20, if the target object is in the state of the autonomous operation function of the object, then enter the autonomous operation control mode; if the target object is in the state of the non-autonomous operation function of the object, then enter the intelligent control mode; S30, after entering the intelligent control mode, obtaining the current state of the associated area associated with the target bed, wherein the current state of the associated area includes the current occupied state and the current vacant state; and selecting the area within a one-meter range surrounding the target bed as the corresponding associated area; S40, if the associated area is in the current occupied state, obtaining the object behavior posture of the target object; S50: Adjust the current lamp state of the target lighting fixture corresponding to the target bed according to the object behavior posture, wherein the current lamp state includes a current lamp lighting level.
2. The bed lighting control method for a square cabin hospital according to claim 1, characterized in that: Step S50 further includes: The current heating state of the target heating unit corresponding to the target bed is adjusted according to the object behavior posture, wherein the current heating state includes a current heating level.
3. The bed lighting control method for a square cabin hospital according to claim 1, characterized in that: Step S20 specifically includes: S21, if the target object is in the object sound operation state, entering the voice control mode; S22, if the target object is in the object finger operation state, entering the terminal operation control mode; S23: If the target object is in a non-autonomous operation function state, enter an intelligent control mode.
4. The bed lighting control method for a square cabin hospital according to claim 3 is characterized in that: Step S13 also includes: The current functional state of the subject includes the current vocalization state of the subject, the current finger activity state of the subject, and the current involuntary operation state of the subject; The current functional state of the object is updated to the operational functional state.
5. The bed lighting control method for a modular hospital according to any one of claims 1 or 2, characterized in that: S30 specifically includes: S31, after entering the intelligent control mode, obtaining the current number of people in the associated area associated with the target bed; S32, if the current number of people is greater than the preset number of people, adjusting the current lighting level of the lamp to the first level lighting state; S33: If the current number of people is less than the preset number of people, obtain the current state of the associated area associated with the target bed, where the current state includes a current occupied state and a current vacant state; S34, if the target object is within the associated area, determining that the current state of the associated area is a currently occupied state; S35: If the target object is not within the associated area, adjust the current lighting level of the lamp to a level five lighting state.
6. The bed lighting control method for a square cabin hospital according to claim 5, characterized in that: The behavioral postures include standing active posture, standing still posture with eyes closed, standing still posture with eyes not closed, lying flat posture with eyes closed, lying flat posture with eyes not closed, and sitting posture.
7. The bed lighting control method for a square cabin hospital according to claim 6, characterized in that: If the behavioral posture is the standing activity posture, adjusting the current lighting level of the lamp to the secondary lighting state; If the behavioral posture is the standing, eyes-closed, and still posture, adjusting the current lighting level of the lamp to a level 4 lighting state; If the behavioral posture is the standing, non-eyes-closed, static posture, adjusting the current lighting level of the lamp to a level three lighting state; If the behavioral posture is the lying-down posture with eyes closed, adjusting the current lighting level of the lamp to a level 4 lighting state; If the behavioral posture is the lying-down posture with eyes open, adjusting the current lighting level of the lamp to the first-level lighting state; If the behavior posture is the sitting posture, the current lighting level of the lamp is adjusted to a secondary lighting state or a tertiary lighting state.
8. The bed lighting control method for a square cabin hospital according to claim 2, characterized in that: Before adjusting the current lamp state of the target lighting fixture, obtaining the current total lighting power of all target lighting fixtures and the current total heating power of all target heating units; Calculate the current actual total power based on the current total lighting power of all target lighting fixtures and the current total heating power of all target heating units; Calculating the required total power according to the target adjustment level, and if the system preset power is greater than the sum of the required total power and the current actual total power, adjusting the current lamp state of the target lighting fixture corresponding to the target bed according to the subject's behavior posture; If the system preset power is less than the sum of the required total power and the current actual total power, a prompt message is issued.
9. A bed lighting control system for a square cabin hospital, characterized in that: Used in square cabin hospitals; The device comprises a plurality of target beds, target lighting fixtures arranged in one-to-one correspondence with the target beds, and target heating units arranged in one-to-one correspondence with the target beds, wherein the target lighting fixtures are provided with five lighting levels, and the target heating units are provided with multiple heating levels. The mounting end of each target lighting fixture is provided with a rotatable first pan-tilt platform, and the mounting end of each target heating unit is provided with a rotatable second pan-tilt platform; A control system comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the bed lighting control method for a modular hospital as described in any one of claims 1 to 8 when executing the computer program.
10. A storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the steps of the bed lighting control method for a square cabin hospital are implemented.
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