WO2019205246A1 - 临时安检系统的构建方法、系统、设备及存储介质 - Google Patents

临时安检系统的构建方法、系统、设备及存储介质 Download PDF

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Publication number
WO2019205246A1
WO2019205246A1 PCT/CN2018/091143 CN2018091143W WO2019205246A1 WO 2019205246 A1 WO2019205246 A1 WO 2019205246A1 CN 2018091143 W CN2018091143 W CN 2018091143W WO 2019205246 A1 WO2019205246 A1 WO 2019205246A1
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Prior art keywords
user
security
site
real
location
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PCT/CN2018/091143
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English (en)
French (fr)
Inventor
袁晖
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深圳市科迈爱康科技有限公司
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Publication of WO2019205246A1 publication Critical patent/WO2019205246A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01VGEOPHYSICS; GRAVITATIONAL MEASUREMENTS; DETECTING MASSES OR OBJECTS; TAGS
    • G01V9/00Prospecting or detecting by methods not provided for in groups G01V1/00 - G01V8/00

Definitions

  • the present application relates to the field of temporary construction, and in particular to a method, system, device and storage medium for constructing a temporary security inspection system.
  • the main purpose of the present application is to provide a method, system, device and storage medium for constructing a temporary security inspection system, which solves the technical problem that the location and time of the security inspection are limited.
  • the present application proposes a method for constructing a temporary security check system, including the steps:
  • the temporary security scene image is generated according to the above-mentioned construction navigation path, and sent to the wearable device of the user for projection, and combined with the security device for security check.
  • the application also proposes a construction system of a temporary security inspection system, including:
  • the site matching module is configured to match the appropriate site according to the site requirements
  • a navigation module configured to generate a navigation path of the security inspection system according to the information of the foregoing site, and send the navigation path to the user;
  • Obtaining a path module configured to acquire a walking path of the user of the above-mentioned user, and compare with the constructed navigation path to determine whether the similarity reaches a specified value;
  • the temporary security system module is generated, and is configured to generate a temporary security scene image according to the above-mentioned construction navigation path, and send it to the wearable device of the user for projection, and perform security check with the security inspection device.
  • the present application also provides a computer device comprising a memory, a processor, and a computer program stored on the memory and operable on the processor, the processor performing the above steps when the program is executed:
  • the temporary security scene image is generated according to the constructed navigation path, and sent to the wearable device of the user for projection, and the security inspection device is used for security check.
  • the present application also provides a computer readable storage medium having stored thereon a computer program that, when executed by the processor, implements the following steps:
  • the temporary security scene image is generated according to the constructed navigation path, and sent to the wearable device of the user for projection, and the security inspection device is used for security check.
  • the method, system, device and storage medium for constructing the temporary security inspection system of the present application generate a temporary security scene image according to the construction navigation path, and send it to the wearable device of the user for projection, and perform security check with the security inspection device, thereby enabling the user to Conduct security inspections at the location and time of the selection, which is applicable to the situation with immediate security requirements; and compare the site walking path with the construction of the navigation route to determine whether the ground conditions of the site are level and suitable for security inspection. Troubleshoot; and check the examiner of a certain size according to the detection feedback information, the real-time location of the detector, and the real-time environmental information.
  • FIG. 1 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application
  • FIG. 2 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application
  • FIG. 3 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application
  • FIG. 4 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application
  • FIG. 5 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application
  • FIG. 6 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application
  • FIG. 7 is a schematic flow chart of a method for constructing a temporary security check system according to an embodiment of the present application.
  • FIG. 8 is a schematic structural diagram of a construction system of a temporary security inspection system according to an embodiment of the present application.
  • FIG. 9 is a schematic structural diagram of a computer device according to an embodiment of the present application.
  • a method for constructing a temporary security check system including the steps of:
  • the suitable site is matched according to the site requirements, so that the suitable site is matched according to the needs of the user, wherein the site requirements generally include ground conditions, geographical location and weather conditions.
  • Step S2 generating a navigation path of the security inspection system according to the information of the site, and transmitting the navigation route to the user, and generating the navigation path according to the construction site of the optimal temporary security site, so that the user constructs the navigation path according to the foregoing Walk within the above construction site to obtain the actual ground conditions of the above construction sites.
  • the above-mentioned site walking path generally includes the level of each part of the walking route and the walking route
  • the above-mentioned construction navigation path generally includes the preset route and the level of each part of the preset route.
  • a temporary security scene image is generated according to the above-mentioned construction navigation path, and sent to the wearable device of the user for projection, and the security inspection device is used for security inspection, so that the user can perform the location and time at the selected location.
  • the security check is applicable to the situation where there is an immediate security check, wherein the wearable device can generally change the projection ray according to the real-time position of the user, so that the projected temporary security inspection system is fixedly displayed at the same position.
  • the method further includes the following steps:
  • Step S5 if not, regenerating the newly constructed navigation path according to the site walking path and the constructing navigation path, so that the user walks according to the newly constructed navigation path, thereby finding that the ground condition is flat and suitable as a temporary Security check system for security check.
  • the step of matching the appropriate site according to the site requirement includes the following steps:
  • the user obtains the location requirement, the weather requirement and the ground condition of the temporary security inspection system to generate the site requirement, wherein the geographic location is generally a regional location, and the weather information generally includes real-time temperature and weather conditions.
  • the above ground conditions are generally the level of road surface level and whether there is water accumulation.
  • step S7 an appropriate site set is matched according to the above site requirements, thereby obtaining all the sites meeting the above site requirements, and all the sites meeting the above site requirements are merged into the above site sets.
  • Step S8 sorting according to the distance of the venue of the venue set from the real-time location of the user, and sending the sorted list to the user, so that the user firstly views and selects a nearby venue to improve the user. Find nearby venues that meet the above site requirements.
  • the corresponding site is matched according to the selected site feedback information of the user, wherein the selected site feedback information generally includes a site location, a ground condition, and weather information.
  • the step of generating a navigation path of the security check system according to the information of the above-mentioned site and transmitting to the user includes the following steps:
  • S10 Generate navigation information according to the real-time location of the user and the geographic location of the site.
  • Step S10 generating navigation information according to the real-time location of the user and the geographic location of the site, and finding a coordinate location of the real-time location and the geographic location of the site on a three-dimensional electronic map or a two-dimensional electronic map, and according to the above
  • the real-time location and the coordinate location of the geographic location of the venue above generate navigation information between the real-time location and the geographic location of the venue.
  • step S11 it is determined whether the real-time location coincides with the geographic location of the venue, thereby determining whether the user arrives at the venue, wherein the geographic location of the venue is generally an area location.
  • step S12 if yes, the construction navigation route of the site is transmitted to the user, so that the user walks on the site of the temporary security system that needs to be constructed following the construction of the navigation route.
  • the method further includes the following steps:
  • the above-mentioned site walking path is equally divided or divided into a plurality of walking path segments according to a specified number, and real-time environmental information of each of the walking path segments is obtained;
  • the above-mentioned site walking path is equally divided or divided into a plurality of walking path segments according to a specified number, and real-time environmental information of each of the walking path segments is obtained, and the above-mentioned site walking path is split into several above-mentioned in a simulated map.
  • a walking path segment of the site, wherein the real-time environmental information generally includes weather information and road conditions.
  • step S14 the real-time location of the detector is obtained, and the real-time environment information of the corresponding walking path segment is matched, so that real-time environment information of the location of the detector is obtained, thereby acquiring the ground unevenness of the real-time location.
  • the detection result is generated according to the detection feedback information of the security device, the real-time location of the detector, and the real-time environment information.
  • the feedback information and the detection may be detected by the foregoing.
  • the unevenness of the ground on which the person is located is combined to accurately measure the height information of the above-mentioned examiner, thereby screening the above-mentioned examiner of the target height.
  • the method further includes the following steps:
  • the real-time position of the detector and the security check position of the temporary security system generate security navigation information
  • the real-time position of the above-mentioned detector and the coordinates of the security inspection position of the temporary security system are found on the three-dimensional electronic map or the two-dimensional electronic map. Positioning, and generating navigation information between the real-time location of the detector and the security location based on the real-time location of the detector and the coordinate location of the security location of the temporary security system.
  • step S17 it is determined whether the real-time position is coincident with the security check position, thereby determining whether the tester has reached the security check position, thereby performing security check on the tester.
  • step S18 if yes, the detection feedback information of the security device is acquired, and the detection result is generated, thereby detecting whether the detector has the contraband or the body shape of the detector.
  • the method further includes the following steps:
  • step S19 the security check list of the user is obtained, and the location information of the temporary security check system is sent to the tester in the security check list, so that the user can perform security check on the batch of the tester.
  • a method for constructing a temporary security check system includes the following steps:
  • S10 Generate navigation information according to the real-time location of the user and the geographic location of the site.
  • the above-mentioned site walking path is equally divided or divided into a plurality of walking path segments according to a specified number, and real-time environmental information of each of the walking path segments is obtained;
  • a method of constructing a temporary security system includes the steps of:
  • S10 Generate navigation information according to the real-time location of the user and the geographic location of the site.
  • the present application further provides a system for constructing a temporary security check system, including:
  • the site matching module 1 is configured to match an appropriate site according to the site requirements, thereby matching an appropriate site according to the needs of the user, wherein the site requirements generally include ground conditions, geographic location, and weather conditions;
  • the navigation module 2 is configured to generate a navigation path of the security system according to the information of the site, and send the navigation path to the user, and generate the navigation path according to the construction site of the optimal temporary security site, so that the user constructs according to the foregoing
  • the navigation path walks within the above construction site to obtain the actual ground condition of the above construction site;
  • the obtaining path module 3 is configured to acquire the walking path of the user's site, compare it with the above-built navigation path, and determine whether the similarity reaches a specified value, thereby determining whether the ground condition of the site is flat and suitable for the temporary security system.
  • the security inspection wherein the above-mentioned site walking path generally includes the level of each part of the walking route and the walking route, and the above-mentioned construction navigation path generally includes the preset route and the level of each part of the preset route;
  • Generating a temporary security system module 4 configured to generate a temporary security scene image according to the above-mentioned construction navigation path, and send it to the wearable device of the user for projection, and perform security check with the security inspection device, and generate a temporary security scene image according to the above-mentioned construction navigation path. And sending to the above-mentioned user's wearable device for projection, and the security inspection device is used for security inspection, so that the user can perform security inspection at the selected place and time, and is suitable for the situation of having immediate security inspection, wherein the above-mentioned wearable device Generally, the projection ray can be changed according to the real-time position of the user, so that the projected temporary security system is fixedly displayed at the same position.
  • the method further includes:
  • a navigation generating module configured to regenerate a newly constructed navigation path according to the above-mentioned site walking path and the above-mentioned constructed navigation path, so that the user walks according to the newly constructed navigation path, thereby finding that the ground condition is flat and suitable as a temporary security inspection system. Come to the security check.
  • the environment information obtaining module is configured to obtain the above-mentioned site requirements by acquiring the geographic location requirement, the weather requirement and the ground condition of the temporary security inspection system, wherein the geographic location is generally a regional location, and the weather information generally includes real-time temperature and weather.
  • the above ground conditions are generally the degree of road surface leveling and whether there is water accumulation.
  • the site set matching module is configured to match the appropriate site set according to the above site requirements, thereby obtaining all the sites meeting the above site requirements, and merging all the sites meeting the site requirements into the above site sets.
  • the sorting module is configured to sort according to the distance of the venue of the above-mentioned venue set from the real-time location of the user, and send the sorted list to the user, so that the user can first view and select a nearby venue to improve the user. Find nearby venues that meet the above site requirements.
  • the feedback module is configured to match the corresponding site according to the selected site feedback information of the user, wherein the selected site feedback information generally includes a site location, a ground condition, and weather information.
  • the site navigation module is configured to generate navigation information according to the real-time location of the user and the geographic location of the site, and find the coordinate position of the real-time location and the geographic location of the site on the three-dimensional electronic map or the two-dimensional electronic map, and according to The coordinate position between the real-time location and the geographic location of the venue is used to generate navigation information between the real-time location and the geographic location of the venue.
  • the location determining module is configured to determine whether the real-time location coincides with the geographic location of the venue, thereby determining whether the user arrives at the venue, wherein the geographic location of the venue is generally an area location.
  • the navigation path sending module is configured to send the construction navigation path of the above site to the user, so that the user walks on the site of the temporary security system that needs to be constructed following the above construction of the navigation path.
  • the splitting module is configured to split the above-mentioned site walking path equidistantly or into a plurality of walking path segments according to a specified number, and obtain real-time environmental information of each of the above-mentioned walking path segments, and split the above-mentioned site walking path into a plurality of simulated maps.
  • the above-mentioned site walking path segment, wherein the real-time environmental information generally includes weather information and road surface conditions.
  • the detector location acquisition module is configured to acquire the real-time location of the detector and match the real-time environment information of the corresponding walking path segment, thereby obtaining real-time environmental information of the location of the detector, thereby acquiring the ground unevenness of the real-time location. .
  • the first detection result generating module is configured to generate a detection result according to the detection feedback information of the security device, the real-time location of the detector, and the real-time environment information.
  • the feedback may be detected by the foregoing
  • the information is combined with the unevenness of the ground on which the above-mentioned detector is located, and the height information of the above-mentioned examiner is accurately measured, thereby screening out the above-mentioned detector of the target height.
  • the security navigation module is configured to generate security navigation information for the real-time location of the detector and the security location of the temporary security system, and find the real-time location of the above-mentioned detector and the security location of the temporary security system on the three-dimensional electronic map or the two-dimensional electronic map. a coordinate position, and generating navigation information between the real-time position of the examiner and the security check position according to the real-time position of the above-mentioned detector and the coordinate position of the security check position of the temporary security check system.
  • the security check location module is configured to determine whether the real-time location overlaps with the security check location, thereby determining whether the tester has reached the security check location, thereby performing security check on the tester.
  • the second detection result generating module is configured to acquire the detection feedback information of the security inspection device, and generate a detection result, thereby detecting whether the detection person carries the contraband or acquires the body shape of the detection object.
  • the security check list obtaining module is configured to obtain the security check list of the user, and send the location information of the temporary security check system to the tester in the security check list, so that the user can perform security check on the batch of the tester.
  • the present application further provides a computer device.
  • the computer device 5 is represented in the form of a general-purpose computing device.
  • the components of the computer device 5 may include, but are not limited to: one or more processors or Processing unit 5, system memory 12, connects bus 8 of various system components, including system memory 12 and processing unit 7.
  • Bus 8 represents one or more of several types of bus structures, including a memory bus or memory controller, a peripheral bus, a graphics acceleration port, a processor, or a local bus using any of a variety of bus structures.
  • these architectures include, but are not limited to, an Industry Standard Architecture (ISA) bus, a Micro Channel Architecture (MAC) bus, an Enhanced ISA Bus, a Video Electronics Standards Association (VESA) local bus, and peripheral component interconnects ( PCI) bus.
  • ISA Industry Standard Architecture
  • MAC Micro Channel Architecture
  • VESA Video Electronics Standards Association
  • PCI peripheral component interconnects
  • Computer device 5 typically includes a variety of computer system readable media. These media can be any available media that can be accessed by computer device 5, including both volatile and nonvolatile media, removable and non-removable media.
  • System memory 12 may include computer system readable media in the form of volatile memory, such as random access memory (RAM) 13 and/or cache memory 14.
  • Computer device 5 may further include other mobile/non-removable, volatile/non-volatile computer system storage media.
  • storage system 15 may be used to read and write non-removable, non-volatile magnetic media (commonly referred to as "hard disk drives").
  • a disk drive for reading and writing to a removable non-volatile disk such as a "floppy disk”
  • a removable non-volatile disk for example, CD ⁇ ROM, DVD ⁇ ROM
  • each drive can be coupled to bus 8 via one or more data medium interfaces.
  • the memory can include at least one program product having a set (e.g., at least one) of program modules 17 configured to perform the functions of the various embodiments of the present application.
  • a program/utility 16 having a set (at least one) of program modules 17 may be stored, for example, in a memory, such program modules 17 including, but not limited to, an operating system, one or more applications, other program modules And program data, each of these examples or some combination may include an implementation of a network environment.
  • Program module 17 typically performs the functions and/or methods of the embodiments described herein.
  • the computer device 5 can also communicate with one or more external devices 6 (eg, a keyboard, pointing device, display 11, camera, etc.), and can also communicate with one or more devices that enable the user to interact with the computer device 5, and/ Or communicate with any device (eg, a network card, modem, etc.) that enables the computer device 5 to communicate with one or more other computing devices. This communication can take place via an input/output (I/O) interface 10. Also, the computer device 5 can communicate with one or more networks (e.g., a local area network (LAN)), a wide area network (WAN), and/or a public network (e.g., the Internet) through the network adapter 9. As shown, network adapter 9 communicates with other modules of computer device 5 via bus 8.
  • LAN local area network
  • WAN wide area network
  • public network e.g., the Internet
  • the processing unit 7 executes various functions and data processing by running a program stored in the system memory 12, for example, a method for constructing a temporary security system provided by the embodiments of the present application.
  • the processing unit 7 executes the above-mentioned program, it is realized that a suitable site is matched according to the site requirements, and then a navigation path of the security inspection system is generated according to the information of the site, and sent to the user, thereby obtaining the site walk of the user.
  • the path is compared with the above constructed navigation path to determine whether the similarity reaches a specified value. If yes, a temporary security scene image is generated according to the above constructed navigation path, and sent to the wearable device of the user for projection, combined with the security device. Security check.
  • the present application further provides a computer readable storage medium, where the computer program is stored, and when the program is executed by the processor, the method for constructing the temporary security system provided by all embodiments of the present application is implemented:
  • the appropriate site is matched according to the site requirements, and then the navigation path of the security system is generated according to the information of the site, and sent to the user, thereby obtaining the walking path of the user. And comparing with the above-mentioned construction navigation path to determine whether the similarity reaches a specified value, and if so, generating a temporary security scene image according to the above-mentioned construction navigation path, and transmitting the image to the wearable device of the user for projection, and performing security check with the security inspection device. .
  • the computer readable medium can be a computer gram signal medium or a computer readable storage medium.
  • the computer readable storage medium can be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the above. More specific examples (non-exhaustive list) of computer readable storage media include: electrical connections having one or more wires, portable computer disks, hard disks, random access memory (RAM) 13, read only memory (ROM) An erasable programmable read only memory (EPOM or flash memory), optical fiber, portable compact disk read only memory (CD ⁇ ROM), optical storage device, magnetic storage device, or any suitable combination of the foregoing.
  • a computer readable storage medium can be any tangible medium that can contain or store a program, which can be used by or in connection with an instruction execution system, apparatus or device.
  • a computer readable signal medium may include a data signal that is propagated in the baseband or as part of a carrier, carrying computer readable program code. Such propagated data signals can take a variety of forms including, but not limited to, electromagnetic signals, optical signals, or any suitable combination of the foregoing.
  • the computer readable signal medium can also be any computer readable medium other than a computer readable storage medium that can be transmitted, propagated or transmitted for use by or in connection with an instruction execution system, apparatus or device. .
  • Computer program code for performing the operations of the present application may be written in one or more programming languages, or combinations thereof, including an object oriented programming language, such as Java, Smalltalk, C++, and conventional.
  • a procedural programming language - such as the "C" language or a similar programming language.
  • the program code may execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer, partly on the remote computer, or entirely on the remote computer or server.
  • the remote computer can be connected to the user's computer through any kind of network, including a local area network (LAN) or a wide area network (WAN), or can be connected to an external computer (eg, using an Internet service provider) Connected via the Internet).
  • LAN local area network
  • WAN wide area network
  • the method, system, device and storage medium for constructing the temporary security inspection system of the present application generate a temporary security scene image according to the construction navigation path, and send it to the wearable device of the user for projection, and perform security check with the security inspection device, thereby enabling the user to Conduct security inspections at the location and time of the selection, which is applicable to the situation with immediate security requirements; and compare the site walking path with the construction of the navigation route to determine whether the ground conditions of the site are level and suitable for security inspection. Troubleshoot; and check the examiner of a certain size according to the detection feedback information, the real-time location of the detector, and the real-time environmental information.

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Abstract

一种临时安检系统的构建方法、系统、设备及存储介质,包括步骤:根据场地要求匹配出适宜的场地(S1);根据场地的信息生成安检系统的构建导航路径,并发送至使用者(S2);获取使用者的场地步行路径,并与构建导航路径进行比较,判定相似度是否达到指定值(S3);若是,则根据构建导航路径生成临时安检场景图像,并发送至使用者的可穿戴设备进行投射,结合安检设备进行安检(S4)。临时安检系统的构建方法、系统、设备及存储介质,根据构建导航路径生成临时安检场景图像,并发送至使用者的可穿戴设备进行投射,结合安检设备进行安检,从而使得使用者能在自选的地点和时间进行安检排查,适用于有即时安检的需求的情况。

Description

临时安检系统的构建方法、系统、设备及存储介质
技术领域
本申请涉及到临时建设领域,特别是涉及到一种临时安检系统的构建方法、系统、设备及存储介质。
背景技术
随着恐怖主义、极端主义等安全问题的不断突出,在重要设施或场所管制区(如车站、机场、码头等人流和物流量较大等) 对进入这些管制区的人员进行安全检查的方式一般为人工检查和安检设备检查,即检查人员和安检设备对即将进入管制区的目标人员进行身份验证和危险物排携带的排查。但是现有技术中通过人工进行验证和危险排查的方式,由于场地的限制,需要大量的安检人员对人流进行指导,且需要预先安排安检人员和安检设备在固定的地点才能开始进行安检,使安检的地点和时间受到了限制,并不适用于有即时安检的需求的情况。
申请内容
本申请的主要目的为提供一种临时安检系统的构建方法、系统、设备及存储介质,解决了安检的地点和时间受到限制的技术问题。
本申请提出一种临时安检系统的构建方法,包括步骤:
根据场地要求匹配出适宜的场地;
根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者;
获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值;
若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检。
本申请还提出一种临时安检系统的构建系统,包括:
场地匹配模块,设置为根据场地要求匹配出适宜的场地;
构建导航模块,设置为根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者;
获取路径模块,设置为获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值;
生成临时安检系统模块,设置为根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检。
本申请还提出一种计算机设备,包括存储器、处理器以及存储在存储器上并可在处理器上运行的计算机程序,上述处理器执行上述程序时实现以下步骤:
根据场地要求匹配出适宜的场地;
根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者;
获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值;
若是,则根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检。
本申请还提出一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现以下步骤:
根据场地要求匹配出适宜的场地;
根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者;
获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值;
若是,则根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检。
本申请的临时安检系统的构建方法、系统、设备及存储介质,根据构建导航路径生成临时安检场景图像,并发送至使用者的可穿戴设备进行投射,结合安检设备进行安检,从而使得使用者能在自选的地点和时间进行安检排查,适用于有即时安检的需求的情况;并通过将场地步行路径与构建导航路径进行比较,从而判断该场地的地面情况是否平整且适宜作为安检场所来进行安检排查;且根据检测反馈信息、检测者的实时位置和实时环境信息排查一定体型的检查者。
附图说明
图1 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图2 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图3 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图4 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图5 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图6 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图7 是本申请一实施例的临时安检系统的构建方法的流程示意图;
图8 是本申请一实施例的临时安检系统的构建系统的结构示意图;
图9 是本申请一实施例的一种计算机设备的结构示意图。
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
参照图1,在本实施例中,提出一种临时安检系统的构建方法,包括步骤:
S1、根据场地要求匹配出适宜的场地;
S2、根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者;
S3、获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值;
S4、若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检。
如上述步骤S1,根据场地要求匹配出适宜的场地,从而根据上述使用者的需要匹配出适宜的场地,其中,上述场地要求一般包括地面情况、地理位置和天气情况。
如上述步骤S2,根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者,根据最佳的临时安检场所的构建地点生成上述构建导航路径,从而使上述使用者根据上述构建导航路径在上述构建地点内步行,进而获取上述构建地点的实际地面情况。
如上述步骤S3,获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值,从而判断该场地的地面情况是否平整且适宜作为临时安检系统来进行安检排查,其中,上述场地步行路径一般包括步行路线和步行路线各个部分的水平高度,上述构建导航路径一般包括预设路线和预设路线各个部分的水平高度。
如上述步骤S4,若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检,从而是使用者能在自选的地点和时间进行安检排查,适用于有即时安检的需求的情况,其中,上述可穿戴设备一般能根据上述使用者的实时位置改变投影射线,从而使投影出来的上述临时安检系统固定显示在同一位置。
参照图2,在本实施例中,在上述获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值的步骤之后,还包括步骤:
S5、若否,则根据上述场地步行路径和上述构建导航路径重新生成新构建导航路径。
如上述步骤S5,若否,则根据上述场地步行路径和上述构建导航路径重新生成新构建导航路径,从而使上述使用者根据上述新构建导航路径进行步行,进而查找到地面情况平整且适宜作为临时安检系统来进行安检排查。
参照图3,在本实施例中,上述根据场地要求匹配出适宜的场地的步骤包括步骤:
S6、获取上述使用者对上述临时安检系统的地理位置要求、天气要求和地面情况生成上述场地要求;
S7、根据上述场地要求匹配出适宜的场地集;
S8、根据上述场地集的场地距离上述使用者的实时位置的远近进行排序,并将排序列表发送至上述使用者;
S9、根据上述使用者的选择场地反馈信息匹配对应的上述场地。
如上述步骤S6,获取上述使用者对上述临时安检系统的地理位置要求、天气要求和地面情况生成上述场地要求,其中,上述地理位置一般为区域位置,上述天气信息一般包括实时温度和天气情况,上述地面情况一般为路面平整程度和是否有积水存在的情况。
如上述步骤S7,根据上述场地要求匹配出适宜的场地集,从而获取符合上述场地要求的所有场地,并将所有符合上述场地要求的场地合并成上述场地集。
如上述步骤S8,根据上述场地集的场地距离上述使用者的实时位置的远近进行排序,并将排序列表发送至上述使用者,便于上述使用者首先查看并选择距离近的场地,提高上述使用者查找符合上述场地要求的附近场地。
如上述步骤S9,根据上述使用者的选择场地反馈信息匹配对应的上述场地,其中,上述选择场地反馈信息一般包括场地位置、地面情况和天气信息。
参照图4,在本实施例中,上述根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者的步骤包括步骤:
S10、根据上述使用者的实时位置和上述场地的地理位置生成导航信息;
S11、判断上述实时位置是否与上述场地的地理位置重合;
S12、若是,则将上述场地的构建导航路径发送至上述使用者。
如上述步骤S10,根据上述使用者的实时位置和上述场地的地理位置生成导航信息,在三维电子地图或二维电子地图上查找到上述实时位置和上述场地的地理位置的坐标位置,并根据上述实时位置和上述场地的地理位置的坐标位置生成上述实时位置和上述场地的地理位置之间的导航信息。
如上述步骤S11,判断上述实时位置是否与上述场地的地理位置重合,从而判断上述使用者是否到达上述场地,其中,上述场地的地理位置一般为区域位置。
如上述步骤S12,若是,则将上述场地的构建导航路径发送至上述使用者,使上述使用者跟从上述构建导航路径在需要构建的临时安检系统的场地上步行。
参照图5,在本实施例中,在上述根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检的步骤之后,还包括步骤:
S13、将上述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个上述步行路径段的实时环境信息;
S14、获取检测者的实时位置,并匹配对应的上述步行路径段的实时环境信息;
S15、根据上述安检设备的检测反馈信息、上述检测者的实时位置和上述实时环境信息生成检测结果。
如上述步骤S13,将上述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个上述步行路径段的实时环境信息,在模拟地图将上述场地步行路径拆分为若干上述场地步行路径段,其中,上述实时环境信息一般包括天气信息和路面情况。
如上述步骤S14,获取检测者的实时位置,并匹配对应的上述步行路径段的实时环境信息,从而得到上述检测者所处位置的实时环境信息,从而获取上述实时位置的地面凹凸情况。
如上述步骤S15,根据上述安检设备的检测反馈信息、上述检测者的实时位置和上述实时环境信息生成检测结果,当需要排查一定身高的上述检测者时,可以通过上述将检测反馈信息与上述检测者所处地面的凹凸情况结合,准确测得上述检测者的身高信息,从而筛选出目标身高的上述检测者。
参照图6,在本实施例中,在上述根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检的步骤之后,还包括步骤:
S16、检测者的实时位置和临时安检系统的安检位置生成安检导航信息;
S17、判断上述实时位置是否与安检位置重合;
S18、若是,则获取上述安检设备的检测反馈信息,并生成检测结果。
如上述步骤S16,检测者的实时位置和临时安检系统的安检位置生成安检导航信息,在三维电子地图或二维电子地图上查找到上述检测者的实时位置和上述临时安检系统的安检位置的坐标位置,并根据上述检测者的实时位置和上述临时安检系统的安检位置的坐标位置生成上述检测者的实时位置和上述安检位置之间的导航信息。
如上述步骤S17,判断上述实时位置是否与安检位置重合,从而判断上述检测者是否到达上述安检位置,从而对上述检测者进行安检排查。
如上述步骤S18,若是,则获取上述安检设备的检测反馈信息,并生成检测结果,从而检测上述检测者是否有携带违禁品或获取上述检测者的体型。
参照图7,在本实施例中,在上述根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检的步骤之后,还包括步骤:
S19、获取上述使用者的安检名单,并将上述临时安检系统的位置信息发送至上述安检名单中的检测者。
如上述步骤S19,获取上述使用者的安检名单,并将上述临时安检系统的位置信息发送至上述安检名单中的检测者,便于上述使用者对上述检测者分批次进行安检排查。
在本实施例中,一种临时安检系统的构建方法,包括步骤:
S6、获取上述使用者对上述临时安检系统的地理位置要求、天气要求和地面情况生成上述场地要求;
S7、根据上述场地要求匹配出适宜的场地集;
S8、根据上述场地集的场地距离上述使用者的实时位置的远近进行排序,并将排序列表发送至上述使用者;
S9、根据上述使用者的选择场地反馈信息匹配对应的上述场地;
S10、根据上述使用者的实时位置和上述场地的地理位置生成导航信息;
S11、判断上述实时位置是否与上述场地的地理位置重合;
S12、若是,则将上述场地的构建导航路径发送至上述使用者;
S3、获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值;
S5、若否,则根据上述场地步行路径和上述构建导航路径重新生成新构建导航路径;
S4、若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检;
S13、将上述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个上述步行路径段的实时环境信息;
S14、获取检测者的实时位置,并匹配对应的上述步行路径段的实时环境信息;
S15、根据上述安检设备的检测反馈信息、上述检测者的实时位置和上述实时环境信息生成检测结果;
S19、获取上述使用者的安检名单,并将上述临时安检系统的位置信息发送至上述安检名单中的检测者。
在另一实施例中,一种临时安检系统的构建方法,包括步骤:
S6、获取上述使用者对上述临时安检系统的地理位置要求、天气要求和地面情况生成上述场地要求;
S7、根据上述场地要求匹配出适宜的场地集;
S8、根据上述场地集的场地距离上述使用者的实时位置的远近进行排序,并将排序列表发送至上述使用者;
S9、根据上述使用者的选择场地反馈信息匹配对应的上述场地;
S10、根据上述使用者的实时位置和上述场地的地理位置生成导航信息;
S11、判断上述实时位置是否与上述场地的地理位置重合;
S12、若是,则将上述场地的构建导航路径发送至上述使用者;
S3、获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值;
S5、若否,则根据上述场地步行路径和上述构建导航路径重新生成新构建导航路径;
S4、若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检;
S16、检测者的实时位置和临时安检系统的安检位置生成安检导航信息;
S17、判断上述实时位置是否与安检位置重合;
S18、若是,则获取上述安检设备的检测反馈信息,并生成检测结果;
S19、获取上述使用者的安检名单,并将上述临时安检系统的位置信息发送至上述安检名单中的检测者。
参照图8,本申请还提出一种临时安检系统的构建系统,包括:
场地匹配模块1,设置为根据场地要求匹配出适宜的场地,从而根据上述使用者的需要匹配出适宜的场地,其中,上述场地要求一般包括地面情况、地理位置和天气情况;
构建导航模块2,设置为根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者,根据最佳的临时安检场所的构建地点生成上述构建导航路径,从而使上述使用者根据上述构建导航路径在上述构建地点内步行,进而获取上述构建地点的实际地面情况;
获取路径模块3,设置为获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值,从而判断该场地的地面情况是否平整且适宜作为临时安检系统来进行安检排查,其中,上述场地步行路径一般包括步行路线和步行路线各个部分的水平高度,上述构建导航路径一般包括预设路线和预设路线各个部分的水平高度;
生成临时安检系统模块4,设置为根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检,根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检,从而是使用者能在自选的地点和时间进行安检排查,适用于有即时安检的需求的情况,其中,上述可穿戴设备一般能根据上述使用者的实时位置改变投影射线,从而使投影出来的上述临时安检系统固定显示在同一位置。
在本实施例中,还包括:
构建导航生成模块,设置为根据上述场地步行路径和上述构建导航路径重新生成新构建导航路径,从而使上述使用者根据上述新构建导航路径进行步行,进而查找到地面情况平整且适宜作为临时安检系统来进行安检排查。
环境信息获取模块,设置为获取上述使用者对上述临时安检系统的地理位置要求、天气要求和地面情况生成上述场地要求,其中,上述地理位置一般为区域位置,上述天气信息一般包括实时温度和天气情况,上述地面情况一般为路面平整程度和是否有积水存在的情况。
场地集匹配模块,设置为根据上述场地要求匹配出适宜的场地集,从而获取符合上述场地要求的所有场地,并将所有符合上述场地要求的场地合并成上述场地集。
排序模块,设置为根据上述场地集的场地距离上述使用者的实时位置的远近进行排序,并将排序列表发送至上述使用者,便于上述使用者首先查看并选择距离近的场地,提高上述使用者查找符合上述场地要求的附近场地。
反馈模块,设置为根据上述使用者的选择场地反馈信息匹配对应的上述场地,其中,上述选择场地反馈信息一般包括场地位置、地面情况和天气信息。
场地导航模块,设置为根据上述使用者的实时位置和上述场地的地理位置生成导航信息,在三维电子地图或二维电子地图上查找到上述实时位置和上述场地的地理位置的坐标位置,并根据上述实时位置和上述场地的地理位置的坐标位置生成上述实时位置和上述场地的地理位置之间的导航信息。
地理位置判断模块,设置为判断上述实时位置是否与上述场地的地理位置重合,从而判断上述使用者是否到达上述场地,其中,上述场地的地理位置一般为区域位置。
构建导航路径发送模块,设置为将上述场地的构建导航路径发送至上述使用者,使上述使用者跟从上述构建导航路径在需要构建的临时安检系统的场地上步行。
拆分模块,设置为将上述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个上述步行路径段的实时环境信息,在模拟地图将上述场地步行路径拆分为若干上述场地步行路径段,其中,上述实时环境信息一般包括天气信息和路面情况。
检测者位置获取模块,设置为获取检测者的实时位置,并匹配对应的上述步行路径段的实时环境信息,从而得到上述检测者所处位置的实时环境信息,从而获取上述实时位置的地面凹凸情况。
第一检测结果生成模块,设置为根据上述安检设备的检测反馈信息、上述检测者的实时位置和上述实时环境信息生成检测结果,当需要排查一定身高的上述检测者时,可以通过上述将检测反馈信息与上述检测者所处地面的凹凸情况结合,准确测得上述检测者的身高信息,从而筛选出目标身高的上述检测者。
安检导航模块,设置为检测者的实时位置和临时安检系统的安检位置生成安检导航信息,在三维电子地图或二维电子地图上查找到上述检测者的实时位置和上述临时安检系统的安检位置的坐标位置,并根据上述检测者的实时位置和上述临时安检系统的安检位置的坐标位置生成上述检测者的实时位置和上述安检位置之间的导航信息。
安检位置模块,设置为判断上述实时位置是否与安检位置重合,从而判断上述检测者是否到达上述安检位置,从而对上述检测者进行安检排查。
第二检测结果生成模块,设置为获取上述安检设备的检测反馈信息,并生成检测结果,从而检测上述检测者是否有携带违禁品或获取上述检测者的体型。
安检名单获取模块,设置为获取上述使用者的安检名单,并将上述临时安检系统的位置信息发送至上述安检名单中的检测者,便于上述使用者对上述检测者分批次进行安检排查。
参照图9,在本申请实施例中,本申请还提供一种计算机设备,上述计算机设备5以通用计算设备的形式表现,计算机设备5的组件可以包括但不限于:一个或者多个处理器或者处理单元5,系统存储器12,连接不同系统组件(包括系统存储器12和处理单元7)的总线8。
总线8表示几类总线结构中的一种或多种,包括存储器总线或者存储器控制器,外围总线,图形加速端口,处理器或者使用多种总线结构中的任意总线结构的局域总线。举例来说,这些体系结构包括但不限于工业标准体系结构(ISA)总线,微通道体系结构(MAC)总线,增强型ISA总线、视频电子标准协会(VESA)局域总线以及外围组件互连(PCI)总线。
计算机设备5典型地包括多种计算机系统可读介质。这些介质可以是任何能够被计算机设备5访问的可用介质,包括易失性和非易失性介质,可移动的和不可移动的介质。
系统存储器12可以包括易失性存储器形式的计算机系统可读介质,例如随机存取存储器(RAM)13和/或高速缓存存储器14。计算机设备5可以进一步包括其他移动/不可移动的、易失性/非易失性计算机体统存储介质。仅作为举例,存储系统15可以用于读写不可移动的、非易失性磁介质(通常称为“硬盘驱动器”)。尽管图9中未示出,可以提供用于对可移动非易失性磁盘(如“软盘”)读写的磁盘驱动器,以及对可移动非易失性光盘(例如CD~ROM,DVD~ROM或者其他光介质)读写的光盘驱动器。在这些情况下,每个驱动器可以通过一个或者多个数据介质接口与总线8相连。存储器可以包括至少一个程序产品,该程序产品具有一组(例如至少一个)程序模块17,这些程序模块17被配置以执行本申请各实施例的功能。
具有一组(至少一个)程序模块17的程序/实用工具16,可以存储在例如存储器中,这样的程序模块17包括——但不限于——操作系统、一个或者多个应用程序、其他程序模块以及程序数据,这些示例中的每一个或某种组合中可能包括网络环境的实现。程序模块17通常执行本申请所描述的实施例中的功能和/或方法。
计算机设备5也可以与一个或多个外部设备6(例如键盘、指向设备、显示器11、摄像头等)通信,还可与一个或者多个使得用户能与该计算机设备5交互的设备通信,和/或与使得该计算机设备5能与一个或多个其它计算设备进行通信的任何设备(例如网卡,调制解调器等等)通信。这种通信可以通过输入/输出(I/O)接口10进行。并且,计算机设备5还可以通过网络适配器9与一个或者多个网络(例如局域网(LAN)),广域网(WAN)和/或公共网络(例如因特网)通信。如图所示,网络适配器9通过总线8与计算机设备5的其他模块通信。应当明白,尽管图9中未示出,可以结合计算机设备5使用其他硬件和/或软件模块,包括但不限于:微代码、设备驱动器、冗余处理单元、外部磁盘驱动阵列、RAID系统、磁带驱动器以及数据备份存储系统等。
处理单元7通过运行存储在系统存储器12中的程序,从而执行各种功能应用以及数据处理,例如实现本申请实施例所提供的临时安检系统的构建方法。
也即,上述处理单元7执行上述程序时实现:根据场地要求匹配出适宜的场地,再根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者,进而获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值,若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检。
在本申请实施例中,本申请还提出一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现如本申请所有实施例提供的临时安检系统的构建方法:
也即,给程序被处理器执行时实现:根据场地要求匹配出适宜的场地,再根据上述场地的信息生成安检系统的构建导航路径,并发送至使用者,进而获取上述使用者的场地步行路径,并与上述构建导航路径进行比较,判定相似度是否达到指定值,若是,则根据上述构建导航路径生成临时安检场景图像,并发送至上述使用者的可穿戴设备进行投射,结合安检设备进行安检。
可以采用一个或多个计算机可读的介质的任意组合。计算机可读介质可以是计算机克顿信号介质或者计算机可读存储介质。计算机可读存储介质例如可以是——但不限于——电、磁、光、电磁、红外线或半导体的系统、装置或器件,或者任意以上的组合。计算机可读存储介质的更具体的例子(非穷举的列表)包括:具有一个或多个导线的电连接、便携式计算机磁盘、硬盘、随机存取存储器(RAM)13、只读存储器(ROM)、可擦可编程只读存储器(EPOM或闪存)、光纤、便携式紧凑磁盘只读存储器(CD~ROM)、光存储器件、磁存储器件或者上述的任意合适的组合。在本文件中,计算机可读存储介质可以是任何包含或存储程序的有形介质,该程序可以被指令执行系统、装置或者器件使用或者与其结合使用。
计算机可读的信号介质可以包括在基带中或者作为载波一部分传播的数据信号,其中承载了计算机可读的程序代码。这种传播的数据信号可以采用多种形式,包括——但不限于——电磁信号、光信号或上述的任意合适的组合。计算机可读的信号介质还可以是计算机可读存储介质以外的任何计算机可读介质,改计算机可读介质可以发送、传播或者传输用于由指令执行系统、装置或者器件使用或者与其结合使用的程序。
可以以一种或多种程序设计语言或其组合来编写用于执行本申请操作的计算机程序代码,上述程序设计语言包括面向对象的程序设计语言——诸如Java、Smalltalk、C++,还包括常规的过程式程序设计语言——诸如“C”语言或类似的程序设计语言。程序代码可以完全地在用户计算机上执行、部分地在用户计算机上执行、作为一个独立的软件包执行、部分在用户计算机上部分在远程计算机上执行或者完全在远程计算机或者服务器上执行。在涉及远程计算机的情形中,远程计算机可以通过任意种类的网络——包括局域网(LAN)或广域网(WAN)——连接到用户计算机,或者,可以连接到外部计算机(例如利用因特网服务提供商来通过因特网连接)。
本申请的临时安检系统的构建方法、系统、设备及存储介质,根据构建导航路径生成临时安检场景图像,并发送至使用者的可穿戴设备进行投射,结合安检设备进行安检,从而使得使用者能在自选的地点和时间进行安检排查,适用于有即时安检的需求的情况;并通过将场地步行路径与构建导航路径进行比较,从而判断该场地的地面情况是否平整且适宜作为安检场所来进行安检排查;且根据检测反馈信息、检测者的实时位置和实时环境信息排查一定体型的检查者。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (20)

  1. 一种临时安检系统的构建方法,其中,包括步骤:
    根据场地要求匹配出适宜的场地;
    根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者;
    获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值;
    若是,则根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检。
  2. 根据权利要求1所述的临时安检系统的构建方法,其中,在所述获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值的步骤之后,还包括步骤:
    若否,则根据所述场地步行路径和所述构建导航路径重新生成新构建导航路径。
  3. 根据权利要求1所述的临时安检系统的构建方法,其中,所述根据场地要求匹配出适宜的场地的步骤包括步骤:
    获取所述使用者对所述临时安检系统的地理位置要求、天气要求和地面情况生成所述场地要求;
    根据所述场地要求匹配出适宜的场地集;
    根据所述场地集的场地距离所述使用者的实时位置的远近进行排序,并将排序列表发送至所述使用者;
    根据所述使用者的选择场地反馈信息匹配对应的所述场地。
  4. 根据权利要求1所述的临时安检系统的构建方法,其中,所述根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者的步骤包括步骤:
    根据所述使用者的实时位置和所述场地的地理位置生成导航信息;
    判断所述实时位置是否与所述场地的地理位置重合;
    若是,则将所述场地的构建导航路径发送至所述使用者。
  5. 根据权利要求1所述的临时安检系统的构建方法,其中,在所述根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检的步骤之后,还包括步骤:
    将所述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个所述步行路径段的实时环境信息;
    获取检测者的实时位置,并匹配对应的所述步行路径段的实时环境信息;
    根据所述安检设备的检测反馈信息、所述检测者的实时位置和所述实时环境信息生成检测结果。
  6. 根据权利要求1所述的临时安检系统的构建方法,其中,在所述根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检的步骤之后,还包括步骤:
    检测者的实时位置和临时安检系统的安检位置生成安检导航信息;
    判断所述实时位置是否与安检位置重合;
    若是,则获取所述安检设备的检测反馈信息,并生成检测结果。
  7. 根据权利要求1所述的临时安检系统的构建方法,其中,在所述根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检的步骤之后,还包括步骤:
    获取所述使用者的安检名单,并将所述临时安检系统的位置信息发送至所述安检名单中的检测者。
  8. 一种临时安检系统的构建系统,其中,包括:
    场地匹配模块,设置为根据场地要求匹配出适宜的场地;
    构建导航模块,设置为根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者;
    获取路径模块,设置为获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值;
    生成临时安检系统模块,设置为根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检。
  9. 一种计算机设备,包括存储器、处理器以及存储在存储器上并可在处理器上运行的计算机程序,其中,所述处理器执行所述程序时实现以下步骤:
    根据场地要求匹配出适宜的场地;
    根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者;
    获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值;
    若是,则根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检。
  10. 根据权利要求9所述的计算机设备,其中,所述处理器执行所述程序时还实现以下步骤:
    若否,则根据所述场地步行路径和所述构建导航路径重新生成新构建导航路径。
  11. 根据权利要求9所述的计算机设备,其中,所述处理器执行所述程序时还实现以下步骤:
    获取所述使用者对所述临时安检系统的地理位置要求、天气要求和地面情况生成所述场地要求;
    根据所述场地要求匹配出适宜的场地集;
    根据所述场地集的场地距离所述使用者的实时位置的远近进行排序,并将排序列表发送至所述使用者;
    根据所述使用者的选择场地反馈信息匹配对应的所述场地。
  12. 根据权利要求9所述的计算机设备,其中,所述处理器执行所述程序时还实现以下步骤:
    根据所述使用者的实时位置和所述场地的地理位置生成导航信息;
    判断所述实时位置是否与所述场地的地理位置重合;
    若是,则将所述场地的构建导航路径发送至所述使用者。
  13. 根据权利要求9所述的计算机设备,其中,所述处理器执行所述程序时还实现以下步骤:
    将所述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个所述步行路径段的实时环境信息;
    获取检测者的实时位置,并匹配对应的所述步行路径段的实时环境信息;
    根据所述安检设备的检测反馈信息、所述检测者的实时位置和所述实时环境信息生成检测结果。
  14. 根据权利要求9所述的计算机设备,其中,所述处理器执行所述程序时还实现以下步骤:
    检测者的实时位置和临时安检系统的安检位置生成安检导航信息;
    判断所述实时位置是否与安检位置重合;
    若是,则获取所述安检设备的检测反馈信息,并生成检测结果。
  15. 一种计算机可读存储介质,其上存储有计算机程序,其中,该程序被处理器执行时实现以下步骤:
    根据场地要求匹配出适宜的场地;
    根据所述场地的信息生成安检系统的构建导航路径,并发送至使用者;
    获取所述使用者的场地步行路径,并与所述构建导航路径进行比较,判定相似度是否达到指定值;
    若是,则根据所述构建导航路径生成临时安检场景图像,并发送至所述使用者的可穿戴设备进行投射,结合安检设备进行安检。
  16. 根据权利要求15所述的计算机可读存储介质,其中,该程序被处理器执行时还实现以下步骤:
    若否,则根据所述场地步行路径和所述构建导航路径重新生成新构建导航路径。
  17. 根据权利要求15所述的计算机可读存储介质,其中,该程序被处理器执行时还实现以下步骤:
    获取所述使用者对所述临时安检系统的地理位置要求、天气要求和地面情况生成所述场地要求;
    根据所述场地要求匹配出适宜的场地集;
    根据所述场地集的场地距离所述使用者的实时位置的远近进行排序,并将排序列表发送至所述使用者;
    根据所述使用者的选择场地反馈信息匹配对应的所述场地。
  18. 根据权利要求15所述的计算机可读存储介质,其中,该程序被处理器执行时还实现以下步骤:
    根据所述使用者的实时位置和所述场地的地理位置生成导航信息;
    判断所述实时位置是否与所述场地的地理位置重合;
    若是,则将所述场地的构建导航路径发送至所述使用者。
  19. 根据权利要求15所述的计算机可读存储介质,其中,该程序被处理器执行时还实现以下步骤:
    将所述场地步行路径等距或按指定数量拆分为若干步行路径段,并获取每个所述步行路径段的实时环境信息;
    获取检测者的实时位置,并匹配对应的所述步行路径段的实时环境信息;
    根据所述安检设备的检测反馈信息、所述检测者的实时位置和所述实时环境信息生成检测结果。
  20. 根据权利要求15所述的计算机可读存储介质,其中,该程序被处理器执行时还实现以下步骤:
    检测者的实时位置和临时安检系统的安检位置生成安检导航信息;
    判断所述实时位置是否与安检位置重合;
    若是,则获取所述安检设备的检测反馈信息,并生成检测结果。
PCT/CN2018/091143 2018-04-27 2018-06-13 临时安检系统的构建方法、系统、设备及存储介质 WO2019205246A1 (zh)

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