A smart management method for negative pressure cabin based on intelligent networking
Through intelligent networking technology, the images in the negative pressure ward are numbered, compressed and stored in the cloud, solving the problem of confusion in the image management of the negative pressure ward and achieving efficient image classification and storage.
Patent Information
- Application Number
- CN202111530991.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-15
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2041-12-15
AI Technical Summary
The image management of existing negative pressure wards is confusing and lacks effective classification and storage methods, resulting in inefficient management.
The intelligent management method of negative pressure chamber body based on intelligent networking is adopted, and images taken in the negative pressure ward are numbered, compressed and uploaded to the cloud management platform to realize classified storage of images.
It effectively avoids the chaos in image storage, improves management efficiency, and ensures the accuracy and findability of image data.
Smart Images

Figure CN114265951B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of square cabins, and in particular to an intelligent management method for negative pressure cabins based on intelligent networking. Background Art
[0002] Movable negative pressure isolation cabin wards are mainly used for the construction of isolation treatment wards for sudden infectious diseases. A set of standard negative pressure isolation ward systems can be quickly assembled in a short period of time. The installation cycle and investment scale are controllable. They can be flexibly deployed and effectively integrated with resources as needed. They can be provided to various places as supplements to negative pressure isolation wards and emergency equipment reserves for major public health emergencies, providing temporary emergency transfer, isolation, observation and treatment space for major public health emergencies.
[0003] However, negative pressure wards are very limited in my country and even in the world, and there are many areas that do not have negative pressure wards that meet the standards and specifications. Movable negative pressure isolation cabin wards can effectively avoid many problems that exist in the temporary construction or conversion of existing buildings into infectious disease wards, and provide a safe emergency place for infectious disease prevention and control. The cameras installed in the negative pressure wards can record the images of medical staff and / or patients in the negative pressure wards. The corresponding images can be downloaded from the cloud management platform to view and restore the scene at that time. The camera captures the images in the negative pressure ward in real time. It is very necessary to ensure that the image storage in the negative pressure ward does not cause confusion. Summary of the invention
[0004] The present invention aims to at least solve the technical problems existing in the prior art, and in particular innovatively proposes an intelligent management method for a negative pressure cabin based on intelligent networking.
[0005] In order to achieve the above-mentioned object of the present invention, the present invention provides a negative pressure cabin intelligent management method based on intelligent networking, comprising the following steps:
[0006] S1, number all images taken in the negative pressure ward unit;
[0007] S2, compressing all the numbered image data in step S1 to obtain an image package; uploading the obtained image package to the cloud management platform;
[0008] S3, the cloud management platform decompresses the received image package and stores each image in a folder consistent with the number corresponding to the image.
[0009] In a preferred embodiment of the present invention, numbering the images taken in all negative pressure ward units in step S1 includes the following steps:
[0010] S11, obtain The unique ID number of the medical camera and The unique ID number of each patient's camera is recorded as and , express A collection of unique ID numbers of medical cameras. Indicates the unique ID number of the first medical camera. Indicates the unique ID number of the second medical camera. Indicates the unique ID number of the third medical camera. Indicates medical use The unique ID number of the camera; express A collection of unique ID numbers for each patient's camera. Indicates the unique ID number of the patient's first camera. Indicates the unique ID number of the second camera used by the patient. Indicates the unique ID number of the patient's third camera. Indicates that the patient The unique ID number of the camera; ;
[0011] S12, for medical care The camera's unique ID number and the patient's The unique ID number of the camera performs a unique operation to obtain its unique coding number;
[0012] For medical care The unique ID number of the camera is uniquely calculated as follows:
[0013] ,
[0014] in, Indicates medical use The unique coding number corresponding to the unique ID number of the camera;
[0015] Represents the uniqueness operation algorithm;
[0016] Indicates medical use The unique ID number of the camera;
[0017] For patients The unique ID number of the camera is uniquely calculated as follows:
[0018] ,
[0019] in, Indicates that the patient The unique coding number corresponding to the unique ID number of the camera;
[0020] Represents the uniqueness operation algorithm;
[0021] Indicates that the patient The unique ID number of the camera;
[0022] S13, judgment and The size relationship between:
[0023] like ≥ , then proceed to the next step;
[0024] like < ,but = +1, return to step S12;
[0025] S14, and As the name number of the image captured by each camera, express The unique code number set corresponding to the unique ID number of each medical camera, Indicates the unique code number corresponding to the unique ID number of the first medical camera. Indicates the unique code number corresponding to the unique ID number of the second medical camera. Indicates the unique code number corresponding to the unique ID number of the third medical camera. Indicates medical use The unique coding number corresponding to the unique ID number of the camera; express The unique code number set corresponding to the unique ID number of each patient's camera, Indicates the unique code number corresponding to the unique ID number of the patient's first camera. Indicates the unique code number corresponding to the unique ID number of the patient's second camera. Indicates the unique code number corresponding to the unique ID number of the patient's third camera. Indicates that the patient The unique code number corresponding to the unique ID number of the camera.
[0026] In a preferred embodiment of the present invention, in step S2, compressing all numbered image data to obtain image packets thereof comprises the following steps:
[0027] S21, compressing all the numbered image data in step S1 to obtain a compressed package;
[0028] S22, decompressing the compressed package obtained in step S21 to obtain a decompressed package;
[0029] S23, determine whether the number of files in the decompressed package is consistent with the number of files before the compressed package is obtained:
[0030] If the number of files in the decompressed package is the same as the number of files before the compressed package is obtained, the compressed package is an image package;
[0031] If the number of files in the decompressed package is inconsistent with the number of files before the compressed package is obtained, find out the number and names of the files that are different between the files in the decompressed package and the files before the compressed package is obtained; and proceed to the next step;
[0032] S24, opening the decompressed package in step S21 and filtering out the files in the decompressed package corresponding to the number and names of the files found in step S23, to obtain an image package.
[0033] In a preferred embodiment of the present invention, step S3 includes the following steps:
[0034] S31, the cloud management platform decompresses the received image package to obtain the decompressed image package; ;
[0035] S32, decompress the image package The number corresponding to the image is the search code ,judge Does it exist in the image storage database? For the folder name:
[0036] like Exists in the image storage database If is the folder name, The corresponding image files are copied to the image storage database. In the folder name;
[0037] like Does not exist in the image storage database. If the folder name is Create a folder for the folder name and The corresponding image files are copied to the image storage database. In the folder name;
[0038] S33, judgment and The size relationship between:
[0039] like ≥ , Indicates the total number of image files in the decompressed image package. If the image files in the decompressed image package are stored, the decompressed image package and the received image package are filtered out.
[0040] like > ,but = +1, return to step S32.
[0041] In summary, due to the adoption of the above technical solution, the present invention can upload the video images taken by the ward unit to the cloud management platform for classified storage to prevent chaotic management.
[0042] Additional aspects and advantages of the present invention will be given in part in the following description and in part will be obvious from the following description, or will be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0044] Figure 1 It is a schematic block diagram of the process of the present invention.
[0045] Figure 2 It is a plan schematic block diagram of the present invention. DETAILED DESCRIPTION
[0046] Embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.
[0047] The present invention provides a negative pressure cabin intelligent management method based on intelligent networking, such as Figure 1 As shown, the following steps are included:
[0048] S1, number all images taken in the negative pressure ward unit;
[0049] S2, compressing all the numbered image data in step S1 to obtain an image package; uploading the obtained image package to the cloud management platform;
[0050] S3, the cloud management platform decompresses the received image package and stores each image in a folder consistent with the number corresponding to the image.
[0051] In a preferred embodiment of the present invention, numbering the images taken in all negative pressure ward units in step S1 includes the following steps:
[0052] S11, obtain The unique ID number of the medical camera and The unique ID number of each patient's camera is recorded as and , express A collection of unique ID numbers of medical cameras. Indicates the unique ID number of the first medical camera. Indicates the unique ID number of the second medical camera. Indicates the unique ID number of the third medical camera. Indicates medical use The unique ID number of the camera; express A collection of unique ID numbers for each patient's camera. Indicates the unique ID number of the patient's first camera. Indicates the unique ID number of the second camera used by the patient. Indicates the unique ID number of the patient's third camera. Indicates that the patient The unique ID number of the camera; ;
[0053] S12, for medical care The camera's unique ID number and the patient's The unique ID number of the camera performs a unique operation to obtain its unique coding number;
[0054] For medical care The unique ID number of the camera is uniquely calculated as follows:
[0055] ,
[0056] in, Indicates medical use The unique coding number corresponding to the unique ID number of the camera;
[0057] Indicates a unique operation algorithm; the unique operation algorithm is not limited to the MD5 algorithm in the HASH algorithm, and may also be SHA-1, or may be other types of algorithms for obtaining a string.
[0058] Indicates medical use The unique ID number of the camera;
[0059] For patients The unique ID number of the camera is uniquely calculated as follows:
[0060] ,
[0061] in, Indicates that the patient The unique coding number corresponding to the unique ID number of the camera;
[0062] Represents the uniqueness operation algorithm;
[0063] Indicates that the patient The unique ID number of the camera;
[0064] S13, judgment and The size relationship between:
[0065] like ≥ , then proceed to the next step;
[0066] like < ,but = +1, return to step S12;
[0067] S14, and As the name number of the image taken by each camera, express The unique code number set corresponding to the unique ID number of each medical camera, Indicates the unique code number corresponding to the unique ID number of the first medical camera. Indicates the unique code number corresponding to the unique ID number of the second medical camera. Indicates the unique code number corresponding to the unique ID number of the third medical camera. Indicates medical use The unique coding number corresponding to the unique ID number of the camera; express The unique code number set corresponding to the unique ID number of each patient's camera, Indicates the unique code number corresponding to the unique ID number of the patient's first camera. Indicates the unique code number corresponding to the unique ID number of the patient's second camera. Indicates the unique code number corresponding to the unique ID number of the patient's third camera. Indicates that the patient The unique code number corresponding to the unique ID number of the camera. By converting the unique ID number of the camera into a unique code number (number), the images taken by the same camera can be stored in the same folder in chronological order for easy viewing.
[0068] In a preferred embodiment of the present invention, in step S2, compressing all numbered image data to obtain image packets thereof comprises the following steps:
[0069] S21, compressing all the numbered image data in step S1 to obtain a compressed package;
[0070] S22, decompressing the compressed package obtained in step S21 to obtain a decompressed package;
[0071] S23, determine whether the number of files in the decompressed package is consistent with the number of files before the compressed package is obtained:
[0072] If the number of files in the decompressed package is the same as the number of files before the compressed package is obtained, the compressed package is an image package;
[0073] If the number of files in the decompressed package is inconsistent with the number of files before the compressed package is obtained, find out the number and names of the files that are different between the files in the decompressed package and the files before the compressed package is obtained; and proceed to the next step;
[0074] S24, opening the decompressed package in step S21 and filtering out the files corresponding to the number and names of the files found in step S23 in the decompressed package to obtain an image package. The larger image data is converted into an image package with a smaller capacity by compression (not limited to zip and 7Z compression technology) to improve transmission efficiency, and the files that do not belong to the image files generated during compression are deleted to prevent the creation of redundant folders during storage.
[0075] In a preferred embodiment of the present invention, step S3 includes the following steps:
[0076] S31, the cloud management platform decompresses the received image package to obtain the decompressed image package; ;
[0077] S32, decompress the image package The number corresponding to the image is the search code ,judge Does it exist in the image storage database? For the folder name:
[0078] like Exists in the image storage database If is the folder name, The corresponding image files are copied to the image storage database. In the folder name;
[0079] like Does not exist in the image storage database. If the folder name is Create a folder for the folder name and The corresponding image files are copied to the image storage database. In the folder name;
[0080] S33, judgment and The size relationship between:
[0081] like ≥ , Indicates the total number of image files in the decompressed image package. =2 , then the image files in the decompressed image package are stored, and the decompressed image package and the received image package are filtered out;
[0082] like > ,but = +1, return to step S32.
[0083] In a preferred embodiment of the present invention, step S4 is also included, and the medical care When the camera captures the image, =1, 2, 3, ..., One; comprising the following steps:
[0084] S41, obtain medical care The medical camera The unique ID number of the camera;
[0085] S42, for medical care The unique ID number of the camera is used to perform a unique operation and obtain its medical care The calculation method of the camera's unique code number is:
[0086] ,
[0087] in, Indicates medical use The unique coding number corresponding to the unique ID number of the camera;
[0088] Represents the uniqueness operation algorithm;
[0089] Indicates medical use The unique ID number of the camera;
[0090] S43, for medical care The unique ID number of the camera Search for the medical code on the cloud management platform. The unique ID number of the camera The folder name;
[0091] S44, after searching, the images under the folder are sorted in chronological order to facilitate the viewer to select the video images of the corresponding time period.
[0092] Similarly, you need to check the patient's When the camera captures the image, =1, 2, 3, ..., One; comprising the following steps:
[0093] S4-1, obtain the patient's The patient corresponding to the camera is The unique ID number of the camera;
[0094] S4-2, treat patients with The unique ID number of the camera is used to perform a unique operation and obtain the patient's first The calculation method of the camera's unique code number is:
[0095] ,
[0096] in, Indicates that the patient The unique coding number corresponding to the unique ID number of the camera;
[0097] Represents the uniqueness operation algorithm;
[0098] Indicates that the patient The unique ID number of the camera;
[0099] S4-3, with the patient The unique ID number of the camera Search the cloud management platform for the patient's first The unique ID number of the camera The folder name;
[0100] S4-4, after searching, the images under the folder are sorted in chronological order to facilitate the viewer to select the video images of the corresponding time period.
[0101] In order to ensure that the video images in the same negative pressure ward unit (medical work area and patient treatment area) can be viewed at the same time, the medical The camera's unique ID number is the same as the patient's ID number. The unique ID number of the camera is bound to =1, 2, 3, ..., That is, the unique ID number of the first camera for medical care is bound to the unique ID number of the first camera for patients, the unique ID number of the second camera for medical care is bound to the unique ID number of the second camera for patients, the unique ID number of the third camera for medical care is bound to the unique ID number of the third camera for patients, and so on. The camera's unique ID number is the same as the patient's ID number. The unique ID number of the camera is bound to the When the camera captures the video image, the medical staff will display the same video image at the same time on the display screen. Camera and patient Video images captured by the camera. It is possible to view the surveillance video images of the medical work area and the patient treatment area at the same time in the same negative pressure ward unit.
[0102] The present invention also provides a management system for a negative pressure cabin intelligent management method based on intelligent networking, comprising: Negative pressure ward units, is a positive integer greater than or equal to 1, and is respectively the first negative pressure ward unit, the second negative pressure ward unit, the third negative pressure ward unit, ..., the Negative pressure ward units;
[0103] In the The medical work area of the negative pressure ward unit is equipped with medical Camera, is less than or equal to A positive integer, medical care The camera's image data output port is connected to the The image data input of the controller is connected to the first terminal, The negative pressure ward unit patient treatment area is equipped with a Camera, patient The camera's image data output port is connected to the The image data input second end of the controller is connected; that is, a first camera for medical care is arranged in the medical work area of the first negative pressure ward unit, and the image data output end of the first camera for medical care is connected to the first image data input first end of the first controller; a first camera for patients is arranged in the patient treatment area of the first negative pressure ward unit, and the image data output end of the first camera for patients is connected to the second image data input end of the first controller;
[0104] A second camera for medical care is provided in the medical care work area of the second negative pressure ward unit, and an image data output terminal of the second camera for medical care is connected to the first The image data input first end of the controller is connected, a second camera for patients is arranged in the patient treatment area of the second negative pressure ward unit, and the image data output end of the second camera for patients is connected to the image data input second end of the second controller;
[0105] A third camera for medical care is provided in the medical care work area of the third negative pressure ward unit, and an image data output terminal of the third camera for medical care is connected to an image data input first terminal of the third controller; a third camera for patients is provided in the patient treatment area of the third negative pressure ward unit, and an image data output terminal of the third camera for patients is connected to an image data input second terminal of the third controller; ...;
[0106] In the The medical work area of the negative pressure ward unit is equipped with medical Camera, medical The camera's image data output port is connected to the The image data input of the controller is connected to the first terminal, The negative pressure ward unit patient treatment area is equipped with a Camera, patient The camera's image data output port is connected to the The image data input second end of the controller is connected;
[0107] No. The image data output terminal of the controller is connected to the image data input terminal of the main controller. The wireless data transmission end of the master controller is connected to the data transmission end of the wireless transceiver module; that is, the image data output end of the first controller is connected to the image data input first end of the master controller, the image data output end of the second controller is connected to the image data input second end of the master controller, the image data output end of the third controller is connected to the image data input third end of the master controller, ..., the image data output end of the first controller is connected to the image data input first end of the master controller, the image data output end of the second controller is connected to the image data input second end of the master controller, and the image data output end of the third controller is connected to the image data input third end of the master controller. The image data output terminal of the controller is connected to the image data input terminal of the main controller. The wireless data transmission end of the master controller is connected to the data transmission end of the wireless transceiver module;
[0108] The image data of the medical work area taken by the medical camera and / or the image data of the patient treatment area taken by the patient camera are uploaded to the cloud management platform for storage. Figure 2 As shown, the negative pressure ward unit 3 is divided into two parts from left to right, namely, a left half area and a right half area, the right half area is the patient treatment area 6, the left half area is divided into two parts from top to bottom, namely, an upper half area and a lower half area, the upper half area is the medical work area 1, and the lower half area is divided into two parts from left to right, namely, a left half area and a right half area, the left half area is the medical toilet 12, and the right half area is the buffer room. A patient toilet 8 and a bed are arranged in the patient treatment area 6, and a workbench 4 is arranged next to the partition wall of the medical work area 1. A partial or whole one-way perspective glass is arranged on the partition wall, so that medical staff can observe the patient's condition in real time through the one-way perspective glass at the workbench 4 without disturbing the patient's rest. The negative pressure ward unit 3 is a box-type structure, which can be moved by a container crane, or equipped with wheels at the bottom as a trailer driven by a traction device. A medical air quality sensor 2 for detecting the air quality of the medical work area 1 is provided in the medical work area 1, a medical fresh air system for providing fresh air to the medical work area 1 is provided in the medical work area 1, a medical exhaust system is provided in the medical toilet 12; and a medical pressure sensor 11 for detecting the air flow pressure of the medical work area 1 is provided in the medical work area 1;
[0109] When the medical air quality sensor 2 detects that the air quality of the medical work area 1 is less than the preset air quality, the medical fresh air system introduces fresh air into the medical work area 1, so that the medical air quality sensor 2 detects that the air quality of the medical work area 1 is greater than or equal to the preset air quality;
[0110] The patient treatment area 6 is provided with a patient air quality sensor 9 for detecting the air quality of the patient treatment area 6, and further includes a patient fresh air system for providing fresh air to the patient treatment area 6, and a patient exhaust system is provided in the patient bathroom 8; and a patient pressure sensor 5 is provided in the patient treatment area 6 for detecting the air flow pressure of the patient treatment area 6;
[0111] When the patient air quality sensor 9 detects that the air quality of the patient treatment area 6 is less than the preset air quality, the patient fresh air system introduces fresh air into the patient treatment area 6, so that the patient air quality sensor 9 detects that the air quality of the patient treatment area 6 is greater than or equal to the preset air quality;
[0112] When the medical staff enters the patient treatment area 6 from the medical work area 1 through the buffer room, the air flow pressure in the medical work area 1 is greater than the air flow pressure in the patient treatment area 6 .
[0113] A medical door 13 for entering the medical work area 1 is arranged on the left wall of the medical work area 1. The medical door 13 is provided with a door handle for facilitating opening of the medical door 13, and also includes a reader-writer module fixing mounting seat arranged on one side of the medical door for fixing and mounting a reader-writer module, the reader-writer module is fixedly mounted on the reader-writer module fixing mounting seat, and a protection lock for closing the medical door;
[0114] When its reader module senses the data information in the handheld card, the protective lock opens the medical door.
[0115] In a preferred embodiment of the present invention, the reader / writer module includes a reader / writer, a kth controller, a wireless transceiver unit and a human body sensing unit;
[0116] The human body sensing data output terminal of the human body sensing unit is connected to the human body sensing data input terminal of the kth controller, the working control terminal of the kth controller is connected to the working control terminal of the reader / writer, the reading and writing data terminal of the reader / writer is connected to the reading and writing data terminal of the kth controller, and the wireless data transmission terminal of the kth controller is connected to the data transmission terminal of the wireless transceiver unit;
[0117] The human body sensing unit is used to detect whether the medical staff is close to the reader-writer module. If the medical staff is close to the reader-writer module, the human body sensing unit sends a message to the kth controller indicating that the medical staff is close to the reader-writer module, indicating that the medical staff is about to enter the emergency sampling safety cabin; the kth controller sends a working control signal to the working control end of the reader-writer, and after the reader-writer receives the working control signal sent by the kth controller, the reader-writer starts working;
[0118] The reader is used to obtain the identity information in the handheld card of the medical staff, and the handheld card is one of an identity card, a social security card, and a bank card; the identity information includes the name and / or the identity card number; when the reader is working, the reader sends the obtained identity information to the kth controller; the kth controller verifies the received identity information and obtains an opening code. If the obtained opening code is consistent with the opening code stored in the kth controller, the kth controller sends an opening control signal to the protection lock, and the protection lock is opened; if the obtained opening code is inconsistent with the opening code stored in the kth controller, the protection lock is not opened;
[0119] The wireless transceiver unit is used to receive the opening code set sent by the cloud management platform, and store the received opening code in the kth controller.
[0120] In a preferred embodiment of the present invention, the protection lock includes a rectangular shell and a shell cover for covering the shell, a moving block is arranged in the shell, a guide rod is arranged at the left end of the moving block, a first spring is sleeved on the guide rod, a locking rod is arranged at the right end of the moving block, a left through hole penetrating the left side of the shell and a right through hole penetrating the right side of the shell are arranged on the left and right sides of the shell, the guide rod extends from the left through hole, and the locking rod extends from the right through hole;
[0121] The moving block is provided with a moving groove for the door handle to drive the moving block to move to the left, and the moving block is provided with a limiting groove for limiting the movement of the moving block, and the limiting groove is located on the right side of the moving groove;
[0122] The moving block is also provided with a strip slot hole and a positioning hole penetrating the moving block, the strip slot hole is connected with the positioning hole, and the aperture of the strip slot hole is smaller than the aperture of the positioning hole;
[0123] It also includes a lock rod latch, which is composed of three connecting rods, namely a lower connecting rod, a middle connecting rod and an upper connecting rod, the rod diameter of the middle connecting rod is larger than the rod diameter of the lower connecting rod, the rod diameter of the upper connecting rod is larger than the rod diameter of the middle connecting rod, and the rod diameter of the upper connecting rod is larger than the aperture of the positioning hole, the rod diameter of the middle connecting rod is smaller than the aperture of the positioning hole, the rod diameter of the middle connecting rod is larger than the aperture of the strip slot hole, and the aperture of the strip slot hole is larger than the rod diameter of the lower connecting rod; a second spring is arranged at the top end of the upper connecting rod, and the other end of the second spring abuts against the shell cover; a shell through hole penetrating the bottom of the shell is arranged at the bottom of the shell;
[0124] and a telescopic device arranged in the housing, wherein a limiting block adapted to the limiting groove is arranged on the telescopic rod of the telescopic device;
[0125] The medical door changes from closed to open:
[0126] When the telescopic device is powered on, the telescopic rod of the telescopic device is shortened, and the moving block can slide left and right without restriction.
[0127] When the door handle is turned, the driving rod on the door handle drives the moving block to move to the left, wherein the driving rod is in the moving groove, and the structure in which the driving rod on the door handle drives the moving block to move to the left is an existing structure. When the locking rod latch moves from the strip slot to the positioning hole, since the rod diameter of the middle connecting rod is smaller than the hole diameter of the positioning hole, and under the action of the second spring on the locking rod latch, the middle connecting rod falls into the positioning hole, at this time the locking rod position is locked, and the medical door is opened; if during this process, the middle connecting rod does not fall into the positioning hole, and the door handle is not turned further, that is, the door handle is released, the first spring pushes the moving block to move to the right and reset under the action of the first spring;
[0128] The medical door changes from open to closed:
[0129] As the lock rod latch hits the door frame, the positioning hole is completely occupied by the lower connecting rod. Under the action of the first spring, and the rod diameter of the lower connecting rod is smaller than the hole diameter of the strip slot, the first spring pushes the moving block to move rightward and reset.
[0130] When its telescopic device is powered on, the medical door can be opened again by turning the door handle;
[0131] When the preset door opening time threshold is reached, the telescopic device is powered off, and the telescopic rod of the telescopic device is extended. The telescopic device is a prior art. When the telescopic device is powered on, the telescopic rod of the telescopic device is shortened, and the telescopic device is powered off, the telescopic rod of the telescopic device is extended. Alternatively, when the telescopic device is powered on, the telescopic rod of the telescopic device is extended, and the telescopic device is powered off, the telescopic rod of the telescopic device is shortened, and the corresponding logical condition changes. The limiting block extends into the limiting groove, and the lock rod position is locked at this time.
[0132] In a preferred embodiment of the present invention, the wireless transceiver module includes one or any combination of a 3G wireless transceiver data unit, a 4G wireless transceiver data unit, a 5G wireless transceiver data unit, and a WiFi wireless transceiver data unit;
[0133] When the wireless transceiver module is a 3G wireless transceiver data unit, the wireless data transmission 3G end of the master controller is connected to the data transmission end of the 3G wireless transceiver data unit;
[0134] When the wireless transceiver module is a 4G wireless transceiver data unit, the wireless data transmission 4G end of the master controller is connected to the data transmission end of the 4G wireless transceiver data unit;
[0135] When the wireless transceiver module is a 5G wireless transceiver data unit, the wireless data transmission 5G end of the master controller is connected to the data transmission end of the 5G wireless transceiver data unit;
[0136] When the wireless transceiver module is a WiFi wireless transceiver data unit, the wireless data transmission WiFi end of the master controller is connected to the data transmission end of the WiFi wireless transceiver data unit.
[0137] Although the embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A smart management method for negative pressure cabin based on intelligent networking, characterized in that: The following steps are involved: S1, numbering all images taken in the negative pressure ward unit; the method for numbering all images taken in the negative pressure ward unit comprises the following steps: S11, obtain The unique ID number of the medical camera and The unique ID number of each patient's camera is recorded as and , express A collection of unique ID numbers of medical cameras. Indicates the unique ID number of the first medical camera. Indicates the unique ID number of the second medical camera. Indicates the unique ID number of the third medical camera. Indicates medical use The unique ID number of the camera; express A collection of unique ID numbers for each patient's camera. Indicates the unique ID number of the patient's first camera. Indicates the unique ID number of the second camera used by the patient. Indicates the unique ID number of the patient's third camera. Indicates that the patient The unique ID number of the camera; ; S12, for medical care The camera's unique ID number and the patient's The unique ID number of the camera performs a unique operation to obtain its unique coding number; For medical care The unique ID number of the camera is uniquely calculated as follows: , in, Indicates medical use The unique coding number corresponding to the unique ID number of the camera; Represents the uniqueness operation algorithm; Indicates medical use The unique ID number of the camera; For patients The unique ID number of the camera is uniquely calculated as follows: , in, Indicates that the patient The unique coding number corresponding to the unique ID number of the camera; Represents the uniqueness operation algorithm; Indicates that the patient The unique ID number of the camera; S13, judgment and The size relationship between: like ≥ , then proceed to the next step; like < ,but = +1, return to step S12; S14, and As the name number of the image taken by each camera, express The unique code number set corresponding to the unique ID number of each medical camera, Indicates the unique code number corresponding to the unique ID number of the first medical camera. Indicates the unique code number corresponding to the unique ID number of the second medical camera. Indicates the unique code number corresponding to the unique ID number of the third medical camera. Indicates medical use The unique coding number corresponding to the unique ID number of the camera; express The unique code number set corresponding to the unique ID number of each patient's camera, Indicates the unique code number corresponding to the unique ID number of the patient's first camera. Indicates the unique code number corresponding to the unique ID number of the patient's second camera. Indicates the unique code number corresponding to the unique ID number of the patient's third camera. Indicates that the patient The unique coding number corresponding to the unique ID number of the camera; S2, compressing all the numbered image data in step S1 to obtain an image package; uploading the obtained image package to the cloud management platform; the method for compressing all the numbered image data to obtain an image package includes the following steps: S21, compressing all the numbered image data in step S1 to obtain a compressed package; S22, decompressing the compressed package obtained in step S21 to obtain a decompressed package; S23, determine whether the number of files in the decompressed package is consistent with the number of files before the compressed package is obtained: If the number of files in the decompressed package is the same as the number of files before the compressed package is obtained, the compressed package is an image package; If the number of files in the decompressed package is inconsistent with the number of files before the compressed package is obtained, find out the number and names of the files that are different between the files in the decompressed package and the files before the compressed package is obtained; and proceed to the next step; S24, opening the decompressed package in step S21 and filtering out the files in the decompressed package corresponding to the number and names of the files found in step S23, to obtain an image package; S3, the cloud management platform decompresses the received image package and stores each image in a folder consistent with the number corresponding to the image.
2. The intelligent management method for negative pressure cabin based on intelligent networking according to claim 1 is characterized in that: Step S3 includes the following steps: S31, the cloud management platform decompresses the received image package to obtain the decompressed image package; ; S32, decompress the image package The number corresponding to the image is the search code ,judge Does it exist in the image storage database? For the folder name: like Exists in the image storage database If is the folder name, The corresponding image files are copied to the image storage database. In the folder name; like Does not exist in the image storage database. If the folder name is Create a folder for the folder name and The corresponding image files are copied to the image storage database. In the folder name; S33, judgment and The size relationship between: like ≥ , Indicates the total number of image files in the decompressed image package. If the image files in the decompressed image package are stored, the decompressed image package and the received image package are filtered out. like > ,but = +1, return to step S32.
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