Vehicle-mounted unmanned aerial vehicle operation platform for treating special soldiers and wounded under field operation condition

By designing a vehicle-mounted drone operation platform for special forces wounded rescue under field conditions, using biological indicator identification technology and drone operating system, the problems of rapid information acquisition and single equipment functions in field special forces wounded rescue are solved, and the rapid and effective identification, treatment and evacuation of wounded soldiers are achieved, improving the efficiency and safety of field medical rescue.

CN120048456AInactive Publication Date: 2025-05-27TAIAN NO 88 HOSPITAL
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Patent Information

Application Number
CN202510075174.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-05-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The treatment of field special forces wounded soldiers cannot be quickly established based on field treatment and safety identity information and data information. The relevant equipment has a single function, poor safety and practicality. It is difficult to provide fast and effective location and indicator information, safety equipment and treatment technology for first aid of individual wounded soldiers. It is difficult to effectively complete the continuous and stable field treatment and the full information coverage of the transport and treatment after transportation. It is difficult to provide comprehensive information guarantee, procedural guarantee, and safety guarantee for first aid of individual wounded soldiers.

Method used

Design a vehicle-mounted drone operation platform for special forces soldiers under field conditions. The front-end information control system is based on the field special forces rescue information device for biological indicator identification to collect, identify and transmit individual wounded positions and indicator information and treatment information; the back-end drone operating system is equipped with and delivering treatment supplies backpacks, treatment and transporters to transport wounded personnel, so as to achieve rapid identification, treatment and evacuation of field special forces wounded personnel.

Benefits of technology

It has achieved rapid and effective location and indicator information, safety equipment and treatment technology for special forces individual soldiers, ensuring continuous and stable field treatment and covering the entire process of transportation and treatment, providing comprehensive information guarantee, procedural guarantee, and safety guarantee for the first aid of individual soldiers who were injured in front, and improving the efficiency and effectiveness of field medical rescue.

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Abstract

The invention discloses a vehicle-mounted unmanned aerial vehicle operation platform for special wounded personnel treatment under a field operation condition. An information system collects, identifies and transmits individual wounded personnel index information, and selects an unmanned aerial vehicle treatment function; the field rescue informatization device is provided with a sternum longitudinal #-shaped combined sensing electrode patch, a left chest sensing and processing device connected with the sternum longitudinal #-shaped combined sensing electrode patch, a jugular arteriovenous organism surface sensing electrode patch and the like. The operation system configures and delivers a treatment article knapsack and a wounded person transporter, two-dimensional code identification cells are arranged as a treatment article placement area and a functional article configuration area, and wounded person treatment information is combined with cell partition plates of the functional article configuration area to adjust treatment article combinations of different cells and functional combinations of different cells of the treatment function configuration area. An operation panel is arranged between the cells of the functional supply configuration area and the treatment supplies on the top surface of the lifting device; the knapsack carries an organ-type assembly bag and is combined with a multi-layer cell metal frame; position information is determined for field operation special individual soldiers, a treatment mode is provided, treatment instruments are delivered, and wounded personnel are carried and delivered.
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Description

Technical Field

[0001] The present invention belongs to the fields of UAV technology, information technology, and military medical support research, and particularly relates to an in-vehicle UAV operation platform for treating special forces wounded soldiers under field conditions. Background Art

[0002] Quickly establishing and effectively transmitting the index information of wounded soldiers under field conditions is the key point of self-help and mutual rescue of wounded soldiers, and fluid resuscitation within the "golden 1 hour" after shock is crucial; to achieve the goal of continuous and stable treatment of trauma wounded soldiers, the safe and rapid treatment of wounded soldiers, scientific and rapid evacuation, and effective transmission of information have become the main aspects of field medical rescue.

[0003] Special forces are the main combat force of the military. They have heavy field tasks, high operational risks, and many injury-causing factors. Special forces conduct forward operations individually, especially when special forces conduct forward assault operations in formation. The operation area is large, the combat tasks are arduous, and they are far from rear support. To accurately establish the treatment operation process and technical plan for individual wounded soldiers, and to provide comprehensive information guarantee, procedure guarantee, and safety guarantee for first aid of individual wounded soldiers. High requirements are put forward for establishing individual identity information, wounded soldier index information, and treatment technical equipment.

[0004] War situations have shown that UAVs have become the main combat weapons in modern wars. How to use UAV technology, information technology, and modern biological technology to quickly identify the location of individual wounded soldiers under field conditions, safely and effectively complete the treatment of wounded soldiers, immediately evacuate and transmit treatment information, and improve the environmental adaptability and technical stability of battlefield first aid equipment has become an important topic for improving the construction of the special forces military medical support system.

[0005] At present, in the treatment of special forces wounded soldiers in the field, it is impossible to quickly establish the treatment operation process and technical plan based on the safety identity information and data information of field treatment accurately. The functions of related equipment are single, and the safety and practicality are poor. It is difficult to provide rapid and effective location and index information, safety equipment, and treatment technology for first aid of individual wounded soldiers. It is difficult to effectively complete the full information coverage of continuous and stable field treatment and transportation and evacuation treatment, and it is difficult to provide comprehensive information guarantee, procedure guarantee, and safety guarantee for first aid of forward individual wounded soldiers. Summary of the Invention

[0006] To achieve the above objectives, overcome the defects and deficiencies of the prior art, the inventor of the present invention has conducted in-depth research and completed the present invention after a large amount of creative labor.

[0007] The technical problem to be solved by the present invention is: In the treatment of special forces wounded in the field, it is impossible to quickly establish a treatment operation process and technical plan based on accurate field treatment, safety identity information, and data information. The functions of related equipment are single, and their safety and practicality are poor. It is difficult to provide rapid and effective position and index information, safety equipment, and treatment techniques for first aid of individual wounded soldiers. It is difficult to effectively complete the full coverage of information throughout the continuous and stable field treatment and the transportation and evacuation treatment process, and it is difficult to provide comprehensive information guarantee, procedure guarantee, and safety guarantee for the first aid of forward individual wounded soldiers.

[0008] The present invention is achieved through the following improved technical solutions: A vehicle-mounted UAV operation platform for treating special forces wounded in the field. The front-end information control system is provided with an information-based device for treating special forces in the field based on biological index recognition, which collects, identifies, and transmits the position and index information of individual wounded soldiers and treatment information; the rear-end UAV operation system is configured to deliver a treatment supply backpack and use a treatment and transfer device to transfer the wounded, determine the position information for forward special forces in the field, provide treatment methods, deliver treatment instruments, and transport and evacuate the wounded. The information-based device for treating special forces in the field based on biological index recognition in the front-end information control system includes biological surface induction electrodes, biological implanted recognition electrodes, biological chips, and a transmission unit. Specifically, it includes a longitudinal cross-shaped combination induction electrode patch on the sternum and a connected left chest induction and processor, a biological surface induction electrode patch on the carotid artery and jugular vein, and an abdominal biological implanted recognition electrode. The biological surface and implanted electrodes sense and identify index data. Further, the longitudinal cross-shaped combination induction patch on the sternum is a longitudinal cross-shaped structure pasted on the anterior and lateral positions of the sternum. Ring-shaped induction patches are set at the horizontal and vertical intersections, and active venous biological surface induction electrodes are set inside the patches. Further, the left chest induction processor is an induction processing unit connected to the longitudinal cross-shaped combination induction patch on the sternum and pasted and fixed on the heart part. An anterior cardiac region biological surface induction electrode is set on the inner surface, and a biological chip and a transmission unit are set on the outer surface. Further, the biological surface induction electrodes of the carotid artery and jugular vein are set inside the left outer ear, and are connected to the biological chip and the transmission unit inside the individual combat earphone device. Further, the abdominal implanted biological recognition electrode is provided with a ray generation and recognition unit and implanted recognition electrodes on both sides of the unit, which are connected to the biological chip and the transmission unit.

[0009] Further, the biological chip and the transmission unit are connected to the identity recognition system and the wireless positioning device on the combat uniform through the combat uniform. Further, the individual serial number of the identity recognition system activates the biological chip, and data transmission is carried out by the identity recognition system and the wireless positioning device fixed on the combat uniform and connected to the individual operation field treatment system.

[0010] The previously mentioned special forces individual soldier portable field special forces treatment informatization device based on biological index recognition. The individual soldier serial number activates the biological chip to provide timely biological indexes and relevant information and conduct data transmission; Determine the operation process through the combat sequence code distribution area and the medical service information code distribution area of the individual soldier identity recognition system. Enter the field medical service support system with the sequence code and the medical service information code as the identification marks for the safety identity and treatment information of special forces soldiers; Furthermore, the information control system collects relevant index information and data information on the treatment of the wounded, reflects the safety degree of the wounded's organism and the safety degree of treatment information display of the corresponding identity recognition system, formulates a safe treatment method, and determines the treatment process through the identity recognition system and the safe treatment method; A vehicle-mounted UAV operation platform for treating special forces wounded under field conditions is associated with the special forces combat UAV control system, connects to the combat UAV command database and other individual treatment data information terminal devices. The individual biological chip, the transmission unit, and the data information of the identity recognition system are uploaded to the command system terminal, updating the individual combat and UAV wounded treatment process information, and associating with the military medical service support database information and the treatment information of the military rear hospital local area network, realizing the full coverage of the field wounded evacuation and the treatment information of the front and rear areas.

[0011] The rear-end UAV operating system sets up a treatment function configuration area, a hydraulic lifting device at the bottom of the UAV operating system, and a UAV startup platform; On both sides of the treatment function configuration area of the UAV operating system, a multi-layer cell structure is partitioned by a pull-out partition to set up a treatment supplies placement area. The cell is equipped with a two-dimensional code to identify the pull-out door for placing treatment supplies. In the middle, a multi-layer cell is set as the functional supplies configuration area, and the cell is equipped with a two-dimensional code to identify the push-pull door for functional supplies configuration. The two-dimensional code is connected to the military medical service support database, and scanning the two-dimensional code can identify the storage position map of functional supplies; Furthermore, the treatment function configuration area selects according to the wounded treatment method, treatment supplies delivery, and wounded evacuation functions. The wounded treatment information combines with the pull-out partition of the cells in the functional supplies configuration area to adjust different combinations of treatment supplies in the cells, as well as different functional combinations of the cells in the treatment function configuration area; The hydraulic lifting device at the bottom of the UAV operating system transports the UAV and the treatment supplies delivery backpack or the wounded transporter to the UAV startup platform. A combined operation board is set between the treatment supplies on the top surface of the hydraulic lifting device at the bottom and the cells in the functional supplies configuration area; Furthermore, there is a treatment supplies configuration support tube on the top surface of the hydraulic lifting device at the bottom of the UAV operating system. Inside the support tube, there is a telescopic fixing rod in the up and down direction. The fixing rod is connected to the treatment supplies configuration operation board through fixing screws to form a multi-layer rotatable and tail-foldable board structure. The operation board and the cells in the functional supplies configuration combination area intersect and combine to conduct treatment function configuration; The UAV startup platform consists of two closed cover plates on the left and right sides of the vehicle body top. They fold upward and unfold to the left and right, and both ends are arranged at right angles to both sides of the vehicle body. It is used for the assembly, configuration operation, startup and recovery of combat UAV accessories, as well as the transportation of the wounded using a medical supply backpack or a wounded transporter. Furthermore, the medical supply backpack carried by the UAV is provided with a drawer-type frame structure. The two sides of the frame are a multi-layer cell metal frame structure with QR code-labeled pull-out doors, which are used to place instrument and medicine packaging bags with bottom magnets and tensioning snap-ring belts. The surrounding is a bellows-type component bag structure, and the bellows opening has digital markings and is sealed with a zipper. The four corners of the backpack bag are stainless steel tubes fixed inside the double-layer material of the backpack bag. There are retractable support rods inside the tubes, and the support rods are connected and fixed by threads to serve as an operating platform for treating the wounded. Furthermore, the UAV wounded transporter includes a suspension rope, a sling, and a sling plate. Four slings are separated from the bottom of the suspension rope, and the slings are connected by a protective mesh structure. The bottom of the sling is a round lock. Between the metal frames on the left and right sides of the sling plate, there are support rods fixed to the metal frames at intervals and can be pulled out and unfolded to both sides. The four corners of the metal frame are fixed rings adapted to the round lock. Beneficial effects

[0012] After adopting the above technical solutions, the beneficial effects obtained by the present invention are as follows: 1. An information-based device for field treatment of special forces soldiers based on biological index recognition is set up for special forces soldiers. It can quickly and accurately establish field treatment operation procedures and technical solutions based on identity recognition and index data information, providing comprehensive information guarantee, procedure guarantee, and safety guarantee for the first-aid treatment of forward individual wounded soldiers.

[0013] 2. Associated with the special forces combat UAV system, it determines the position information for forward special forces soldiers, provides treatment methods, delivers treatment instruments, and transports the wounded after treatment, solving the technical problems of single function, poor safety and practicability of existing related equipment.

[0014] 3. The data information is uploaded to the command system terminal to update the combat operation of special forces soldiers and the information of the UAV wounded treatment process, providing fast and effective position and index information, safety equipment, and treatment technology for the first-aid treatment of individual wounded soldiers.

[0015] 4. Collect data information related to the treatment of the wounded, connect to the hospital database and the field medical service support database, and perform data transmission in combination with the individual identity recognition system, effectively completing the full information coverage of the continuous and stable field treatment and the whole process of transportation and subsequent treatment of the wounded. Description of the drawings

[0016] To more clearly illustrate the improved technical solution and specific implementation of the present invention, the following will briefly introduce the drawings required for the specific implementation. In all the drawings, similar parts are generally denoted by similar reference numerals. In the drawings, the parts are not necessarily drawn to actual scale. For those skilled in the art and researchers, other drawings can be obtained based on the following drawings.

[0017] Figure 1 Schematic top view structure diagram of the vehicle-mounted UAV operation platform for treating special forces wounded under field conditions of the present invention; Figure 2 Schematic plan view structure diagram of the information-based device for treating special forces in the field based on biological index recognition of the present invention; Figure 3 Schematic plan view structure diagram of the rescue supply delivery backpack of the present invention; Figure 4 Schematic structure diagram of the fixed rod and operation board of the hydraulic lifting device of the present invention; Figure 5 Schematic plan view structure diagram of the wounded transporter of the present invention; Figure 6 Schematic side view structure diagram of the information-based device for treating special forces in the field based on biological index recognition of the present invention; Figure 7 Schematic principle structure diagram of the information-based device for treating special forces in the field based on biological index recognition of the present invention. Drawings

[0018] 1 - Hydraulic lifting device; 2 - Fixed rod; 3 - Operation board; 4 - UAV startup platform; 5 - Rescue supply placement area; 6 - Functional supply configuration area; 7 - Information control platform; 8 - Outer vehicle door; 9 - Inner vehicle door; 10 - Outer vehicle door; 11 - Driving system; 12 - Rear vehicle door; 13 - Transfer window; 14 - Ultraviolet lamp; 15 - Lighting device; 16 - Drawer-type closed frame; 201 - Sternum longitudinal cross; 202 - Active and venous induction electrode patches; 203 - Sternum adhesive film; 204 - Connection wire; 205 - Transmission unit; 206 - Biological chip; 207 - Left chest induction processor; 208 - Precordial induction electrode; 209 - Carotid and jugular venous induction electrode; 210 - Adhesive buckle; 211 - Adhesive tape; 212 - Abdominal implanted recognition electrode; 213 - Implanted recognition electrode; 214 - Ray generation recognition unit; 301 - Drawer-type closed frame body; 302 - Metal frame cell; 303 - Inner push lock; 304 - Drawer door; 305 - Cell QR code; 306 - Backpack bag; 307 - UAV delivery fixing ring; 308 - Support tube; 309 - Support rod; 310 - Delivery backpack; 311 - Bellows-type component bag; 312 - Bellows opening zipper; 401 - Hydraulic lifting device; 402 - Support pipe; 403 - Fixed rod; 404 - Fixed screw; 405 - Clamping screw; 406 - Operation panel; 407 - Folding plate; 501 - Suspension rope; 502 - Suspension cable; 503 - Suspension plate; 504 - Protection net; 505 - Fixed ring; 506 - Ring lock; 507 - Metal frame; 508 - Support rod; 509 - Fixed part hinge hook; 510 - Ring lock hole; 511 - Ring lock head; 512 - Ring lock aperture; 601 - Induction electrode; 602 - Ray generation and identification unit; 603 - Left chest induction processor; 604 - Transmission unit; 605 - Organism chip; 606 - Adhesive buckle; 607 - Round hole in combat clothing; 608 - Implantation identification electrode; 609 - Wireless positioning device; 610 - Identity recognition system; 611 - Skin; 612 - Combat clothing; 613 - Connection wire. Detailed implementation manners

[0019] The present invention will be clearly and completely described and further explained below in conjunction with the above drawings and specific embodiments. However, these exemplary embodiments are only used to illustrate the present invention, and are only a part of the embodiments of the present invention, rather than all embodiments. They do not constitute any form of limitation to the actual protection scope of the present invention, nor limit the protection scope of the present invention thereto.

[0020] 1. Embodiment 1 As Figure 1 shown, in this embodiment, an operation platform for an unmanned aerial vehicle for treating special forces wounded soldiers under field conditions includes an information control system at the front end of the vehicle body and an unmanned aerial vehicle operation system at the rear end; The front-end information control system is associated with the control system of the special forces combat unmanned aerial vehicle. The information control platform 7 is associated with the pre-hospital diagnosis and treatment information database of officers and soldiers, the information of the medical support database, and the diagnosis and treatment process information of the local area network of the rear hospital, and provides functions such as determining the position information, providing treatment methods, delivering treatment equipment, and selecting the function of evacuating the wounded for the forward movement of field special single soldiers and controlling equipment information.

[0021] As Figure 2 , 7 shown, in this embodiment, the information control system is provided with an information-based device for treating special forces in the field based on organism index recognition, which collects, identifies, and transmits the position and index information of single-soldier wounded soldiers, including a longitudinal cross-shaped 201 combination of active and venous induction electrode patches 202 on the sternum and the connected left chest induction processor 207, carotid and jugular vein induction electrode patches 209, abdominal implantation identification electrodes 212, and the organism surface and implanted electrode induction to identify bioelectric index data; Further, the sternum adhesive film 203 fixes the longitudinal cross-shaped structure of the front and side views of the sternum in the 201 type. Ring-shaped induction patches are arranged at the horizontal and vertical intersections, and active and venous organism surface induction electrodes 202 are arranged inside the patches. Further, the left chest induction processor 207 is connected to the longitudinal cross of the sternum 201, combined with the active and venous induction patches 202, and is pasted and fixed on the heart part. An organism surface induction electrode 208 in the precordial area is arranged on the inner surface of the left chest induction processor 207, and an organism chip 206 and a transmission unit 205 are arranged on the outer surface. Further, the abdominal implanted organism recognition electrode 212 is provided with a ray generation and recognition unit 214 and implanted recognition electrodes 213 on both sides of the unit. All are connected by a wire 204 to the organism chip 206 and the transmission unit 205. Further, the carotid and jugular organism surface induction electrode 209 is arranged in the left outer ear and is connected to the organism chip 206 and the transmission unit 5 on the outer surface of the left chest induction processor 7 by a single-soldier combat headphone device. Further, the organism chip 206 is activated by a single-soldier serial number, and the transmission unit 205 performs data transmission with an identity recognition system 610 that is fixed to the combat uniform 612 and connected to the single-soldier operation field treatment system.

[0022] As Figure 6 shown, in this embodiment, under field conditions, a special forces soldier uses an information-based device for field treatment of special forces based on organism index recognition when going forward. First, the longitudinal cross of the sternum 201 combined with the active and venous induction electrodes 601 is pasted on the skin 611 of the front and side views of the sternum. The four corners of the left chest induction processor 603 are fixed to the skin 611 of the heart part with paste buttons 606. The organism surface induction electrode 601 in the precordial area on the inner surface of the left chest induction processor 603 is fixed well. The ray generation and recognition unit 602 of the abdominal implanted organism recognition electrode unit 608 and the implanted recognition electrodes 601 on both sides are pasted and fixed well. All are connected to the organism chip 605 and the transmission unit 604 by a connecting wire 613. The organism chip 605 is placed in order and the transmission unit 604 is started and connected. The carotid and jugular organism surface induction electrode 601 is arranged in the left outer ear and is fixed to the single-soldier combat headphone device and is connected to the organism chip 605 and the transmission unit 604 through the single-soldier combat equipment. Further, the connecting wire 613 of the organism chip 605 and the transmission unit 604 is connected to the identity recognition system 610 and the wireless positioning device 609 outside the combat uniform 612 through the round hole 607 of the combat uniform 612 to provide timely organism indexes and relevant information. Further, connect the identity recognition system 610 according to the casualty serial number, and determine the operation process through the identity recognition system 610 fixed on the combat uniform 612 and including the combat sequence code distribution area and the medical service information code distribution area, so as to identify the serial code and the medical service information code to enter the field medical service support system, and complete the function selection of the casualty treatment location, the delivery of treatment supplies, the casualty handling and evacuation, and the equipment information control.

[0023] The UAV information control platform 7 collects casualty treatment index data and information data, reflects the casualty treatment safety information corresponding to the safety degree of the identity recognition organism and the treatment safety degree, formulates a safe treatment method, and determines the treatment process through the identity recognition system 610 and the safe treatment method; Further, the cell two-dimensional code is the military medical service support database and the natural human physical examination index information database, which can be scanned and recognized to determine the casualty serial number to enter.

[0024] The individual combat wireless positioning device 609 determines the casualty position. Different biological index information is reflected at different times and is transmitted by the wireless transmission unit 604 after being processed by the biological chip 605, providing timely biological indexes and determining the treatment technology plan and standards, improving the storage, collection, and identification of corresponding index information and treatment information in the corresponding database. The casualty index information and treatment data information are transmitted from the wireless transmission system to the command terminal, which is used for pre-hospital treatment of casualties, remote transmission of treatment information, and updating of individual treatment data information terminal devices such as the special forces individual operation position, the military medical service support database, and the combat UAV command database, covering the whole process of field individual treatment and evacuation.

[0025] As Figure 1 shown, in this embodiment, an UAV operation platform at the rear end of the vehicle body for treating special forces casualties under field conditions is provided with a treatment function configuration area, a hydraulic lifting device 1 at the bottom of the operation system, and an UAV startup platform 4; The treatment function configuration area is mainly formed by the intersection and arrangement of cells to form a frame structure. The multi-layer structure of the cells is partitioned by a pull-out partition 16. The cells on both sides of the treatment function configuration area are provided with treatment supply placement areas 5. The cells are respectively provided with two-dimensional code identification treatment supply placement pull-out doors. The cells in the middle position are provided with function supply configuration areas 6. The cells are provided with two-dimensional code identification function supply configuration sliding doors; The treatment function configuration system constructs a treatment function recognition two-dimensional code, stores the casualty treatment function information corresponding to the information in the corresponding database, and scans the two-dimensional code to identify the storage position and combination method of the function supplies; In the treatment function configuration area, the pull-out partition 16 of the treatment supply placement area 5 and the function supply configuration area 6 in the treatment function configuration area, combined with the casualty treatment information of the information control platform 7, adjusts the combination of function supplies and treatment supplies among different cells in the treatment function configuration area; As Figures 3 - 5As shown in the figure, in this embodiment, the hydraulic lifting device 401 at the bottom of the UAV operating system lifts and transports UAV accessories, the delivery backpack for rescue supplies, and the casualty transporter to the UAV startup platform 4, and the UAV startup platform 4 assembles UAV accessories, or delivers the rescue supply backpack or the casualty transporter. On the top surface of the hydraulic lifting device 401 at the bottom of the UAV operating system, there is a fixing rod 403 for rescue supplies configuration, and the fixing rod 403 is connected to the operation board 406 for rescue supplies configuration through a fixing screw 404. The UAV operating system configures the information of the delivery backpack 310 according to the information uploaded by the information control system 7; the UAV startup platform 4 is composed of two closed cover plates on the left and right parts of the top of the vehicle body, and both ends are arranged at right angles to the two sides of the vehicle body, and the rescue supply backpack 310 is delivered for special forces individual rescue and the casualty transporter is used to transport casualties.

[0026] As Figure 3 As shown in the figure, in this embodiment, the UAV delivery backpack bag 306 for rescue supplies is woven from double-layer materials. The inner and outer layers are made of polyester and Oxford waterproof fabrics respectively, and the middle layer is a composite foam material. The inner side of the polyester fabric is bubble film. The upper part of the backpack bag is a closed zipper, and UAV delivery fixing rings 307 are arranged on both sides of the outside of the backpack bag 306. A drawer-type closed frame structure 301 is arranged inside the UAV delivery backpack bag 306 for rescue supplies and is closed by an inward push lock 303. Inside, there are a display board of the combat trauma treatment and safety monitoring information management system, a single soldier distress call device, and casualty treatment information terminals such as a GPS-enabled treatment location coordinate. On both sides, there are multi-layer metal frame structures with pull-out doors 304 for placing tensioned card-shaped belts and bottom magnetized packaging bags. Each cell has a QR code label 305, and the surrounding accordion-style component bags 311 are respectively used to place rescue supplies such as disposable multi-functional liquid resuscitation devices and surgical instruments. The accordion opening is closed by a digital label and a zipper 312. At the four corners of the backpack bag 306, there are inner support tubes 308 fixed inside the double-layer material of the backpack bag 306. Among them, the retractable support rods 309 are connected and fixed by threads to serve as a casualty treatment operation platform.

[0027] As Figure 4 As shown in the figure, in this embodiment, on the top surface of the hydraulic lifting device 401 at the bottom of the UAV operating system, there is a support tube 402 for rescue supplies configuration. Inside the support tube 402, there is a fixing rod 403. The fixing rod 403 is telescopic in the up and down direction. The fixing tube 402 is provided with holes for clamping screws 405 to adjust the telescopic length of the fixing rod 403. The fixing rod 403 is connected to the operation board 406 for rescue supplies configuration through a fixing screw 404. The operation board 406 has a multi-layer rotatable and tail-foldable plate 407 structure, and intersects and combines with the cells 5 and 6 in the functional supply configuration combination area for rescue function configuration.

[0028] As Figure 5As shown in the figure, in this embodiment, the drone - delivered wounded - person transporter includes a suspension rope 501, a sling 502, and a suspension plate 503. Four slings 502 are branched from the bottom of the suspension rope 501. The slings 502 are connected by a protective mesh structure 504. The bottom of the sling is a ring lock 506. On the left and right sides of the suspension plate 503 are metal frames 507. Between the frames are support rods 508 fixed to the metal frames 507 at intervals and pulled out and unfolded from the middle of the fixed part at the front and rear ends to both sides. There are hinge hooks 509 for fixing the protective net on both sides of the fixed part. At the four corners of the metal frame 507 are fixing rings 505 adapted to the ring lock 506. The fixing rings 505 are respectively placed into the ring lock 506 through the ring - lock holes 512, and the ring - lock head 511 is pushed into the ring - lock eye 510 to lock.

[0029] 2. Embodiment Two As Figure 1 shown in the figure, in this embodiment, a vehicle - mounted UAV operation platform for treating special - forces wounded in field conditions. The front - end information control area collects, identifies, and transmits the position, indicators, and treatment information of individual wounded soldiers. The rear - end operating system is provided with a treatment function configuration area and a UAV assembly area, and configures and delivers treatment supply backpacks and transporters. There are communicating doors 8 and 10 between the information control area and the outside of the vehicle body, which are used for the driving system 11 and information control personnel to enter through the identity recognition device. There is a communicating door 9 between the information control area and the treatment function configuration area, which is used for the treatment function configuration and information control personnel to enter and exit.

[0030] There is a communicating door 12 at the rear of the operating system, and a transfer window 13 is fixed, which is used for UAV operators to enter through the identity recognition device. The vehicle body is configured with double - layer shock - proof glass and a charging device, and is provided with an ultraviolet lamp 14, a lighting device 15, etc.

[0031] As Figure 2 shown in the figure, in this embodiment, the information control system is provided with a field special - forces treatment information device based on biological index recognition, which collects, identifies, and transmits the position and index treatment information of individual wounded soldiers. It is reflected in the information control area: The field special - forces treatment information device based on biological index recognition includes a longitudinal sternum cross - shaped 201 combined induction electrode patch 202 and a connected left - chest induction processor 207, a carotid - jugular vein biological surface induction electrode patch 209, and an abdominal biological implanted recognition electrode 212, all of which are connected by wires 204 to a biological chip 206 and a transmission unit 205. Furthermore, the left - chest induction processor 207 is connected to the longitudinal sternum cross - shaped 201 combined arteriovenous induction patch 202 and pasted and fixed on the heart part. On the inner surface of the left - chest induction processor 207, a precordial biological surface induction electrode 208 is provided, and on the outer surface, a biological chip 206 and a transmission unit 205 are provided. Further, the abdominal implanted organism recognition electrode 212 is provided with a ray generation recognition unit 214 and implanted recognition electrodes 213 on both sides of the unit; Further, the organism chip 206 and the wireless transmission unit 205 are connected to the identity recognition system 610 and the wireless positioning device 609 on the combat uniform 612.

[0032] The information-based device for the treatment of field special forces based on organism index recognition activates the organism chip 206 with the individual soldier serial number. The wireless transmission unit 205 performs data transmission with the identity recognition system 610 fixed on the combat uniform 612 and connected to the individual soldier operation field treatment system, and is connected to the field medical team and the hospital through the wireless transmission unit 205 in combination with the identity recognition system 610; Further, the injuries and electrophysiological and biochemical indexes of the head, trunk, limbs, heart, and abdomen of the individual wounded soldier are respectively reflected by the relevant index data information of the carotid-jugular organism surface induction electrode 209, the sternum induction electrode patch 202, the precordial organism surface induction electrode 208, the abdominal organism implanted recognition electrode 213, and the ray generation recognition unit 214; The index data information of the wounded soldier is transmitted corresponding to the wounded soldier treatment information of the identity recognition system. The wounded soldier treatment safety information combining the organism safety degree and the treatment safety degree of the wounded soldier is displayed on the interface of the UAV information control platform 7; The information control area is associated with the combat UAV control system. The organism index information of the individual soldier at different times during combat is processed by the organism chip 206 and then transmitted by the wireless transmission unit 205. Combining the wounded soldier treatment information of the identity recognition system 610, it is transmitted to the command terminal by the wireless transmission system, associated with the pre-hospital diagnosis and treatment information database of officers and soldiers, the medical support database, and the diagnosis and treatment process information of the local area network of the rear hospital, and updates the individual soldier treatment data information terminal devices such as the combat position of the special forces and the special forces identity recognition card and the combat UAV command database, etc., to guide the establishment of the in-situ rescue and field treatment procedures.

[0033] As Figure 1 shown, in this embodiment, in the treatment function configuration area of the UAV operating system, the pull-out partition 16 of the treatment supplies placement area 5 and the functional supplies configuration area 6 cells combines with the wounded soldier treatment information of the information control platform 7 to adjust the combination of the functional supplies 6 and the treatment supplies 5 between different cells in the treatment function configuration area; Further, the treatment function configuration area is mainly formed by the intersection and arrangement of cells to form a frame structure. The multi-layer structure of the cells is partitioned by the pull-out partition 16. The treatment supplies placement area 5 is provided on both sides of the treatment function configuration area. The pull-out door for placing the treatment supplies is provided with a two-dimensional code identification for the cells. The functional supplies configuration area 6 is provided in the middle position cell, and the push-pull door for the functional supplies configuration is provided with a two-dimensional code identification for the cells. Scanning the two-dimensional code can identify the storage position and combination method of the functional supplies; Furthermore, the treatment function configuration area is equipped with a stretcher for treating the wounded, delivering treatment supplies, and evacuating the wounded, and a backpack 310 for delivering treatment supplies. The treatment information of the wounded is combined with the cell pull-out partition 16 in the treatment function configuration area to adjust the combination between different cells of the treatment function supplies 6 and the treatment supplies 5.

[0034] As Figures 3 - 5 shown, in this embodiment, the UAV operation area is used for assembling UAVs and delivering the backpack 310 for treating supplies, or delivering the wounded using a stretcher for evacuating the wounded; The hydraulic lifting device 401 at the bottom of the UAV operation system transports UAV accessories, the backpack 310 for delivering treatment supplies, or the stretcher for evacuating the wounded to the UAV startup platform 4; Furthermore, there is a support pipe 402 for treating supplies configuration on the top surface of the hydraulic lifting device 401 at the bottom of the UAV operation system. The fixed rod 403 in the support pipe 402 is connected to the operation board 406 for treating supplies configuration through a fixing screw 404. The operation board 406 has a multi-layer rotatable and tail-foldable plate 407 structure, and intersects and combines with the cells in the treatment supplies placement area 5 and the function supplies configuration area 6 for treatment function configuration; When in use, the UAV startup platform 4 folds upward and unfolds to the left and right, configures the backpack 310 for delivering treatment supplies or the stretcher for evacuating the wounded, and completes function selections such as delivering treatment supplies for the wounded and evacuating the wounded; Furthermore, when using the stretcher for evacuating the wounded, the middle support rod 508 in the fixed part of the hanging plate 503 is pulled out and unfolded to both sides. After placing the wounded to be transported, the four corner fixing rings 505 on the hanging plate 503 are respectively placed into the circular ring locks 506 through the circular ring lock holes 512, and the circular ring lock head 511 is pushed into the circular ring lock hole 510 for locking. The hinge hooks 509 on both sides of the middle support rod 508 of the hanging plate 503 fix the protective net 504.

[0035] The above embodiments are only used to illustrate the present invention and are not intended to limit the protection scope of the present invention. After reading the technical content of the present invention, those skilled in the art can make various changes, modifications, or variations to the present invention, and all these equivalent forms also fall within the protection scope defined by the appended claims of this application.

Claims

1. A vehicle-mounted drone operation platform for treating wounded special forces soldiers under field conditions, which is embodied as an information control system and a drone operating system, and is characterized by: The information control system uses a field special forces rescue information device based on biological indicator recognition to collect, identify and transmit the forward individual wounded indicator information, and selects the drone rescue function; the drone operating system QR code identifies the multi-layer cells to set up the medical supplies placement area and the functional supplies configuration area, and the top unfolds the closed cover to serve as the drone starting platform, and delivers the medical supplies backpack and the wounded transporter.

2. According to claim 1, a vehicle-mounted drone operation platform for treating wounded special forces soldiers under field conditions is characterized by: The field special forces rescue information device based on biological index recognition includes a sternum longitudinal tic-tac-toe combination sensing electrode patch and a connected left chest sensing processor, a jugular artery and vein biological surface sensing electrode patch, an abdominal biological implant recognition electrode patch, a biological chip and a transmission unit.

3. According to claim 1 or 2, a vehicle-mounted drone operation platform for treating wounded special forces soldiers under field conditions, characterized in that: The sternum longitudinal tic-tac-toe combination sensing electrode patch is fixed to the longitudinal tic-tac-toe structure on the front side of the sternum, a ring electrode patch is arranged at the intersection of the horizontal and vertical directions, and an active vein biological surface sensing electrode is arranged in the patch.

4. According to claim 1 or 2, a vehicle-mounted UAV operation platform for treating wounded special forces soldiers under field conditions, characterized in that: The left chest sensing processor is a sensing processing unit fixed to the heart, with a precordial biological surface sensing electrode arranged inside and a biological chip and a transmission unit arranged outside.

5. According to claim 1 or 2, a vehicle-mounted UAV operation platform for treating wounded special forces soldiers under field conditions, characterized in that: The abdominal implanted biological identification electrode is provided with a ray generating identification unit and identification electrodes implanted on both sides of the unit.

6. According to claim 1 or 2, a vehicle-mounted UAV operation platform for treating wounded special forces soldiers under field conditions, characterized in that: The biological chip and the transmission unit are connected to the identity recognition system and the wireless positioning device outside the combat clothing.

7. According to claim 1, a vehicle-mounted UAV operation platform for treating wounded special forces soldiers under field conditions is characterized by: The UAV operating system has multi-layer cells on both sides of the rescue function configuration area as a rescue product placement area, and a multi-layer cell in the middle as a functional product configuration area. The wounded rescue information is combined with the cell partitions of the functional product configuration area to adjust the combination of rescue products in different cells. And the functional configuration combination between different cells in the rescue function configuration area.

8. According to claim 1, a vehicle-mounted drone operation platform for treating wounded special forces soldiers under field conditions is characterized by: A combined operating panel is arranged between the cells of the functional supplies configuration area of ​​the unmanned operating system and the rescue supplies on the top surface of the bottom lifting device.

9. According to claim 1, a vehicle-mounted UAV operation platform for treating wounded special forces soldiers under field conditions is characterized by: The medical supplies backpack is provided with an accordion-type component bag combined with a multi-layer cell metal frame structure.

10. According to claim 1, a vehicle-mounted UAV operation platform for treating wounded special forces soldiers under field conditions is characterized by: The bottom of the wounded transporter sling is a circular ring lock, and between the metal frames on the left and right sides of the hanging plate are support rods fixed on the frames at intervals and can be expanded to both sides, and the four corners of the frame are fixed rings that are compatible with the circular ring lock.