WO2020182039A1 - 一种救援方法与设备 - Google Patents

一种救援方法与设备 Download PDF

Info

Publication number
WO2020182039A1
WO2020182039A1 PCT/CN2020/077891 CN2020077891W WO2020182039A1 WO 2020182039 A1 WO2020182039 A1 WO 2020182039A1 CN 2020077891 W CN2020077891 W CN 2020077891W WO 2020182039 A1 WO2020182039 A1 WO 2020182039A1
Authority
WO
WIPO (PCT)
Prior art keywords
rescue
information
wearable
target
rescuer
Prior art date
Application number
PCT/CN2020/077891
Other languages
English (en)
French (fr)
Inventor
陆乐
俸安琪
徐春旭
丘富铨
田中秀治
喜熨斗智也
Original Assignee
上海救要救信息科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 上海救要救信息科技有限公司 filed Critical 上海救要救信息科技有限公司
Publication of WO2020182039A1 publication Critical patent/WO2020182039A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information

Definitions

  • This application relates to the field of rescue, in particular to a rescue technology.
  • One purpose of this application is to provide a rescue method and equipment.
  • a rescue method at the network device side wherein the method includes:
  • the rescue storage equipment information database is queried to obtain rescue storage equipment that matches the rescue site location information, wherein the rescue storage equipment is stored for use by rescuers Wearable rescue equipment;
  • the rescue mission information and the location information of the rescue storage device are sent to the user equipment corresponding to the target rescuer who processes the rescue mission information.
  • a rescue method at the end of a rescue storage device wherein the rescue storage device is used to store one or more wearable rescue devices, and the rescue storage device includes A charging module for charging a wearable rescue device, and the method includes:
  • a rescue method on the user equipment side wherein the method includes:
  • a network device which includes:
  • One zero one module used to receive rescue mission information
  • the 102 module is used to query the rescue storage equipment information database according to the rescue site location information corresponding to the rescue mission information to obtain rescue storage equipment matching the rescue site location information, wherein the rescue storage equipment Store wearable rescue equipment for rescuers;
  • the 103 module is used to send the rescue mission information and the location information of the rescue storage device to the user equipment corresponding to the target rescuer who processes the rescue mission information.
  • a rescue storage device wherein the rescue storage device is used to store one or more wearable rescue devices, and the rescue storage device includes A charging module for charging, the device includes:
  • the 201 module is used to detect and obtain the equipment status information of each wearable rescue device in the one or more wearable rescue devices;
  • the 202 module is used to report the device status information to the corresponding network device.
  • a user equipment wherein the equipment includes:
  • the 301 module is used to receive rescue mission information sent by the corresponding network equipment
  • the 302 module is used to receive the location information of the rescue storage equipment corresponding to the rescue mission information.
  • a rescue method is provided, wherein the method includes:
  • the network device receives rescue mission information, and searches the rescue storage equipment information database according to the rescue site location information corresponding to the rescue mission information to obtain rescue storage equipment matching the rescue site location information, wherein the rescue storage equipment Storing wearable rescue equipment for rescuers, sending the rescue mission information and the location information of the rescue storage equipment to the user equipment corresponding to the target rescuer who processes the rescue mission information;
  • the user equipment receives rescue mission information sent by the network device and location information of rescue storage equipment corresponding to the rescue mission information.
  • a rescue method wherein the method includes:
  • the rescue storage device detects and obtains the device status information of each wearable rescue device in the one or more wearable rescue devices, and reports the device status information to the corresponding network device;
  • the network device receives the device status information of each wearable rescue device in the one or more wearable rescue devices uploaded by the rescue storage device; according to the device status information, from the one or more wearable rescue devices Selecting the target wearable rescue device corresponding to the rescue mission information in the above, and sending the identification information of the target wearable rescue device to the user equipment;
  • the user equipment receives the identification information of the target wearable rescue device corresponding to the rescue task information sent by the network device.
  • a rescue device wherein the device includes:
  • a memory arranged to store computer-executable instructions that, when executed, cause the processor to perform the operations of any of the above methods.
  • a computer-readable medium storing instructions that, when executed, cause a system to perform operations of any of the above methods.
  • this application searches the rescue storage equipment information database for the rescue storage equipment matching the rescue site location information according to the rescue site location information corresponding to the rescue mission information, and obtains the location information of the rescue storage equipment It is sent to the user equipment corresponding to the target rescuer; thus, it is supported to find the rescue storage device for the target rescuer based on the location information, and take away the wearable rescue device stored in the rescue storage device.
  • the rescue task information and the location information of the rescue storage device are sent to the user equipment corresponding to the target rescuer who processes the rescue task information, so as to support the rescuer to call the rescuer for the rescuer.
  • this application uses rescue storage equipment to safely manage wearable rescue equipment, which realizes the purpose of safely placing the wearable rescue equipment in public places, and facilitates rescuers to retrieve available wearable rescue equipment in time when needed.
  • Figure 1 shows the topology of a rescue system according to an embodiment of the present application
  • Fig. 2 shows a method flow of a rescue method according to an embodiment of the present application
  • Fig. 3 shows a method flow of a rescue method according to another embodiment of the present application
  • FIG. 4 shows a method flow of a method for rescuing a network device according to another embodiment of the present application
  • FIG. 5 shows a method flow of a rescue method at the rescue storage device according to another embodiment of the present application
  • FIG. 6 shows a method flow of a rescue method at the user equipment side according to another embodiment of the present application.
  • Fig. 7 shows a functional module of a network device according to another embodiment of the present application.
  • Fig. 8 shows a functional module of a rescue storage device according to another embodiment of the present application.
  • Fig. 9 shows a functional module of a user equipment according to another embodiment of the present application.
  • Figure 10 shows functional modules of an exemplary system that can be used to implement the various embodiments described in this application.
  • the terminal, the equipment of the service network, and the trusted party all include one or more processors (for example, a central processing unit (CPU)), input/output interfaces, network interfaces, and RAM.
  • processors for example, a central processing unit (CPU)
  • Memory may include non-permanent memory in computer readable media, random access memory (RAM) and/or non-volatile memory, such as read only memory (ROM) or flash memory (Read Only Memory). Flash Memory). Memory is an example of computer readable media.
  • RAM random access memory
  • ROM read only memory
  • Flash Memory Flash Memory
  • Computer-readable media include permanent and non-permanent, removable and non-removable media, and information storage can be realized by any method or technology.
  • the information can be computer-readable instructions, data structures, program modules, or other data.
  • Examples of computer storage media include, but are not limited to, phase-change memory (PCM), programmable random access memory (Programmable Random Access Memory, PRAM), and static random access memory (Static Random-Access Memory, SRAM), dynamic random access memory (Dynamic Random Access Memory, DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically-erasable programmable read-only memory (Electrically-Erasable Programmable Read -Only Memory, EEPROM), flash memory or other memory technology, CD-ROM (Compact Disc Read-Only Memory, CD-ROM), Digital Versatile Disc (DVD) or other optical storage , Magnetic cassettes, magnetic tape disk storage or other magnetic storage devices or any other non-transmission media that can be used to store information that can be
  • the equipment referred to in this application includes but is not limited to user equipment, network equipment, or equipment formed by the integration of user equipment and network equipment through a network.
  • the user equipment includes, but is not limited to, any mobile electronic product that can perform human-computer interaction with the user (for example, human-computer interaction through a touchpad), such as a smart phone, a tablet computer, etc., and the mobile electronic product can adopt any operation System, such as android operating system, iOS operating system, etc.
  • the network device includes an electronic device that can automatically perform numerical calculation and information processing in accordance with pre-set or stored instructions, and its hardware includes, but is not limited to, a microprocessor, an Application Specific Integrated Circuit (ASIC) ), Programmable Logic Device (PLD), Field Programmable Gate Array (FPGA), Digital Signal Processor (DSP), embedded devices, etc.
  • the network device includes, but is not limited to, a computer, a network host, a single network server, a set of multiple network servers, or a cloud composed of multiple servers; here, the cloud is composed of a large number of computers or network servers based on Cloud Computing, Among them, cloud computing is a type of distributed computing, a virtual supercomputer composed of a group of loosely coupled computer sets.
  • the network includes, but is not limited to, the Internet, a wide area network, a metropolitan area network, a local area network, a VPN network, and a wireless ad hoc network (Ad Hoc network).
  • the device may also be a program running on the user equipment, network equipment, or user equipment and network equipment, network equipment, touch terminal, or a device formed by integrating network equipment and touch terminal through a network.
  • the system includes network equipment, rescue storage equipment that can store wearable rescue equipment such as smart glasses or smart helmets, and user equipment.
  • information, instructions, etc. are transferred between the rescue storage device and the network device, and between the user device and the network device through a corresponding communication connection (for example, a communication connection established in a wired or wireless manner).
  • the user equipment in FIG. 1 is a user equipment used by a rescuer, and the rescuer establishes communication between the user equipment and the network device to realize the transfer of information or instructions.
  • the caller in FIG. 1 can send rescue mission information to the network device through the user equipment.
  • the rescue mission information is used as the trigger condition of the entire rescue system.
  • the caller includes but is not limited to the user who needs to be rescued or other nearby users. user.
  • the rescue storage device is used to safely store the wearable rescue device.
  • the rescue storage device is an intelligent rescue storage device including but not limited to an electronic lock or a mechanical lock.
  • the wearable rescue device includes Not limited to smart glasses, smart helmets, etc.
  • the rescue storage device and the wearable rescue device both include communication modules, which are used to implement communication between the rescue storage device and the wearable rescue device, or are used for the rescue storage device or the wearable rescue device to communicate with each other. Communication connections between network devices.
  • the wearable rescue device is used to transmit rescue scene information captured by a camera device to the background, so as to assist the scene rescue through the background.
  • the rescue storage device reports the device status information of the wearable rescue device stored therein to a network device, and the network device sends instruction information to the rescue storage device to implement the rescue storage device intelligent control.
  • the user equipment includes, but is not limited to, computing devices such as mobile phones, tablets, and laptops.
  • this application also discloses a rescue method. Referring to Figure 2, the method includes the following steps:
  • the network device receives rescue mission information, and searches the rescue storage equipment information database according to the rescue site location information corresponding to the rescue mission information to obtain rescue storage equipment matching the rescue site location information, wherein the rescue storage equipment Storing wearable rescue equipment for rescuers, sending the rescue mission information and the location information of the rescue storage equipment to the user equipment corresponding to the target rescuer who processes the rescue mission information;
  • the user equipment receives rescue mission information sent by the network device and location information of rescue storage equipment corresponding to the rescue mission information.
  • the network device communicates with the user equipment, where the user equipment is the user equipment used by the rescuer.
  • the rescuer receives the rescue mission information sent by the network device and the location information of the rescue storage device corresponding to the rescue mission information through the user equipment.
  • the user equipment presents the location information of the rescue storage device to facilitate The rescuer finds the rescue storage equipment based on the location information, and takes away and uses the wearable rescue equipment stored in the rescue storage equipment, and the rescuer wears the wearable rescue equipment to the rescue site for rescue.
  • the rescuer receives the location information of the rescue storage device sent by the network device through its corresponding user equipment. Based on the location information, the rescuer can smoothly find the rescue storage device storing the wearable rescue device, and wear the wearable Putting rescue equipment into the rescue scene can greatly increase the success rate of rescue.
  • this application also discloses a rescue method. Referring to Figure 3, the method includes the following steps:
  • the rescue storage device detects and obtains the device status information of each wearable rescue device in the one or more wearable rescue devices, and reports the device status information to the corresponding network device;
  • the network device receives the device status information of each wearable rescue device in the one or more wearable rescue devices uploaded by the rescue storage device; according to the device status information, from the one or more wearable rescue devices Selecting the target wearable rescue device corresponding to the rescue mission information in the above, and sending the identification information of the target wearable rescue device to the user equipment;
  • the user equipment receives the identification information of the target wearable rescue device corresponding to the rescue task information sent by the network device.
  • the network equipment communicates with the rescue storage equipment and the user equipment respectively.
  • the rescue storage device obtains the equipment status information of the wearable rescue device stored therein.
  • the wearable rescue device and the rescue storage device are respectively equipped with communication modules, and the wearable rescue device reports its own equipment status information to the corresponding rescue storage
  • the rescue storage device reports the device status information to the network device.
  • the network device receives the device status information, it determines the target wearable rescue device from one or more wearable rescue devices according to the device status information.
  • the device status information of the wearable rescue device includes the power information of the device, and the network device The power threshold information is preset in the device.
  • the network device When the power information is lower than or equal to the power threshold information, the network device sends charging instruction information to the rescue storage device corresponding to the wearable rescue device to control the rescue storage device to the wearable The rescue equipment is charged.
  • the network device After determining the target wearable rescue device, the network device sends the identification information of the target wearable rescue device (for example, the serial number of the target wearable rescue device) to the user equipment corresponding to the target rescuer.
  • Each wearable rescue device has its corresponding identification information, which can correspond to the group number or device number to which the wearable rescue device belongs, so as to facilitate the management of multiple wearable rescue devices; in some embodiments, There is a mapping relationship between the identification information of each wearable rescue device and the rescue storage device storing the wearable rescue device.
  • the network device determines the target wearable rescue device through the device status information of the wearable rescue device, and then according to the target wearable rescue
  • the identification information of the device determines the corresponding rescue storage device, so that rescuers can find the wearable rescue device through the location information of the rescue storage device.
  • the wearable rescue device is safely managed through the rescue storage device, and the intelligent management of the rescue storage device is realized based on the network device.
  • the device status information includes at least any one of the following:
  • the power information of the wearable rescue device is the power information of the wearable rescue device
  • the use status information of the wearable rescue device
  • this application also discloses a rescue method on the network equipment side. 4, the method includes step S101, step S102, and step S103.
  • step S101 the network device receives rescue mission information; in step S102, the network device stores the rescue site location information corresponding to the rescue mission information.
  • the equipment information database is queried to obtain rescue storage equipment matching the location information of the rescue site, wherein the rescue storage equipment stores wearable rescue equipment for rescuers; in step S103, the network equipment
  • the rescue mission information and the location information of the rescue storage device are sent to the user equipment corresponding to the target rescuer who processes the rescue mission information.
  • the rescue mission information is used as a trigger condition to implement the rescue method of the present application on the network device side.
  • the rescue mission information includes but is not limited to a request for help, and the caller uses his corresponding user equipment (for example, The mobile phone or other terminal device used by it sends a distress request to the network device.
  • the rescue scene is a scene where rescue needs to be implemented, for example, a competition scene, a fire scene, etc.
  • a rescue storage device information database is provided in the network device, and the rescue storage device information database includes multiple rescue storage devices and location information of each rescue storage device.
  • the rescue storage device stores wearable rescue equipment for rescuers, and the wearable rescue equipment includes, but is not limited to, smart glasses, smart helmets, and the like.
  • the network device receives rescue mission information.
  • the rescue mission information is sent by the caller through its corresponding user equipment, where, in some embodiments, the caller is a person (for example, an injured person) who needs to be rescued in the rescue scene; In other embodiments, the caller is a person other than the person who needs to be rescued at the rescue site. For example, when the other person finds that a rescue is needed, the rescue task is sent through the corresponding user device. Information, the network device receives the rescue mission information.
  • the network device queries the rescue storage device information database according to the rescue site location information corresponding to the rescue mission information to obtain rescue storage devices matching the rescue site location information, wherein the rescue storage device Stored with wearable rescue equipment for rescuers.
  • the network device determines the rescue site location information corresponding to the rescue mission information by determining the location information of the user sending the rescue mission information, for example, based on GPS positioning, Beidou satellite positioning, WIFI network positioning, or base station positioning, etc.
  • One or more of the positioning technologies are combined to determine the location information of the user who sent the rescue mission information, and the location information of the rescue site is determined by the location information of the user; in other embodiments, the rescue mission information is It includes the location information of the rescue site.
  • the rescue mission information sent by the user to the network device includes the location information of the rescue site.
  • the network device searches the rescue storage device information database for rescue storage devices matching the rescue site location information based on the rescue site location information.
  • the rescue storage device information database stores multiple rescue storage devices.
  • the location information of the device the network device searches the rescue storage device information database for the rescue storage device located near the rescue site location or closest to the rescue site location according to the rescue site location information corresponding to the received rescue mission information.
  • the rescue storage device stores a wearable rescue device that can be used by rescuers.
  • the rescue storage device is an intelligent rescue storage device provided with an electronic lock or a mechanical lock.
  • the wearable rescue device The device is locked in the rescue storage device, and the wearable rescue device can be taken out only by unlocking.
  • This kind of rescue storage equipment can safely put wearable rescue equipment in public places, and is convenient for intelligent management of rescue storage equipment through network equipment. Only the user needs to send rescue mission information to the network equipment, and the network equipment can find the vicinity The rescue storage equipment is convenient for rescuers to use wearable rescue equipment for rescue anytime and anywhere.
  • the network device sends the rescue mission information and the location information of the rescue storage device to the user equipment corresponding to the target rescuer who processes the rescue mission information.
  • the user equipment corresponding to the target rescuer receives the location information of the rescue storage device and presents the location information (for example, in the form of a map, or the specific location information in the form of text).
  • the target rescuer finds rescue storage equipment in time according to the location information.
  • the network device sends rescue mission information to the target rescuer while sending the location information of the rescue storage device to the target rescuer, so that the target rescuer knows that there is a situation that needs rescue at present.
  • the rescue mission information includes rescue site location information, so that the target rescuer can rush to the rescue site to implement rescue in time while finding rescue storage equipment.
  • the network device sends rescue mission information and location information of the rescue storage device to one or more target rescuers; in some embodiments, the one or more target rescuers may confirm by returning to the network device The information confirms participation in rescue.
  • the method further includes step S104 (not shown).
  • step S104 the network device sends rescue to the wearable rescue device used by the target rescuer according to the rescue skill information of the target rescuer.
  • Guidance information a rescuer information database is provided in the network device, and the rescuer information database stores multiple rescuers and rescue skill information of each rescuer, where the rescue skill information includes but is not limited to rescue Job information (for example, medical officer, commander, etc.) and ability level information (for example, level one, level two, level three, etc., different levels correspond to different rescue capabilities or rescue experience).
  • each job information corresponds to different ability level information. For example, medical officers are classified into first, second, and third levels. The higher the level, the higher the rescue ability.
  • Each ability level information corresponds to corresponding rescue guidance information.
  • the rescue guidance information is used to guide the target rescuer to correctly perform rescue operations.
  • the network device determines the rescue skill information corresponding to the target rescuer based on the identification information (for example, name, number, etc.) of the target rescuer. Further, the network device informs the target rescuer based on the rescue skill information to the wearable The rescue equipment sends the corresponding rescue guidance information. In some embodiments, the target rescuer returns confirmation information to the network device based on the rescue mission information sent by the network device.
  • the target rescuer preferably rescues the storage device based on the received location information of the rescue storage device (for example, selects the distance The rescue storage device closest to the person calling for help or the nearest rescue storage device), and sends a confirmation selection message to the network device, where each rescue storage device has a corresponding wearable rescue device, and the network device can determine the target rescuer Corresponding wearable rescue equipment.
  • the wearable rescue device presents the rescue guidance information through voice, text, or multimedia. Rescue guidance information is used to provide corresponding rescue guidance information according to the rescue skill information of the target rescuer, which can help the target rescuer to implement the rescue correctly, for example, correct real-time artificial respiration or cardiac resuscitation to improve the success rate of rescue.
  • the method further includes step S105 (not shown), step S106 (not shown), and step S107 (not shown).
  • step S105 the network device receives the device status information of each wearable rescue device among one or more wearable rescue devices uploaded by the rescue storage device; in step S106, the network device obtains information from the device status information according to the device status information. Select the target wearable rescue device corresponding to the rescue mission information from the one or more wearable rescue devices; in step S107, the network device sends the identification information of the target wearable rescue device to the user equipment.
  • the device status information includes, but is not limited to, the power information of the wearable rescue device (for example, the percentage of the remaining power to the total power, or the running time that the current remaining power can support), the startup status information (for example, wearable The rescue equipment is currently powered on, off or in standby), usage status information (for example, whether it is currently used), network signal information (for example, its network signal strength), location information (for example, latitude and longitude information), etc.
  • the device status information is used by the network device to screen out available target wearable rescue devices from multiple wearable rescue devices. For example, the target wearable rescue device needs to be in an unused state before the network device The identification information of the target wearable rescue device can be sent to the user equipment corresponding to the rescuer for use by the rescuer.
  • the network device receives the device status information of each wearable rescue device among the one or more wearable rescue devices uploaded by the rescue storage device.
  • the rescue storage device and the wearable rescue device are both provided with communication modules, and the rescue storage device and the wearable rescue device can establish a communication connection and transmit information through these communication modules.
  • the storage device obtains the device status information of the wearable rescue device and uploads the device status information to the network device.
  • the network device selects the target wearable rescue device corresponding to the rescue task information from the one or more wearable rescue devices according to the device status information.
  • the network device determines one or more rescue storage devices that match the rescue site location information corresponding to the rescue mission information according to the rescue mission information, wherein the rescue storage device stores a wearable rescue device.
  • one or more wearable rescue devices corresponding to the one or more rescue storage devices may be currently unavailable. For example, if one of the wearable rescue devices has been used, the wearable rescue device is currently unavailable.
  • the network device can determine whether the wearable rescue device is currently available according to the use status information of the wearable rescue device uploaded by the rescue storage device, so as to determine from the one or more wearable rescue devices that the available wearable rescue device is Target wearable rescue equipment to ensure that the target rescuer can get the currently available wearable rescue equipment at the rescue storage equipment.
  • step S107 the network device sends the identification information of the target wearable rescue device to the user equipment.
  • the network device determines the target wearable rescue device it sends the identification information of the target wearable rescue device to the user equipment.
  • the method further includes step S108 (not shown).
  • step S108 the network device sends the boot instruction information about the target wearable rescue device to the rescue storage device.
  • the network device determines the target wearable rescue device based on the device status information of the wearable rescue device, the network device sends boot instruction information to the target wearable rescue device, and the boot instruction information is used for the target rescuer Turn on the target wearable rescue equipment in advance to save time for rescue.
  • the network device determines one or more target wearable rescue devices based on the device status information of the wearable rescue device, and sends identification information of the one or more wearable rescue devices to the user corresponding to the target rescuer
  • the target rescuer determines the final target wearable rescue device from the one or more target wearable rescue devices through a confirmation operation, and sends the confirmation information to the network device, and the network device sends the corresponding
  • the target wearable rescue device sends boot instruction information, and the boot instruction information is used to turn on the target wearable rescue device in advance for the target rescuer, saving time for rescue.
  • the device status information includes at least any one of the following: power information of the wearable rescue device; startup status information of the wearable rescue device; usage status information of the wearable rescue device; Network signal information of the wearable rescue device; location information of the wearable rescue device.
  • the device status information includes power information of the wearable rescue device.
  • the network device selects available target wearable rescue devices from one or more wearable rescue devices based on the power information of the wearable rescue devices. For example, when the power information of the wearable rescue device is lower than the preset power threshold information, the network device determines that the wearable rescue device is unavailable, thereby screening the wearable from one or more wearable rescue devices Rescue equipment.
  • the device status information includes startup status information of the wearable rescue device.
  • the network device determines whether the wearable rescue device is available according to the boot status information of the wearable rescue device. For example, if the boot status information of the wearable rescue device is activated, the network device determines that the wearable rescue device is available. Wearable rescue is set as unavailable, and the wearable rescue device whose activation status information is not activated is determined as the target wearable rescue device.
  • the device status information includes use status information of the wearable rescue device.
  • the network device determines the target wearable rescue device from one or more wearable rescue devices according to the use state information of the wearable rescue device.
  • the use status information includes being in use and currently not being used, and the network device needs to filter out the wearable rescue devices that are not currently being used from the one or more wearable rescue devices, and then combine the wearable rescue devices The device is used as a target wearable rescue device for target rescuers.
  • the device status information includes network signal information of the wearable rescue device.
  • the network device obtains the network signal information of the network device currently used by the wearable rescue device.
  • the network signal information includes but is not limited to the signal of the network to which the wearable rescue device is currently connected. Strength information, etc. Based on the network signal information, the network device preferably uses a wearable rescue device with high signal strength as the target wearable rescue device.
  • the device status information includes location information of the wearable rescue device.
  • the network device obtains real-time location information of each wearable rescue device, and if the location information changes by a large amplitude or frequency, it is determined that the wearable rescue device is in a mobile or in use state.
  • the network device uses the wearable rescue device with fixed location information as the target wearable rescue device.
  • the device status information includes power information of the wearable rescue device; wherein, the method further includes step S109 (not shown).
  • step S109 the network device can wear the device according to the target.
  • the power information of the rescue device sends charging instruction information about the target wearable rescue device to the rescue storage device storing the target wearable rescue device.
  • the network device performs charging management on the wearable rescue device by acquiring power information of the wearable rescue device.
  • the network device sends charging instruction information to the rescue storage device storing the wearable rescue device, and the rescue storage device detects the wearable
  • the rescue equipment is stored in the rescue storage device (for example, a charging port is provided in the slot for storing the wearable rescue device on the rescue storage device, and when the wearable rescue device is stored on the rescue storage device, the wearable rescue device
  • the charging port on the device is snap-connected to the charging port on the slot, the rescue storage device detects through the charging port whether a wearable rescue device is currently stored on the rescue storage device), and further, the rescue storage device is based on the charging it receives
  • the instruction information is used to charge the wearable rescue device through the charging port.
  • the network device when the charge capacity of the wearable rescue device reaches 100%, the network device sends a power-off instruction message to the rescue storage device.
  • the intelligent charging management of the rescue storage device through the network device can ensure that the wearable rescue device stored in the rescue storage device is always in a state of sufficient power so that the rescuer can take it at any time.
  • the method further includes step S111 (not shown), step S112 (not shown), and step S113 (not shown).
  • step S111 the network device receives the verification request information sent by the rescue storage device, where the verification request information includes verification basis information about the target rescuer; in step S112, the network device verifies the verification basis Information verification processing is performed; in step S113, the network device sends corresponding verification result information or unlocking instruction information to the rescue storage device.
  • the rescue storage device locks the wearable rescue device in the rescue storage device through an electronic lock or a mechanical lock.
  • the target rescuer can send verification request information to the corresponding network device through the rescue storage device, and the network device receives The verification request information performs verification processing based on the verification basis information in the verification request information.
  • the verification basis information includes, but is not limited to, authorization information received by the user equipment from the network device, and face image information of the target rescuer.
  • the rescue storage device obtains the face image information of the target rescuer A who came to fetch the wearable rescue device through the camera device, and the rescue storage device sends verification request information to the corresponding network device, where the verification request information includes information about The face image information of the target rescuer A.
  • the network device receives the verification request information, and performs verification processing on the verification basis information (face image information) in the verification request information.
  • a rescuer information database is provided in the network device, and the rescuer information database includes multiple For the relevant information of a rescuer (for example, name, number, face image information), the network device performs query matching in the rescuer information database according to the face image information of the target rescuer A in the verification request information.
  • the network device sends the verification result information that the verification is successful to the rescue storage device, or the network device directly sends the unlock instruction information to the rescue storage device to control the rescue storage device to automatically unlock, and the target rescuer can The wearable rescue equipment stored in the rescue storage equipment is smoothly removed.
  • the method further includes step S114 (not shown).
  • step S114 the network device sends the verification basis information corresponding to the rescue storage device to the rescue storage device.
  • the verification basis information includes, but is not limited to, authorization information (for example, a password, an authorization code, a QR code, etc.).
  • the network device stores authorization information of multiple rescue storage devices, and the authorization information is used to unlock the corresponding rescue storage devices.
  • the network device determines the rescue storage device and the target rescuer, it sends the verification basis information corresponding to the rescue storage device (for example, password, authorization code, QR code and other authorization information) to the user device corresponding to the target rescuer.
  • the network device sends the verification basis information to the rescue storage device, and the user equipment and the rescue storage device receive the same verification basis information, so that the target rescuer can use the verification basis information to unlock and take away the rescue storage device. Wear rescue equipment.
  • the verification basis information includes at least any one of the following: authorization information received by the user equipment from the network device, and the authorization information is used to authorize the target rescuer to deposit from the rescue Extract wearable rescue equipment from the equipment; face image information of the target rescuer; number information of the target rescuer; rescuer identification information of the target rescuer.
  • the network device performs verification processing according to the verification basis information sent by the rescue storage device, and sends verification result information or unlock instruction information to the rescue storage device according to the verification result; in other embodiments, the network device will rescue The verification basis information of the storage device is sent to the corresponding user equipment of the target rescuer, so that the target rescuer can directly use the verification basis information to unlock the rescue storage device.
  • the rescuer inputs the above verification basis information on the rescue storage device, and the rescue storage device checks The verification is based on the information, and if the verification is passed, the wearable rescue device is unlocked for rescue personnel to use.
  • the verification basis information described above is only an example, and other existing or future verification basis information that can be applied to this application is also included in the scope of protection of this application. And included here by reference.
  • the present application facilitates the target rescuer to successfully extract the wearable rescue device stored in the rescue storage device.
  • the verification basis information includes authorization information received by the user equipment from the network device, and the authorization information is used to authorize the target rescuer to extract a wearable rescue device from the rescue storage device.
  • the authorization information includes, but is not limited to, a password, a two-dimensional code, an authorization code, and the like.
  • the network device After determining the rescue storage device, the network device sends the authorization information (for example, unlocking password) corresponding to the rescue storage device to the user device corresponding to the target rescuer.
  • the target rescuer opens the lock on the rescue storage device by inputting the authorization information on the rescue storage device, thereby successfully extracting the wearable rescue device stored in the rescue storage device.
  • the verification basis information includes face image information of the target rescuer.
  • a rescuer information database is provided in the network device, and the rescuer information database stores multiple rescuers and related information (for example, face image information, etc.) of each rescuer.
  • the rescue storage device takes the face image information of the target rescuer using the wearable rescue device before shooting, and performs face recognition on the face image information to extract the identity information of the target rescuer.
  • the rescuer information database is queried for matching facial image information, and if there is a rescuer matching the target rescuer's facial image information in the rescuer information database, it is determined The verification is successful.
  • the verification basis information includes serial number information of the target rescuer.
  • a rescuer information database is provided in the network device, and the rescuer information database stores multiple rescuers and related information (for example, number information, etc.) of each rescuer.
  • the rescuer will wear a brand with rescuer number information on his body or print the rescuer number information corresponding to the rescuer on specific clothes worn by the rescuer.
  • the rescue storage device extracts the number information of the target rescuer who comes to use the wearable rescue device through the camera device, and searches the rescuer information database for the matching number information according to the number information. If there is a rescuer matching the number of the target rescuer in the rescuer information database, it is determined that the verification is successful.
  • the verification basis information includes rescuer identification information of the target rescuer.
  • the rescuer identification information includes, but is not limited to, a rescuer logo pattern, a rescuer logo pattern, and the like.
  • the rescue storage device extracts the rescuer identification information of the target rescuer through the camera device (for example, the clothes that the rescuer wears are printed on There is rescuer identification information, or the rescuer wears an identification card printed with the rescuer identification information), and the rescuer identification information is sent to the network device.
  • the network device verifies whether the rescuer identification information matches the pre-stored rescuer identification information. If it matches, the verification is determined to be successful.
  • the step S103 includes step S1031 (not shown) and step S1032 (not shown).
  • the network device determines a target for processing the rescue mission information according to the location information of the rescue site. Rescuer, wherein the distance between the current location information of the target rescuer and the rescue site location information is less than or equal to the predetermined distance threshold information; in step S1032, the network device compares the rescue mission information and the rescue The location information of the storage device is sent to the user device corresponding to the target rescuer.
  • the current position information of multiple rescuers is obtained based on a combination of one or more of positioning technologies such as GPS positioning, Beidou satellite positioning, WIFI network positioning, or base station positioning, and the current position information of multiple rescuers is obtained based on the rescue site position information.
  • the plurality of rescuers query the target rescuer located near the location information of the rescue site, so that the rescuer can rush to the rescue site in time for rescue. Further, the network device sends the rescue mission information it receives and the searched location information of the rescue storage device to one or more target rescuers located near the rescue site.
  • the step S103 includes step S1033 (not shown), step S1034 (not shown), step S1035 (not shown), and step S1036 (not shown).
  • the network device The rescue task information is sent to one or more candidate rescuers, where the distance between the current position information of each candidate rescuer and the rescue site position information is less than or equal to the predetermined distance threshold information; in step S1034 , The network device receives confirmation feedback information of the rescue mission information from at least one candidate rescuer among the one or more candidate rescuers; in step S1035, the network device selects and determines the rescue task information from the at least one candidate rescuer.
  • the target rescuer of the rescue mission information in step S1036, the network device sends the location information of the rescue storage device to the user equipment corresponding to the target rescuer.
  • the network device determines the final target rescuer by receiving confirmation feedback information returned by the candidate rescuer based on the rescue mission information.
  • the network device receives rescue mission information sent by the caller, and searches for one or more candidate rescuers located near the rescue site location information based on the rescue site location information corresponding to the rescue mission information, wherein the rescue site location information is determined 1.
  • the rescue site location information is determined 1.
  • the candidate rescuer returns confirmation feedback information to the network device based on the received rescue mission information. For example, the candidate rescuer returns confirmation feedback information to the network device when it is convenient to go to the rescue site for rescue.
  • the network device determines the target rescuer to which the rescue mission information ultimately corresponds based on the received confirmation feedback information. Further, the network device sends the found location information of the rescue storage device to the user device corresponding to the target rescuer sending the confirmation feedback information.
  • Fig. 3 shows a rescue method at the rescue storage device according to an embodiment of the present application, wherein the rescue storage device is used to store one or more wearable rescue devices, and the rescue storage device includes The charging module for charging the wearable rescue device, the method includes step S201 and step S202, in step S201, the rescue storage device detects and obtains the device of each wearable rescue device in the one or more wearable rescue devices Status information: In step S202, the rescue storage device reports the device status information to the corresponding network device.
  • the rescue storage device is used to store wearable rescue devices.
  • the rescue storage device safely stores the wearable rescue device through an electronic lock or a mechanical lock.
  • the rescue storage device is provided with a charging module for charging the wearable rescue device.
  • both the rescue storage device and the wearable rescue device are provided with a communication module for information transfer between the two.
  • the wearable rescue device reports its own device status information to the corresponding rescue storage device.
  • the rescue storage device checks the device status information of the wearable rescue device, and reports the device status information to the corresponding network device so that the network
  • the device performs device management on the corresponding wearable rescue device according to the device status information and determines the available target wearable rescue device from the one or more wearable rescue devices found.
  • the method further includes step S203 (not shown) and step S204 (not shown).
  • step S203 the rescue storage device receives information about the one or more available devices sent by the network device.
  • the boot instruction information of the target wearable rescue device in the wearable rescue device in step S204, the rescue storage device performs a boot operation on the target wearable rescue device according to the boot instruction information.
  • the network device determines the target wearable rescue device based on the device status information of the wearable rescue device
  • the network device sends the boot instruction information to the rescue storage device corresponding to the target wearable rescue device, and the rescue storage device Receiving the boot instruction information, and performing a boot operation on the target wearable rescue device based on the boot instruction information, is used to turn on the target wearable rescue device in advance for the target rescuer to save rescue time.
  • the method further includes step S205 (not shown) and step S206 (not shown).
  • step S205 the rescue storage device receives a charging instruction for the wearable rescue device sent by the network device.
  • Information the rescue storage device performs a charging operation on the wearable rescue device according to the charging instruction information.
  • the network device obtains the device status information of the corresponding wearable rescue device (for example, the wearable rescue device stored in the rescue storage device) reported by the rescue storage device.
  • the device status information includes power information of the wearable rescue device
  • the network device detects whether the power information is lower than a preset power threshold information, and if the power information of the wearable rescue device is lower than the power information Threshold information, the network device sends charging instruction information to the rescue storage device storing the wearable rescue device.
  • the rescue storage device After receiving the charging instruction information, the rescue storage device performs a charging operation on the wearable rescue device to ensure that the wearable rescue device stored on the rescue storage device is always in a state of sufficient power.
  • the method further includes step S207 (not shown), step S208 (not shown), and step S209 (not shown).
  • step S207 the rescue storage device sends verification to the corresponding network device.
  • Request information wherein the verification request information includes verification basis information about the target rescuer; in step S208, the rescue storage device receives corresponding verification result information or unlocking instruction information sent by the network device; in step S209 , The rescue storage device executes the unlocking operation according to the verification result information or the unlocking instruction information.
  • the rescue storage device safely stores the wearable rescue device through an electronic lock or a mechanical lock. In order to realize the function of smart unlocking, the rescue storage device verifies unlocking by sending verification request information to the corresponding network device.
  • the verification basis information includes, but is not limited to, authorization information (for example, a password, an authorization code, a QR code, etc.) sent by the network device to the target rescuer.
  • the target rescuer sends the verification request information to the network device by inputting the authorization information on the rescue storage device, where the verification request information includes the authorization information.
  • the network device receives the verification request information, and determines whether to send unlock instruction information to the rescue storage device according to the authorization information in the verification request information. If the authorization information corresponds to the authorization information of the rescue storage device sent by the network device to the target rescuer, the verification is successful, and the network device sends the successful verification result information to the rescue storage device, or the network device directly sends the rescuer to the rescuer.
  • the storage device sends the unlock command message.
  • the rescue storage device receives the verification result information or unlock instruction information of the successful verification, and executes the unlock operation.
  • the method further includes step S211 (not shown).
  • step S211 the rescue storage device receives the verification basis information corresponding to the rescue storage device sent by the network device.
  • the verification basis information includes authorization information corresponding to the rescue storage device (for example, a password, a QR code, an authorization code, etc.), and the authorization information is used to unlock the rescue storage device so that the rescuer can succeed. Take out the wearable rescue device stored in the rescue storage device.
  • the network device sends authorization information corresponding to the rescue storage device to the rescue storage device, and at the same time, the network device sends the authorization information to the user equipment corresponding to the target rescuer.
  • the target rescuer performs unlock verification by inputting the authorization information on the rescue storage device.
  • the method further includes step S212 (not shown) and step S213 (not shown).
  • step S212 the rescue storage device receives verification request information, wherein the verification request information includes The verification basis information of the target rescuer; in step S213, the rescue storage device performs an unlocking operation according to the verification basis information.
  • the rescue storage device receives verification request information, where, in some embodiments, the verification basis information includes information obtained by the rescue storage device through a camera device or a face authentication device about coming to extract the wearable rescue device Face image information, rescuer identification information or number information of the target rescuer; in other embodiments, the verification basis information includes authorization information input by the target rescuer who comes to extract the wearable rescue device.
  • the network device sends the aforementioned verification basis information about the target rescuer to the rescue storage device, and the rescue storage device makes a matching judgment based on the verification basis information sent by the network device and the verification basis information about the target rescuer acquired by itself, If the match is successful, the unlock operation is executed.
  • FIG. 4 shows a rescue method on the user equipment side according to an embodiment of the present application, where the method includes step S301 and step S302.
  • step S301 the user equipment receives rescue mission information sent by a corresponding network device;
  • step S302 the user equipment receives the location information of the rescue storage device corresponding to the rescue task information.
  • the user equipment is a user equipment corresponding to the target rescuer.
  • the network device sends the rescue mission information sent by the caller to the corresponding one or more target rescuers.
  • the target rescuer receives the rescue mission information through its corresponding user equipment.
  • the network device determines one or more rescue storage devices located near the location information of the rescue site based on the rescue mission information, it sends the location information of the one or more rescue storage devices to the user device, and the The user equipment receives the location information, and the target rescuer selects the one that is most convenient to extract the wearable rescue device according to the location information about one or more rescue storage devices presented by the user equipment.
  • the method further includes step S303 (not shown).
  • step S303 the user equipment sends confirmation feedback information for the rescue task information to the corresponding network device based on the confirmation operation of the target rescuer.
  • one or more rescuers receive rescue mission information sent by the network device, and the one or more rescuers determine to participate in the rescue activity by sending confirmation feedback information to the network device. Therefore, the target rescuer corresponding to the rescue mission information is determined.
  • the method further includes step S304 (not shown).
  • step S304 the user equipment receives the identification information of the target wearable rescue device corresponding to the rescue task information sent by the corresponding network device.
  • the network device sends the identification information of the target wearable rescue device corresponding to the rescue mission information to the user equipment corresponding to the target rescuer.
  • the identification information of the target wearable rescue device (for example, the serial number of the target wearable rescue device), in some embodiments, each wearable rescue device has its corresponding
  • the identification information of the wearable rescue device may correspond to the group number or device number to which the wearable rescue device belongs, so as to facilitate the management of multiple wearable rescue devices; in some embodiments, the identification information of each wearable rescue device There is a mapping relationship with the rescue storage device storing the wearable rescue device.
  • the network device determines the target wearable rescue device through the device status information of the wearable rescue device, and then determines the corresponding wearable rescue device according to the identification information of the target wearable rescue device Rescue storage equipment, so that rescuers can find the wearable rescue equipment through the location information of the rescue storage equipment.
  • the wearable rescue device is safely managed through the rescue storage device, and the intelligent management of the rescue storage device is realized based on the network device.
  • the method further includes step S305 (not shown).
  • step S305 the user equipment receives authorization information about the rescue storage device sent by the corresponding network device, wherein the authorization information is used for authorization
  • the target rescuer extracts a wearable rescue device from the rescue storage device.
  • the authorization information includes, but is not limited to, a password, a QR code, an authorization code, and the like.
  • the network device After determining the rescue storage device, the network device sends the authorization information (for example, unlocking password) corresponding to the rescue storage device to the user device corresponding to the target rescuer.
  • the target rescuer opens the lock on the rescue storage device by inputting the authorization information on the rescue storage device, thereby successfully extracting the wearable rescue device stored in the rescue storage device.
  • the present application also discloses a network device, where the device includes a one-one module, one-two module, and one-zero-three module.
  • the one-one module is used to receive rescue mission information;
  • the one-two module Used to query the rescue storage equipment information database according to the rescue site location information corresponding to the rescue mission information to obtain rescue storage equipment matching the rescue site location information, wherein the rescue storage equipment stores available Wearable rescue equipment used by rescuers;
  • 103 module used to send the rescue mission information and the location information of the rescue storage device to the user equipment corresponding to the target rescuer who processes the rescue mission information.
  • the rescue mission information is used as a trigger condition to implement the rescue method of the present application on the network device side.
  • the rescue mission information includes but is not limited to a request for help, and the caller uses his corresponding user equipment (for example, The mobile phone or other terminal device used by it sends a distress request to the network device.
  • the rescue scene is a scene where rescue needs to be implemented, for example, a competition scene, a fire scene, etc.
  • a rescue storage device information database is provided in the network device, and the rescue storage device information database includes multiple rescue storage devices and location information of each rescue storage device.
  • the rescue storage device stores wearable rescue equipment for rescuers, and the wearable rescue equipment includes, but is not limited to, smart glasses, smart helmets, and the like.
  • the one-one module is used to receive rescue mission information.
  • the rescue mission information is sent by the caller through its corresponding user equipment, where, in some embodiments, the caller is a person (for example, an injured person) who needs to be rescued in the rescue scene; In other embodiments, the caller is a person other than the person who needs to be rescued at the rescue site. For example, when the other person finds that a rescue is needed, the rescue task is sent through the corresponding user device. Information, the network device receives the rescue mission information.
  • the 102 module is used to query the rescue storage equipment information database according to the rescue site location information corresponding to the rescue mission information to obtain rescue storage equipment matching the rescue site location information, wherein the rescue storage equipment Stored with wearable rescue equipment for rescuers.
  • the network device determines the rescue site location information corresponding to the rescue mission information by determining the location information of the user sending the rescue mission information, for example, based on GPS positioning, Beidou satellite positioning, WIFI network positioning, or base station positioning, etc.
  • One or more of the positioning technologies are combined to determine the location information of the user who sent the rescue mission information, and the location information of the rescue site is determined by the location information of the user; in other embodiments, the rescue mission information is It includes the location information of the rescue site.
  • the rescue mission information sent by the user to the network device includes the location information of the rescue site.
  • the network device searches the rescue storage device information database for rescue storage devices matching the rescue site location information based on the rescue site location information.
  • the rescue storage device information database stores multiple rescue storage devices.
  • the location information of the device the network device searches the rescue storage device information database for the rescue storage device located near the rescue site location or closest to the rescue site location according to the rescue site location information corresponding to the received rescue mission information.
  • the rescue storage device stores a wearable rescue device that can be used by rescuers.
  • the rescue storage device is an intelligent rescue storage device provided with an electronic lock or a mechanical lock.
  • the wearable rescue device The device is locked in the rescue storage device, and the wearable rescue device can be taken out only by unlocking.
  • This kind of rescue storage equipment can safely put wearable rescue equipment in public places, and is convenient for intelligent management of rescue storage equipment through network equipment. Only the user sends rescue mission information to the network equipment, the network equipment can find the vicinity The rescue storage equipment is convenient for rescuers to use wearable rescue equipment for rescue anytime and anywhere.
  • the 103 module is used to send the rescue mission information and the location information of the rescue storage device to the user equipment corresponding to the target rescuer who processes the rescue mission information.
  • the user equipment corresponding to the target rescuer receives the location information of the rescue storage device and presents the location information (for example, in the form of a map, or the specific location information in the form of text).
  • the target rescuer finds rescue storage equipment in time according to the location information.
  • the network device sends rescue mission information to the target rescuer while sending the location information of the rescue storage device to the target rescuer, so that the target rescuer knows that there is a situation that needs rescue at present.
  • the rescue mission information includes rescue site location information, so that the target rescuer can rush to the rescue site to implement rescue in time while finding rescue storage equipment.
  • the network device sends rescue mission information and location information of the rescue storage device to one or more target rescuers; in some embodiments, the one or more target rescuers may confirm by returning to the network device The information confirms participation in rescue.
  • the device further includes a 104 module (not shown), and a 104 module is used to provide a wearable rescue device used by the target rescuer according to the rescue skill information of the target rescuer.
  • a rescuer information database is provided in the network device, and the rescuer information database stores multiple rescuers and rescue skill information of each rescuer, where the rescue skill information includes but is not limited to rescue Job information (for example, medical officer, commander, etc.) and ability level information (for example, level one, level two, level three, etc., different levels correspond to different rescue capabilities or rescue experience).
  • each job information corresponds to different ability level information. For example, medical officers are classified into first, second, and third levels. The higher the level, the higher the rescue ability.
  • Each ability level information corresponds to corresponding rescue guidance information.
  • the rescue guidance information is used to guide the target rescuer to correctly perform rescue operations.
  • the network device determines the rescue skill information corresponding to the target rescuer based on the identification information (for example, name, number, etc.) of the target rescuer. Further, the network device informs the target rescuer based on the rescue skill information to the wearable The rescue equipment sends the corresponding rescue guidance information. In some embodiments, the target rescuer returns confirmation information to the network device based on the rescue mission information sent by the network device.
  • the target rescuer preferably rescues the storage device based on the received location information of the rescue storage device (for example, selects the distance The rescue storage device closest to the person calling for help or the nearest rescue storage device), and sends a confirmation selection message to the network device, where each rescue storage device has a corresponding wearable rescue device, and the network device can determine the target rescuer Corresponding wearable rescue equipment.
  • the wearable rescue device presents the rescue guidance information through voice, text, or multimedia. Rescue guidance information is used to provide corresponding rescue guidance information according to the rescue skill information of the target rescuer, which can help the target rescuer to implement the rescue correctly, for example, correct real-time artificial respiration or cardiac resuscitation to improve the success rate of rescue.
  • the device further includes one zero five module (not shown), one zero six module (not shown), and one zero seven module (not shown).
  • the 105 module is used to receive the device status information of each wearable rescue device in one or more wearable rescue devices uploaded by the rescue storage device; the 106 module is used to obtain information from the device status information Select the target wearable rescue device corresponding to the rescue mission information from the one or more wearable rescue devices; a 107 module is used to send the identification information of the target wearable rescue device to the user equipment.
  • the device status information includes, but is not limited to, the power information of the wearable rescue device (for example, the percentage of the remaining power to the total power, or the running time that the current remaining power can support), the startup status information (for example, wearable The rescue equipment is currently powered on, off or in standby), usage status information (for example, whether it is currently used), network signal information (for example, its network signal strength), location information (for example, latitude and longitude information), etc.
  • the device status information is used by the network device to screen out available target wearable rescue devices from multiple wearable rescue devices. For example, the target wearable rescue device needs to be in an unused state before the network device The identification information of the target wearable rescue device can be sent to the user equipment corresponding to the rescuer for use by the rescuer.
  • the 105 module is used to receive the device status information of each wearable rescue device among one or more wearable rescue devices uploaded by the rescue storage device.
  • the rescue storage device and the wearable rescue device are both provided with communication modules, and the rescue storage device and the wearable rescue device can establish a communication connection and transmit information through these communication modules.
  • the storage device obtains the device status information of the wearable rescue device and uploads the device status information to the network device.
  • the 106 module is used to select the target wearable rescue device corresponding to the rescue mission information from the one or more wearable rescue devices according to the device status information.
  • the network device determines one or more rescue storage devices that match the rescue site location information corresponding to the rescue mission information according to the rescue mission information, wherein the rescue storage device stores a wearable rescue device.
  • one or more wearable rescue devices corresponding to the one or more rescue storage devices may be currently unavailable. For example, if one of the wearable rescue devices has been used, the wearable rescue device is currently unavailable.
  • the network device can determine whether the wearable rescue device is currently available according to the use status information of the wearable rescue device uploaded by the rescue storage device, so as to determine from the one or more wearable rescue devices that the available wearable rescue device is Target wearable rescue equipment to ensure that the target rescuer can get the currently available wearable rescue equipment at the rescue storage equipment.
  • the 107 module is used to send the identification information of the target wearable rescue device to the user equipment.
  • the network device determines the target wearable rescue device, it sends the identification information of the target wearable rescue device to the user equipment.
  • the device further includes a 108 module (not shown), which is used to send the boot instruction information about the target wearable rescue device to the rescue storage device.
  • the network device determines the target wearable rescue device based on the device status information of the wearable rescue device, the network device sends boot instruction information to the target wearable rescue device, and the boot instruction information is used to rescue the target The person turns on the target wearable rescue equipment in advance, saving time for rescue.
  • the network device determines one or more target wearable rescue devices based on the device status information of the wearable rescue device, and sends the identification information of the one or more wearable rescue devices to the corresponding target rescuer.
  • the target rescuer determines the final target wearable rescue device from the one or more target wearable rescue devices through a confirmation operation, and sends the confirmation information to the network device, and the network device sends the confirmation information to the network device based on the confirmation information.
  • the corresponding target wearable rescue device sends start-up instruction information, and the start-up instruction information is used to turn on the target wearable rescue device in advance for the target rescuer, saving time for rescue.
  • the device status information includes at least any one of the following: power information of the wearable rescue device; startup status information of the wearable rescue device; usage status information of the wearable rescue device; Network signal information of the wearable rescue device; location information of the wearable rescue device.
  • the device status information includes power information of the wearable rescue device.
  • the network device selects available target wearable rescue devices from one or more wearable rescue devices based on the power information of the wearable rescue devices. For example, when the power information of the wearable rescue device is lower than the preset power threshold information, the network device determines that the wearable rescue device is unavailable, thereby screening the wearable from one or more wearable rescue devices Rescue equipment.
  • the device status information includes startup status information of the wearable rescue device.
  • the network device determines whether the wearable rescue device is available according to the boot status information of the wearable rescue device. For example, if the boot status information of the wearable rescue device is activated, the network device determines that the wearable rescue device is available. Wear rescue is set to unavailable. The wearable rescue device whose activation status information is not activated is determined as the target wearable rescue device.
  • the device status information includes use status information of the wearable rescue device.
  • the network device determines the target wearable rescue device from one or more wearable rescue devices according to the use state information of the wearable rescue device.
  • the use status information includes being in use and currently not being used, and the network device needs to filter out the wearable rescue devices that are not currently being used from the one or more wearable rescue devices, and then combine the wearable rescue devices The device is used as a target wearable rescue device for target rescuers.
  • the device status information includes network signal information of the wearable rescue device.
  • the network device obtains the network signal information of the network device currently used by the wearable rescue device.
  • the network signal information includes but is not limited to the signal of the network to which the wearable rescue device is currently connected. Strength information, etc. Based on the network signal information, the network device preferably uses a wearable rescue device with high signal strength as the target wearable rescue device.
  • the device status information includes location information of the wearable rescue device.
  • the network device obtains real-time location information of each wearable rescue device, and if the location information changes by a large amplitude or frequency, it is determined that the wearable rescue device is in a mobile or in use state.
  • the network device uses the wearable rescue device with fixed location information as the target wearable rescue device.
  • the device status information includes power information of the wearable rescue device; wherein, the device further includes a 109 module (not shown), and a 109 module is used to perform according to the target
  • the power information of the wearable rescue device sends charging instruction information about the target wearable rescue device to the rescue storage device storing the target wearable rescue device.
  • the network device performs charging management on the wearable rescue device by acquiring power information of the wearable rescue device.
  • the network device sends charging instruction information to the rescue storage device storing the wearable rescue device, and the rescue storage device detects the wearable
  • the rescue equipment is stored in the rescue storage device (for example, a charging port is provided in the slot for storing the wearable rescue device on the rescue storage device, and when the wearable rescue device is stored on the rescue storage device, the wearable rescue device
  • the charging port on the device is snap-connected to the charging port on the slot, the rescue storage device detects through the charging port whether a wearable rescue device is currently stored on the rescue storage device), and further, the rescue storage device is based on the charging it receives
  • the instruction information is used to charge the wearable rescue device through the charging port.
  • the network device when the charge capacity of the wearable rescue device reaches 100%, the network device sends a power-off instruction message to the rescue storage device.
  • the intelligent charging management of the rescue storage device through the network device can ensure that the wearable rescue device stored in the rescue storage device is always in a state of sufficient power so that the rescuer can take it at any time.
  • the device further includes a one-to-one module (not shown), a one-to-two module (not shown), and a one-to-three module (not shown).
  • the one-to-one module is used to receive the verification request information sent by the rescue storage device, wherein the verification request information includes the verification basis information about the target rescuer; the one-to-two module is used to verify the verification basis Information execution verification processing; a one-to-three module for sending corresponding verification result information or unlocking instruction information to the rescue storage device.
  • the rescue storage device locks the wearable rescue device in the rescue storage device through an electronic lock or a mechanical lock.
  • the target rescuer can send verification request information to the corresponding network device through the rescue storage device, and the network device receives The verification request information performs verification processing based on the verification basis information in the verification request information.
  • the verification basis information includes, but is not limited to, authorization information received by the user equipment from the network device, and face image information of the target rescuer.
  • the rescue storage device obtains the face image information of the target rescuer A who came to fetch the wearable rescue device through the camera device, and the rescue storage device sends verification request information to the corresponding network device, where the verification request information includes information about The face image information of the target rescuer A.
  • the network device receives the verification request information, and performs verification processing on the verification basis information (face image information) in the verification request information.
  • a rescuer information database is provided in the network device, and the rescuer information database includes multiple For the relevant information of a rescuer (for example, name, number, face image information), the network device performs query matching in the rescuer information database according to the face image information of the target rescuer A in the verification request information.
  • the network device sends the verification result information that the verification is successful to the rescue storage device, or the network device directly sends the unlock instruction information to the rescue storage device to control the rescue storage device to automatically unlock, and the target rescuer can The wearable rescue equipment stored in the rescue storage equipment is smoothly removed.
  • the device further includes a one-to-four module (not shown), and a one-to-four module is used to send the verification basis information corresponding to the rescue storage device to the rescue storage device.
  • the verification basis information includes, but is not limited to, authorization information (for example, a password, an authorization code, a QR code, etc.).
  • the network device stores authorization information of multiple rescue storage devices, and the authorization information is used to unlock the corresponding rescue storage devices.
  • the network device After determining the rescue storage device and the target rescuer, the network device sends the verification basis information corresponding to the rescue storage device (for example, password, authorization code, QR code and other authorization information) to the user device corresponding to the target rescuer, At the same time, the network device sends the verification basis information to the rescue storage device, and the user equipment and the rescue storage device receive the same verification basis information so that the target rescuer can use the verification basis information to unlock and take away from the rescue storage device Wearable rescue equipment.
  • the verification basis information corresponding to the rescue storage device for example, password, authorization code, QR code and other authorization information
  • the verification basis information includes at least any one of the following: authorization information received by the user equipment from the network device, and the authorization information is used to authorize the target rescuer to deposit from the rescue Extract wearable rescue equipment from the equipment; face image information of the target rescuer; number information of the target rescuer; rescuer identification information of the target rescuer.
  • the network device performs verification processing according to the verification basis information sent by the rescue storage device, and sends verification result information or unlock instruction information to the rescue storage device according to the verification result; in other embodiments, the network device will rescue The verification basis information of the storage device is sent to the corresponding user equipment of the target rescuer, so that the target rescuer can directly use the verification basis information to unlock the rescue storage device.
  • the rescuer inputs the above verification basis information on the rescue storage device, and the rescue storage device checks The verification is based on the information, and if the verification is passed, the wearable rescue device is unlocked for rescue personnel to use.
  • the verification basis information described above is only an example, and other existing or future verification basis information that can be applied to this application is also included in the scope of protection of this application. And included here by reference.
  • the present application facilitates the target rescuer to successfully extract the wearable rescue device stored in the rescue storage device.
  • the verification basis information includes authorization information received by the user equipment from the network device, and the authorization information is used to authorize the target rescuer to extract a wearable rescue device from the rescue storage device.
  • the authorization information includes, but is not limited to, a password, a QR code, an authorization code, and the like.
  • the network device After determining the rescue storage device, the network device sends the authorization information (for example, unlocking password) corresponding to the rescue storage device to the user device corresponding to the target rescuer.
  • the target rescuer opens the lock on the rescue storage device by inputting the authorization information on the rescue storage device, thereby successfully extracting the wearable rescue device stored in the rescue storage device.
  • the verification basis information includes face image information of the target rescuer.
  • a rescuer information database is provided in the network device, and the rescuer information database stores multiple rescuers and related information (for example, face image information, etc.) of each rescuer.
  • the rescue storage device takes the face image information of the target rescuer using the wearable rescue device before shooting, and performs face recognition on the face image information to extract the identity information of the previous target rescuer.
  • the rescuer information database is queried for matching facial image information. If there is a rescuer in the rescuer information database that matches the target rescuer's facial image information, then Confirm that the verification is successful.
  • the verification basis information includes serial number information of the target rescuer.
  • a rescuer information database is provided in the network device, and the rescuer information database stores multiple rescuers and related information (for example, number information, etc.) of each rescuer.
  • the rescuer will wear a brand with rescuer number information on his body or print the rescuer number information corresponding to the rescuer on specific clothes worn by the rescuer.
  • the rescue storage device extracts the number information of the target rescuer who comes to use the wearable rescue device through the camera device, and searches the rescuer information database for the matching number information according to the number information. If there is a rescuer matching the number of the target rescuer in the rescuer information database, it is determined that the verification is successful.
  • the verification basis information includes rescuer identification information of the target rescuer.
  • the rescuer identification information includes, but is not limited to, a rescuer logo pattern, a rescuer logo pattern, and the like.
  • the rescue storage device extracts the rescuer identification information of the target rescuer through the camera device (for example, the clothes that the rescuer wears are printed on There is rescuer identification information, or the rescuer wears an identification card printed with the rescuer identification information), and the rescuer identification information is sent to the network device.
  • the network device verifies whether the rescuer identification information matches the pre-stored rescuer identification information. If it matches, the verification is determined to be successful.
  • the one zero three module includes one zero three one module (not shown) and one zero three two module (not shown).
  • the one zero three one module is used for the location information of the rescue site. Determine the target rescuer who processes the rescue mission information, wherein the distance between the current location information of the target rescuer and the rescue site location information is less than or equal to the predetermined distance threshold information; a zero32 module for Sending the rescue mission information and the location information of the rescue storage device to the user equipment corresponding to the target rescuer.
  • the current position information of multiple rescuers is obtained based on a combination of one or more of positioning technologies such as GPS positioning, Beidou satellite positioning, WIFI network positioning, or base station positioning, and the current position information of multiple rescuers is obtained based on the rescue site position information.
  • the plurality of rescuers query the target rescuer located near the location information of the rescue site, so that the rescuer can rush to the rescue site in time for rescue. Further, the network device sends the rescue mission information it receives and the searched location information of the rescue storage device to one or more target rescuers located near the rescue site.
  • the one zero three module includes one zero three three module (not shown), one zero three four module (not shown), one zero three five module (not shown), one zero three six A module (not shown), a one-zero-three-three module, is used to send the rescue mission information to one or more candidate rescuers, where the current position information of each candidate rescuer and the rescue site position information The distance is less than or equal to the predetermined distance threshold information; one zero three four module is used to receive at least one candidate rescuer among the one or more candidate rescuers confirming feedback information on the rescue mission information; one zero three five The module is used to select the target rescuer who determines the rescue mission information from the at least one candidate rescuer; the one hundred and thirty-six module is used to send the location information of the rescue storage device to the target rescuer.
  • the network device determines the final target rescuer by receiving confirmation feedback information returned by the candidate rescuer based on the rescue mission information. For example, the network device receives rescue mission information sent by the caller, and searches for one or more candidate rescuers located near the rescue site location information based on the rescue site location information corresponding to the rescue mission information, wherein the rescue site location information is determined 1.
  • the rescuer's current location information please refer to the description of the above-mentioned related embodiments, which is not repeated here, and is included here by reference.
  • the candidate rescuer returns confirmation feedback information to the network device based on the received rescue mission information. For example, the candidate rescuer returns confirmation feedback information to the network device when it is convenient to go to the rescue site for rescue.
  • the network device determines the target rescuer to which the rescue mission information ultimately corresponds based on the received confirmation feedback information. Further, the network device sends the found location information of the rescue storage device to the user device corresponding to the target rescuer sending the confirmation feedback information.
  • Figure 8 shows a rescue storage device according to an embodiment of the present application, wherein the rescue storage device is used to store one or more wearable rescue devices, and the rescue storage device includes A charging module for charging a device.
  • the device includes a module 20 and a module 20.
  • the module 20 is used to detect and obtain the device status of each of the one or more wearable rescue devices Information; 201 module, used to report the equipment status information to the corresponding network equipment.
  • the rescue storage device is used to store wearable rescue devices.
  • the rescue storage device safely stores the wearable rescue device through an electronic lock or a mechanical lock.
  • the rescue storage device is provided with a charging module for charging the wearable rescue device.
  • both the rescue storage device and the wearable rescue device are provided with a communication module for information transfer between the two.
  • the wearable rescue device reports its own device status information to the corresponding rescue storage device.
  • the rescue storage device checks the device status information of the wearable rescue device, and reports the device status information to the corresponding network device for the
  • the network device performs device management on the corresponding wearable rescue device according to the device status information, and determines the available target wearable rescue device from the found one or more wearable rescue devices.
  • the device further includes a 203 module (not shown) and a 204 module (not shown).
  • the 203 module is used to receive the one or the third module sent by the network device.
  • the boot instruction information of the target wearable rescue device among the plurality of wearable rescue devices; the 204 module is used to perform a boot operation on the target wearable rescue device according to the boot instruction information.
  • the network device determines the target wearable rescue device based on the device status information of the wearable rescue device
  • the network device sends the boot instruction information to the rescue storage device corresponding to the target wearable rescue device, and the rescue storage device Receiving the boot instruction information, and performing a boot operation on the target wearable rescue device based on the boot instruction information, is used to turn on the target wearable rescue device in advance for the target rescuer to save rescue time.
  • the device further includes a 205 module (not shown) and a 206 module (not shown).
  • the 205 module is used to receive information about the wearable rescue device sent by the network device.
  • the charging instruction information; the 206 module is used to perform charging operations on the wearable rescue device according to the charging instruction information.
  • the network device obtains the device status information of the corresponding wearable rescue device (for example, the wearable rescue device stored in the rescue storage device) reported by the rescue storage device.
  • the device status information includes power information of the wearable rescue device
  • the network device detects whether the power information is lower than a preset power threshold information, and if the power information of the wearable rescue device is lower than the power information Threshold information, the network device sends charging instruction information to the rescue storage device storing the wearable rescue device.
  • the rescue storage device After receiving the charging instruction information, the rescue storage device performs a charging operation on the wearable rescue device to ensure that the wearable rescue device stored on the rescue storage device is always in a state of sufficient power.
  • the device further includes a 20-seven module (not shown), a 20-eight module (not shown), and a 20-nine module (not shown).
  • the 20-seven module is used to correspond to
  • the network device sends verification request information, where the verification request information includes verification basis information about the target rescuer; the 2008 module is used to receive corresponding verification result information or unlock instruction information sent by the network device ; 209 module, used to perform unlocking operations according to the verification result information or unlocking instruction information.
  • the rescue storage device safely stores the wearable rescue device through an electronic lock or a mechanical lock. In order to realize the function of smart unlocking, the rescue storage device verifies unlocking by sending verification request information to the corresponding network device.
  • the verification basis information includes, but is not limited to, authorization information (for example, a password, an authorization code, a QR code, etc.) sent by the network device to the target rescuer.
  • the target rescuer sends the verification request information to the network device by inputting the authorization information on the rescue storage device, where the verification request information includes the authorization information.
  • the network device receives the verification request information, and determines whether to send unlock instruction information to the rescue storage device according to the authorization information in the verification request information. If the authorization information corresponds to the authorization information of the rescue storage device sent by the network device to the target rescuer, the verification is successful, and the network device sends the successful verification result information to the rescue storage device, or the network device directly sends the rescuer to the rescuer.
  • the storage device sends the unlock command message.
  • the rescue storage device receives the verification result information or unlock instruction information of the successful verification, and executes the unlock operation.
  • the device further includes a two-to-one module (not shown), and the two-to-one module is configured to receive verification basis information corresponding to the rescue storage device sent by the network device.
  • the verification basis information includes authorization information corresponding to the rescue storage device (for example, a password, a QR code, an authorization code, etc.), and the authorization information is used to unlock the rescue storage device so that the rescuer can succeed. Take out the wearable rescue device stored in the rescue storage device.
  • the network device sends authorization information corresponding to the rescue storage device to the rescue storage device, and at the same time, the network device sends the authorization information to the user equipment corresponding to the target rescuer.
  • the target rescuer performs unlock verification by inputting the authorization information on the rescue storage device.
  • the device further includes a two-to-two module (not shown) and a two-to-three module (not shown).
  • the two-to-two module is used to receive verification request information, wherein the verification request information Including the verification basis information about the target rescuer; the two to thirteen modules are used to perform the unlocking operation according to the verification basis information.
  • the rescue storage device receives verification request information, where, in some embodiments, the verification basis information includes information obtained by the rescue storage device through a camera device or a face authentication device about coming to extract the wearable rescue device Face image information, rescuer identification information or number information of the target rescuer; in other embodiments, the verification basis information includes authorization information input by the target rescuer who comes to extract the wearable rescue device.
  • the network device sends the aforementioned verification basis information about the target rescuer to the rescue storage device, and the rescue storage device makes a matching judgment based on the verification basis information sent by the network device and the verification basis information about the target rescuer acquired by itself, If the match is successful, the unlock operation is executed.
  • FIG. 9 shows a user equipment according to an embodiment of the present application, wherein the equipment includes a 301 module and a 302 module, and the 301 module is used to receive rescue mission information sent by a corresponding network device;
  • the 302 module is used to receive the location information of the rescue storage equipment corresponding to the rescue mission information.
  • the user equipment is a user equipment corresponding to the target rescuer.
  • the network device sends the rescue mission information sent by the caller to the corresponding one or more target rescuers.
  • the target rescuer receives the rescue mission information through its corresponding user equipment.
  • the network device determines one or more rescue storage devices located near the location information of the rescue site based on the rescue mission information, it sends the location information of the one or more rescue storage devices to the user device, and the The user equipment receives the location information, and the target rescuer selects the one that is most convenient to extract the wearable rescue device according to the location information about one or more rescue storage devices presented by the user equipment.
  • the device further includes a three zero three module (not shown).
  • the three zero three module is used to send confirmation feedback of the rescue mission information to the corresponding network device based on the confirmation operation of the target rescuer. information.
  • one or more rescuers receive rescue mission information sent by the network device, and the one or more rescuers determine to participate in the rescue activity by sending confirmation feedback information to the network device. Therefore, the target rescuer corresponding to the rescue mission information is determined.
  • the device further includes a three zero four module (not shown), which is used to receive the identification information of the target wearable rescue device corresponding to the rescue mission information sent by the corresponding network device .
  • the network device sends the identification information of the target wearable rescue device corresponding to the rescue mission information to the user equipment corresponding to the target rescuer.
  • the identification information of the target wearable rescue device (for example, the serial number of the target wearable rescue device), in some embodiments, each wearable rescue device has its corresponding
  • the identification information of the wearable rescue device may correspond to the group number or device number to which the wearable rescue device belongs, so as to facilitate the management of multiple wearable rescue devices; in some embodiments, the identification information of each wearable rescue device There is a mapping relationship with the rescue storage device storing the wearable rescue device.
  • the network device determines the target wearable rescue device through the device status information of the wearable rescue device, and then determines the corresponding wearable rescue device according to the identification information of the target wearable rescue device Rescue storage equipment, so that rescuers can find the wearable rescue equipment through the location information of the rescue storage equipment.
  • the wearable rescue device is safely managed through the rescue storage device, and the intelligent management of the rescue storage device is realized based on the network device.
  • the device further includes a three-nine-five module (not shown).
  • the three-nine-five module is used to receive authorization information about the rescue storage device sent by the corresponding network device, wherein the authorization information is To authorize the target rescuer to extract a wearable rescue device from the rescue storage device.
  • the authorization information includes, but is not limited to, a password, a QR code, an authorization code, and the like.
  • the network device After determining the rescue storage device, the network device sends the authorization information (for example, unlocking password) corresponding to the rescue storage device to the user device corresponding to the target rescuer.
  • the target rescuer opens the lock on the rescue storage device by inputting the authorization information on the rescue storage device, thereby successfully extracting the wearable rescue device stored in the rescue storage device.
  • the present application also provides a computer-readable storage medium that stores computer code, and when the computer code is executed, the method described in any of the preceding items is executed.
  • the present application also provides a computer program product.
  • the computer program product is executed by a computer device, the method described in any of the preceding items is executed.
  • This application also provides a computer device, which includes:
  • One or more processors are One or more processors;
  • Memory used to store one or more computer programs
  • the one or more processors When the one or more computer programs are executed by the one or more processors, the one or more processors are caused to implement the method as described in any one of the preceding items.
  • Figure 10 shows an exemplary system that can be used to implement the various embodiments described in this application
  • the system 300 can be used as any device in each of the described embodiments.
  • the system 300 may include one or more computer-readable media having instructions (for example, system memory or NVM/storage device 320) and be coupled with the one or more computer-readable media and configured to execute
  • the instructions are one or more processors (eg, processor(s) 305) that implement modules to perform the actions described in this application.
  • system control module 310 may include any suitable interface controller to provide at least one of the processor(s) 305 and/or any suitable device or component in communication with the system control module 310 Any appropriate interface.
  • the system control module 310 may include a memory controller module 330 to provide an interface to the system memory 315.
  • the memory controller module 330 may be a hardware module, a software module, and/or a firmware module.
  • the system memory 315 may be used to load and store data and/or instructions for the system 300, for example.
  • the system memory 315 may include any suitable volatile memory, for example, a suitable DRAM.
  • the system memory 315 may include a double data rate type quad synchronous dynamic random access memory (DDR4 SDRAM).
  • DDR4 SDRAM double data rate type quad synchronous dynamic random access memory
  • system control module 310 may include one or more input/output (I/O) controllers to provide an interface to the NVM/storage device 320 and the communication interface(s) 325.
  • I/O input/output
  • NVM/storage device 320 can be used to store data and/or instructions.
  • the NVM/storage device 320 may include any suitable non-volatile memory (e.g., flash memory) and/or may include any suitable non-volatile storage device(s) (e.g., one or more hard disk drives (HDD), one or more compact disc (CD) drives and/or one or more digital versatile disc (DVD) drives).
  • suitable non-volatile memory e.g., flash memory
  • suitable non-volatile storage device(s) e.g., one or more hard disk drives (HDD), one or more compact disc (CD) drives and/or one or more digital versatile disc (DVD) drives.
  • HDD hard disk drives
  • CD compact disc
  • DVD digital versatile disc
  • the NVM/storage device 320 may include storage resources that are physically part of the device on which the system 300 is installed, or it may be accessed by the device and not necessarily be a part of the device. For example, the NVM/storage device 320 may be accessed via the communication interface(s) 325 through the network.
  • the communication interface(s) 325 may provide an interface for the system 300 to communicate through one or more networks and/or with any other suitable devices.
  • the system 300 can wirelessly communicate with one or more components of a wireless network according to any of one or more wireless network standards and/or protocols.
  • At least one of the processor(s) 305 may be packaged with the logic of one or more controllers of the system control module 310 (eg, the memory controller module 330). For one embodiment, at least one of the processor(s) 305 may be packaged with the logic of one or more controllers of the system control module 310 to form a system in package (SiP). For one embodiment, at least one of the processor(s) 305 may be integrated with the logic of one or more controllers of the system control module 310 on the same mold. For one embodiment, at least one of the processor(s) 305 may be integrated with the logic of one or more controllers of the system control module 310 on the same mold to form a system on chip (SoC).
  • SoC system on chip
  • the system 300 may be, but is not limited to, a server, a workstation, a desktop computing device, or a mobile computing device (for example, a laptop computing device, a handheld computing device, a tablet computer, a netbook, etc.).
  • the system 300 may have more or fewer components and/or different architectures.
  • the system 300 includes one or more cameras, keyboards, liquid crystal display (LCD) screens (including touchscreen displays), non-volatile memory ports, multiple antennas, graphics chips, application specific integrated circuits ( ASIC) and speakers.
  • LCD liquid crystal display
  • ASIC application specific integrated circuits
  • this application can be implemented in software and/or a combination of software and hardware, for example, it can be implemented by an application specific integrated circuit (ASIC), a general purpose computer or any other similar hardware device.
  • the software program of the present application may be executed by a processor to realize the steps or functions described above.
  • the software program (including related data structure) of the present application can be stored in a computer-readable recording medium, such as RAM memory, magnetic or optical drive or floppy disk and similar devices.
  • some steps or functions of the present application may be implemented by hardware, for example, as a circuit that cooperates with a processor to execute each step or function.
  • the computer program instructions in the computer-readable medium include but are not limited to source files, executable files, installation package files, etc.
  • the manner in which computer program instructions are executed by the computer includes but not Limited to: the computer directly executes the instruction, or the computer compiles the instruction and then executes the corresponding compiled program, or the computer reads and executes the instruction, or the computer reads and installs the instruction before executing the corresponding post-installation program.
  • the computer-readable medium may be any available computer-readable storage medium or communication medium that can be accessed by a computer.
  • Communication media includes media by which communication signals containing, for example, computer-readable instructions, data structures, program modules, or other data are transmitted from one system to another system.
  • Communication media can include conductive transmission media (such as cables and wires (for example, optical fiber, coaxial, etc.)) and wireless (unguided transmission) media that can propagate energy waves, such as sound, electromagnetic, RF, microwave, and infrared .
  • Computer readable instructions, data structures, program modules or other data may be embodied as, for example, a modulated data signal in a wireless medium such as a carrier wave or similar mechanism such as embodied as part of spread spectrum technology.
  • modulated data signal refers to a signal whose one or more characteristics have been altered or set in such a way as to encode information in the signal. Modulation can be analog, digital or hybrid modulation techniques.
  • a computer-readable storage medium may include volatile, non-volatile, nonvolatile, and nonvolatile, and may be implemented in any method or technology for storing information such as computer-readable instructions, data structures, program modules or other data Removable and non-removable media.
  • computer-readable storage media include, but are not limited to, volatile memory, such as random access memory (RAM, DRAM, SRAM); and non-volatile memory, such as flash memory, various read-only memories (ROM, PROM, EPROM) , EEPROM), magnetic and ferromagnetic/ferroelectric memory (MRAM, FeRAM); and magnetic and optical storage devices (hard disks, tapes, CDs, DVDs); or other currently known media or future developments that can be stored for computer systems Computer readable information/data used.
  • volatile memory such as random access memory (RAM, DRAM, SRAM
  • non-volatile memory such as flash memory, various read-only memories (ROM, PROM, EPROM) , EEPROM), magnetic and ferromagnetic/ferroelectric memory (MRAM, FeRAM); and magnetic and optical storage devices (hard disks, tapes, CDs, DVDs); or other currently known media or future developments that can be stored for computer systems Computer readable information/data used.
  • volatile memory such as random access memory (RAM, DRAM,
  • an embodiment according to the present application includes a device including a memory for storing computer program instructions and a processor for executing the program instructions, wherein, when the computer program instructions are executed by the processor, trigger
  • the operation of the device is based on the aforementioned methods and/or technical solutions according to multiple embodiments of the present application.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Alarm Systems (AREA)

Abstract

本申请的目的是提供一种救援方法,其中,该方法包括:接收救援任务信息;根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备;将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。本申请为目标救援者基于该位置信息找到救援存放设备,并取走存放在该救援存放设备中的可穿戴救援设备。

Description

一种救援方法与设备 技术领域
本申请涉及救援领域,尤其涉及一种救援技术。
背景技术
在救援过程中,对被救援者进行及时准确的救援是救援成功的关键。但是现有技术中,缺少能够在紧急情况发生时为被救援者呼叫具有一定的救援能力的救援者的方法,也不能够为具有参与救援的救援者及时提供救援所需的设备。因此,救援的效率以及成功率难以保证。
发明内容
本申请的一个目的是提供一种救援方法与设备。
根据本申请的一个方面,提供了一种在网络设备端的救援方法,其中,该方法包括:
接收救援任务信息;
根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备;
将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。
根据本申请的另一个方面,提供了一种在救援存放设备端的救援方法,其中,所述救援存放设备用于存放一个或多个可穿戴救援设备,所述救援存放设备包括用于对所述可穿戴救援设备进行充电的充电模块,所述方法包括:
检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;
将所述设备状况信息上报给对应的网络设备。
根据本申请的又一个方面,提供了一种在用户设备端的救援方法,其中,所述方法 包括:
接收对应的网络设备发送的救援任务信息;
接收所述救援任务信息对应的救援存放设备的位置信息。
根据本申请的一个方面,提供了一种网络设备,该设备包括:
一零一模块,用于接收救援任务信息;
一零二模块,用于根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备;
一零三模块,用于将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。
根据本申请的另一个方面,提供了一种救援存放设备,其中,所述救援存放设备用于存放一个或多个可穿戴救援设备,所述救援存放设备包括用于对所述可穿戴救援设备进行充电的充电模块,所述设备包括:
二零一模块,用于检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;
二零二模块,用于将所述设备状况信息上报给对应的网络设备。
根据本申请的又一个方面,提供了一种用户设备,其中,所述设备包括:
三零一模块,用于接收对应的网络设备发送的救援任务信息;
三零二模块,用于接收所述救援任务信息对应的救援存放设备的位置信息。
根据本申请的一个方面,提供了一种救援方法,其中,所述方法包括:
网络设备接收救援任务信息,根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备;
所述用户设备接收所述网络设备发送的救援任务信息以及所述救援任务信息对应的救援存放设备的位置信息。
根据本申请的另一个方面,提供了一种救援方法,其中,所述方法包括:
救援存放设备端检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备 的设备状况信息,将所述设备状况信息上报给对应的网络设备;
所述网络设备接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备,将所述目标可穿戴救援设备的标识信息发送至所述用户设备;
所述用户设备接收所述网络设备发送的所述救援任务信息对应的目标可穿戴救援设备的标识信息。
根据本申请的一个方面,提供了一种救援设备,其中,该设备包括:
处理器;以及
被安排成存储计算机可执行指令的存储器,所述可执行指令在被执行时使所述处理器执行以上任一项所述方法的操作。
根据本申请的另一个方面,提供了一种存储指令的计算机可读介质,所述指令在被执行时使得系统进行以上任一项所述方法的操作。
与现有技术相比,本申请通过根据救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询与该救援现场位置信息相匹配的救援存放设备,并将该救援存放设备的位置信息发送给目标救援者对应的用户设备;从而支持了为目标救援者基于该位置信息找到救援存放设备,并取走存放在该救援存放设备中的可穿戴救援设备。并且,将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备,从而支持为呼救者呼叫救援者前来救援。
进一步地,本申请通过救援存放设备对可穿戴救援设备进行安全管理,实现了讲可穿戴救援设备安全投放到公共场所的目的,方便救援者在需要的时候及时提取到可用的可穿戴救援设备。
附图说明
通过阅读参照以下附图所作的对非限制性实施例所作的详细描述,本申请的其它特征、目的和优点将会变得更明显:
图1示出根据本申请一个实施例的一种救援的系统的拓扑结构;
图2示出根据本申请一个实施例的一种救援方法的方法流程;
图3示出根据本申请另一个实施例的一种救援方法的方法流程;
图4示出根据本申请另一个实施例的一种在网络设备的救援方法的方法流程;
图5示出根据本申请另一个实施例的一种在救援存放设备端的救援方法的方法流程;
图6示出根据本申请另一个实施例的一种在用户设备端的救援方法的方法流程;
图7示出根据本申请另一个实施例的一种网络设备的功能模块;
图8示出根据本申请另一个实施例的一种救援存放设备的功能模块;
图9示出根据本申请另一个实施例的一种用户设备的功能模块;
图10示出可被用于实施本申请中所述的各个实施例的示例性系统的功能模块。
附图中相同或相似的附图标记代表相同或相似的部件。
具体实施方式
下面结合附图对本申请作进一步详细描述。
在本申请一个典型的配置中,终端、服务网络的设备和可信方均包括一个或多个处理器(例如,中央处理器(Central Processing Unit,CPU))、输入/输出接口、网络接口和内存。
内存可能包括计算机可读介质中的非永久性存储器,随机存取存储器(Random Access Memory,RAM)和/或非易失性内存等形式,如只读存储器(Read Only Memory,ROM)或闪存(Flash Memory)。内存是计算机可读介质的示例。
计算机可读介质包括永久性和非永久性、可移动和非可移动媒体可以由任何方法或技术来实现信息存储。信息可以是计算机可读指令、数据结构、程序的模块或其他数据。计算机的存储介质的例子包括,但不限于相变内存(Phase-Change Memory,PCM)、可编程随机存取存储器(Programmable Random Access Memory,PRAM)、静态随机存取存储器(Static Random-Access Memory,SRAM)、动态随机存取存储器(Dynamic Random Access Memory,DRAM)、其他类型的随机存取存储器(RAM)、只读存储器(ROM)、电可擦除可编程只读存储器(Electrically-Erasable Programmable Read-Only Memory,EEPROM)、快闪记忆体或其他内存技术、只读光盘只读存储器(Compact Disc Read-Only Memory,CD-ROM)、数字多功能光盘(Digital Versatile Disc,DVD)或其他光学存储、磁盒式磁带,磁带磁盘存储或其他磁 性存储设备或任何其他非传输介质,可用于存储可以被计算设备访问的信息。
本申请所指设备包括但不限于用户设备、网络设备、或用户设备与网络设备通过网络相集成所构成的设备。所述用户设备包括但不限于任何一种可与用户进行人机交互(例如通过触摸板进行人机交互)的移动电子产品,例如智能手机、平板电脑等,所述移动电子产品可以采用任意操作系统,如android操作系统、iOS操作系统等。其中,所述网络设备包括一种能够按照事先设定或存储的指令,自动进行数值计算和信息处理的电子设备,其硬件包括但不限于微处理器、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程逻辑器件(Programmable Logic Device,PLD)、现场可编程门阵列(Field Programmable Gate Array,FPGA)、数字信号处理器(Digital Signal Processor,DSP)、嵌入式设备等。所述网络设备包括但不限于计算机、网络主机、单个网络服务器、多个网络服务器集或多个服务器构成的云;在此,云由基于云计算(Cloud Computing)的大量计算机或网络服务器构成,其中,云计算是分布式计算的一种,由一群松散耦合的计算机集组成的一个虚拟超级计算机。所述网络包括但不限于互联网、广域网、城域网、局域网、VPN网络、无线自组织网络(Ad Hoc网络)等。优选地,所述设备还可以是运行于所述用户设备、网络设备、或用户设备与网络设备、网络设备、触摸终端或网络设备与触摸终端通过网络相集成所构成的设备上的程序。
当然,本领域技术人员应能理解上述设备仅为举例,其他现有的或今后可能出现的设备如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
在本申请的描述中,“多个”的含义是两个或者更多,除非另有明确具体的限定。
根据本申请的一个方面,提供了一种用于实施救援方法的系统。参考图1,该系统包括网络设备、可存放智能眼镜或智能头盔等可穿戴救援设备的救援存放设备以及用户设备。在一些实施例中,救援存放设备与网络设备之间、用户设备与网络设备之间通过相应的通信连接(例如,以有线或者无线等的方式建立的通信连接)进行信息、指令等的传递。其中,在一些实施例中,图1中的用户设备为救援者所使用的用户设备,救援者通过该用户设备与网络设备间建立通信,以实现信息或者指令的传递。图1中的呼救者可通过用户设备向网络设备发送救援任务信息,所述救援任务信息作为整个救援系统的触发条件,所述呼救者包括但不限于需要被救援的用户或者该用户附近的其他用户。救援存放设备用于安全存放可穿戴救援设备,在一些实施例中,所述救援存放设备是设置有包括但不限于电子锁或者机械锁的智 能救援存放设备,所述可穿戴救援设备是包括但不限于智能眼镜、智能头盔等。其中,所述救援存放设备以及可穿戴救援设备均包括通信模块,这些通信模块用于实现救援存放设备以及可穿戴救援设备之间的通信,或者用于该救援存放设备或者可穿戴救援设备分别与网络设备之间进行通信连接。在一些实施例中,所述可穿戴救援设备用于向后台传送通过摄像装置拍摄的救援现场信息,以通过后台协助现场救援。在一些实施例中,所述救援存放设备将存放在其中的可穿戴救援设备的设备状况信息上报到网络设备,所述网络设备向所述救援存放设备发送指令信息,以实现对救援存放设备的智能控制。在一些实施例中,所述用户设备包括但不限于手机、平板、笔记本电脑等计算设备。
在一些实施例中,基于上述系统,本申请还公开了一种救援方法。参考图2,该方法包括以下步骤:
网络设备接收救援任务信息,根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备;
所述用户设备接收所述网络设备发送的救援任务信息以及所述救援任务信息对应的救援存放设备的位置信息。
在本实施例中,网络设备与用户设备间进行通信,其中,所述用户设备为救援者所使用的用户设备。救援者通过该用户设备接收网络设备发送的救援任务信息以及该救援任务信息对应的救援存放设备的位置信息,在一些实施例中,所述用户设备呈现所述救援存放设备的位置信息,以便于救援者基于该位置信息查找到救援存放设备,并取走使用存放在该救援存放设备中的可穿戴救援设备,该救援者佩戴该可穿戴救援设备到救援现场进行救援。本实施例中,救援者通过其对应的用户设备接收网络设备发送的救援存放设备的位置信息,基于该位置信息,救援者可顺利找到存放可穿戴救援设备的救援存放设备,通过佩戴该可穿戴救援设备投入到救援现场中,可大大增加救援的成功率。
在另一些实施例中,基于上述系统,本申请还公开了一种救援方法。参考图3,该方法包括以下步骤:
救援存放设备端检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备 的设备状况信息,将所述设备状况信息上报给对应的网络设备;
所述网络设备接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备,将所述目标可穿戴救援设备的标识信息发送至所述用户设备;
所述用户设备接收所述网络设备发送的所述救援任务信息对应的目标可穿戴救援设备的标识信息。
在本实施例中,网络设备分别与救援存放设备以及用户设备进行通信连接。救援存放设备获取存放在其中的可穿戴救援设备的设备状况信息,例如,该可穿戴救援设备以及救援存放设备分别设置有通信模块,可穿戴救援设备将自身的设备状况信息上报到对应的救援存放设备中,该救援存放设备将该设备状况信息上报给网络设备。该网络设备接收该设备状况信息后,根据该设备状况信息从一个或多个可穿戴救援设备中确定目标可穿戴救援设备,例如,可穿戴救援设备的设备状况信息包括该设备的电量信息,网络设备中预设电量阈值信息,当该电量信息低于或者等于该电量阈值信息时,网络设备向该可穿戴救援设备对应的救援存放设备发送充电指令信息,以控制该救援存放设备对该可穿戴救援设备进行充电操作。网络设备确定目标可穿戴救援设备后,将该目标可穿戴救援设备的标识信息(例如,该目标可穿戴救援设备的序列号)发送给该目标救援者对应的用户设备,在一些实施例中,每个可穿戴救援设备有其对应的标识信息,该标识信息可对应该可穿戴救援设备所属的组别号或者设备编号,以便于对多个可穿戴救援设备进行管理;在一些实施例中,每个可穿戴救援设备的标识信息与存放该可穿戴救援设备的救援存放设备间存在映射关系,网络设备通过可穿戴救援设备的设备状况信息确定目标可穿戴救援设备,进而根据该目标可穿戴救援设备的标识信息确定对应的救援存放设备,以便于救援者通过该救援存放设备的位置信息找到该可穿戴救援设备。在本实施例中,通过救援存放设备对可穿戴救援设备进行安全管理,并且,基于网络设备实现了对救援存放设备的智能管理。
在一些实施例中,所述设备状况信息包括以下至少任一项:
所述可穿戴救援设备的电量信息;
所述可穿戴救援设备的启动状态信息;
所述可穿戴救援设备的使用状态信息;
所述可穿戴救援设备的网络信号信息;
所述可穿戴救援设备的位置信息。
以下分别就网络设备、救援存放设备以及用户设备三个方面,对上述方法进行详细展开描述。
从上述网络设备的角度来说,本申请还公开了一种在网络设备端的救援方法。参考图4,该方法包括步骤S101、步骤S102以及步骤S103,在步骤S101中,网络设备接收救援任务信息;在步骤S102中,网络设备根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备;在步骤S103中,网络设备将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。在一些实施例中,所述救援任务信息作为在网络设备端实现本申请的救援方法的触发条件,例如,所述救援任务信息包括但不限于呼救请求,呼救者通过其对应的用户设备(例如其使用的手机或其他终端设备)向网络设备发送呼救请求。在一些实施例中,所述救援现场为需要实施救援的现场,例如,赛事现场、火灾现场等。在一些实施例中,网络设备中设置有救援存放设备信息库,所述救援存放设备信息库中包括多个救援存放设备以及每个救援存放设备的位置信息。在一些实施例中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,所述可穿戴救援设备包括但不限于智能眼镜、智能头盔等。
具体而言,在步骤S101中,网络设备接收救援任务信息。在一些实施例中,该救援任务信息是由呼救者通过其对应的用户设备发送的,其中,在一些实施例中,该呼救者是救援现场中需要被救助的人员(例如,受伤人员);在另一些实施例中,该呼救者是位于救援现场中除了需要被救助的人员以外的其他人员,例如,当该其他人员发现有需要救援的情况发生时,通过其对应的用户设备发送救援任务信息,该网络设备接收该救援任务信息。
在步骤S102中,网络设备根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备。在一些实施例中,网络设备通过确定发送该救援任务信息的用户的位置信息来确定该救援任务信息对应的救援现场位置信息,例如,基于GPS定位、北斗卫星定位、WIFI网络定位或者基站定位等 定位技术中的一项或者多项的结合来确定发送该救援任务信息的用户的位置信息,通过该用户的位置信息来确定救援现场位置信息;在另一些实施例中,所述救援任务信息中包括救援现场的位置信息,例如,用户向网络设备发送的救援任务信息中包括救援现场的位置信息。在一些实施例中,网络设备基于该救援现场位置信息在救援存放设备信息库中查询与该救援现场位置信息相匹配的救援存放设备,例如,该救援存放设备信息库中存储有多个救援存放设备的位置信息,网络设备根据接收到的救援任务信息对应的救援现场位置信息在该救援存放设备信息库中查找位于该救援现场位置附近的、或者距离该救援现场位置最近的救援存放设备。在一些实施例中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,例如,该救援存放设备为设置有电子锁或者机械锁的智能救援存放设备,所述可穿戴救援设备锁在该救援存放设备中,通过解锁才能取出该可穿戴救援设备。这种救援存放设备可安全地将可穿戴救援设备投放到公共场所中,且便于通过网络设备对救援存放设备进行智能管理,只需用户向网络设备发送救援任务信息,网络设备即可查找出附近的救援存放设备,从而方便救援者随时随地取用可穿戴救援设备实施救援。
在步骤S103中,网络设备将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。在一些实施例中,目标救援者对应的用户设备接收所述救援存放设备的位置信息并呈现(例如,通过地图的形式呈现,或者以文字的形式显示具体的位置信息)该位置信息,以便于该目标救援者根据该位置信息及时找到救援存放设备。在一些实施例中,网络设备在向该目标救援者发送救援存放设备的位置信息的同时将救援任务信息发送给该目标救援者,以便目标救援者知道目前有需要救援的情况发生。在一些实施例中,所述救援任务信息包括救援现场位置信息,以便目标救援者在找到救援存放设备的同时及时赶到救援现场实施救援。在一些实施例中,网络设备向一个或多个目标救援者发送救援任务信息以及救援存放设备的位置信息;在一些实施例中,所述一个或多个目标救援者可通过向网络设备返回确认信息确定参与救援。
在一些实施例中,所述方法还包括步骤S104(未示出),在步骤S104中,网络设备根据所述目标救援者的救援技能信息向所述目标救援者使用的可穿戴救援设备发送救援指导信息。在一些实施例中,网络设备中设置有救援者信息库,所述救援者信息库中存储有多个救援者以及每个救援者的救援技能信息,其中,该救援技能信息包括但不 限于救援者的职务信息(例如,医疗官、指挥官等)、能力级别信息(例如,一级、二级、三级等,不同级别对应于不同的救援能力或救援经验)。在一些实施例中,每个职务信息对应有不同的能力级别信息,例如,医疗官分为一级、二级、三级,级别越高,救援能力越高。每个能力级别信息对应有相应的救援指导信息。所述救援指导信息用于指导目标救援者正确的进行救援操作。
例如,网络设备基于目标救援者的标识信息(例如,姓名、编号等)确定该目标救援者对应的救援技能信息,进一步地,网络设备基于该救援技能信息向该目标救援者所使用的可穿戴救援设备发送对应的救援指导信息。在一些实施例中,目标救援者基于网络设备发送的救援任务信息向该网络设备返回确认信息,进一步地,该目标救援者基于接收的救援存放设备的位置信息优选救援存放设备(例如,选择距离呼救者最近或者距离自己最近的救援存放设备),并向该网络设备发送确认选择的信息,其中,每个救援存放设备均具有对应的可穿戴救援设备,进而,网络设备可确定该目标救援者对应的可穿戴救援设备。在一些实施例中,所述可穿戴救援设备通过语音、文字或者多媒体的方式呈现所述救援指导信息。救援指导信息是用于根据目标救援者的救援技能信息提供相应的救援指导的信息,可帮助目标救援者正确的实施救援,例如,正确的实时人工呼吸或者心脏复苏,以提高救援的成功率。
在一些实施例中,所述方法还包括步骤S105(未示出)、步骤S106(未示出)以及步骤S107(未示出)。在步骤S105中,网络设备接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;在步骤S106中,网络设备根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备;在步骤S107中,网络设备将所述目标可穿戴救援设备的标识信息发送至所述用户设备。在一些实施例中,所述设备状况信息包括但不限于可穿戴救援设备的电量信息(例如剩余电量占全部电量的百分比,或当前剩余电量能够支持的运行时间)、启动状态信息(例如可穿戴救援设备当前处于开机、关机或待机状态)、使用状态信息(例如当前是否被使用)、网络信号信息(例如其网络信号强度)、位置信息(例如经纬度信息)等。在一些实施例中,所述设备状况信息用于网络设备从多个可穿戴救援设备中筛选出可用的目标可穿戴救援设备,例如,目标可穿戴救援设备需是处于未使用状态,网络设备才可将该目标可穿戴救援设备的标识信息发送给救援者对应的用户设备,供该救援者使用。
具体而言,在步骤S105中,网络设备接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息。在一些实施例中,所述救援存放设备以及可穿戴救援设备均设置有通信模块,所述救援存放设备与可穿戴救援设备间可通过这些通信模块建立通信连接并进行信息传递,进而,该救援存放设备获取可穿戴救援设备的设备状况信息并将该设备状况信息上传到网络设备。
在步骤S106中,网络设备根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备。在一些实施例中,网络设备根据救援任务信息确定与该救援任务信息对应的救援现场位置信息相匹配的一个或多个救援存放设备,其中,该救援存放设备中存放有可穿戴救援设备。但是,所述一个或多个救援存放设备对应的一个或多个可穿戴救援设备当前可能是不可用的,例如,其中之一的可穿戴救援设备已经被使用,则该可穿戴救援设备当前是不可用的。例如,网络设备可根据救援存放设备上传的可穿戴救援设备的使用状态信息确定该可穿戴救援设备当前是否可用,从而从所述一个或多个可穿戴救援设备中确定可用的可穿戴救援设备为目标可穿戴救援设备,以保证目标救援者到救援存放设备处能够取到当前可用的可穿戴救援设备。
在步骤S107中,网络设备将所述目标可穿戴救援设备的标识信息发送至所述用户设备。在一些实施例中,网络设备确定出目标可穿戴救援设备后,将该目标可穿戴救援设备的标识信息发送给用户设备。
在一些实施例中,所述方法还包括步骤S108(未示出),在步骤S108中,网络设备向所述救援存放设备发送关于所述目标可穿戴救援设备的开机指令信息。在一些实施例中,网络设备基于可穿戴救援设备的设备状况信息确定目标可穿戴救援设备后,该网络设备向该目标可穿戴救援设备发送开机指令信息,该开机指令信息用于为目标救援者提前开启该目标可穿戴救援设备,为救援节省时间。在一些实施例中,网络设备基于可穿戴救援设备的设备状况信息确定一个或多个目标可穿戴救援设备,并将该一个或多个可穿戴救援设备的标识信息发送给目标救援者对应的用户设备,所述目标救援者通过确认操作从所述一个或多个目标可穿戴救援设备中确定最终的目标可穿戴救援设备,并将该确认信息发送给网络设备,网络设备基于该确认信息向对应的目标可穿戴救援设备发送开机指令信息,该开机指令信息用于为目标救援者提前开启该目标可穿戴救援设备,为救援节省时间。
在一些实施例中,所述设备状况信息包括以下至少任一项:所述可穿戴救援设备的电量信息;所述可穿戴救援设备的启动状态信息;所述可穿戴救援设备的使用状态信息;所述可穿戴救援设备的网络信号信息;所述可穿戴救援设备的位置信息。
例如,所述设备状况信息包括所述可穿戴救援设备的电量信息。在一些实施例中,网络设备通过根据可穿戴救援设备的电量信息从一个或多个可穿戴救援设备中筛选出可用的目标可穿戴救援设备。例如,当该可穿戴救援设备的电量信息低于预设的电量阈值信息时,网络设备确定该可穿戴救援设备为不可用的,从而从一个或多个可穿戴救援设备中筛除该可穿戴救援设备。
再例如,所述设备状况信息包括所述可穿戴救援设备的启动状态信息。在一些实施例中,网络设备通过根据可穿戴救援设备的启动状态信息来确定该可穿戴救援设备是否可用,例如,若该可穿戴救援设备的启动状态信息为已启动,则网络设备确定该可穿戴救援设为不可用,而启动状态信息为未启动的可穿戴救援设备则被确定为目标可穿戴救援设备。
又例如,所述设备状况信息包括所述可穿戴救援设备的使用状态信息。在一些实施例中,网络设备通过根据可穿戴救援设备的使用状态信息从一个或多个可穿戴救援设备中确定目标可穿戴救援设备。例如,所述使用状态信息包括正在使用中和当前未被使用,网络设备需要从所述一个或多个可穿戴救援设备中筛选出当前未被使用的可穿戴救援设备,并将该可穿戴救援设备作为目标可穿戴救援设备供目标救援者使用。
再例如,所述设备状况信息包括所述可穿戴救援设备的网络信号信息。在一些实施例中,网络设备获取可穿戴救援设备当前所使用的网络设备的网络信号信息,在一些实施例中,所述网络信号信息包括但不限于该可穿戴救援设备当前连接的网络的信号强度信息等。基于该网络信号信息,网络设备优选信号强度高的可穿戴救援设备作为目标可穿戴救援设备。
又例如,所述设备状况信息包括所述可穿戴救援设备的位置信息。在一些实施例中,网络设备获取每一个可穿戴救援设备的实时位置信息,若该位置信息变化幅度或者频率大,则确定该可穿戴救援设备处于移动或者使用状态。在一些实施例中,网络设备将位置信息固定的可穿戴救援设备作为目标可穿戴救援设备。
在一些实施例中,所述设备状况信息包括所述可穿戴救援设备的电量信息;其中,所述方法还包括步骤S109(未示出),在步骤S109中,网络设备根据所述目标可穿戴 救援设备的电量信息向存放所述目标可穿戴救援设备的所述救援存放设备发送关于所述目标可穿戴救援设备的充电指令信息。在一些实施例中,网络设备通过获取可穿戴救援设备的电量信息对该可穿戴救援设备进行充电管理。例如,当网络设备获取的该可穿戴救援设备的电量信息低于预设的电量阈值信息时,网络设备向存放该可穿戴救援设备的救援存放设备发送充电指令信息,该救援存放设备检测可穿戴救援设备存放在该救援存放设备中(例如,在该救援存放设备上用于存放可穿戴救援设备的槽口里设置有充电口,可穿戴救援设备存放在救援存放设备上时,该可穿戴救援设备上的充电口与该槽口上的充电口卡接,该救援存放设备通过充电口检测当前该救援存放设备上是否存放有可穿戴救援设备),进一步地,该救援存放设备基于其接收的充电指令信息通过充电端口对该可穿戴救援设备进行充电操作。在一些实施例中,当该可穿戴救援设备的充电量达到100%时,网络设备向该救援存放设备发送断电指令信息。通过网络设备对救援存放设备进行智能充电管理,能够保证存放于该救援存放设备中的可穿戴救援设备始终处于电量充足的状态,以便救援者随时取用。
在一些实施例中,所述方法还包括步骤S111(未示出)、步骤S112(未示出)以及步骤S113(未示出)。在步骤S111中,网络设备接收所述救援存放设备发送的验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;在步骤S112中,网络设备对所述验证依据信息执行验证处理;在步骤S113中,网络设备向所述救援存放设备发送对应的验证结果信息或开锁指令信息。在一些实施例中,救援存放设备通过电子锁或者机械锁将可穿戴救援设备锁在该救援存放设备中,目标救援者可通过该救援存放设备向对应的网络设备发送验证请求信息,网络设备接收该验证请求信息并基于该验证请求信息中的验证依据信息执行验证处理。在一些实施例中,所述验证依据信息包括但不限于所述用户设备从所述网络设备接收到的授权信息、所述目标救援者的人脸图像信息。
例如,救援存放设备通过摄像装置获取前来取可穿戴救援设备的目标救援者甲的人脸图像信息,该救援存放设备向对应的网络设备发送验证请求信息,其中,该验证请求信息中包括关于该目标救援者甲的人脸图像信息。该网络设备接收该验证请求信息,并对该验证请求信息中的验证依据信息(人脸图像信息)执行验证处理,例如,网络设备中设置有救援者信息库,该救援者信息库中包括多个救援者的相关信息(例如,姓名、编号、人脸图像信息),网络设备根据该验证请求信息中关于目标救援者甲的人脸图像 信息在该救援者信息库中进行查询匹配,若该救援者信息库中存在与该人脸图像信息相匹配的救援者,则验证成功。进一步地,该网络设备向该救援存放设备发送验证成功的验证结果信息,或者,该网络设备直接向该救援存放设备发送开锁指令信息,以控制该救援存放设备自动开锁,该目标救援者甲可顺利取走存放在该救援存放设备中的可穿戴救援设备。
在一些实施例中,所述方法还包括步骤S114(未示出),在步骤S114中,网络设备将所述救援存放设备对应的验证依据信息发送给所述救援存放设备。在一些实施例中,所述验证依据信息包括但不限于授权信息(例如,密码、授权码、二维码等)。例如,网络设备中存储有多个救援存放设备的授权信息,该授权信息用于解锁对应的救援存放设备。网络设备在确定出救援存放设备以及目标救援者后,将该救援存放设备对应的验证依据信息(例如,密码、授权码、二维码等授权信息)发送给目标救援者对应的用户设备,同时,网络设备将该验证依据信息发送给该救援存放设备,该用户设备与该救援存放设备接收的验证依据信息相同,以便该目标救援者使用该验证依据信息到该救援存放设备上解锁取走可穿戴救援设备。
在一些实施例中,所述验证依据信息包括以下至少任一项:所述用户设备从所述网络设备接收到的授权信息,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备;所述目标救援者的人脸图像信息;所述目标救援者的编号信息;所述目标救援者的救援者标识信息。在一些实施例中,网络设备根据救援存放设备发送的验证依据信息执行验证处理,并根据验证结果向该救援存放设备发送验证结果信息或者开锁指令信息;在另一些实施例中,网络设备将救援存放设备的验证依据信息发送给目标救援者对应的用户设备,以便该目标救援者直接使用验证依据信息解锁救援存放设备,例如救援者在救援存放设备上输入上述验证依据信息,由救援存放设备对该验证依据信息进行验证,若验证通过则解锁可穿戴救援设备供救援人员取用。当然,本领域技术人员应能理解,以上所述的验证依据信息仅为举例,其他现有的或今后可能出现的验证依据信息如能适用于本申请,也包含在本申请的保护范围内,并以引用的方式包含于此。通过根据所述验证依据信息对救援存放设备进行解锁的方式,本申请便于目标救援者可成功提取存放在该救援存放设备中的可穿戴救援设备。
例如,所述验证依据信息包括所述用户设备从所述网络设备接收到的授权信息,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备。在一 些实施例中,所述授权信息包括但不限于密码、二维码、授权码等。网络设备在确定救援存放设备后,将该救援存放设备对应的授权信息(例如,开锁密码)发送给目标救援者对应的用户设备。该目标救援者通过在该救援存放设备上输入该授权信息打开该救援存放设备上的锁,从而成功提取该救援存放设备中存放的可穿戴救援设备。
再例如,所述验证依据信息包括所述目标救援者的人脸图像信息。网络设备中设置有救援者信息库,其中,该救援者信息库中存储有多个救援者以及每个救援者的相关信息(例如,人脸图像信息等)。救援存放设备拍摄前来取用可穿戴救援设备的目标救援者的人脸图像信息,并对该人脸图像信息进行人脸识别以提取该目标救援者的身份信息。例如,根据该人脸图像信息在救援者信息库中查询与其相匹配的人脸图像信息,若该救援者信息库中存在与该目标救援者的人脸图像信息相匹配的救援者,则确定验证成功。
再例如,所述验证依据信息包括所述目标救援者的编号信息。网络设备中设置有救援者信息库,其中,该救援者信息库中存储有多个救援者以及每个救援者的相关信息(例如,编号信息等)。在一些实施例中,救援者会在身上佩戴带有救援者编号信息的牌子或者在救援者穿的特定衣服上印有该救援者对应的救援者编号信息。救援存放设备通过摄像装置提取前来取用可穿戴救援设备的目标救援者的编号信息,并根据该编号信息在救援者信息库中查询与其相匹配的编号信息。若该救援者信息库中存在与该目标救援者的编号相匹配的救援者,则确定验证成功。
又例如,所述验证依据信息包括所述目标救援者的救援者标识信息。在一些实施例中,所述救援者标识信息包括但不限于救援者标志图形、救援者标志图案等。在一些实施例中,当目标救援者到救援存放设备上去提取可穿戴救援设备时,该救援存放设备通过摄像装置提取该目标救援者的救援者标识信息(例如,救援者所穿的衣服上印有救援者标识信息,或者救援者佩戴有印有救援者标识信息的标识牌),并将该救援者标识信息发送给网络设备。网络设备验证该救援者标识信息与预存的救援者标识信息是否匹配。若匹配,则确定验证成功。
在一些实施例中,所述步骤S103包括步骤S1031(未示出)以及步骤S1032(未示出),在步骤S1031中,网络设备根据所述救援现场位置信息确定处理所述救援任务信息的目标救援者,其中,所述目标救援者的当前位置信息与所述救援现场位置信息间的距离小于或等于预定的距离阈值信息;在步骤S1032中,网络设备将所述救援任务信息 及所述救援存放设备的位置信息发送给所述目标救援者对应的用户设备。在一些实施例中,基于GPS定位、北斗卫星定位、WIFI网络定位或者基站定位等定位技术中的一项或者多项的结合来获取多个救援者的当前位置信息,并根据救援现场位置信息在所述多个救援者中查询位于该救援现场位置信息附近的目标救援者,以便救援者可以及时赶到救援现场实施救援。进一步地,网络设备将其接收的救援任务信息以及查询到的救援存放设备的位置信息发送给位于救援现场附近的一个或多个目标救援者。
在一些实施例中,所述步骤S103包括步骤S1033(未示出)、步骤S1034(未示出)、步骤S1035(未示出)、步骤S1036(未示出),在步骤S1033中,网络设备将所述救援任务信息发送给一个或多个候选救援者,其中,每个候选救援者的当前位置信息与所述救援现场位置信息间的距离小于或等于预定的距离阈值信息;在步骤S1034中,网络设备接收所述一个或多个候选救援者中至少一个候选救援者对所述救援任务信息的确认反馈信息;在步骤S1035中,网络设备从所述至少一个候选救援者中选择确定所述救援任务信息的目标救援者;在步骤S1036中,网络设备将所述救援存放设备的位置信息发送给所述目标救援者对应的用户设备。在一些实施例中,网络设备通过接收候选救援者基于救援任务信息返回的确认反馈信息确定最终的目标救援者。例如,网络设备接收到呼救者发送的救援任务信息,并基于该救援任务信息对应的救援现场位置信息查找位于该救援现场位置信息附近的一个或多个候选救援者,其中,确定救援现场位置信息、救援者当前位置信息的具体实施方式请参照上述相关实施例的说明,在此不做赘述,并以引用的方式包含于此。进一步地,该候选救援者基于接收到的救援任务信息向该网络设备返回确认反馈信息,例如,该候选救援者在当前方便前去救援现场救援的情况下向网络设备返回确认反馈信息。该网络设备基于接收的确认反馈信息确定该救援任务信息最终对应的目标救援者。进一步地,该网络设备将查找出的救援存放设备的位置信息发送给所述发送确认反馈信息的目标救援者对应的用户设备。
以上从网络设备的角度介绍了本申请的一种救援方法,下面结合图3从救援存放设备的角度介绍本申请的一种救援方法。
图3示出根据本申请一个实施例的一种在救援存放设备端的救援方法,其中,所述救援存放设备用于存放一个或多个可穿戴救援设备,所述救援存放设备包括用于对所述可穿戴救援设备进行充电的充电模块,所述方法包括步骤S201以及步骤S202,在步骤S201中,救援存放设备检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设 备的设备状况信息;在步骤S202中,救援存放设备将所述设备状况信息上报给对应的网络设备。在一些实施例中,所述救援存放设备用于存放可穿戴救援设备。在一些实施例中,所述救援存放设备通过电子锁或者机械锁对所述可穿戴救援设备进行安全存放。在一些实施例中,所述救援存放设备设置有为该可穿戴救援设备进行充电的充电模块。在一些实施例中,所述救援存放设备与所述可穿戴救援设备均设置有通信模块,用于二者之间进行信息传递。可穿戴救援设备将自身的设备状况信息上报给对应的救援存放设备,该救援存放设备检查该可穿戴救援设备的设备状况信息,并将该设备状况信息上报给对应的网络设备,以便所述网络设备根据该设备状况信息对对应的可穿戴救援设备进行设备管理以及从查找出的一个或多个可穿戴救援设备中确定可用的目标可穿戴救援设备。
在一些实施例中,所述方法还包括步骤S203(未示出)以及步骤S204(未示出),在步骤S203中,救援存放设备接收所述网络设备发送的关于所述一个或多个可穿戴救援设备中目标可穿戴救援设备的开机指令信息;在步骤S204中,救援存放设备根据所述开机指令信息对所述目标可穿戴救援设备执行开机操作。在一些实施例中,网络设备基于可穿戴救援设备的设备状况信息确定出目标可穿戴救援设备后,该网络设备向该目标可穿戴救援设备对应的救援存放设备发送开机指令信息,该救援存放设备接收该开机指令信息,并基于该开机指令信息对该目标可穿戴救援设备执行开机操作,用于为目标救援者提前开启该目标可穿戴救援设备,以节约救援时间。
在一些实施例中,所述方法还包括步骤S205(未示出)以及步骤S206(未示出),在步骤S205中,救援存放设备接收网络设备发送的关于所述可穿戴救援设备的充电指令信息;在步骤S206中,救援存放设备根据所述充电指令信息对所述可穿戴救援设备执行充电操作。在一些实施例中,网络设备获取救援存放设备上报的对应的(例如,存放在该救援存放设备中的可穿戴救援设备)可穿戴救援设备的设备状况信息。在一些实施例中,所述设备状况信息包括该可穿戴救援设备的电量信息,网络设备检测该电量信息是否低于预设的电量阈值信息,若该可穿戴救援设备的电量信息低于该电量阈值信息,则该网络设备向存放该可穿戴救援设备的救援存放设备发送充电指令信息。在一些实施例中,可穿戴救援设备与存放该可穿戴救援设备的救援存放设备间存在映射关系,以确定可穿戴救援设备与救援存放设备间的对应关系。救援存放设备接收该充电指令信息后对该可穿戴救援设备执行充电操作,以保证存放在救援存放设备上的可穿戴救援设 备始终处于电量充足的状态。
在一些实施例中,所述方法还包括步骤S207(未示出)、步骤S208(未示出)以及步骤S209(未示出),在步骤S207中,救援存放设备向对应的网络设备发送验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;在步骤S208中,救援存放设备接收所述网络设备发送的对应的验证结果信息或开锁指令信息;在步骤S209中,救援存放设备根据所述验证结果信息或开锁指令信息执行开锁操作。在一些实施例中,救援存放设备通过电子锁或者机械锁来安全存放可穿戴救援设备,为了实现智能开锁的功能,救援存放设备通过向对应的网络设备发送验证请求信息进行验证开锁。在一些实施例中,所述验证依据信息包括但不限于该网络设备向目标救援者发送的授权信息(例如,密码、授权码、二维码等)。该目标救援者通过在该救援存放设备上输入该授权信息向网络设备发送验证请求信息,其中,该验证请求信息包括该授权信息。该网络设备接收该验证请求信息,并根据该验证请求信息中的授权信息判断是否向该救援存放设备发送开锁指令信息。若该授权信息与网络设备向目标救援者发送的该救援存放设备的授权信息对应匹配,则验证成功,网络设备向该救援存放设备发送验证成功的验证结果信息,或者,网络设备直接向该救援存放设备发送开锁指令信息。该救援存放设备接收该验证成功的验证结果信息或者开锁指令信息,并执行开锁操作。
在一些实施例中,所述方法还包括步骤S211(未示出),在步骤S211中,救援存放设备接收网络设备发送的所述救援存放设备对应的验证依据信息。在一些实施例中,所述验证依据信息包括该救援存放设备对应的授权信息(例如,密码、二维码、授权码等),所述授权信息用于解锁该救援存放设备,以便救援者成功取出存放在该救援存放设备中的可穿戴救援设备。在一些实施例中,网络设备将救援存放设备对应的授权信息发送给该救援存放设备,同时,网络设备将该授权信息发送给目标救援者对应的用户设备。在一些实施例中,该目标救援者通过在救援存放设备上输入该授权信息进行开锁验证。
在一些实施例中,所述方法还包括步骤S212(未示出)以及步骤S213(未示出),在步骤S212中,救援存放设备接收验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;在步骤S213中,救援存放设备根据所述验证依据信息执行开锁操作。在一些实施例中,救援存放设备接收验证请求信息,其中,在一些实施例中,所述验证依据信息包括该救援存放设备通过摄像装置或者人脸认证装置获取的 关于前来提取可穿戴救援设备的目标救援者的人脸图像信息、救援者标识信息或者编号信息;在另一些实施例中,所述验证依据信息包括前来提取可穿戴救援设备的目标救援者输入的授权信息。进一步地,网络设备将关于目标救援者的上述验证依据信息发送给该救援存放设备,该救援存放设备根据网络设备发送的验证依据信息以及自身获取的关于目标救援者的验证依据信息进行匹配判断,若匹配成功,则执行开锁操作。
以上从救援存放设备的角度对本申请进行了解释说明,下面结合图4,从用户设备的角度对本申请进行说明。
图4示出根据本申请一个实施例的一种在用户设备端的救援方法,其中,所述方法包括步骤S301以及步骤S302,在步骤S301中,用户设备接收对应的网络设备发送的救援任务信息;在步骤S302中,用户设备接收所述救援任务信息对应的救援存放设备的位置信息。在一些实施例中,所述用户设备为目标救援者对应的用户设备。网络设备将呼救者发送的救援任务信息发送给对应的一个或多个目标救援者。该目标救援者通过其对应的用户设备接收该救援任务信息。同时,网络设备基于该救援任务信息确定出一个或多个位于救援现场位置信息附近的一个或多个救援存放设备后,将该一个或多个救援存放设备的位置信息发送给该用户设备,该用户设备接收该位置信息,该目标救援者根据该用户设备呈现的关于一个或多个救援存放设备的位置信息选择最方便提取可穿戴救援设备的一个。
在一些实施例中,所述方法还包括步骤S303(未示出),在步骤S303中,用户设备基于目标救援者的确认操作向对应的网络设备发送对所述救援任务信息的确认反馈信息。在一些实施例中,一个或多个救援者会接收到网络设备发送的救援任务信息,该一个或多个救援者通过向网络设备发送确认反馈信息来确定参与救援活动。从而确定该救援任务信息对应的目标救援者。
在一些实施例中,所述方法还包括步骤S304(未示出),在步骤S304中,用户设备接收对应的网络设备发送的所述救援任务信息对应的目标可穿戴救援设备的标识信息。在一些实施例中,网络设备向目标救援者对应的用户设备发送救援任务信息对应的目标可穿戴救援设备的标识信息。网络设备确定出目标可穿戴救援设备后,将该目标可穿戴救援设备的标识信息(例如,该目标可穿戴救援设备的序列号),在一些实施例中,每个可穿戴救援设备有其对应的标识信息,该标识信息可对应该可穿戴救援设备所属的组别号或者设备编号,以便于对多个可穿戴救援设备进行管理;在一些实施例中,每个 可穿戴救援设备的标识信息与存放该可穿戴救援设备的救援存放设备间存在映射关系,网络设备通过可穿戴救援设备的设备状况信息确定出目标可穿戴救援设备,进而根据该目标可穿戴救援设备的标识信息确定出对应的救援存放设备,以便于救援者通过该救援存放设备的位置信息找到该可穿戴救援设备。在本实施例中,通过救援存放设备对可穿戴救援设备进行安全管理,并且,基于网络设备实现了对救援存放设备的智能管理。
在一些实施例中,所述方法还包括步骤S305(未示出),在步骤S305中,用户设备接收对应的网络设备发送的关于救援存放设备的授权信息,其中,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备。在一些实施例中,所述授权信息包括但不限于密码、二维码、授权码等。网络设备在确定出救援存放设备后,将该救援存放设备对应的授权信息(例如,开锁密码)发送给目标救援者对应的用户设备。该目标救援者通过在该救援存放设备上输入该授权信息打开该救援存放设备上的锁,从而成功提取该救援存放设备中存放的可穿戴救援设备。
参考图7,本申请还公开了一种网络设备,其中,该设备包括一零一模块、一零二模块以及一零三模块,一零一模块,用于接收救援任务信息;一零二模块,用于根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备;一零三模块,用于将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。在一些实施例中,所述救援任务信息作为在网络设备端实现本申请的救援方法的触发条件,例如,所述救援任务信息包括但不限于呼救请求,呼救者通过其对应的用户设备(例如其使用的手机或其他终端设备)向网络设备发送呼救请求。在一些实施例中,所述救援现场为需要实施救援的现场,例如,赛事现场、火灾现场等。在一些实施例中,网络设备中设置有救援存放设备信息库,所述救援存放设备信息库中包括多个救援存放设备以及每个救援存放设备的位置信息。在一些实施例中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,所述可穿戴救援设备包括但不限于智能眼镜、智能头盔等。
具体而言,一零一模块,用于接收救援任务信息。在一些实施例中,该救援任务信息是由呼救者通过其对应的用户设备发送的,其中,在一些实施例中,该呼救者是救援现场中需要被救助的人员(例如,受伤人员);在另一些实施例中,该呼救者是位于救援现场中除了需要被救助的人员以外的其他人员,例如,当该其他人员发现有需要救援 的情况发生时,通过其对应的用户设备发送救援任务信息,该网络设备接收该救援任务信息。
一零二模块,用于根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备。在一些实施例中,网络设备通过确定发送该救援任务信息的用户的位置信息来确定该救援任务信息对应的救援现场位置信息,例如,基于GPS定位、北斗卫星定位、WIFI网络定位或者基站定位等定位技术中的一项或者多项的结合来确定发送该救援任务信息的用户的位置信息,通过该用户的位置信息来确定救援现场位置信息;在另一些实施例中,所述救援任务信息中包括救援现场的位置信息,例如,用户向网络设备发送的救援任务信息中包括救援现场的位置信息。在一些实施例中,网络设备基于该救援现场位置信息在救援存放设备信息库中查询与该救援现场位置信息相匹配的救援存放设备,例如,该救援存放设备信息库中存储有多个救援存放设备的位置信息,网络设备根据接收到的救援任务信息对应的救援现场位置信息在该救援存放设备信息库中查找位于该救援现场位置附近的、或者距离该救援现场位置最近的救援存放设备。在一些实施例中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,例如,该救援存放设备为设置有电子锁或者机械锁的智能救援存放设备,所述可穿戴救援设备锁在该救援存放设备中,通过解锁才能取出该可穿戴救援设备。这种救援存放设备可安全地将可穿戴救援设备投放到公共场所中,并且便于通过网络设备对救援存放设备进行智能管理,只需用户向网络设备发送救援任务信息,网络设备即可查找出附近的救援存放设备,从而方便救援者随时随地取用可穿戴救援设备实施救援。
一零三模块,用于将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。在一些实施例中,目标救援者对应的用户设备接收所述救援存放设备的位置信息并呈现(例如,通过地图的形式呈现,或者以文字的形式显示具体的位置信息)该位置信息,以便于该目标救援者根据该位置信息及时找到救援存放设备。在一些实施例中,网络设备在向该目标救援者发送救援存放设备的位置信息的同时将救援任务信息发送给该目标救援者,以便目标救援者知道目前有需要救援的情况发生。在一些实施例中,所述救援任务信息包括救援现场位置信息,以便目标救援者在找到救援存放设备的同时及时赶到救援现场实施救援。在一些实施例 中,网络设备向一个或多个目标救援者发送救援任务信息以及救援存放设备的位置信息;在一些实施例中,所述一个或多个目标救援者可通过向网络设备返回确认信息确定参与救援。
在一些实施例中,所述设备还包括一零四模块(未示出),一零四模块,用于根据所述目标救援者的救援技能信息向所述目标救援者使用的可穿戴救援设备发送救援指导信息。在一些实施例中,网络设备中设置有救援者信息库,所述救援者信息库中存储有多个救援者以及每个救援者的救援技能信息,其中,该救援技能信息包括但不限于救援者的职务信息(例如,医疗官、指挥官等)、能力级别信息(例如,一级、二级、三级等,不同级别对应于不同的救援能力或救援经验)。在一些实施例中,每个职务信息对应有不同的能力级别信息,例如,医疗官分为一级、二级、三级,级别越高,救援能力越高。每个能力级别信息对应有相应的救援指导信息。所述救援指导信息用于指导目标救援者正确的进行救援操作。
例如,网络设备基于目标救援者的标识信息(例如,姓名、编号等)确定该目标救援者对应的救援技能信息,进一步地,网络设备基于该救援技能信息向该目标救援者所使用的可穿戴救援设备发送对应的救援指导信息。在一些实施例中,目标救援者基于网络设备发送的救援任务信息向该网络设备返回确认信息,进一步地,该目标救援者基于接收的救援存放设备的位置信息优选救援存放设备(例如,选择距离呼救者最近或者距离自己最近的救援存放设备),并向该网络设备发送确认选择的信息,其中,每个救援存放设备均具有对应的可穿戴救援设备,进而,网络设备可确定该目标救援者对应的可穿戴救援设备。在一些实施例中,所述可穿戴救援设备通过语音、文字或者多媒体的方式呈现所述救援指导信息。救援指导信息是用于根据目标救援者的救援技能信息提供相应的救援指导的信息,可帮助目标救援者正确的实施救援,例如,正确的实时人工呼吸或者心脏复苏,以提高救援的成功率。
在一些实施例中,所述设备还包括一零五模块(未示出)、一零六模块(未示出)以及一零七模块(未示出)。一零五模块,用于接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;一零六模块,用于根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备;一零七模块,用于将所述目标可穿戴救援设备的标识信息发送至所述用户设备。在一些实施例中,所述设备状况信息包括但不限于可穿戴救援设备的电量信 息(例如剩余电量占全部电量的百分比,或当前剩余电量能够支持的运行时间)、启动状态信息(例如可穿戴救援设备当前处于开机、关机或待机状态)、使用状态信息(例如当前是否被使用)、网络信号信息(例如其网络信号强度)、位置信息(例如经纬度信息)等。在一些实施例中,所述设备状况信息用于网络设备从多个可穿戴救援设备中筛选出可用的目标可穿戴救援设备,例如,目标可穿戴救援设备需是处于未使用状态,网络设备才可将该目标可穿戴救援设备的标识信息发送给救援者对应的用户设备,供该救援者使用。
具体而言,一零五模块,用于接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息。在一些实施例中,所述救援存放设备以及可穿戴救援设备均设置有通信模块,所述救援存放设备与可穿戴救援设备间可通过这些通信模块建立通信连接并进行信息传递,进而,该救援存放设备获取可穿戴救援设备的设备状况信息并将该设备状况信息上传到网络设备。
一零六模块,用于根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备。在一些实施例中,网络设备根据救援任务信息确定与该救援任务信息对应的救援现场位置信息相匹配的一个或多个救援存放设备,其中,该救援存放设备中存放有可穿戴救援设备。但是,所述一个或多个救援存放设备对应的一个或多个可穿戴救援设备当前可能是不可用的,例如,其中之一的可穿戴救援设备已经被使用,则该可穿戴救援设备当前是不可用的。例如,网络设备可根据救援存放设备上传的可穿戴救援设备的使用状态信息确定该可穿戴救援设备当前是否可用,从而从所述一个或多个可穿戴救援设备中确定可用的可穿戴救援设备为目标可穿戴救援设备,以保证目标救援者到救援存放设备处能够取到当前可用的可穿戴救援设备。
一零七模块,用于将所述目标可穿戴救援设备的标识信息发送至所述用户设备。在一些实施例中,网络设备确定出目标可穿戴救援设备后,将该目标可穿戴救援设备的标识信息发送给用户设备。
在一些实施例中,所述设备还包括一零八模块(未示出),一零八模块,用于向所述救援存放设备发送关于所述目标可穿戴救援设备的开机指令信息。在一些实施例中,网络设备基于可穿戴救援设备的设备状况信息确定出目标可穿戴救援设备后,该网络设备向该目标可穿戴救援设备发送开机指令信息,该开机指令信息用于为目标救援者提前 开启该目标可穿戴救援设备,为救援节省时间。在一些实施例中,网络设备基于可穿戴救援设备的设备状况信息确定出一个或多个目标可穿戴救援设备,并将该一个或多个可穿戴救援设备的标识信息发送给目标救援者对应的用户设备,所述目标救援者通过确认操作从所述一个或多个目标可穿戴救援设备中确定最终的目标可穿戴救援设备,并将该确认信息发送给网络设备,网络设备基于该确认信息向对应的目标可穿戴救援设备发送开机指令信息,该开机指令信息用于为目标救援者提前开启该目标可穿戴救援设备,为救援节省时间。
在一些实施例中,所述设备状况信息包括以下至少任一项:所述可穿戴救援设备的电量信息;所述可穿戴救援设备的启动状态信息;所述可穿戴救援设备的使用状态信息;所述可穿戴救援设备的网络信号信息;所述可穿戴救援设备的位置信息。
例如,所述设备状况信息包括所述可穿戴救援设备的电量信息。在一些实施例中,网络设备通过根据可穿戴救援设备的电量信息从一个或多个可穿戴救援设备中筛选出可用的目标可穿戴救援设备。例如,当该可穿戴救援设备的电量信息低于预设的电量阈值信息时,网络设备确定该可穿戴救援设备为不可用的,从而从一个或多个可穿戴救援设备中筛除该可穿戴救援设备。
再例如,所述设备状况信息包括所述可穿戴救援设备的启动状态信息。在一些实施例中,网络设备通过根据可穿戴救援设备的启动状态信息来确定该可穿戴救援设备是否可用,例如,若该可穿戴救援设备的启动状态信息为已启动,则网络设备确定该可穿戴救援设为不可用。而启动状态信息为未启动的可穿戴救援设备则被确定为目标可穿戴救援设备。
又例如,所述设备状况信息包括所述可穿戴救援设备的使用状态信息。在一些实施例中,网络设备通过根据可穿戴救援设备的使用状态信息从一个或多个可穿戴救援设备中确定目标可穿戴救援设备。例如,所述使用状态信息包括正在使用中和当前未被使用,网络设备需要从所述一个或多个可穿戴救援设备中筛选出当前未被使用的可穿戴救援设备,并将该可穿戴救援设备作为目标可穿戴救援设备供目标救援者使用。
再例如,所述设备状况信息包括所述可穿戴救援设备的网络信号信息。在一些实施例中,网络设备获取可穿戴救援设备当前所使用的网络设备的网络信号信息,在一些实施例中,所述网络信号信息包括但不限于该可穿戴救援设备当前连接的网络的信号强度信息等。基于该网络信号信息,网络设备优选信号强度高的可穿戴救援设备作为目标可 穿戴救援设备。
又例如,所述设备状况信息包括所述可穿戴救援设备的位置信息。在一些实施例中,网络设备获取每一个可穿戴救援设备的实时位置信息,若该位置信息变化幅度或者频率大,则确定该可穿戴救援设备处于移动或者使用状态。在一些实施例中,网络设备将位置信息固定的可穿戴救援设备作为目标可穿戴救援设备。
在一些实施例中,所述设备状况信息包括所述可穿戴救援设备的电量信息;其中,所述设备还包括一零九模块(未示出),一零九模块,用于根据所述目标可穿戴救援设备的电量信息向存放所述目标可穿戴救援设备的所述救援存放设备发送关于所述目标可穿戴救援设备的充电指令信息。在一些实施例中,网络设备通过获取可穿戴救援设备的电量信息对该可穿戴救援设备进行充电管理。例如,当网络设备获取的该可穿戴救援设备的电量信息低于预设的电量阈值信息时,网络设备向存放该可穿戴救援设备的救援存放设备发送充电指令信息,该救援存放设备检测可穿戴救援设备存放在该救援存放设备中(例如,在该救援存放设备上用于存放可穿戴救援设备的槽口里设置有充电口,可穿戴救援设备存放在救援存放设备上时,该可穿戴救援设备上的充电口与该槽口上的充电口卡接,该救援存放设备通过充电口检测当前该救援存放设备上是否存放有可穿戴救援设备),进一步地,该救援存放设备基于其接收的充电指令信息通过充电端口对该可穿戴救援设备进行充电操作。在一些实施例中,当该可穿戴救援设备的充电量达到100%时,网络设备向该救援存放设备发送断电指令信息。通过网络设备对救援存放设备进行智能充电管理,能够保证存放于该救援存放设备中的可穿戴救援设备始终处于电量充足的状态,以便救援者随时取用。
在一些实施例中,所述设备还包括一一一模块(未示出)、一一二模块(未示出)以及一一三模块(未示出)。一一一模块,用于接收所述救援存放设备发送的验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;一一二模块,用于对所述验证依据信息执行验证处理;一一三模块,用于向所述救援存放设备发送对应的验证结果信息或开锁指令信息。在一些实施例中,救援存放设备通过电子锁或者机械锁将可穿戴救援设备锁在该救援存放设备中,目标救援者可通过该救援存放设备向对应的网络设备发送验证请求信息,网络设备接收该验证请求信息并基于该验证请求信息中的验证依据信息执行验证处理。在一些实施例中,所述验证依据信息包括但不限于所述用户设备从所述网络设备接收到的授权信息、所述目标救援者的人脸图像信息。
例如,救援存放设备通过摄像装置获取前来取可穿戴救援设备的目标救援者甲的人脸图像信息,该救援存放设备向对应的网络设备发送验证请求信息,其中,该验证请求信息中包括关于该目标救援者甲的人脸图像信息。该网络设备接收该验证请求信息,并对该验证请求信息中的验证依据信息(人脸图像信息)执行验证处理,例如,网络设备中设置有救援者信息库,该救援者信息库中包括多个救援者的相关信息(例如,姓名、编号、人脸图像信息),网络设备根据该验证请求信息中关于目标救援者甲的人脸图像信息在该救援者信息库中进行查询匹配,若该救援者信息库中存在与该人脸图像信息相匹配的救援者,则验证成功。进一步地,该网络设备向该救援存放设备发送验证成功的验证结果信息,或者,该网络设备直接向该救援存放设备发送开锁指令信息,以控制该救援存放设备自动开锁,该目标救援者甲可顺利取走存放在该救援存放设备中的可穿戴救援设备。
在一些实施例中,所述设备还包括一一四模块(未示出),一一四模块,用于将所述救援存放设备对应的验证依据信息发送给所述救援存放设备。在一些实施例中,所述验证依据信息包括但不限于授权信息(例如,密码、授权码、二维码等)。例如,网络设备中存储有多个救援存放设备的授权信息,该授权信息用于解锁对应的救援存放设备。网络设备在确定出救援存放设备以及目标救援者后,将该救援存放设备对应的验证依据信息(例如,密码、授权码、二维码等授权信息)发送给给目标救援者对应的用户设备,同时,网络设备将该验证依据信息发送给该救援存放设备,该用户设备与该救援存放设备接收的验证依据信息相同,以便该目标救援者使用该验证依据信息到该救援存放设备上解锁取走可穿戴救援设备。
在一些实施例中,所述验证依据信息包括以下至少任一项:所述用户设备从所述网络设备接收到的授权信息,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备;所述目标救援者的人脸图像信息;所述目标救援者的编号信息;所述目标救援者的救援者标识信息。在一些实施例中,网络设备根据救援存放设备发送的验证依据信息执行验证处理,并根据验证结果向该救援存放设备发送验证结果信息或者开锁指令信息;在另一些实施例中,网络设备将救援存放设备的验证依据信息发送给目标救援者对应的用户设备,以便该目标救援者直接使用验证依据信息解锁救援存放设备,例如救援者在救援存放设备上输入上述验证依据信息,由救援存放设备对该验证依据信息进行验证,若验证通过则解锁可穿戴救援设备供救援人员取用。当然,本领域技 术人员应能理解,以上所述的验证依据信息仅为举例,其他现有的或今后可能出现的验证依据信息如能适用于本申请,也包含在本申请的保护范围内,并以引用的方式包含于此。通过根据所述验证依据信息对救援存放设备进行解锁的方式,本申请便于目标救援者可成功提取存放在该救援存放设备中的可穿戴救援设备。
例如,所述验证依据信息包括所述用户设备从所述网络设备接收到的授权信息,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备。在一些实施例中,所述授权信息包括但不限于密码、二维码、授权码等。网络设备在确定救援存放设备后,将该救援存放设备对应的授权信息(例如,开锁密码)发送给目标救援者对应的用户设备。该目标救援者通过在该救援存放设备上输入该授权信息打开该救援存放设备上的锁,从而成功提取该救援存放设备中存放的可穿戴救援设备。
再例如,所述验证依据信息包括所述目标救援者的人脸图像信息。网络设备中设置有救援者信息库,其中,该救援者信息库中存储有多个救援者以及每个救援者的相关信息(例如,人脸图像信息等)。救援存放设备拍摄前来取用可穿戴救援设备的目标救援者的人脸图像信息,并对该人脸图像信息进行人脸识别以提取前该目标救援者的身份信息。例如,并根据该人脸图像信息在救援者信息库中查询与其相匹配的人脸图像信息,若该救援者信息库中存在与该目标救援者的人脸图像信息相匹配的救援者,则确定验证成功。
再例如,所述验证依据信息包括所述目标救援者的编号信息。网络设备中设置有救援者信息库,其中,该救援者信息库中存储有多个救援者以及每个救援者的相关信息(例如,编号信息等)。在一些实施例中,救援者会在身上佩戴带有救援者编号信息的牌子或者在救援者穿的特定衣服上印有该救援者对应的救援者编号信息。救援存放设备通过摄像装置提取前来取用可穿戴救援设备的目标救援者的编号信息,并根据该编号信息在救援者信息库中查询与其相匹配的编号信息。若该救援者信息库中存在与该目标救援者的编号相匹配的救援者,则确定验证成功。
又例如,所述验证依据信息包括所述目标救援者的救援者标识信息。在一些实施例中,所述救援者标识信息包括但不限于救援者标志图形、救援者标志图案等。在一些实施例中,当目标救援者到救援存放设备上去提取可穿戴救援设备时,该救援存放设备通过摄像装置提取该目标救援者的救援者标识信息(例如,救援者所穿的衣服上印有救援者标识信息,或者救援者佩戴有印有救援者标识信息的标识牌),并将该救援者标识信 息发送给网络设备。网络设备验证该救援者标识信息与预存的救援者标识信息是否匹配。若匹配,则确定验证成功。
在一些实施例中,所述一零三模块包括一零三一模块(未示出)以及一零三二模块(未示出),一零三一模块,用于根据所述救援现场位置信息确定处理所述救援任务信息的目标救援者,其中,所述目标救援者的当前位置信息与所述救援现场位置信息间的距离小于或等于预定的距离阈值信息;一零三二模块,用于将所述救援任务信息及所述救援存放设备的位置信息发送给所述目标救援者对应的用户设备。在一些实施例中,基于GPS定位、北斗卫星定位、WIFI网络定位或者基站定位等定位技术中的一项或者多项的结合来获取多个救援者的当前位置信息,并根据救援现场位置信息在所述多个救援者中查询位于该救援现场位置信息附近的目标救援者,以便救援者可以及时赶到救援现场实施救援。进一步地,网络设备将其接收的救援任务信息以及查询到的救援存放设备的位置信息发送给位于救援现场附近的一个或多个目标救援者。
在一些实施例中,所述一零三模块包括一零三三模块(未示出)、一零三四模块(未示出)、一零三五模块(未示出)、一零三六模块(未示出),一零三三模块,用于将所述救援任务信息发送给一个或多个候选救援者,其中,每个候选救援者的当前位置信息与所述救援现场位置信息间的距离小于或等于预定的距离阈值信息;一零三四模块,用于接收所述一个或多个候选救援者中至少一个候选救援者对所述救援任务信息的确认反馈信息;一零三五模块,用于从所述至少一个候选救援者中选择确定所述救援任务信息的目标救援者;一零三六模块,用于将所述救援存放设备的位置信息发送给所述目标救援者对应的用户设备。在一些实施例中,网络设备通过接收候选救援者基于救援任务信息返回的确认反馈信息确定最终的目标救援者。例如,网络设备接收到呼救者发送的救援任务信息,并基于该救援任务信息对应的救援现场位置信息查找位于该救援现场位置信息附近的一个或多个候选救援者,其中,确定救援现场位置信息、救援者当前位置信息的具体实施方式请参照上述相关实施例的说明,在此不做赘述,并以引用的方式包含于此。进一步地,该候选救援者基于接收到的救援任务信息向该网络设备返回确认反馈信息,例如,该候选救援者在当前方便前去救援现场救援的情况下向网络设备返回确认反馈信息。该网络设备基于接收的确认反馈信息确定该救援任务信息最终对应的目标救援者。进一步地,该网络设备将查找出的救援存放设备的位置信息发送给所述发送确认反馈信息的目标救援者对应的用户设备。
图8示出根据本申请一个实施例的一种救援存放设备,其中,所述救援存放设备用于存放一个或多个可穿戴救援设备,所述救援存放设备包括用于对所述可穿戴救援设备进行充电的充电模块,所述设备包括二零一模块以及二零二模块,二零一模块,用于检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;二零二模块,用于将所述设备状况信息上报给对应的网络设备。在一些实施例中,所述救援存放设备用于存放可穿戴救援设备。在一些实施例中,所述救援存放设备通过电子锁或者机械锁对所述可穿戴救援设备进行安全存放。在一些实施例中,所述救援存放设备设置有为该可穿戴救援设备进行充电的充电模块。在一些实施例中,所述救援存放设备与所述可穿戴救援设备均设置有通信模块,用于二者之间进行信息传递。可穿戴救援设备将自身的设备状况信息信息上报给对应的救援存放设备,该救援存放设备检查该可穿戴救援设备的设备状况信息,并将该设备状况信息上报给对应的网络设备,以便所述网络设备根据该设备状况信息对对应的可穿戴救援设备进行设备管理以及从查找出的一个或多个可穿戴救援设备中确定可用的目标可穿戴救援设备。
在一些实施例中,所述设备还包括二零三模块(未示出)以及二零四模块(未示出),二零三模块,用于接收所述网络设备发送的关于所述一个或多个可穿戴救援设备中目标可穿戴救援设备的开机指令信息;二零四模块,用于根据所述开机指令信息对所述目标可穿戴救援设备执行开机操作。在一些实施例中,网络设备基于可穿戴救援设备的设备状况信息确定出目标可穿戴救援设备后,该网络设备向该目标可穿戴救援设备对应的救援存放设备发送开机指令信息,该救援存放设备接收该开机指令信息,并基于该开机指令信息对该目标可穿戴救援设备执行开机操作,用于为目标救援者提前开启该目标可穿戴救援设备,以节约救援时间。
在一些实施例中,所述设备还包括二零五模块(未示出)以及二零六模块(未示出),二零五模块,用于接收网络设备发送的关于所述可穿戴救援设备的充电指令信息;二零六模块,用于根据所述充电指令信息对所述可穿戴救援设备执行充电操作。在一些实施例中,网络设备获取救援存放设备上报的对应的(例如,存放在该救援存放设备中的可穿戴救援设备)可穿戴救援设备的设备状况信息。在一些实施例中,所述设备状况信息包括该可穿戴救援设备的电量信息,网络设备检测该电量信息是否低于预设的电量阈值信息,若该可穿戴救援设备的电量信息低于该电量阈值信息,则该网络设备向存放该可穿戴救援设备的救援存放设备发送充电指令信息。在一些实施例中,可穿戴救援设备与 存放该可穿戴救援设备的救援存放设备间存在映射关系,以确定可穿戴救援设备与救援存放设备间的对应关系。救援存放设备接收该充电指令信息后对该可穿戴救援设备执行充电操作,以保证存放在救援存放设备上的可穿戴救援设备始终处于电量充足的状态。
在一些实施例中,所述设备还包括二零七模块(未示出)、二零八模块(未示出)以及二零九模块(未示出),二零七模块,用于向对应的网络设备发送验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;二零八模块,用于接收所述网络设备发送的对应的验证结果信息或开锁指令信息;二零九模块,用于根据所述验证结果信息或开锁指令信息执行开锁操作。在一些实施例中,救援存放设备通过电子锁或者机械锁来安全存放可穿戴救援设备,为了实现智能开锁的功能,救援存放设备通过向对应的网络设备发送验证请求信息进行验证开锁。在一些实施例中,所述验证依据信息包括但不限于该网络设备向目标救援者发送的授权信息(例如,密码、授权码、二维码等)。该目标救援者通过在该救援存放设备上输入该授权信息向网络设备发送验证请求信息,其中,该验证请求信息包括该授权信息。该网络设备接收该验证请求信息,并根据该验证请求信息中的授权信息判断是否向该救援存放设备发送开锁指令信息。若该授权信息与网络设备向目标救援者发送的该救援存放设备的授权信息对应匹配,则验证成功,网络设备向该救援存放设备发送验证成功的验证结果信息,或者,网络设备直接向该救援存放设备发送开锁指令信息。该救援存放设备接收该验证成功的验证结果信息或者开锁指令信息,并执行开锁操作。
在一些实施例中,所述设备还包括二一一模块(未示出),二一一模块,用于接收网络设备发送的所述救援存放设备对应的验证依据信息。在一些实施例中,所述验证依据信息包括该救援存放设备对应的授权信息(例如,密码、二维码、授权码等),所述授权信息用于解锁该救援存放设备,以便救援者成功取出存放在该救援存放设备中的可穿戴救援设备。在一些实施例中,网络设备将救援存放设备对应的授权信息发送给该救援存放设备,同时,网络设备将该授权信息发送给目标救援者对应的用户设备。在一些实施例中,该目标救援者通过在救援存放设备上输入该授权信息进行开锁验证。
在一些实施例中,所述设备还包括二一二模块(未示出)以及二一三模块(未示出),二一二模块,用于接收验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;二一三模块,用于根据所述验证依据信息执行开锁操作。在一些实施例中,救援存放设备接收验证请求信息,其中,在一些实施例中,所述验证依据信息 包括该救援存放设备通过摄像装置或者人脸认证装置获取的关于前来提取可穿戴救援设备的目标救援者的人脸图像信息、救援者标识信息或者编号信息;在另一些实施例中,所述验证依据信息包括前来提取可穿戴救援设备的目标救援者输入的授权信息。进一步地,网络设备将关于目标救援者的上述验证依据信息发送给该救援存放设备,该救援存放设备根据网络设备发送的验证依据信息以及自身获取的关于目标救援者的验证依据信息进行匹配判断,若匹配成功,则执行开锁操作。
图9示出根据本申请一个实施例的一种用户设备,其中,所述设备包括三零一模块以及三零二模块,三零一模块,用于接收对应的网络设备发送的救援任务信息;三零二模块,用于接收所述救援任务信息对应的救援存放设备的位置信息。在一些实施例中,所述用户设备为目标救援者对应的用户设备。网络设备将呼救者发送的救援任务信息发送给对应的一个或多个目标救援者。该目标救援者通过其对应的用户设备接收该救援任务信息。同时,网络设备基于该救援任务信息确定出一个或多个位于救援现场位置信息附近的一个或多个救援存放设备后,将该一个或多个救援存放设备的位置信息发送给该用户设备,该用户设备接收该位置信息,该目标救援者根据该用户设备呈现的关于一个或多个救援存放设备的位置信息选择最方便提取可穿戴救援设备的一个。
在一些实施例中,所述设备还包括三零三模块(未示出),三零三模块,用于基于目标救援者的确认操作向对应的网络设备发送对所述救援任务信息的确认反馈信息。在一些实施例中,一个或多个救援者会接收到网络设备发送的救援任务信息,该一个或多个救援者通过向网络设备发送确认反馈信息来确定参与救援活动。从而确定该救援任务信息对应的目标救援者。
在一些实施例中,所述设备还包括三零四模块(未示出),三零四模块,用于接收对应的网络设备发送的所述救援任务信息对应的目标可穿戴救援设备的标识信息。在一些实施例中,网络设备向目标救援者对应的用户设备发送救援任务信息对应的目标可穿戴救援设备的标识信息。网络设备确定出目标可穿戴救援设备后,将该目标可穿戴救援设备的标识信息(例如,该目标可穿戴救援设备的序列号),在一些实施例中,每个可穿戴救援设备有其对应的标识信息,该标识信息可对应该可穿戴救援设备所属的组别号或者设备编号,以便于对多个可穿戴救援设备进行管理;在一些实施例中,每个可穿戴救援设备的标识信息与存放该可穿戴救援设备的救援存放设备间存在映射关系,网络设备通过可穿戴救援设备的设备状况信息确定出目标可穿戴救援设备,进而根据该目标可 穿戴救援设备的标识信息确定出对应的救援存放设备,以便于救援者通过该救援存放设备的位置信息找到该可穿戴救援设备。在本实施例中,通过救援存放设备对可穿戴救援设备进行安全管理,并且,基于网络设备实现了对救援存放设备的智能管理。
在一些实施例中,所述设备还包括三零五模块(未示出),三零五模块,用于接收对应的网络设备发送的关于救援存放设备的授权信息,其中,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备。在一些实施例中,所述授权信息包括但不限于密码、二维码、授权码等。网络设备在确定出救援存放设备后,将该救援存放设备对应的授权信息(例如,开锁密码)发送给目标救援者对应的用户设备。该目标救援者通过在该救援存放设备上输入该授权信息打开该救援存放设备上的锁,从而成功提取该救援存放设备中存放的可穿戴救援设备。
本申请还提供了一种计算机可读存储介质,所述计算机可读存储介质存储有计算机代码,当所述计算机代码被执行时,如前任一项所述的方法被执行。
本申请还提供了一种计算机程序产品,当所述计算机程序产品被计算机设备执行时,如前任一项所述的方法被执行。
本申请还提供了一种计算机设备,所述计算机设备包括:
一个或多个处理器;
存储器,用于存储一个或多个计算机程序;
当所述一个或多个计算机程序被所述一个或多个处理器执行时,使得所述一个或多个处理器实现如前任一项所述的方法。
图10示出了可被用于实施本申请中所述的各个实施例的示例性系统;
如图10所示在一些实施例中,系统300能够作为各所述实施例中的任意一个设备。在一些实施例中,系统300可包括具有指令的一个或多个计算机可读介质(例如,系统存储器或NVM/存储设备320)以及与该一个或多个计算机可读介质耦合并被配置为执行指令以实现模块从而执行本申请中所述的动作的一个或多个处理器(例如,(一个或多个)处理器305)。
对于一个实施例,系统控制模块310可包括任意适当的接口控制器,以向(一个或多个)处理器305中的至少一个和/或与系统控制模块310通信的任意适当的设备或组件提供任意适当的接口。
系统控制模块310可包括存储器控制器模块330,以向系统存储器315提供接口。 存储器控制器模块330可以是硬件模块、软件模块和/或固件模块。
系统存储器315可被用于例如为系统300加载和存储数据和/或指令。对于一个实施例,系统存储器315可包括任意适当的易失性存储器,例如,适当的DRAM。在一些实施例中,系统存储器315可包括双倍数据速率类型四同步动态随机存取存储器(DDR4SDRAM)。
对于一个实施例,系统控制模块310可包括一个或多个输入/输出(I/O)控制器,以向NVM/存储设备320及(一个或多个)通信接口325提供接口。
例如,NVM/存储设备320可被用于存储数据和/或指令。NVM/存储设备320可包括任意适当的非易失性存储器(例如,闪存)和/或可包括任意适当的(一个或多个)非易失性存储设备(例如,一个或多个硬盘驱动器(HDD)、一个或多个光盘(CD)驱动器和/或一个或多个数字通用光盘(DVD)驱动器)。
NVM/存储设备320可包括在物理上作为系统300被安装在其上的设备的一部分的存储资源,或者其可被该设备访问而不必作为该设备的一部分。例如,NVM/存储设备320可通过网络经由(一个或多个)通信接口325进行访问。
(一个或多个)通信接口325可为系统300提供接口以通过一个或多个网络和/或与任意其他适当的设备通信。系统300可根据一个或多个无线网络标准和/或协议中的任意标准和/或协议来与无线网络的一个或多个组件进行无线通信。
对于一个实施例,(一个或多个)处理器305中的至少一个可与系统控制模块310的一个或多个控制器(例如,存储器控制器模块330)的逻辑封装在一起。对于一个实施例,(一个或多个)处理器305中的至少一个可与系统控制模块310的一个或多个控制器的逻辑封装在一起以形成系统级封装(SiP)。对于一个实施例,(一个或多个)处理器305中的至少一个可与系统控制模块310的一个或多个控制器的逻辑集成在同一模具上。对于一个实施例,(一个或多个)处理器305中的至少一个可与系统控制模块310的一个或多个控制器的逻辑集成在同一模具上以形成片上系统(SoC)。
在各个实施例中,系统300可以但不限于是:服务器、工作站、台式计算设备或移动计算设备(例如,膝上型计算设备、手持计算设备、平板电脑、上网本等)。在各个实施例中,系统300可具有更多或更少的组件和/或不同的架构。例如,在一些实施例中,系统300包括一个或多个摄像机、键盘、液晶显示器(LCD)屏幕(包括触屏显示器)、非易失性存储器端口、多个天线、图形芯片、专用集成电路(ASIC) 和扬声器。
需要注意的是,本申请可在软件和/或软件与硬件的组合体中被实施,例如,可采用专用集成电路(ASIC)、通用目的计算机或任何其他类似硬件设备来实现。在一个实施例中,本申请的软件程序可以通过处理器执行以实现上文所述步骤或功能。同样地,本申请的软件程序(包括相关的数据结构)可以被存储到计算机可读记录介质中,例如,RAM存储器,磁或光驱动器或软磁盘及类似设备。另外,本申请的一些步骤或功能可采用硬件来实现,例如,作为与处理器配合从而执行各个步骤或功能的电路。
另外,本申请的一部分可被应用为计算机程序产品,例如计算机程序指令,当其被计算机执行时,通过该计算机的操作,可以调用或提供根据本申请的方法和/或技术方案。本领域技术人员应能理解,计算机程序指令在计算机可读介质中的存在形式包括但不限于源文件、可执行文件、安装包文件等,相应地,计算机程序指令被计算机执行的方式包括但不限于:该计算机直接执行该指令,或者该计算机编译该指令后再执行对应的编译后程序,或者该计算机读取并执行该指令,或者该计算机读取并安装该指令后再执行对应的安装后程序。在此,计算机可读介质可以是可供计算机访问的任意可用的计算机可读存储介质或通信介质。
通信介质包括藉此包含例如计算机可读指令、数据结构、程序模块或其他数据的通信信号被从一个系统传送到另一系统的介质。通信介质可包括有导的传输介质(诸如电缆和线(例如,光纤、同轴等))和能传播能量波的无线(未有导的传输)介质,诸如声音、电磁、RF、微波和红外。计算机可读指令、数据结构、程序模块或其他数据可被体现为例如无线介质(诸如载波或诸如被体现为扩展频谱技术的一部分的类似机制)中的已调制数据信号。术语“已调制数据信号”指的是其一个或多个特征以在信号中编码信息的方式被更改或设定的信号。调制可以是模拟的、数字的或混合调制技术。
作为示例而非限制,计算机可读存储介质可包括以用于存储诸如计算机可读指令、数据结构、程序模块或其它数据的信息的任何方法或技术实现的易失性和非易失性、可移动和不可移动的介质。例如,计算机可读存储介质包括,但不限于,易失性存储器,诸如随机存储器(RAM,DRAM,SRAM);以及非易失性存储器,诸如闪 存、各种只读存储器(ROM,PROM,EPROM,EEPROM)、磁性和铁磁/铁电存储器(MRAM,FeRAM);以及磁性和光学存储设备(硬盘、磁带、CD、DVD);或其它现在已知的介质或今后开发的能够存储供计算机系统使用的计算机可读信息/数据。
在此,根据本申请的一个实施例包括一个装置,该装置包括用于存储计算机程序指令的存储器和用于执行程序指令的处理器,其中,当该计算机程序指令被该处理器执行时,触发该装置运行基于前述根据本申请的多个实施例的方法和/或技术方案。
对于本领域技术人员而言,显然本申请不限于上述示范性实施例的细节,而且在不背离本申请的精神或基本特征的情况下,能够以其他的具体形式实现本申请。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本申请的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化涵括在本申请内。不应将权利要求中的任何附图标记视为限制所涉及的权利要求。此外,显然“包括”一词不排除其他单元或步骤,单数不排除复数。装置权利要求中陈述的多个单元或装置也可以由一个单元或装置通过软件或者硬件来实现。第一,第二等词语用来表示名称,而并不表示任何特定的顺序。

Claims (27)

  1. 一种在网络设备端的救援方法,其中,该方法包括:
    接收救援任务信息;
    根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备;
    将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备。
  2. 根据权利要求1所述的方法,其中,所述方法还包括:
    根据所述目标救援者的救援技能信息向所述目标救援者使用的可穿戴救援设备发送救援指导信息。
  3. 根据权利要求1所述的方法,其中,所述方法还包括:
    接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;
    根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备;
    将所述目标可穿戴救援设备的标识信息发送至所述用户设备。
  4. 根据权利要求3所述的方法,其中,所述方法还包括:
    向所述救援存放设备发送关于所述目标可穿戴救援设备的开机指令信息。
  5. 根据权利要求3所述的方法,其中,所述设备状况信息包括以下至少任一项:
    所述可穿戴救援设备的电量信息;
    所述可穿戴救援设备的启动状态信息;
    所述可穿戴救援设备的使用状态信息;
    所述可穿戴救援设备的网络信号信息;
    所述可穿戴救援设备的位置信息。
  6. 根据权利要求5所述的方法,其中,所述设备状况信息包括所述可穿戴救援设备的电量信息;
    其中,所述方法还包括:
    根据所述目标可穿戴救援设备的电量信息向存放所述目标可穿戴救援设备的所述救援存放设备发送关于所述目标可穿戴救援设备的充电指令信息。
  7. 根据权利要求3所述的方法,其中,所述方法还包括:
    接收所述救援存放设备发送的验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;
    对所述验证依据信息执行验证处理;
    向所述救援存放设备发送对应的验证结果信息或开锁指令信息。
  8. 根据权利要求3所述的方法,其中,所述方法还包括:
    将所述救援存放设备对应的验证依据信息发送给所述救援存放设备。
  9. 根据权利要求7或8所述的方法,其中,所述验证依据信息包括以下至少任一项:
    所述用户设备从所述网络设备接收到的授权信息,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备;
    所述目标救援者的人脸图像信息;
    所述目标救援者的编号信息;
    所述目标救援者的救援者标识信息。
  10. 根据权利要求1所述的方法,其中,所述将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备,包括:
    根据所述救援现场位置信息确定处理所述救援任务信息的目标救援者,其中,所述目标救援者的当前位置信息与所述救援现场位置信息间的距离小于或等于预定的距离阈值信息;
    将所述救援任务信息及所述救援存放设备的位置信息发送给所述目标救援者对应的用户设备。
  11. 根据权利要求1所述的方法,其中,所述将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备,包括:
    将所述救援任务信息发送给一个或多个候选救援者,其中,每个候选救援者的当前位置信息与所述救援现场位置信息间的距离小于或等于预定的距离阈值信息;
    接收所述一个或多个候选救援者中至少一个候选救援者对所述救援任务信息的确认反馈信息;
    从所述至少一个候选救援者中选择确定所述救援任务信息的目标救援者;
    将所述救援存放设备的位置信息发送给所述目标救援者对应的用户设备。
  12. 一种在救援存放设备端的救援方法,其中,所述救援存放设备用于存放一个或多个可穿戴救援设备,所述救援存放设备包括用于对所述可穿戴救援设备进行充电的充电模块,所述方法包括:
    检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;
    将所述设备状况信息上报给对应的网络设备。
  13. 根据权利要求12所述的方法,其中,所述方法还包括:
    接收所述网络设备发送的关于所述一个或多个可穿戴救援设备中目标可穿戴救援设备的开机指令信息;
    根据所述开机指令信息对所述目标可穿戴救援设备执行开机操作。
  14. 根据权利要求12所述的方法,其中,所述方法还包括:
    接收网络设备发送的关于所述可穿戴救援设备的充电指令信息;
    根据所述充电指令信息对所述可穿戴救援设备执行充电操作。
  15. 根据权利要求12所述的方法,其中,所述方法还包括:
    向对应的网络设备发送验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;
    接收所述网络设备发送的对应的验证结果信息或开锁指令信息;
    根据所述验证结果信息或开锁指令信息执行开锁操作。
  16. 根据权利要求12所述的方法,其中,所述方法还包括:
    接收网络设备发送的所述救援存放设备对应的验证依据信息。
  17. 根据权利要求16所述的方法,其中,所述方法还包括:
    接收验证请求信息,其中,所述验证请求信息包括关于所述目标救援者的验证依据信息;
    根据所述验证依据信息执行开锁操作。
  18. 一种在用户设备端的救援方法,其中,所述方法包括:
    接收对应的网络设备发送的救援任务信息;
    接收所述救援任务信息对应的救援存放设备的位置信息。
  19. 根据权利要求18所述的方法,其中,所述方法还包括:
    基于目标救援者的确认操作向对应的网络设备发送对所述救援任务信息的确认反 馈信息。
  20. 根据权利要求18所述的方法,其中,所述方法还包括:
    接收对应的网络设备发送的所述救援任务信息对应的目标可穿戴救援设备的标识信息。
  21. 根据权利要求18所述的方法,其中,所述方法还包括:
    接收对应的网络设备发送的关于救援存放设备的授权信息,其中,所述授权信息用于授权所述目标救援者从所述救援存放设备中提取可穿戴救援设备。
  22. 一种救援方法,其中,所述方法包括:
    网络设备接收救援任务信息,根据所述救援任务信息对应的救援现场位置信息在救援存放设备信息库中查询获得与所述救援现场位置信息相匹配的救援存放设备,其中,所述救援存放设备中存放有可供救援者使用的可穿戴救援设备,将所述救援任务信息及所述救援存放设备的位置信息发送给处理所述救援任务信息的目标救援者对应的用户设备;
    所述用户设备接收所述网络设备发送的救援任务信息以及所述救援任务信息对应的救援存放设备的位置信息。
  23. 一种救援方法,其中,所述方法包括:
    救援存放设备端检测获得所述一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息,将所述设备状况信息上报给对应的网络设备;
    所述网络设备接收所述救援存放设备上传的一个或多个可穿戴救援设备中每个可穿戴救援设备的设备状况信息;根据所述设备状况信息,从所述一个或多个可穿戴救援设备中选择所述救援任务信息对应的目标可穿戴救援设备,将所述目标可穿戴救援设备的标识信息发送至所述用户设备;
    所述用户设备接收所述网络设备发送的所述救援任务信息对应的目标可穿戴救援设备的标识信息。
  24. 一种救援设备,其中,该设备包括:
    处理器;以及
    被安排成存储计算机可执行指令的存储器,所述可执行指令在被执行时使所述处理器执行如权利要求1至11中任一项方法所述的操作。
  25. 一种救援设备,其中,该设备包括:
    处理器;以及
    被安排成存储计算机可执行指令的存储器,所述可执行指令在被执行时使所述处理器执行如权利要求12至17中任一项方法所述的操作。
  26. 一种救援设备,其中,该设备包括:
    处理器;以及
    被安排成存储计算机可执行指令的存储器,所述可执行指令在被执行时使所述处理器执行如权利要求18至21中任一项方法所述的操作。
  27. 一种存储指令的计算机可读介质,所述指令在被执行时使得系统进行如权利要求1至21中任一项方法所述的操作。
PCT/CN2020/077891 2019-03-11 2020-03-05 一种救援方法与设备 WO2020182039A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201910179846.9 2019-03-11
CN201910179846.9A CN109862112B (zh) 2019-03-11 2019-03-11 一种救援方法与设备

Publications (1)

Publication Number Publication Date
WO2020182039A1 true WO2020182039A1 (zh) 2020-09-17

Family

ID=66900304

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/077891 WO2020182039A1 (zh) 2019-03-11 2020-03-05 一种救援方法与设备

Country Status (2)

Country Link
CN (1) CN109862112B (zh)
WO (1) WO2020182039A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112261574A (zh) * 2020-10-20 2021-01-22 中移雄安信息通信科技有限公司 目标救援对象的确定方法、装置、设备及计算机存储介质

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109862112B (zh) * 2019-03-11 2021-10-26 上海救要救信息科技有限公司 一种救援方法与设备
CN111654670A (zh) * 2020-05-27 2020-09-11 北京软通智慧城市科技有限公司 一种信息采集系统
CN114915661A (zh) * 2021-02-09 2022-08-16 上海救要救信息科技有限公司 一种对用户进行救援的方法与设备

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105391878A (zh) * 2015-11-23 2016-03-09 上海汽车集团股份有限公司 车辆救援的方法和装置
WO2016177192A1 (zh) * 2015-09-29 2016-11-10 中兴通讯股份有限公司 一种求救设备、救援设备及方法及计算机可读存储介质
CN106980938A (zh) * 2017-03-31 2017-07-25 深圳致业信息科技有限公司 一种互联报警救援系统及其方法
CN109862112A (zh) * 2019-03-11 2019-06-07 上海救要救信息科技有限公司 一种救援方法与设备

Family Cites Families (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101729704A (zh) * 2008-10-29 2010-06-09 中兴通讯股份有限公司 一种基于定位技术的报警信息推送系统、装置及方法
US8610568B2 (en) * 2011-12-17 2013-12-17 Hon Hai Precision Industry Co., Ltd. Emergency response system and method
CN102739786B (zh) * 2012-06-22 2013-04-24 渤海大学 基于泛在网络的建筑火灾智能救助系统及方法
CN102999828B (zh) * 2012-11-15 2015-11-18 郑静晨 用于救援物资监控的数据处理方法和装置
CN104537598A (zh) * 2014-12-15 2015-04-22 江苏国遥信息科技有限公司 一种震源环境分析交互系统
CN105847267A (zh) * 2016-04-11 2016-08-10 上海救要救信息科技有限公司 用于记录救援信息的方法与设备
CN106803144A (zh) * 2016-12-16 2017-06-06 武汉微诚科技股份有限公司 一种基于gis的资产管控方法及系统
CN107071050A (zh) * 2017-05-15 2017-08-18 严治 一种紧急呼援医疗救助系统
CN107329478A (zh) * 2017-08-22 2017-11-07 深圳普思英察科技有限公司 一种生命探测车、可穿戴设备和虚拟现实探测系统
CN108074642A (zh) * 2017-12-29 2018-05-25 青岛大学附属医院 紧急医疗救援方法及系统、计算机装置及可读存储介质
CN109034572A (zh) * 2018-07-12 2018-12-18 深圳市轱辘汽车维修技术有限公司 一种车辆救援方法及相关设备
CN109190821B (zh) * 2018-08-30 2021-02-02 中国联合网络通信集团有限公司 基于边缘计算的灾难救援调度方法、装置和系统

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016177192A1 (zh) * 2015-09-29 2016-11-10 中兴通讯股份有限公司 一种求救设备、救援设备及方法及计算机可读存储介质
CN105391878A (zh) * 2015-11-23 2016-03-09 上海汽车集团股份有限公司 车辆救援的方法和装置
CN106980938A (zh) * 2017-03-31 2017-07-25 深圳致业信息科技有限公司 一种互联报警救援系统及其方法
CN109862112A (zh) * 2019-03-11 2019-06-07 上海救要救信息科技有限公司 一种救援方法与设备

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112261574A (zh) * 2020-10-20 2021-01-22 中移雄安信息通信科技有限公司 目标救援对象的确定方法、装置、设备及计算机存储介质
CN112261574B (zh) * 2020-10-20 2023-04-07 中移雄安信息通信科技有限公司 目标救援对象的确定方法、装置、设备及计算机存储介质

Also Published As

Publication number Publication date
CN109862112B (zh) 2021-10-26
CN109862112A (zh) 2019-06-07

Similar Documents

Publication Publication Date Title
WO2020182039A1 (zh) 一种救援方法与设备
US11303159B2 (en) Receiver device for facilitating wireless power reception
WO2020187075A1 (zh) 一种用于向救援者提供救援信息的方法与设备
US20210152035A1 (en) Receiver device for facilitating wireless energy reception
US9485655B1 (en) Providing power control to an electronic device using authentication
WO2020187037A1 (zh) 一种救援方法与设备
WO2020216110A1 (zh) 一种救援方法与设备
TW200414051A (en) Encapsulation of a TCPA trusted platform module functionality within a server management coprocessor subsystem
WO2018210324A1 (zh) 一种通过充电装置对用户设备进行充电的方法与设备
EP4227918A1 (en) Uwb-based control method and apparatus for smart lock, and medium and electronic device
WO2020156527A1 (zh) 一种用于建立救援组的方法与设备
WO2020156524A1 (zh) 一种用于确定救援小组信息的方法与设备
RU2685693C1 (ru) Способ и устройство для обеспечения сигнала, указывающего потерю терминала
KR102614445B1 (ko) 메신저 봇을 이용하여 IoT 기기를 제어하기 위한 방법, 시스템, 및 비-일시적인 컴퓨터 판독가능한 기록 매체
WO2020164450A1 (zh) 一种用于呈现救援资源信息的方法与设备
TW201028883A (en) Secure platform management device
US20130335223A1 (en) Electronics theft deterrent system
CN109448172A (zh) 智能开锁方法和智能锁具
US20200044682A1 (en) Methods and Systems for Comprehensive Security-Lockdown
JP2022544845A (ja) デバイス識別情報の匿名化およびランダム化
US20240203576A1 (en) System and method for managing a defibrillator
US9876792B2 (en) Apparatus and method for host abstracted networked authorization
US20240031663A1 (en) Integrated surveillance system and methods for capturing sensor data controlled by security gateway
CN110087205A (zh) 一种用于获取被救援者的基础参数的方法与设备
US20170289758A1 (en) Technologies for preventing loss of compute devices in a cluster

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20769043

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20769043

Country of ref document: EP

Kind code of ref document: A1

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 04.02.2022)

122 Ep: pct application non-entry in european phase

Ref document number: 20769043

Country of ref document: EP

Kind code of ref document: A1