AED Intelligent Acquisition Method, System, Convenience Station and Medium for First Aid Convenience Station
By using user identification and automatic identification of first aid events in the first aid convenience station AED intelligent acquisition method and system, synchronously confirming the status of AED equipment, and prioritizing the acquisition of equipment, the problem of inability to respond in a timely manner and ensure the delivery of AED equipment in the prior art is solved, and fast and effective acquisition and delivery of AED equipment is achieved.
Patent Information
- Application Number
- CN202510430859.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2045-04-08
AI Technical Summary
There are existing problems in the combination of vending machines (convenience stations) and AED in practical applications where vending machines (convenience stations) cannot respond in a timely manner, inability to ensure that AED devices can be delivered, and inability to accurately obtain available AED devices.
An intelligent acquisition method and system for AED in the first aid convenience station was designed. Through user identification or automatic identification of first aid events, the first aid platform synchronizes the status of nearby AED devices, prioritizes the acquisition of AED devices with close distances and high activity, and ensures the normal use and rapid delivery of equipment through wireless communication and Internet of Things platforms.
It realizes the rapid acquisition and delivery of available AED equipment when first aid incident occurs, shortens response time, improves first aid efficiency, and ensures the normal use and public safety of AED equipment.
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Figure CN119943329B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cardiopulmonary resuscitation, and particularly to a method and system for intelligently obtaining an AED in an emergency convenience station, a convenience station, and a medium. Background Art
[0002] The statements in this section merely provide background technical information related to the present application and do not necessarily constitute prior art.
[0003] Cardiac arrest is a sudden and life-threatening condition that requires immediate and effective first aid measures. Among them, an automated external defibrillator (AED) is one of the most effective first aid devices. AED external defibrillation is an important step in CPR (Cardio Pulmonary Resuscitation). The person using the AED is the AED operator, the person performing CPR is the CPR implementer (hereinafter referred to as the implementer), and the person receiving AED external defibrillation is the AED, CPR recipient (hereinafter referred to as the patient).
[0004] As a first aid device, the market demand for AEDs (automated external defibrillators) is increasing continuously, especially the demand for their configuration in public places is growing. At the same time, with the rapid development of the unmanned retail industry, vending machines (convenience stations), with their characteristics of low cost, high efficiency, and 24-hour operation, have become an important part of the unmanned retail market. If a vending machine (convenience station) can be combined with an AED to form an emergency convenience station, it not only meets the consumers' demand for convenient shopping but also provides a guarantee for public safety.
[0005] However, there are still some challenges in the actual application of combining a vending machine (convenience station) with an AED to form an emergency convenience station. First, when an emergency occurs, how to quickly obtain an AED from the emergency convenience station is the biggest current challenge. If the existing AED delivery method conventionally uses first aid volunteers at the emergency site to obtain and deliver it, the first aid volunteers need to first reach the emergency convenience station with an AED to obtain the AED and then return to deliver the AED to the emergency scene. The time spent going back and forth is too long, exceeding the golden time for the best rescue, slowing down the rescue speed, and reducing the first aid effect. Second, although an emergency has been initiated, the personnel responding to the emergency are not fixed, and it cannot be ensured that the AED device in the emergency convenience station responding to the emergency can be delivered to the emergency scene, thus delaying the rescue speed. In addition, for first aid personnel, they cannot know whether the AED device in the emergency convenience station can be used, and they cannot accurately obtain an available AED device, so first aid will also be delayed.
[0006] In view of this, how to solve the problems existing in the actual application of combining vending machines (convenience stations) with AEDs, such as the inability to respond in a timely manner, the inability to ensure that AED devices can be delivered, and the inability to accurately obtain available AED devices, has become the subject to be studied and solved by the present invention. Summary of the invention
[0007] The purpose of the present invention is to provide an AED intelligent acquisition method, system, convenience station, and medium for an emergency convenience station, which not only meets the consumer's demand for convenient shopping, but also provides protection for public safety.
[0008] To achieve the above object, the first aspect of the present invention proposes an AED intelligent acquisition method for an emergency convenience station, the method comprising:
[0009] The user recognizes or automatically recognizes the occurrence of an emergency event and initiates an emergency call.
[0010] The emergency rescue platform receives the distress call information of the emergency rescue incident, and simultaneously confirms the status of the AED equipment in the emergency rescue convenience station within a set range near the emergency rescue site.
[0011] The first aid platform sends the distress message to the first aid convenience station system and volunteers near the first aid site. The first aid convenience station system calculates the distance between the first aid convenience station and the first aid site within a set range near the first aid site, the comprehensive activity of the first aid convenience station, and obtains the self-inspection results of the AED equipment in the corresponding first aid convenience station.
[0012] The first aid convenience station system prioritizes the first aid convenience stations according to their distance from the first aid site and their overall activity, and uses the first aid convenience stations with short distances and high overall activity as the current high-priority first aid convenience stations. It then determines whether the AED equipment in the first aid convenience station is normal based on the self-test results of the AED equipment. If normal, the current high-priority first aid convenience station will be used as a rescue first aid convenience station where the executor can obtain available AED equipment in the shortest time, and enter rescue mode. It will continue to check and determine whether the AED equipment at the next-priority first aid convenience station is normal in order of priority, and use the normal first aid convenience station as a rescue first aid convenience station.
[0013] The executive personnel will respond and obtain the AED equipment from the rescue and first aid convenience station and arrive at the first aid site to perform cardiopulmonary resuscitation; if the AED equipment at the rescue and first aid convenience station is not taken out within the set time, the rescue and first aid convenience station will continue to be searched and generated in order of priority until the AED equipment is taken out and delivered.
[0014] The second aspect of the present invention proposes an AED intelligent acquisition system for an emergency convenience station, which is used in the method described in the first aspect. The system includes an emergency mobile terminal, an emergency convenience station, an emergency platform, and an emergency convenience station system.
[0015] The first-aid mobile device is a mobile device used to send and receive the call-for-help information of first-aid events and the geographical location of the first-aid scene, and the first-aid mobile device communicates with the first-aid platform through a long-distance wireless method.
[0016] The first-aid convenience station is an unattended or attended convenience station, in which an AED device and at least a screen system for entering the rescue mode are configured, and the first-aid convenience station communicates with the first-aid convenience station system through a long-distance wireless method or a wired communication method.
[0017] The first-aid platform is used to receive and / or send the call-for-help information of first-aid events, and synchronously confirm the status of the AED devices in the first-aid convenience stations within a set range near the first-aid scene, and send the call-for-help information to the first-aid convenience station system and the volunteers near the first-aid scene.
[0018] The first-aid convenience station system is used to sort the priority order according to the distance between the first-aid convenience station and the first-aid scene and the comprehensive activity of the first-aid convenience station, take the current high-priority first-aid convenience station as the rescue first-aid convenience station where the executor can obtain an available AED device in the shortest time, notify the management personnel of the rescue first-aid convenience station of the call-for-help information, and control the rescue first-aid convenience station to enter the rescue mode.
[0019] A third aspect of the present invention proposes a first-aid convenience station for the method described in the first aspect. The first-aid convenience station is an unattended or attended convenience station, in which an AED device and at least a screen system for entering the rescue mode are configured. The first-aid convenience station communicates with the first-aid convenience station system through a long-distance wireless method or a wired communication method, and the AED device is kept in an online state with the Internet of Things platform.
[0020] A fourth aspect of the present invention proposes a readable storage medium, on which a control program is stored. When the control program is executed by a processor, the processor is caused to execute the steps of the AED intelligent acquisition method of the first-aid convenience station as described in the first aspect.
[0021] The relevant content of the present invention is explained as follows:
[0022] 1. By implementing the above technical solutions of the present invention, in response to the problems existing in the combination of vending machines (convenience stations) and AEDs in practical applications, such as inability to respond in a timely manner, inability to ensure that the AED device can be delivered, and inability to accurately obtain available AED devices, an intelligent acquisition method for AEDs in an emergency convenience station, an intelligent acquisition system for AEDs in an emergency convenience station, an emergency convenience station, and a readable storage medium storing a program for executing the intelligent acquisition method for AEDs in an emergency convenience station are innovatively designed. The combination of vending machines (convenience stations) and AEDs forms an emergency convenience station, which not only meets the needs of consumers for convenient shopping, but also provides guarantee for public safety. Moreover, it is continuously developing towards the direction of intelligence and networking, with functions such as remote monitoring, data analysis, and allocation priority distribution. This technological integration enables vending machines to integrate AED devices, realizing the efficient management and use of first-aid equipment. In particular, in the intelligent acquisition method for AEDs in an emergency convenience station, after the emergency platform receives the distress information of an emergency event, it synchronously confirms the status of the AED device in the emergency convenience stations within a set range near the emergency site, so as to provide data support for the subsequent emergency convenience station system to push, shortening the pushing time of the emergency convenience station system, thus creating favorable conditions for the AED device to be delivered as soon as possible; after the emergency convenience station system receives the distress information, the emergency convenience station system sorts the priority order according to the distance between the emergency convenience station and the emergency site and the comprehensive activity of the emergency convenience station, so as to give priority to pushing the emergency convenience stations equipped with AED devices that can be responded to and delivered the fastest. And during the pushing process of the emergency convenience station system, it will also judge whether the AED device is normal according to the self-check result of the AED device in the emergency convenience station, so as to confirm that only when the AED device in the current high-priority emergency convenience station is normal will it be pushed to each executor as a rescue emergency convenience station, so that each executor responding to this emergency event can obtain an AED device that can be used normally, avoiding the situation that the AED device obtained by the rescuer is unavailable and delaying the in vitro defibrillation first aid; and, in order to ensure that in the case where there is no response from nearby passers-by, management personnel or volunteers to a certain pushed rescue emergency convenience station, if the AED device in the rescue emergency convenience station is not taken out within the set time, continue to search and generate rescue emergency convenience stations according to the priority order, so as to form a saturated first-aid support surrounding the emergency site to become an "emergency circle", providing timely and sufficient life support for the patient and also providing more guarantee for public safety.
[0023] 2. In the first aspect of the above technical solution, the executors include users who have identified the emergency incident, volunteers near the emergency scene, managers of the rescue emergency convenience station, and consumers and passers-by who respond to the emergency incident near the rescue emergency convenience station; the distress message includes the time of the distress call, the coordinates of the emergency scene location, and the contact number of the user who initiated the distress call. With all the people who may and can respond to emergency incidents as executors, as the knowledge of AED emergency is promoted, more and more people will serve as executors to provide more assistance for the patient's life-saving emergency; the setting of the distress message contains clear information, which can let the system and executors know the time and place of the emergency incident intuitively, so that they can respond and execute quickly.
[0024] 3. In the first aspect of the above technical solution, if the AED device of the rescue first aid convenience station is not taken out and / or responded within the set time, the next first aid convenience station with normal AED device within the set range near the first aid site will continue to be pushed in order of priority, and the operation of pushing the distress information will be increased once every set time, wherein the set time value is set to 5 seconds to 20 seconds; and after the AED device of one of the rescue first aid convenience stations is taken out, the first aid convenience station system controls the release of the rescue mode of all rescue first aid convenience stations. With this step, we will continue to expand the delivery of normal AED equipment as much as possible. When the highest priority first aid convenience station cannot be responded to in time, it will be immediately pushed to the second priority first aid convenience station, and then to the third priority first aid convenience station, and so on, until the AED equipment is taken out and delivered. The set time value can be set according to the density of first aid convenience stations near the first aid site. The set time value is set to 5 seconds to 20 seconds. In areas with a higher density of first aid convenience stations, the set time value can be smaller, such as 5 seconds, 7 seconds, 9 seconds, etc.; in areas with a lower density of first aid convenience stations, the set time value can be larger, such as 11 seconds, 13 seconds, 15 seconds, etc. In addition, for the release of the rescue mode, an end time can be set when no one responds at all rescue first aid convenience stations, such as five minutes or ten minutes after the first aid incident occurs, or other time values when the first aid time has been missed. When the first aid incident occurs for too long, the first aid convenience station system controls all first aid convenience stations that have activated the rescue mode to turn off their rescue mode, and report to the first aid platform. Turning off the rescue mode of each first aid convenience station can not only save energy, but also put each first aid convenience station back on standby status to make adequate preparations for the next first aid incident.
[0025] 4. In the first aspect of the above technical solution, in the step of calculating and obtaining the distance between the first aid convenience station and the first aid scene within a set range near the first aid scene and the comprehensive activity of the first aid convenience station by the first aid convenience station system, the value of the set range near the first aid scene can be set according to the density of the first aid convenience stations near the first aid scene, and the value of the set range is set to be 500 meters to 5000 meters. In areas where the density of the first aid convenience stations is relatively high, the value of the set range can be a little smaller, such as 500 meters, 1000 meters, etc.; in areas where the density of the first aid convenience stations is relatively low, the value of the set range can be a little larger, such as 3000 meters, 5000 meters, etc. In this way, the priority order is sorted according to the density of the first aid convenience stations near the first aid scene to ensure that the first aid information can be pushed in the shortest time to immediately start the rescue mode, and the value of the set range is adjusted according to local conditions, with higher flexibility.
[0026] 5. In the first aspect of the above technical solution, when the first aid platform sends the call for help information to the first aid convenience station system and the volunteers near the first aid scene, the first aid platform also sends the call for help information to the security system near the first aid scene, and the security system participates in this first aid event. Through the implementation of this step, the first aid convenience station of the present invention is integrated into the public safety guarantee system, so that more forces at the social level can be used for patients with cardiac arrest. At the same time, as a part of the public safety guarantee system, the first aid convenience station can also play a greater role.
[0027] 6. In the first aspect of the above technical solution, when the rescue first aid convenience station enters the rescue mode, the screen system of the rescue first aid convenience station and the AED device in the rescue first aid convenience station emit sound and light prompts to remind the executor to take out the AED device and go to the first aid scene to deliver the AED device. The navigation information from the current rescue first aid convenience station to the first aid scene is selectively displayed on the screen system of the rescue first aid convenience station. In this very eye-catching and warning way, various executors can participate in this first aid event more timely and effectively, greatly increasing the possibility for the patient to obtain effective first aid.
[0028] 7. In the first aspect of the above technical solution, the self-check of the AED device includes at least two or more of the following combinations;
[0029] Power-on self-check: After the AED device is powered on, it performs a self-check to detect the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first aid auxiliary module in the AED device;
[0030] Battery insertion self-check: When the battery is inserted into the AED device, the AED device will automatically perform a battery insertion self-check to detect the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first aid auxiliary module in the AED device, and to detect the status of 1J charge and discharge, maximum energy charge and discharge, buttons, and speakers;
[0031] Automatic regular self - inspection: The AED device regularly conducts functional inspections on the device. According to the set cycle, it detects the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first - aid auxiliary module in the AED device.
[0032] Self - inspection during device operation: During the standby process, the AED device continuously monitors important components and safety functions in real - time. Once a fault that affects the safe operation of the device's functions is detected during the real - time self - inspection process, the device will not be able to be used normally.
[0033] User self - inspection: By removing the battery and then reinstalling the battery into the AED device after setting a time, the user self - inspection is triggered, and the AED device is restarted. It detects the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first - aid auxiliary module in the AED device, as well as detects the status of 1J charge - discharge, maximum - energy charge - discharge, buttons, and speakers.
[0034] In this way, multiple and sufficient self - inspections are carried out on the working status of the AED device. Through the communication connection with the AED Internet of Things platform, the working status of the AED device can be known by the entire first - aid convenience station system and the first - aid platform. This not only facilitates maintenance personnel to promptly maintain and repair AED devices that are not working, but also prevents first - aid personnel from participating in first - aid with non - working AED devices, avoiding unnecessary time loss and ineffective first - aid, thus fully ensuring the safety of patients' lives. Among them, detecting 1J charge - discharge means detecting the charge - discharge of 1 joule (J) of electrical energy in the AED device to detect whether the charging circuit, discharging circuit, and related control circuits of the AED device are working properly. The defibrillation energy of the AED device is usually 150 - 360 joules for adults and 50 - 70 joules for children.
[0035] 8. In the first aspect of the above - mentioned technical solution, in the step of calculating and obtaining the comprehensive activity of the first - aid convenience station by the first - aid convenience station system, first collect the sales data and usage frequency data of each first - aid convenience station, perform normalization processing on the sales data and usage frequency data to obtain the sales standardization value and frequency standardization value, assign weights to the sales data and usage frequency data, and then perform linear weighted fusion calculation to obtain the comprehensive activity.
[0036] When the comprehensive activity is the same, the priority order of the first - aid convenience station closer to the first - aid scene is advanced.
[0037] By implementing the above steps, a more scientific first - aid convenience station is used as the target for priority push, thus accelerating the process of AED acquisition and delivery.
[0038] 9. In the first aspect of the above technical solution, in the step of calculating and obtaining the comprehensive activity of the first aid convenience station by the first aid convenience station system, the following steps are included:
[0039] S210, collect the sales data and usage frequency data of each first aid convenience station, where the sales data includes at least the commodity sales volume and commodity sales amount, and the usage frequency data includes at least the equipment usage times and consumer visit times;
[0040] S220, perform normalization processing on the sales data and usage frequency data to obtain the sales standardization value and frequency standardization value, aggregate the sales data and usage frequency data according to the time series to form time series data within a unified time period, and perform min-max normalization processing on the sales data and usage frequency data respectively to obtain the sales standardization value: , frequency standardization value: ; where S i is the sales data of the first aid convenience station within the unified time period, S min is the lowest historical sales volume of the whole station of the first aid convenience station, S max is the highest historical sales of the whole station of the first aid convenience station; where F i is the usage frequency data of the first aid convenience station within the unified time period, F min is the lowest historical usage frequency of the whole station of the first aid convenience station, F max is the highest historical usage frequency of the whole station of the first aid convenience station;
[0041] S230, perform weight allocation on the sales data and usage frequency data to obtain the sales index weight w s , frequency index weight w f , and w s +w f =1;
[0042] S240, perform linear weighted fusion calculation on the comprehensive activity, and the index of the comprehensive activity is characterized by the final activity score AS i , , where is the sales dimension, is the frequency dimension, and the score range of the final activity score is AS i ∈[0,1].
[0043] By adopting the above steps and related parameter settings, as well as the calculation of the comprehensive activity level, the calculation process is scientific, reasonable, and effectively utilizes the obtained information for rapid measurement. Therefore, in the step of sorting the priority order according to the distance between the first aid convenience station and the first aid scene and the comprehensive activity level of the first aid convenience station in the first aid convenience station system, reliable and accurate comprehensive activity level data can be obtained, enabling the first aid convenience stations with a higher comprehensive activity level to have a higher probability of being responded to in a timely manner, ensuring that the probability estimate of the final acquisition of the AED device is reasonable and effective. Thus, when implementing the intelligent acquisition of the AED in the first aid convenience station, it can ensure that each executor responds more timely, acquires the AED device in a timely manner, and delivers the AED device to the first aid scene in a timely manner.
[0044] Due to the application of the above solution, the present invention has the following advantages and effects compared with the prior art:
[0045] 1. Through the implementation of the technical solution of the present invention, in the method for intelligent acquisition of AED in the first aid convenience station, after the first aid platform receives the distress information of the first aid event, it synchronously confirms the status of the AED device in the first aid convenience stations within the set range near the first aid scene, thereby enabling the subsequent first aid convenience station system to push data support for the first aid convenience station, shortening the pushing time of the first aid convenience station system, and thus creating favorable conditions for the AED device to be delivered as soon as possible; after the first aid convenience station system receives the distress information, the first aid convenience station system sorts the priority order according to the distance between the first aid convenience station and the first aid scene and the comprehensive activity level of the first aid convenience station, so as to give priority to pushing the first aid convenience stations equipped with AED devices that can be responded to and delivered the fastest, and during the pushing process of the first aid convenience station system, it will also judge whether the AED device is normal according to the self-check result of the AED device in the first aid convenience station, so as to confirm that only when the AED device in the current high-priority first aid convenience station is normal will it be pushed to each executor as the rescue first aid convenience station, so that each executor responding to this first aid event can obtain an AED device that can be used normally, avoiding the situation where the AED device obtained by the rescuer is unavailable and delaying the in vitro defibrillation first aid.
[0046] 2. Through the implementation of the technical solution of the present invention, in order to ensure that in the case where there is no response from nearby passers-by, management personnel or volunteers to a certain pushed rescue first aid convenience station, if the AED device in the rescue first aid convenience station is not taken out within the set time, continue to search and generate rescue first aid convenience stations according to the priority order, so as to form a saturated first aid support surrounding the first aid scene to form an "first aid circle", providing timely and sufficient life support for the patient and also providing more guarantees for public safety.
[0047] 3. In summary, in view of the problems existing in the combination of vending machines (convenience stations) and AEDs in the prior art, such as the inability to respond in a timely manner, ensure the delivery of AED devices, and accurately obtain available AED devices in practical applications, an intelligent acquisition method for AEDs in an emergency convenience station, an intelligent acquisition system for AEDs in an emergency convenience station, an emergency convenience station, and a readable storage medium storing a method for intelligently acquiring AEDs in an emergency convenience station are innovatively designed. The combination of vending machines (convenience stations) and AEDs forms an emergency convenience station, which not only meets the needs of consumers for convenient shopping, but also provides guarantee for public safety. Moreover, it is continuously developing towards the direction of intelligence and networking, with functions such as remote monitoring, data analysis, and allocation priority distribution. This technical integration enables vending machines to integrate AED devices, realizes the efficient management and use of first aid devices, and provides another powerful boost for the timely treatment of patients with cardiac arrest, thereby further ensuring the life safety and health guarantee of the people. BRIEF DESCRIPTION OF THE DRAWINGS
[0048] Figure 1 is a schematic flowchart of the intelligent acquisition method for AEDs in an emergency convenience station according to an embodiment of the present invention;
[0049] Figure 2 is a schematic flowchart of the intelligent acquisition method for AEDs in an emergency convenience station according to an embodiment of the present invention (continued Figure 1 );
[0050] Figure 3 is a system block diagram of the intelligent acquisition system for AEDs in an emergency convenience station according to an embodiment of the present invention;
[0051] Figure 4 is a system block diagram of the emergency convenience station according to an embodiment of the present invention;
[0052] Figure 5 is a system block diagram composed of various systems and modules in an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0053] In order to make the above objects, features, and advantages of the present application more obvious and understandable, the following detailed description of the specific embodiments of the present application will be made in conjunction with the accompanying drawings. Many specific details are set forth in the following description in order to fully understand the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the connotation of the present application. Therefore, the present application is not limited by the specific embodiments disclosed below.
[0054] The terms used in this article are only for describing specific embodiments and are not intended to limit the present case. Singular forms such as "a", "this", "this", "the present", and "the" also include plural forms as used herein.
[0055] The terms “first”, “second”, etc. used in this document do not specifically refer to an order or sequence, nor are they used to limit the present case. They are only used to distinguish components or operations described with the same technical terms.
[0056] As used herein, "connected" or "positioned" may refer to direct physical contact between two or more components or convenience stations, or indirect physical contact between two or more components or convenience stations, or to mutual operation or action between two or more components or convenience stations.
[0057] The terms “include,” “including,” “have,” etc. used in this document are open-ended terms, meaning including but not limited to.
[0058] The terms used in this document generally have the ordinary meaning of each term used in this field, in the context of the case and in the specific context, unless otherwise noted. Certain terms used to describe the present invention will be discussed below or elsewhere in this specification to provide additional guidance to those skilled in the art in describing the present invention.
[0059] The present invention aims to provide solutions to the existing problems of combining vending machines (convenience stations) with AEDs in actual applications, such as failure to respond in time, failure to ensure that AED devices can be delivered, and failure to accurately obtain available AED devices. An innovative design is provided for an AED intelligent acquisition method for an emergency convenience station that combines an unmanned or manned convenience station with an AED device, an AED intelligent acquisition system for an emergency convenience station, an emergency convenience station, and a readable storage medium storing data for executing the AED intelligent acquisition method for an emergency convenience station. Combining an automatic vending machine (convenience station) with an AED to form an emergency convenience station not only meets consumers' demand for convenient shopping, but also provides protection for public safety. It is constantly developing in the direction of intelligence and networking, and has functions such as remote monitoring, data analysis, and priority allocation. This technical integration enables unmanned vending machines to integrate AED devices and achieve efficient management and use of emergency equipment.
[0060] Example 1, reference Figure 1 , Figure 2 As shown, Embodiment 1 of the present invention proposes an intelligent acquisition method for AED at an emergency convenience station, the method comprising:
[0061] The user recognizes or automatically recognizes the occurrence of an emergency event and initiates an emergency call.
[0062] The first aid platform receives the distress call information of the first aid incident and simultaneously confirms the status of the AED equipment in the first aid convenience station within a set range near the first aid site. The first aid convenience station is a convenience station equipped with AED equipment and communicating with the first aid convenience station system.
[0063] The emergency rescue platform sends the distress call information to the emergency rescue convenience station system and the volunteers near the emergency rescue site. The emergency rescue convenience station system calculates and obtains the distances between the emergency rescue convenience stations and the emergency rescue site within a set range near the emergency rescue site, the comprehensive activity levels of the emergency rescue convenience stations, and the self-check results of the AED devices in the emergency rescue convenience stations within the set range near the emergency rescue site.
[0064] The emergency rescue convenience station system sorts the priority order according to the distances between the emergency rescue convenience stations and the emergency rescue site and the comprehensive activity levels of the emergency rescue convenience stations, and takes the emergency rescue convenience station with a short distance and a high comprehensive activity level as the current high-priority emergency rescue convenience station. Then, it judges whether the AED device is normal according to the self-check results of the AED devices in the emergency rescue convenience stations. If the AED device is normal, the current high-priority emergency rescue convenience station is taken as the rescue emergency rescue convenience station where the executor can obtain the available AED device in the shortest time, and the distress call information is notified to the management personnel of the rescue emergency rescue convenience station, and the rescue emergency rescue convenience station enters the rescue mode. If the AED device is abnormal, continue to check and judge whether the AED devices of the secondary-priority emergency rescue convenience stations are normal according to the priority order, and take the emergency rescue convenience station with a normal AED device as the rescue emergency rescue convenience station.
[0065] The executor responds and obtains the AED device of the rescue emergency rescue convenience station and arrives at the emergency rescue site to perform cardiopulmonary resuscitation. If the AED device of the rescue emergency rescue convenience station is not taken out within the set time, continue to search and generate the rescue emergency rescue convenience station according to the priority order until the AED device is taken out and delivered.
[0066] Through the implementation of the first embodiment of the present invention, in the intelligent acquisition method of AED at the first aid convenience station, after the first aid platform receives the distress message of the first aid incident, it synchronously confirms the status of the AED device in the first aid convenience station within a set range near the first aid site, so that the first aid convenience station system can provide data support for the subsequent push of the first aid convenience station, shorten the push time of the first aid convenience station system, and thus create favorable conditions for the early delivery of the AED device; after the first aid convenience station system receives the distress message, the first aid convenience station system prioritizes the first aid convenience station according to the distance between the first aid convenience station and the first aid site and the comprehensive activity of the first aid convenience station, so as to give priority to the first aid convenience station equipped with AED equipment that can be responded to and delivered the fastest, and in the push process of the first aid convenience station system, it will also prioritize the self-test of the AED device in the first aid convenience station. The results determine whether the AED device is normal, so as to confirm that only when the AED device is normal in the current high-priority first aid convenience station will it be pushed to each executive personnel as a rescue first aid convenience station, so that each executive personnel responding to the first aid incident can obtain an AED device that can be used normally, to avoid the rescuer getting an unusable AED device and delaying external defibrillation first aid; and, in order to ensure that there is a situation where there are no nearby passers-by, managers or volunteers responding to a pushed rescue first aid convenience station, if the AED device of the rescue first aid convenience station is not taken out within the set time, the rescue first aid convenience station will continue to be searched and generated in order of priority, so as to form a saturated first aid support surrounding the first aid site as a "first aid circle", providing timely and sufficient life support for patients, and also providing more protection for public safety.
[0067] In one implementation of Example 1 of the present invention, the executors include users who identify the emergency incident, volunteers near the emergency site, managers of the rescue emergency convenience station, and consumers and passers-by who respond to the emergency incident near the rescue emergency convenience station; the distress information includes the time of the distress call, the coordinates of the emergency site location, and the contact number of the user who initiated the distress call. With all the personnel who may and can respond to the emergency incident as executors, as the knowledge of AED emergency is promoted, more and more people will serve as executors to provide more assistance for the patient's life-saving emergency; for the setting of the distress information, the information contained is clear and can let the system and executors intuitively know the time and place of the emergency incident, so that they can respond and execute quickly.
[0068] In another manner of embodiment one of the present invention, if the AED device of the rescue first aid convenience station is not taken out and / or responded within the set time, the next first aid convenience station with normal AED device within the set range near the first aid site will continue to be pushed in order of priority, and the operation of pushing the distress information will be increased once every set time, wherein the set time value is set to 5 seconds to 20 seconds; and after the AED device of one of the rescue first aid convenience stations is taken out, the first aid convenience station system controls the release of the rescue mode of all rescue first aid convenience stations. With this step, we continue to expand the normal AED equipment to be delivered as much as possible. When the emergency convenience station with the highest priority cannot be responded to in time, it will be pushed to the emergency convenience station with the second priority immediately, and then pushed to the emergency convenience station with the second priority, and so on, until the AED equipment is taken out and delivered. The value of the set time can be set according to the density of emergency convenience stations near the emergency site. The value of the set time is set to 5 seconds to 20 seconds. In areas with a high density of emergency convenience stations, the value of the set time can be smaller, such as 5 seconds, 7 seconds, 9 seconds, etc.; in areas with a low density of emergency convenience stations, the value of the set time can be larger, such as 11 seconds, 13 seconds, 15 seconds, etc. In addition, for the release of the rescue mode, you can also set an end time when no one responds to all rescue emergency convenience stations, such as five minutes, ten minutes after the emergency incident, or other time values that have missed the emergency time. When the emergency incident lasts too long, the emergency convenience station system controls all emergency convenience stations that have activated the rescue mode to turn off their rescue mode and report to the emergency platform.
[0069] In another implementation of Example 1 of the present invention, in the step where the first aid convenience station system calculates the distance between the first aid convenience station and the first aid site within a set range near the first aid site and the comprehensive activity of the first aid convenience station, the value of the set range near the first aid site can be set according to the density of the first aid convenience stations near the first aid site, and the value of the set range is set to 500 meters to 5000 meters. In areas where the density of first aid convenience stations is relatively high, the value of the set range can be smaller, such as 500 meters, 1000 meters, etc.; in areas where the density of first aid convenience stations is relatively low, the value of the set range can be larger, such as 3000 meters, 5000 meters, etc. In this way, the priority order is sorted according to the density of first aid convenience stations near the first aid site, ensuring that first aid information can be pushed in the shortest time to immediately start the rescue mode, and the value of the set range is adapted to local conditions and has higher flexibility.
[0070] In one implementation of Embodiment 1 of the present invention, when the emergency call platform sends the distress call information to the emergency aid station system and the volunteers near the emergency site, the emergency call platform also sends the distress call information to the security system near the emergency site, and the security system participates in this emergency event. Through the implementation of this step, the emergency aid station of the present invention is integrated into the public safety guarantee system, so that more forces at the social level can be used for patients with cardiac arrest. At the same time, as a part of the public safety guarantee system, the emergency aid station can also play a greater role.
[0071] In another implementation of Embodiment 1 of the present invention, when the rescue emergency aid station enters the rescue mode, the screen system of the rescue emergency aid station and the AED device in the rescue emergency aid station give out sound and light prompts to remind the executor to take out the AED device and go to the emergency site to deliver the AED device. The navigation information from the current rescue emergency aid station to the emergency site is selectively displayed on the screen system of the rescue emergency aid station. In this very eye-catching and warning way, various executors can participate in this emergency event more timely and effectively, greatly increasing the possibility for the patient to receive effective first aid.
[0072] In yet another implementation of Embodiment 1 of the present invention, the self-check of the AED device includes at least two or more of the following combinations;
[0073] Power-on self-check: After the AED device is powered on, it performs a self-check to detect the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first aid auxiliary module in the AED device;
[0074] Battery insertion self-check: When the battery is inserted into the AED device, the AED device will automatically perform a battery insertion self-check to detect the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first aid auxiliary module in the AED device, and to detect the status of 1J charge and discharge, maximum energy charge and discharge, buttons, and speakers;
[0075] Automatic regular self-check: The AED device regularly performs a function check on the device, and according to the set cycle, detects the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first aid auxiliary module in the AED device;
[0076] Self-check during device operation: The AED device continuously monitors important components and safety functions in real time during standby. Once a fault affecting the safe operation of the device function is detected during the real-time self-check process, the device will not be able to be used normally;
[0077] User self-check: By removing the battery, setting the time, and then inserting the battery into the AED device to trigger the user self-check. Restart the AED device and detect the working status of the main control module, treatment module, power module, defibrillation electrode pads, and first aid assistance module in the AED device, as well as detect the status of 1J charge and discharge, maximum energy charge and discharge, buttons, and speakers.
[0078] This is to ensure that the AED device obtained by the executor and delivered to the first aid scene for rescue can be fully and normally used for this external defibrillation, further ensuring the patient's life safety and improving the subsequent prognosis effect.
[0079] In one implementation manner of Embodiment 1 of the present invention, in the step of calculating and obtaining the comprehensive activity of the first aid convenience station by the first aid convenience station system, first collect the sales data and usage frequency data of each first aid convenience station, perform normalization processing on the sales data and usage frequency data to obtain the sales standardization value and frequency standardization value, assign weights to the sales data and usage frequency data, and then perform linear weighted fusion calculation to obtain the comprehensive activity;
[0080] When the comprehensive activities are the same, advance the priority order of the first aid convenience station closer to the first aid scene.
[0081] By implementing the above steps, a more scientific first aid convenience station is used as the target for priority push, thereby accelerating the process of AED acquisition and delivery.
[0082] In another implementation manner of Embodiment 1 of the present invention, in the step of calculating and obtaining the comprehensive activity of the first aid convenience station by the first aid convenience station system, the following steps are included:
[0083] S210, collect the sales data and usage frequency data of each first aid convenience station, where the sales data includes at least the commodity sales volume and commodity sales amount, and the usage frequency data includes at least the number of device uses and the number of consumer visits;
[0084] S220, perform normalization processing on the sales data and usage frequency data to obtain the sales standardization value and frequency standardization value, aggregate the sales data and usage frequency data according to the time series to form time series data within a unified time period, and perform min-max normalization processing on the sales data and usage frequency data respectively to obtain the sales standardization value: , frequency standardization value: ; where S i is the sales data of the first aid convenience station within the unified time period, S min is the lowest historical sales volume of the entire station of the first aid convenience station, S max is the highest historical sales of the entire station of the first aid convenience station; where F iFor the usage frequency data of the first aid convenience station within a unified time period, F min For the lowest historical usage frequency of the entire first aid convenience station, F max For the highest historical usage frequency of the entire first aid convenience station;
[0085] S230, perform weight assignment on the sales data and usage frequency data to obtain the sales index weight w s , frequency index weight w f , and w s +w f = 1;
[0086] S240, perform linear weighted fusion calculation for the comprehensive activity level. The index representation of the comprehensive activity level is the final activity score AS i , , where is the sales dimension, is the frequency dimension, and the score range of the final activity score is AS i ∈ [0, 1].
[0087] By adopting the above steps and related parameter settings, as well as the calculation of the comprehensive activity level, the calculation process is scientific, reasonable, and effectively utilizes the obtained information for rapid measurement. Thus, in the step of sorting the priority order according to the distance between the first aid convenience station and the first aid scene and the comprehensive activity level of the first aid convenience station in the first aid convenience station system, reliable and accurate comprehensive activity level data can be obtained, enabling the probability of timely response for first aid convenience stations with a high comprehensive activity level to be higher, ensuring that the probability estimate of finally obtaining the AED device is reasonable and effective. Therefore, when implementing the intelligent acquisition of the AED for the first aid convenience station, it can ensure that each executor responds more timely, obtains the AED device in a timely manner, and delivers the AED device to the first aid scene in a timely manner.
[0088] Next, the first embodiment of the present invention will be further described with a more detailed and preferred embodiment.
[0089] The following detailed content included in the intelligent acquisition method of the AED for the first aid convenience station in this preferred embodiment can be referred to as shown in Figure 1 .
[0090] The preferred embodiment of the present invention mainly aims to provide an intelligent acquisition solution for the AED of the first aid convenience station to quickly reach the first aid scene. The first aid convenience station is a convenience station equipped with an AED device and communicating with the first aid convenience station system. When a first aid event occurs, an emergency call is initiated through a mini-program software or a first aid kit hardware. Users who recognize the first aid event, volunteers near the first aid scene, managers of the rescue first aid convenience station, and consumers and passers-by near the rescue first aid convenience station who respond to this first aid event can all participate in the first aid as executors.
[0091] The specific solution content of the preferred embodiment of the present invention is as follows.
[0092] The user identifies the occurrence of an emergency and initiates an emergency call through a mini-program software or a first-aid kit hardware.
[0093] The first-aid platform receives the call-for-help information of the emergency event and synchronously confirms the status of the AED device in the first-aid convenience station within 3000 meters near the emergency site. The first-aid convenience station is a convenience station equipped with an AED device and communicating with the first-aid convenience station system.
[0094] The first-aid platform sends the call-for-help information to the first-aid convenience station system and the volunteers within 3000 meters of the emergency site. The first-aid convenience station system calculates the distance between the first-aid convenience station within 3000 meters near the emergency site and the emergency site, and the comprehensive activity of the first-aid convenience station (first collect the sales data and usage frequency data of each first-aid convenience station, normalize the sales data and usage frequency data to obtain the sales standardization value and frequency standardization value, allocate weights to the sales data and usage frequency data, and then perform linear weighted fusion calculation of the comprehensive activity), and obtains the self-check result of the AED device in the first-aid convenience station within 3000 meters near the emergency site (the self-check of the AED device includes at least two or more of the following combinations: power-on self-check, battery insertion self-check, automatic periodic self-check, self-check during device operation, user self-check).
[0095] The first-aid convenience station system sorts the priority order according to the distance between the first-aid convenience station and the emergency site and the comprehensive activity of the first-aid convenience station, and takes the first-aid convenience station with a short distance and high comprehensive activity as the current high-priority first-aid convenience station. Then, it judges whether the AED device is normal according to the self-check result of the AED device in the first-aid convenience station; if the AED device is normal, the current high-priority first-aid convenience station is used as the rescue first-aid convenience station where the executor can obtain the available AED device in the shortest time, and the call-for-help information is notified to the management personnel of the rescue first-aid convenience station. The screen system of the rescue first-aid convenience station and the AED device in the rescue first-aid convenience station emit sound and light prompts to remind the executor to take out the AED device and go to the emergency site to deliver the AED device. The navigation information from the current rescue first-aid convenience station to the emergency site is selectively displayed on the screen system of the rescue first-aid convenience station; if the AED device is abnormal, continue to check and judge whether the AED device of the secondary-priority first-aid convenience station is normal according to the priority order, and take the first-aid convenience station with a normal AED device as the rescue first-aid convenience station.
[0096] The executive personnel respond and obtain the AED equipment from the rescue first aid station and arrive at the first aid site to perform cardiopulmonary resuscitation; if the AED equipment at the rescue first aid station is not taken out within the set time, the rescue first aid station will continue to be searched and generated in order of priority until the AED equipment is taken out and delivered. If the AED equipment at the rescue first aid station is not taken out and / or responded to within 10 seconds, the next rescue first aid station with normal AED equipment within 3,000 meters of the first aid site will continue to be pushed in order of priority, and the operation of pushing the distress information will be increased every set time; and after the AED equipment at one of the rescue first aid stations is taken out, the rescue first aid station system controls the release of the rescue mode of all rescue first aid stations.
[0097] Embodiment 2, as Figure 3 As shown, embodiment 2 of the present invention proposes an AED intelligent acquisition system for an emergency convenience station, and the AED intelligent acquisition system for an emergency convenience station includes an emergency mobile terminal, an emergency convenience station, an emergency platform, and an emergency convenience station system.
[0098] The emergency mobile terminal is a mobile device used to send and receive emergency call information and the geographical location of the emergency scene. The emergency mobile terminal communicates with the emergency platform through a long-distance wireless method.
[0099] The first aid convenience station is an unmanned or manned convenience station, and is equipped with an AED device and a screen system for at least entering a rescue mode. The first aid convenience station communicates with the first aid convenience station system via long-distance wireless or wired communication.
[0100] The first aid platform is used to receive and / or send distress information of first aid events, and simultaneously confirm the status of AED equipment in first aid convenience stations within a set range near the first aid site, and send distress information to the first aid convenience station system and volunteers near the first aid site.
[0101] The first aid convenience station system is used to prioritize the first aid convenience stations according to their distance from the first aid site and their comprehensive activity, and to use the current high-priority first aid convenience station as a rescue first aid convenience station where enforcement personnel can obtain available AED equipment in the shortest time, notify the management personnel of the rescue first aid convenience station of the distress call information, and control the rescue first aid convenience station to enter rescue mode.
[0102] In the second embodiment of the present invention, the first aid mobile terminal can be a mobile terminal, such as a smart phone, a tablet computer, etc., which has a real-time network communication function, and the user can initiate a first aid request. The first aid platform is the dispatch center of the first aid cloud platform, which receives the distress information of the first aid incident and sends it to the first aid convenience station system and volunteers near the first aid site. The first aid convenience station communicates with the first aid convenience station system through HTTP and AMQP protocols via long-distance wireless methods (including but not limited to cellular networks and Wi-Fi); the AED device communicates with the first aid convenience station system through MQTT via long-distance wireless methods (including but not limited to cellular networks and Wi-Fi); the first aid express applet communicates with the first aid platform and the first aid convenience station through HTTP via long-distance wireless methods (including but not limited to cellular networks and Wi-Fi).
[0103] Embodiment three, as Figure 4 As shown, embodiment three of the present invention proposes an emergency convenience station, which is used for the method described in embodiment one of the present invention. The emergency convenience station is an unmanned (unmanned vending machine) or manned convenience station, and is equipped with an AED device and a screen system for at least entering a rescue mode. The emergency convenience station communicates with the emergency convenience station system via long-distance wireless or wired communication, and the AED device maintains a networked state with an Internet of Things platform (IOT platform).
[0104] After the first aid convenience station enters the rescue mode, the alarm of the screen system in the first aid convenience station is mainly realized by the sound and light alarm, the travel switch, the outer box control main board, and the display screen. When the travel switch is triggered, the trigger signal is transmitted to the first aid convenience station control main board, and then the control main board controls the sound and light alarm to turn on the large screen, the lights flash and an alarm sounds. The display screen displays the time of the first aid event, the location of the person seeking help, mobile phone number and other information.
[0105] When the AED device is connected to the adapter and is in standby mode, it will run in the background and stay connected to the Internet of Things platform (IOT platform), and regularly report the location information of the base station where the device is located (in the case of outdoor situations). This state is called SOS standby.
[0106] When a person who needs help initiates a call for help through the Pumeikang First Aid Mini Program, the call for help message includes the current location information of the person who needs help and is sent to the emergency hotline platform. The emergency hotline searches for an AED device in SOS standby mode within a 3-kilometer radius based on the location information of the person who needs help.
[0107] If there is an AED device in SOS standby, IOT will push an emergency message to it, and the AED device will receive data containing the location information of the person in need. At the same time, the device will turn on the sound and light alarm to alert the AED device manager, surrounding users, or other passers-by.
[0108] After turning on the device, the AED equipment manager or surrounding users can view the map navigation information of the person in need on the device display and carry the AED equipment to participate in the rescue.
[0109] Embodiment 4: Embodiment 4 of the present invention further proposes a readable storage medium, on which a control program is stored. When the control program is executed by a processor, the processor executes the steps of the AED intelligent acquisition method for the emergency convenience station as described in Embodiment 1 of the present invention.
[0110] Next, the process of the present invention in practical application is described. Figure 1 , Figure 2 The specific process can be referred to as follows:
[0111] 1. Getting Started:
[0112] Event trigger: The user identifies a cardiac arrest event and initiates an emergency call through the mini-program software or first aid kit hardware.
[0113] 2. SOS notification:
[0114] The emergency rescue platform receives the distress call information, including the time of the distress call, the specific location coordinates, and the contact number of the person calling for help.
[0115] 3. Emergency platform notification:
[0116] The emergency rescue platform will send the distress call information to the emergency rescue convenience station within 3 kilometers, including the time, location, contact number, and confirm the AED self-test results of the emergency rescue convenience station.
[0117] The emergency platform notifies nearby volunteers.
[0118] 4. Self-inspection of emergency stations and AEDs:
[0119] After receiving the distress message (the location of the distress message, the person who is in distress, etc.), the emergency station system pushes the distress message based on the distance of the emergency station within 3 kilometers of the distress location and the degree of activity of the nearby emergency stations. The activity of the emergency station is confirmed based on the analysis of consumption records and sales data. At the same time, if the activity is consistent, the emergency station closer is pushed first, and the manager of the emergency station with the highest priority is notified of the distress message. The AED device is self-checked to confirm whether the AED device is in normal working condition. If it is normal, the AED device will sound and light alarm. If the AED device is abnormal, the rescue status of the current emergency station is terminated, and the status of the emergency stations and AED devices of the second priority near the distress location is further checked.
[0120] 5. AED equipment sound and light alarm and first aid station rescue mode:
[0121] If the AED device is normal, the AED device activates the audible and visual alarm to prompt nearby personnel and volunteers. The voice system prompts: "Emergency rescue. Please immediately take out the AED device and go to the rescue location XXXX", and the convenience station screen system prompts: "Emergency rescue. Please immediately take out the AED device and go to the rescue location XXXX".
[0122] 6. Retrieving the AED device:
[0123] After the personnel near the first aid convenience station hear the audible and visual alarm information or the management personnel of the first aid convenience station receive the alarm information, they go to take out the AED device and go to the location of the patient for first aid according to the distress information.
[0124] 7. Volunteers
[0125] The volunteers respond to the rescue and go to provide assistance.
[0126] By implementing the above embodiments, the object of the present invention is achieved, and the present invention has the following innovations and effects:
[0127] 1. The AED device in the first aid convenience station is linked and dispatched. An unmanned vending machine and AED device linkage mechanism is invented. When a first aid event occurs, the activity algorithm of the first aid convenience station can be dispatched through the API interface, automatically indicating the nearest AED device and guiding rescue personnel or volunteers to obtain it quickly.
[0128] 2. The first aid convenience station participates in first aid. After receiving the first aid signal, the first aid convenience station can automatically perform specific operations, such as audible and visual alarms, etc.
[0129] 3. The activity algorithm of the first aid convenience station. The first aid convenience station system integrates the sales volume and usage frequency of all first aid convenience stations, integrates the algorithm module into the first aid convenience station system, supports automated analysis, provides an API interface, and provides the activity algorithm results to the AED device dispatch linkage system. When a distress event occurs, it is preferentially pushed to the first aid convenience stations with higher activity within 3 kilometers nearby.
[0130] 4. The volunteer notification mechanism. The system designs a volunteer notification mechanism that can quickly notify trained volunteers to participate in the rescue through mobile applications or other communication methods when a first aid event occurs.
[0131] 5. Real-time navigation and first aid guidance. The display screen or speaker installed in the first aid convenience station can provide real-time first aid guidance videos or voice instructions to help volunteers retrieve the AED and correctly navigate to the location information of the person in distress.
[0132] The above embodiments are only used to illustrate the technical concept and features of the present invention, and the purpose is to enable those skilled in the art to understand the content of the present invention and implement it accordingly. It is not intended to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.
Claims
1. A method for intelligently acquiring AED at an emergency convenience station, characterized in that: The method comprises: The user recognizes or automatically recognizes the occurrence of an emergency incident and initiates an emergency call; The emergency platform receives emergency call information and simultaneously confirms the status of AED equipment in emergency convenience stations within a set range near the emergency site; The first aid platform sends the distress message to the first aid convenience station system and volunteers near the first aid site. The first aid convenience station system calculates the distance between the first aid convenience station and the first aid site within a set range near the first aid site, the comprehensive activity of the first aid convenience station, and obtains the self-test results of the AED equipment in the corresponding first aid convenience station. In the step of calculating and obtaining the comprehensive activity, the sales data and usage frequency data of each first aid convenience station are first collected, and normalized to obtain the sales volume standardized value and frequency standardized value, and weights are assigned to the sales data and usage frequency data, and then linear weighted fusion is performed to calculate the comprehensive activity. The first aid convenience station system prioritizes the first aid convenience stations according to their distance from the first aid site and their comprehensive activity, and uses the first aid convenience stations with short distance and high comprehensive activity as the current high-priority first aid convenience stations. It then determines whether the AED equipment in the first aid convenience station is normal based on the self-test results of the AED equipment. If normal, the current high-priority first aid convenience station is used as a rescue first aid convenience station where the executor can obtain the available AED equipment in the shortest time, and enters the rescue mode. It continues to check and determine whether the AED equipment in the second-priority first aid convenience station is normal in order of priority, and uses the normal first aid convenience station as the rescue first aid convenience station. The executive personnel will respond and obtain the AED equipment from the rescue and first aid convenience station and arrive at the first aid site to perform cardiopulmonary resuscitation; if the AED equipment at the rescue and first aid convenience station is not taken out within the set time, the rescue and first aid convenience station will continue to be searched and generated in order of priority until the AED equipment is taken out and delivered.
2. The AED intelligent acquisition method for emergency convenience stations according to claim 1 is characterized in that: The executors include users who identify the emergency incident, volunteers near the emergency site, managers of the rescue first aid convenience station, and consumers and passers-by who respond to the emergency incident near the rescue first aid convenience station; the call for help information includes the call time, the location coordinates of the emergency site, and the contact number of the user who initiated the call for help.
3. The AED intelligent acquisition method for the emergency convenience station according to claim 1 is characterized in that: If the AED device at the rescue first aid convenience station is not taken out and / or responded within the set time, the next first aid convenience station with normal AED device within the set range near the first aid site will continue to be pushed in order of priority, and the operation of pushing the distress information will be increased once every set time, where the set time value is set to 5 seconds to 20 seconds; and after the AED device at one of the rescue first aid convenience stations is taken out, the first aid convenience station system controls the release of the rescue mode of all rescue first aid convenience stations.
4. The AED intelligent acquisition method for emergency convenience stations according to claim 1, characterized in that: In the step in which the first aid convenience station system calculates the distance between the first aid convenience station and the first aid site and the comprehensive activity of the first aid convenience station within a set range near the first aid site, the value of the set range near the first aid site is set according to the density of first aid convenience stations near the first aid site, and the value of the set range is set to 500 meters to 5000 meters.
5. The AED intelligent acquisition method for emergency convenience stations according to claim 1, characterized in that: When the first aid platform sends the distress message to the first aid convenience station system and volunteers near the first aid site, the first aid platform will also send the distress message to the security system near the first aid site, and the security system will participate in the first aid incident.
6. The AED intelligent acquisition method for emergency convenience stations according to claim 1, characterized in that: When the rescue first aid convenience station enters the rescue mode, the screen system of the rescue first aid convenience station and the AED equipment in the rescue first aid convenience station will send out sound and light prompts to remind the executors to take out the AED equipment and go to the first aid site to deliver the AED equipment. The screen system of the rescue first aid convenience station selectively displays the navigation information from the current rescue first aid convenience station to the first aid site.
7. The AED intelligent acquisition method for emergency convenience stations according to claim 1, characterized in that: The self-test of the AED device includes at least two or more of the following combinations; Power-on self-test: The AED device performs a self-test after powering on to detect the working status of the main control module, treatment module, power module, defibrillation electrodes, and emergency auxiliary module in the AED device; Battery insertion self-test: When the battery is installed in the AED device, the AED device will automatically perform a battery insertion self-test to detect the working status of the main control module, treatment module, power module, defibrillation electrode pads, and emergency auxiliary module in the AED device, as well as the status of 1J charging and discharging, maximum energy charging and discharging, buttons, and speakers; Automatic periodic self-check: AED equipment regularly checks the function of the equipment and detects the working status of the main control module, treatment module, power module, defibrillation electrode pads, and emergency auxiliary module in the AED equipment according to the set period; Self-check during device operation: AED devices continuously monitor important components and safety functions in real time during standby. Once a fault that affects the safe operation of the device is detected during the real-time self-check, the device will not be able to be used normally. User self-test: remove the battery, and then install the battery into the AED device after a set time to trigger the user self-test, restart the AED device, detect the working status of the main control module, treatment module, power module, defibrillation electrodes, and first aid auxiliary module in the AED device, and detect the status of 1J charging and discharging, maximum energy charging and discharging, buttons, and speakers.
8. The AED intelligent acquisition method for emergency convenience stations according to claim 1, characterized in that: In the step of calculating the comprehensive activity of the emergency convenience station by the emergency convenience station system, the sales data and usage frequency data of each emergency convenience station are first collected, the sales data and usage frequency data are normalized to obtain the sales volume standardized value and the frequency standardized value, the sales data and the usage frequency data are weighted, and then the comprehensive activity is calculated by linear weighted fusion; When the overall activity levels are consistent, the priority order of first aid convenience stations that are closer to the first aid site will be moved up.
9. The AED intelligent acquisition method for emergency convenience stations according to claim 8, characterized in that: The step of calculating the comprehensive activity of the first aid convenience station by the first aid convenience station system includes the following steps: S210, collecting sales data and usage frequency data of each emergency convenience station, wherein the sales data at least includes product sales volume and product sales amount, and the usage frequency data at least includes the number of times the equipment is used and the number of times consumers visit; S220, normalize the sales data and the frequency data to obtain a sales volume normalized value and a frequency normalized value, aggregate the sales data and the frequency data according to the time series to form time series data with a unified time period, perform min-max normalization on the sales data and the frequency data, and obtain a sales volume normalized value: , frequency normalized value: ; where S i is the sales data of the emergency convenience station within a unified time period, S min The lowest sales volume in the history of the first aid convenience station. max The highest sales in the history of the first aid convenience station; among them, F i is the usage frequency data of the emergency convenience station within a unified time period, F min The lowest usage frequency of the emergency convenience station in history. max This is the highest frequency of use in the history of the emergency convenience station; S230, weighting the sales data and the usage frequency data to obtain the sales index weight w s , frequency index weight w f , and w s +w f =1; S240, perform linear weighted fusion to calculate the comprehensive activity, and the comprehensive activity index is represented by the final activity score AS i , ,in For the sales dimension, is the frequency dimension, and the final activity score range is AS i ∈[0,1].
10. An AED intelligent acquisition system for an emergency convenience station, used in the method according to any one of claims 1 to 9, characterized in that: The system includes an emergency mobile terminal, an emergency convenience station, an emergency platform, and an emergency convenience station system; among them, The emergency mobile terminal is a mobile device used to send and receive emergency call information and the geographical location of the emergency scene. The emergency mobile terminal communicates with the emergency platform via long-distance wireless mode; The first aid convenience station is an unmanned or manned convenience station, in which an AED device and at least a screen system for entering a rescue mode are configured, and the first aid convenience station communicates with the first aid convenience station system via a long-distance wireless mode or a wired communication mode; The first aid platform is used to receive and / or send emergency information about emergency events, and simultaneously confirm the status of AED equipment in emergency convenience stations within a set range near the emergency site, and send the emergency information to the emergency convenience station system and volunteers near the emergency site; The first aid convenience station system is used to prioritize the first aid convenience stations according to their distance from the first aid site and their comprehensive activity, and to use the current high-priority first aid convenience station as a rescue first aid convenience station where enforcement personnel can obtain available AED equipment in the shortest time, to notify the management personnel of the rescue first aid convenience station of the distress call information, and to control the rescue first aid convenience station to enter rescue mode.
11. A first aid convenience station, used in the method according to any one of claims 1 to 9, characterized in that: The first aid convenience station is an unmanned or manned convenience station, and is equipped with an AED device and a screen system for at least entering a rescue mode. The first aid convenience station communicates with the first aid convenience station system via long-distance wireless or wired communication, and the AED device maintains a networked state with the Internet of Things platform.
12. A readable storage medium, characterized in that: The readable storage medium stores a control program, and when the control program is executed by a processor, the processor executes the steps of the method according to any one of claims 1 to 9.
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