WO2018090673A1 - 用于对安检数据进行操作的方法、服务器和系统 - Google Patents

用于对安检数据进行操作的方法、服务器和系统 Download PDF

Info

Publication number
WO2018090673A1
WO2018090673A1 PCT/CN2017/095844 CN2017095844W WO2018090673A1 WO 2018090673 A1 WO2018090673 A1 WO 2018090673A1 CN 2017095844 W CN2017095844 W CN 2017095844W WO 2018090673 A1 WO2018090673 A1 WO 2018090673A1
Authority
WO
WIPO (PCT)
Prior art keywords
security data
image processing
target security
server
data
Prior art date
Application number
PCT/CN2017/095844
Other languages
English (en)
French (fr)
Inventor
唐虎
张丽
陈志强
张佳民
Original Assignee
同方威视技术股份有限公司
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 同方威视技术股份有限公司 filed Critical 同方威视技术股份有限公司
Publication of WO2018090673A1 publication Critical patent/WO2018090673A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/50Context or environment of the image
    • G06V20/52Surveillance or monitoring of activities, e.g. for recognising suspicious objects
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/56Provisioning of proxy services
    • H04L67/565Conversion or adaptation of application format or content
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V10/00Arrangements for image or video recognition or understanding
    • G06V10/94Hardware or software architectures specially adapted for image or video understanding
    • G06V10/95Hardware or software architectures specially adapted for image or video understanding structured as a network, e.g. client-server architectures
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/233Processing of audio elementary streams
    • H04N21/2335Processing of audio elementary streams involving reformatting operations of audio signals, e.g. by converting from one coding standard to another
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V2201/00Indexing scheme relating to image or video recognition or understanding
    • G06V2201/05Recognition of patterns representing particular kinds of hidden objects, e.g. weapons, explosives, drugs
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/18Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength
    • G08B13/189Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems
    • G08B13/194Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems
    • G08B13/196Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems using television cameras

Definitions

  • the present disclosure relates to the field of security, and in particular to methods, servers and systems for operating security data.
  • the security inspection system is widely used in airports, stations, stadiums, customs, ports and other important places to inspect people, bags, goods and containers to prevent illegal articles or smuggled goods from being illegally passed.
  • These security systems typically include a scanning device that scans the object being inspected to generate an image of the object under inspection and an image analysis workstation for image analysis. Due to different technical principles, the original scanned images produced by these scanning devices are different. These original scanned images (or pre-processed images that have been pre-processed to eliminate individual differences in the device, hereinafter collectively referred to as security data) are related to the physical properties of the object being examined, and are often not suitable for direct viewing by security personnel, requiring image analysis.
  • the workstation performs further image processing on these security data, and becomes a post-processing image suitable for human viewing, which can be used for image analysis by security personnel. Further, the security personnel can use the image analysis workstation to perform various image processing and operations on the security data to analyze the object from different angles.
  • Storage devices or storage servers are often deployed in security systems.
  • the scanning device can directly send the security data to the image analysis station for image processing, and can also store the security data on the storage device, and the image analysis station obtains the image data from the storage device for image processing and operation.
  • the remote device 110 optionally stores the security data after obtaining the security data from the security device, and then transmits the image to the client 130 through the network 120. After receiving the security data, the client 130 performs image processing as needed.
  • Security data is often private to each manufacturer's format, lacking a unified standard, so it is often required Using the image processing client of each manufacturer to perform image processing and rendering, the client has poor versatility, high cost, and is very inconvenient;
  • Security data files are transmitted from the storage device to the client, which easily leads to the leakage of image files and lack of security;
  • the image processing algorithm is often the core technology of each security inspection manufacturer.
  • the image processing algorithm is deployed on the client side, and there is a risk of leakage;
  • the image data generated by different security devices (such as ordinary X-ray machines and CT devices) vary greatly in size, and the network conditions for using the site are very high, often requiring hundreds of megabytes of network or even gigabit networks;
  • the present disclosure proposes a method, server and system for operating security data.
  • a method performed by a server for operating security data includes: receiving, by a network, an operation request for target security data from a client; loading the target security data from a storage server based on the operation request; and performing image processing on the loaded target security data by using an image processing module;
  • the image processed target security data or the graphical interface including the image processed target security data is encoded; the encoded target security data or graphical interface is transmitted to the client via the network in a video stream.
  • the security data is collected by a plurality of security devices including a plurality of security ports, respectively, and the target security data is collected by a target security port located at the target security device.
  • the server selects one of the plurality of data loading applications to load the target security data from the storage server according to the parameter information of the target security data, and wherein the server loads the application by using the selected data
  • the corresponding image processing module performs image processing on the loaded target security data.
  • the parameter information of the security data includes at least one of the following: security device index information, security port information, security data format information, security data quality information.
  • the operation request includes an initial operation instruction
  • the initial operation instruction includes an instruction to specify the target security data.
  • the initial operation instruction further includes an image parameter instruction
  • the step of performing image processing on the loaded target security data by the image processing module comprises: parameter information according to the security data and/or the image parameter The instruction performs image processing on the loaded target security data through the image processing module.
  • the storage server is part of or separate from the server.
  • the method further comprising: receiving an additional operation instruction from the client;
  • the image processing module performs new image processing on the target security data or graphical interface or additional image processing on the previously processed target security data or graphical interface according to the additional operation instruction; and performs new image processing or additional image processing
  • the processed target security data or graphical interface is encoded; the encoded target security data or graphical interface is sent to the client over the network in a video stream.
  • a server for operating security data comprising: a transceiver configured to receive an operation request for target security data from a client over a network; an image loading unit connected to The transceiver is configured to load the target security data from a storage server based on the operation request; an image processing unit coupled to the image loading unit, the image processing unit including an image processing module, and configured to The target security data is subjected to image processing; the encoding unit is configured to encode the image processed target security data or a graphical interface including the image processed target security data, the transceiver being further configured to video The way of streaming sends the encoded target security data or graphical interface to the client over the network.
  • the security data is collected by a plurality of security devices including a plurality of security ports, respectively, and the target security data is collected by a target security port located at the target security device.
  • the image loading unit is configured to select one of a plurality of data loading applications to load the target security data from the storage server according to parameter information of the target security data, and wherein the image processing unit The image processing of the loaded target security data is configured to be performed by an image processing module corresponding to the selected data loading application.
  • the parameter information of the security data includes at least one of the following: security device index information, security port information, security data format information, security data quality information.
  • the operation request includes an initial operation instruction
  • the initial operation instruction includes an instruction to specify the target security data.
  • the initial operation instruction further includes an image parameter instruction
  • the image processing unit is configured to: by the image processing module, the loaded target according to the parameter information of the security data and/or the image parameter instruction Security data is processed for image processing.
  • the storage server is part of or separate from the server.
  • said transceiver is further configured to receive an additional operational command from said client; said image processing unit further configured to cause said image processing module to view said target security data or graphics in accordance with said additional operational command
  • the interface performs new image processing or additional image processing on previously processed target security data or graphical interface;
  • the encoding unit is further configured to encode target security data or graphical interfaces that have undergone new image processing or additional image processing
  • the transceiver is further configured to send the encoded target security data or graphical interface to the client over the network in a video stream.
  • a method of operating security data includes: a client transmitting an operation request for target security data to a server through a network; the server receiving the operation request, and performing the step of: loading the target security data from a storage server based on the operation request, by The image processing module performs image processing on the loaded target security data, encodes the image security target security data or the graphical interface including the image processed target security data, and performs the encoded target security in a video stream manner.
  • a data or graphical interface is sent over the network to the client; and the client receives the video stream and operates on the received video stream.
  • a system for operating security data includes: a client; and a server communicating with the client over a network, wherein the client is configured to send an operation request for target security data to a server over a network, the server being configured to be based on
  • the operation request loads the target security data from a storage server; performs image processing on the loaded target security data through an image processing module; and performs image processing target security data or a graphic including the image processed target security data
  • the interface is encoded; the encoded target security data or graphical interface is sent to the client over the network in a video stream, and the client is further configured to receive the video stream and perform the received video stream operating.
  • the method, the server and the system for operating the security data proposed by the present disclosure unify the image processing and operation functions on the server side, which not only reduces the complexity and implementation cost of the client, but also greatly reduces the client side.
  • the risk of leaking security data security information can be more flexible to transmit security data according to network conditions and user needs, saving network resources and improving system performance.
  • Figure 1 shows the architecture of a conventional security data operating system.
  • FIG. 2 illustrates an architecture of a system for operating security data in accordance with an embodiment of the disclosure.
  • FIG. 3 illustrates an architecture of a system for operating security data in accordance with a preferred embodiment of the present disclosure.
  • FIG. 4 shows a flow chart of a method for operating security data in accordance with an embodiment of the present disclosure.
  • FIG. 5 illustrates a structural block diagram of a server for operating security data in accordance with an embodiment of the present disclosure.
  • FIG. 6 shows a flow chart of a method performed by the server shown in FIG. 5 for operating on security data.
  • operation may include manipulation, transmission, enumeration, processing, and other actions that may be implemented on security data, and the use of such terms is not intended to limit the scope of the disclosure.
  • FIG. 2 illustrates an architecture of a system 200 for operating on target security data in accordance with an embodiment of the present disclosure.
  • System 200 includes a server 210 and a client 230 that communicate over a network 220.
  • the server 210 can be implemented as a physical machine, a virtual machine, or a cloud server.
  • the server 210 may acquire security data collected by the security device from the storage server.
  • the security device can be any type of security device or security device with any security port.
  • a security device can include one or more security ports for performing various types of security functions.
  • the security port may include an X-ray scanning port, an X-ray computed tomography port, a container scanning port, a millimeter wave body scanning port, and a backscattering body scanning port.
  • the security data collected from the various security ports of the various security devices is first stored in the storage server, and then the server 210 can be invoked from the storage server when needed (eg, based on client requests or system commands). Or load the specified security data.
  • the security data collected from the various security ports of the respective security devices is first received by the server 210, and the server 210 stores the received security data in the storage server and/or directly performs image processing concurrently as needed. To client 230 (see below for details).
  • server 210 can also invoke or load specified target security data from the storage server as needed.
  • the server 210 can load the target security data by using a data loading application therein.
  • the storage server is part of the server 210 or both are implemented as different functional components of the same server entity. In another embodiment, the storage server is separate from the server 210 (e.g., located in a different geographic area) with communication between the two (e.g., network 220).
  • the parameter information of the security check data may include at least one of the following: security device index information, security port information, security data format information, security data quality information, and/or image time information.
  • the security device index information identifies a security device from which the security data is derived; the security port information identifies a security port corresponding to the security data; and the security data format information identifies the security data.
  • Image format; the security data quality information identifies the number of security checks The quality, resolution, code rate, etc.; and the image time information identifies various times associated with the security data (eg, start time, end time, duration, etc.).
  • the storing of the security data may be sequentially stored in the order of the image data streams collected from the security device.
  • the security data may also be stored at specific time intervals (such as every 1 second, 10 seconds, 30 seconds, etc.).
  • the server 210 is capable of image processing (eg, analysis, rendering, processing, or labeling, etc.) of security data loaded from a storage server.
  • the image processing function may be implemented by an image processing module, which may be implemented as software, hardware, or a combination thereof.
  • the image processing module may include respective image processing modules respectively corresponding to the respective security check ports, that is, an X-ray scan image processing module, an X-ray computed tomography image processing module, a container scan image processing module, Millimeter wave human body scanning image processing module and backscatter body scanning image processing module.
  • the server 210 can also encode the processed security data.
  • the encoding is low latency encoding.
  • the server 210 can transmit the encoded security data to the client for viewing via the network 220.
  • the transmission is performed by means of a video stream.
  • the server 210 may also acquire network bandwidth information and adjust parameters of the video stream according to the acquired network bandwidth information.
  • the client 230 can be implemented as a computer, workstation, local server, mobile phone, tablet or set top box, or any other terminal device capable of receiving and playing a video stream.
  • the client 230 can receive the security data transmitted by the server 210 by using the video stream through the network 220, and watch it after decoding.
  • the decoding corresponds to the encoding at the server 210.
  • the client 230 is connected to the input device such that the user can input operational command information through the input device of the client 230 and be transmitted by the client 230 to the server 210.
  • the server 210 may perform a corresponding operation, and send new security data or modified security data by returning a response or based on the instruction information.
  • the input device may include a mouse, a keyboard, a handle, a professional keyboard, and the like.
  • the network 220 can be any of a variety of wired or wireless networks commonly used in the art. For example, the Internet, Ethernet, mobile communication networks, Bluetooth communication networks, etc.
  • server 210 and client 230 are shown in FIG. 2 as being distinct from system components, it will be understood by those skilled in the art that this is only For ease of description and understanding, it is not intended to limit the system architecture involved in the present disclosure.
  • the nodes 210 and 230 may be implemented as part of the network 220 in other embodiments.
  • Server 210 can communicate with multiple clients over the same network or different networks. Specifically, the server 210 can be connected to a plurality of clients 230 through a network, and the server 210 can transmit multiple video streams in parallel for a plurality of clients 230.
  • the client 230 is configured to send an operation request for target security data to the server over the network.
  • the server 210 is configured to load the target security data from a storage server based on the operation request; perform image processing on the loaded target security data through an image processing module; or include the image processing target security data
  • the graphical interface of the target security data for image processing is encoded; and the encoded target security data or graphical interface is transmitted to the client 230 over the network 220 in a video stream.
  • client 230 is shown configured to receive the video stream and operate on the received video stream.
  • the operational request includes an initial operational instruction, the initial operational instruction including an instruction to specify the target security data.
  • the target security data is collected by a target security port located at the target security device.
  • the instructions for specifying the target security data include a target security device index and/or a target security port index.
  • the instruction to specify the target security data may further include a time range value (eg, including a start time, an end time, and/or a duration, or a combination thereof).
  • the initial operational instruction may further include an image parameter instruction.
  • the image parameter instructions instruct the user at the client 230 to request image parameters for the requested security data, such as the user may specify the resolution of the security data to be received.
  • the illustrated server 210 can also be configured to image process the loaded target security data by the image processing module based on the parameter information of the security data and/or the image parameter instructions.
  • the client 230 is further configured to send additional operational instructions to the server 210 over the network 220.
  • the server 210 is further configured to receive the additional operation instruction and perform an operation of: newizing the target security data or graphical interface according to the additional operation instruction Image processing or additional image processing of previously processed target security data or graphical interfaces, and encoding of target security data or graphical interfaces that have undergone new image processing or additional image processing, encoded as video streams
  • the target security data or graphical interface is sent to the client 230 over the network 220.
  • the client 230 is also configured to receive the video stream and operate on the received video stream.
  • the additional operational command is feedback after the user views the received target security data. For example, if the user finds that there is a suspicious item in the received security data, but the current security data quality is insufficient to determine the dangerous level of the suspicious item, the user may send an additional operation instruction through the client 230 to instruct the server 210 to The higher resolution determines the image processing of the target security data.
  • FIG. 3 illustrates an architecture of a system 300 for operating security data in accordance with a preferred embodiment of the present disclosure.
  • the main difference between the server 310 in FIG. 3 and the server 210 in FIG. 2 is that the server 310 includes a plurality of data loading applications and a plurality of image processing modules respectively corresponding to each data loading application.
  • the server 310 selects an application from a plurality of different data loading applications according to the parameter information of the security data, loads the security data using the selected application, and uses the selected data loading application after the loading is completed.
  • the image processing module performs image processing on the loaded data.
  • the server 310 shown in FIG. 3 can achieve better technical effects by selecting a data loading application and a corresponding image processing module.
  • FIG. 4 illustrates a flow diagram of a method 400 for operating security data in accordance with an embodiment of the present disclosure.
  • the method begins in step S410, in which a client sends an operation request for target security data to a server over a network.
  • step S420 after receiving the operation request, the server loads the target security data from the storage server based on the operation request, and performs image processing on the loaded target security data through the image processing module.
  • the image security target security data or a graphical interface including the image processed target security data is encoded, and the encoded target security data or graphical interface is transmitted to the client over the network in a video stream.
  • the client receives the video stream and operates on the received video stream.
  • the method 400 shown in FIG. 4 corresponds to and is preferably performed by the system 200 for operating the security data shown in FIG. Therefore, the description above for system 200 Applicable here.
  • the system 300 shown in FIG. 3 is also suitable for performing the method 400, and the description above for the system 300 is equally applicable here.
  • Figure 5 shows a block diagram of the structure of the server 500 for operating the security data in more detail.
  • the server 500 includes a transceiver 510, an image loading unit 520, an image processing unit 530, and an encoding unit 540.
  • the transceiver 510 is configured to receive an operation request for target security data from a client over a network.
  • the image loading unit 520 is coupled to the transceiver 510 and configured to load the target security data from a storage server based on the operational request.
  • the image processing unit 530 is coupled to the image loading unit 520, the image processing unit 530 includes an image processing module, and is configured to perform image processing on the target security data.
  • the encoding unit 540 is configured to encode the image processed target security data or a graphical interface including the image processed target security data.
  • the transceiver 510 is also configured to transmit the encoded target security data or graphical interface to the client over a network in a video stream.
  • the image loading unit 520 is configured to select one of the plurality of data loading applications to load the target security data from the storage server based on the parameter information of the target security data.
  • the image processing unit 520 is then configured to image process the loaded target security data by an image processing module corresponding to the selected data loading application.
  • the initial operation instruction further includes an image parameter instruction
  • the image processing unit 520 is configured to: according to the parameter information of the security data and/or the image parameter instruction, by the image processing module
  • the target security data is image processed.
  • the transceiver 510 is further configured to receive additional operational instructions from the client.
  • the image processing unit 530 is further configured to cause the image processing module to perform new image processing on the target security data or graphical interface or attach to the previously processed target security data or graphical interface according to the additional operational instruction.
  • Image Processing is also configured to encode target security data or graphical interfaces that have undergone new image processing or additional image processing.
  • the transceiver 510 finally transmits the encoded target security data or graphical interface to the client over the network in the form of a video stream.
  • server 500 may correspond to the server 210 of FIG. 2 or the server 310 of FIG.
  • the description made in conjunction with FIGS. 2 and 3 is equally applicable here and will not be described again.
  • FIG. 6 shows an operation performed on the security data by the server 500 shown in FIG. 5, for example.
  • a flowchart of method 600 is shown in FIG. 6, for example.
  • the method 600 begins in step S610, where an operation request for target security data is received from a client over a network. Then, in step S620, the target security data is loaded from the storage server based on the operation request. Next, in step S630, the loaded target security data is subjected to image processing by the image processing module. Next, in step S640, the image security target security data or the graphical interface including the image processed target security data is encoded. Finally, in step S650, the encoded target security data or graphical interface is sent to the client over the network in the form of a video stream.
  • the method 600 may further include: receiving an additional operation instruction from the client; the selected image processing module performs a new operation on the target security data according to the additional operation instruction. Image processing or additional image processing on previously processed target security data; and encoding target security data processed by additional image processing; transmitting the encoded target security data to the client via a network in a video stream manner, The user at the client continues to operate on the target security data.
  • the technical solution of the present disclosure is applicable to multiple scenarios in the security field, such as a scenario and a security training scenario.
  • security data collected by the security device is obtained from the storage server and viewed for different purposes (eg, risk troubleshooting or learning) after image processing.

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Multimedia (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Software Systems (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)
  • Closed-Circuit Television Systems (AREA)
  • Analysing Materials By The Use Of Radiation (AREA)

Abstract

本公开提供了用于对安检数据进行操作的方法、服务器以及系统。其中,由服务器执行的用于对安检数据进行操作的方法包括:通过网络从客户端接收针对目标安检数据的操作请求;基于所述操作请求,从存储服务器加载所述目标安检数据;通过图像处理模块对所加载的目标安检数据进行图像处理;对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码;以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。

Description

用于对安检数据进行操作的方法、服务器和系统
相关申请的交叉引用
本申请要求于2016年11月15日提交的、申请号为201611029778.0的中国专利申请的优先权,其全部内容通过引用并入本申请中。
技术领域
本公开涉及安检领域,具体地涉及用于对安检数据进行操作的方法、服务器和系统。
背景技术
安检系统被广泛的应用在机场、车站、场馆、海关、港口等重要场所对人员、行包、货物以及集装箱等进行检查,以防止违禁物品或者走私物品被非法通过。这些安检系统通常包括扫描被检查对象生成被检查对象图像的扫描设备以及用于图像分析的图像分析工作站。由于技术原理不同,这些扫描设备产生的原始扫描图像各不相同。这些原始扫描图像(或经过预处理后消除了设备个体差异性的预处理图像,以下统称为安检数据)和被检对象的物理属性相关,往往并不适合于安检人员直接观看,需要由图像分析工作站对这些安检数据进行进一步图像处理,成为适合于人观看的后处理图像后方可用于安检人员进行图像分析。更进一步,安检人员可以用图像分析工作站对安检数据进行多种图像处理和操作,以从不同的角度分析被检对象。
安检系统中往往也部署有存储设备或存储服务器。扫描设备可以将安检数据直接发给图像分析站进行图像处理,也可以将安检数据存储到存储设备上,由图像分析站从存储设备上获取后供安检人员进行图像处理和操作。
图1中示出了一种传统安检数据操作系统的架构。其中,远端设备110在获得来自安检设备的安检数据后,可选地对安检数据进行存储,然后将图像通过网络120发送到客户端130。客户端130在接收到安检数据后,根据需要进行图像处理。
然而,这种方案有比较明显的缺点:
1.安检数据往往为各个厂家私有的格式,缺乏统一的标准,因此往往需要 使用各个厂家自有的图像处理客户端进行图像处理和呈现,客户端通用性差、成本高、非常不方便;
2.安检数据文件从存储设备传到客户端,容易导致图像文件泄露,缺乏安全性;
3.图像处理算法往往是各个安检厂家的核心技术,将图像处理算法部署在客户端,存在泄密风险;
4.不同安检设备(例如普通X光机和CT设备)产生的图像数据大小差异很大,对使用场地的网络条件要求很高,往往需要百兆网络甚至千兆网络;
5.有的安检数据处理或渲染对客户端的设备有较高的要求,需要配置较高性能的客户端设备,成本较高。
发明内容
为了解决常规技术中存在的至少部分上述问题,本公开提出了用于对安检数据进行操作的方法、服务器和系统。
根据本公开的一个方面,提出了一种由服务器执行的用于对安检数据进行操作的方法。所述方法包括:通过网络从客户端接收针对目标安检数据的操作请求;基于所述操作请求,从存储服务器加载所述目标安检数据;通过图像处理模块对所加载的目标安检数据进行图像处理;对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码;以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
优选地,通过分别包括多个安检端口的多个安检设备采集所述安检数据,以及所述目标安检数据是由位于目标安检设备处的目标安检端口采集的。
优选地,所述服务器根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据,以及其中,所述服务器通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
优选地,所述安检数据的参数信息包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、安检数据质量信息。
优选地,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
优选地,所述初始操作指令还包括图像参数指令,以及所述通过图像处理模块对所加载的目标安检数据进行图像处理的步骤包括:根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
优选地,所述存储服务器是所述服务器的一部分或与所述服务器分离布置。
优选地,在所述以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端的步骤之后,所述方法还包括:从所述客户端接收附加操作指令;所述图像处理模块根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理;以及对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码;以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
根据本公开的另一方面,提出了一种用于对安检数据进行操作的服务器,包括:收发机,被配置为通过网络从客户端接收针对目标安检数据的操作请求;图像加载单元,连接到所述收发机,被配置为基于所述操作请求从存储服务器加载所述目标安检数据;图像处理单元,连接到所述图像加载单元,所述图像处理单元包括图像处理模块,并且被配置为对所述目标安检数据进行图像处理;编码单元,被配置为对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码,所述收发机还被配置为以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
优选地,通过分别包括多个安检端口的多个安检设备采集所述安检数据,以及所述目标安检数据是由位于目标安检设备处的目标安检端口采集的。
优选地,其中,所述图像加载单元被配置为根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据,以及其中,所述图像处理单元被配置为通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
优选地,所述安检数据的参数信息包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、安检数据质量信息。
优选地,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
优选地,所述初始操作指令还包括图像参数指令,以及所述图像处理单元被配置为:根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
优选地,所述存储服务器是所述服务器的一部分或与所述服务器分离布置。
优选地,所述收发机还被配置为从所述客户端接收附加操作指令;所述图像处理单元还被配置为使得所述图像处理模块根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理;所述编码单元还被配置为对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码;以及所述收发机还被配置为以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
根据本公开的又一方面,还提出了一种对安检数据进行操作的方法。所述方法包括:客户端通过网络向服务器发送针对目标安检数据的操作请求;所述服务器接收所述操作请求,并执行以下步骤:基于所述操作请求从存储服务器加载所述目标安检数据,通过图像处理模块对所加载的目标安检数据进行图像处理,对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码,以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端;以及所述客户端接收所述视频流并对所接收的视频流进行操作。
根据本公开的又一方面,还提出了一种对安检数据进行操作的系统。所述系统包括:客户端;以及服务器,通过网络与所述客户端进行通信,其中,所述客户端被配置为通过网络向服务器发送针对目标安检数据的操作请求,所述服务器被配置为基于所述操作请求从存储服务器加载所述目标安检数据;通过图像处理模块对所加载的目标安检数据进行图像处理;对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码;以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端,以及所述客户端还被配置为接收所述视频流并对所接收的视频流进行操作。
通过本公开提出的用于对安检数据进行操作的方法、服务器和系统,将图像处理和操作功能统一在服务器端实现,不但降低了客户端的复杂性和实现成本,还大大减小了在客户端处泄露安检数据安全信息的风险。此外,通过视频流的方 式传输安检数据,能够更加灵活地根据网络状况和用户需求传输安检数据,节省了网络资源,提高了系统性能。
附图说明
图1示出了一种传统安检数据操作系统的架构。
图2示出了根据本公开实施例的用于对安检数据进行操作的系统的架构。
图3示出了根据本公开的一个优选实施例的用于对安检数据进行操作的系统的架构。
图4示出了根据本公开实施例的用于对安检数据进行操作的方法的流程图。
图5示出了根据本公开的实施例的用于对安检数据进行操作的服务器的结构框图。
图6示出了由图5所示的服务器执行的用于对安检数据进行操作的方法的流程图。
具体实施方式
下面将详细描述本公开的具体实施例,应当注意,这里描述的实施例只用于举例说明,并不用于限制本公开。在以下描述中,为了提供对本公开的透彻理解,阐述了大量特定细节。然而,对于本领域普通技术人员显而易见的是,不必采用这些特定细节来实行本公开。在其他实例中,为了避免混淆本公开,未具体描述公知的结构、电路、材料或方法。
在整个说明书中,对“一个实施例”、“实施例”、“一个示例”或“示例”的提及意味着,结合该实施例或示例描述的特定特征、结构或特性被包含在本公开至少一个实施例中。因此,在整个说明书的各个地方出现的短语“在一个实施例中”、“在实施例中”、“一个示例”或“示例”不一定都指同一实施例或示例。此外,可以以任何适当的组合和/或子组合将特定的特征、结构或特性组合在一个或多个实施例或示例中。以下参考附图对本公开进行具体描述。
本申请中,术语“操作”可以包括操控、传输、列举、处理以及其他可以对安检数据实现的动作,该术语的使用并不用于对本公开的保护范围进行限制。
在以下结合附图对本公开的技术方案进行的描述中,附图中各个元素的尺寸、比例及位置关系只是示例性的,所图示的各元件之间的连接方式也只是为了 进行说明,其均不用于限制本公开。
图2示出了根据本公开实施例的用于对目标安检数据进行操作的系统200的架构。系统200包括服务器210和客户端230,二者通过网络220进行通信。
所述服务器210可以实现为物理机、虚拟机或云服务器。
所述服务器210可以从存储服务器获取由安检设备采集的安检数据。具体地,所述安检设备可以是任何类型的安检设备或者具有任何安检端口的安检设备。一个安检设备可以包括一个或多个安检端口,用于执行各种类型的安检功能。比如,所述安检端口可以包括X射线扫描端口、X射线计算机断层成像端口、集装箱扫描端口、毫米波人体扫描端口以及背散射人体扫描端口等。
在一个实施例中,从各个安检设备的各个安检端口采集的安检数据首先都被存储到存储服务器中,然后,服务器210可以在需要时(比如,根据客户端的请求或系统命令)从存储服务器调用或加载指定的安检数据。
在另一实施例中,从各个安检设备的各个安检端口采集的安检数据首先由服务器210进行接收,服务器210根据需要将所接收的各个安检数据存储到存储服务器中和/或直接进行图像处理并发给客户端230(具体参见下文之详述)。此外,服务器210同样可以在需要时从存储服务器调用或加载指定的目标安检数据。
优选地,服务器210可以通过其中所具有的数据加载应用对所述目标安检数据进行加载。
在一个实施例中,所述存储服务器是所述服务器210的一部分或者二者实现为同一服务器实体的不同功能组件。在另一实施例中,存储服务器与服务器210分离布置(比如位于不同的地理区域),二者之间通过网络(例如网络220)进行通信。
需要指出的是,在接收、存储和/或调用来自不同安检设备的安检数据时,需要将与所述安检数据相关联的图像参数信息与所述安检数据一同接收、存储和/或调用。具体地,所述安检数据的参数信息可包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、安检数据质量信息和/或图像时间信息等。其中,所述安检设备索引信息标识所述安检数据所源自的安检设备;所述安检端口信息标识所述安检数据所对应的安检端口;所述安检数据格式信息标识所述安检数据所采用的图像格式;所述安检数据质量信息标识安检数 据的质量、分辨率、码率等;以及所述图像时间信息标识与所述安检数据相关的各种时间(比如,开始时间、结束时间、持续时间等)。
还需要指出的是,所述在存储所述安检数据时,可以是按照从安检设备采集的图像数据流的顺序来顺序存储的。在另一实施例中,还可以按照特定的时间间隔(比如每1秒、10秒、30秒等)对所述安检数据进行存储。
所述服务器210能够对从存储服务器加载的安检数据进行图像处理(比如,分析、渲染、加工或标注等)。所述图像处理功能可以通过图像处理模块来实现,所述图像处理模块可以实现为软件、硬件或以上的结合。
在一种优选实施例中,所述图像处理模块可包括与各个安检端口分别对应的各个图像处理模块,即X射线扫描图像处理模块、X射线计算机断层成像图像处理模块、集装箱扫描图像处理模块、毫米波人体扫描图像处理模块以及背散射人体扫描图像处理模块等。
所述服务器210还可对经过处理的安检数据进行编码。优选地,所述编码是低延迟编码。
此外,所述服务器210可以通过网络220将经过编码的安检数据发送到客户端进行观看。所述发送是通过视频流的方式进行的。在一种优选实施例中,所述服务器210还可获取网络带宽信息,并根据所获取的网络带宽信息调整视频流的参数。
所述客户端230可以实现为计算机、工作站、本地服务器、移动电话、平板计算机或机顶盒等,或是其他任何能够接收视频流并进行播放的终端设备。
所述客户端230能够通过网络220接收由服务器210采用视频流的方式发送的安检数据,并在解码后进行观看。所述解码与所述服务器210处的编码相对应。
所述客户端230连接到输入设备,从而用户可以通过客户端230的输入设备输入操作指令信息,并由客户端230发送到服务器210。相应地,所述服务器210在接收到所述指令信息后,可以进行相应的操作,并通过返回应答或基于指令信息发送新的安检数据或经过修改的安检数据。
优选地,所述输入设备可包括鼠标、键盘、手柄、专业键盘等。
所述网络220可以是本领域常用的各种有线或无线网络。比如,互联网、以太网、移动通信网络、蓝牙通信网络等。虽然图2中将服务器210和客户端230示为与网络220属于不同的系统组件,但本领域技术人员应该理解的是,这只是 为了便于描述和理解,而并不用于对本公开所涉及的系统架构进行限制。所述节点210和230在其他实施例中可以实现为所述网络220的一部分。
虽然图2中示出了服务器210通过一个网络220与一个客户端230进行通信的架构,但是应当理解的是,本公开的技术方案不限于此。服务器210可以通过同一网络或不同网络与多个客户端进行通信。具体地,所述服务器210可通过网络连接到多个客户端230,并且所述服务器210可针对多个客户端230并行地发送多路视频流。
图2中所示的系统中的各个组件被配置为执行特定的功能,从而实现本公开的技术方案。具体地,所述客户端230被配置为通过网络向服务器发送针对目标安检数据的操作请求。所述服务器210被配置为基于所述操作请求从存储服务器加载所述目标安检数据;通过图像处理模块对所加载的目标安检数据进行图像处理;对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码;以及以视频流的方式将经过编码的目标安检数据或图形界面通过网络220发送到所述客户端230。此外,所示客户端230还被配置为接收所述视频流并对所接收的视频流进行操作。
在一个实施例中,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
在一个实施例中,所述目标安检数据是通过位于目标安检设备处的目标安检端口采集的。在这一实施例中,所述指定所述目标安检数据的指令中包括关于目标安检设备索引和/或目标安检端口索引。优选地,所述指定所述目标安检数据的指令还可包括时间范围值(比如,包括开始时间、结束时间和/或持续时间或其组合)。
优选地,所述初始操作指令还可包括图像参数指令。所述图像参数指令指示客户端230处的用户对所请求的安检数据的图像参数要求,比如用户可以指定所要接收的安检数据的分辨率。所示服务器210还可被配置为根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
在一种优选实施例中,所述客户端230还被配置为通过网络220向所述服务器210发送附加操作指令。所述服务器210还被配置为接收所述附加操作指令,并执行以下操作:根据所述附加操作指令对所述目标安检数据或图形界面进行新 的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理,以及对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码,以视频流的方式将经过编码的目标安检数据或图形界面通过网络220发送到所述客户端230。所述客户端230还被配置为接收所述视频流并对所接收的视频流进行操作。
所述附加操作指令是用户在观看了所接收的目标安检数据之后的反馈。举例来讲,如果用户发现所接收的安检数据中有可疑物品,但当前安检数据质量不足以判断该可疑物品的危险等级,则用户可通过客户端230发送附加操作指令,指示所述服务器210以更高的清晰度对所述目标安检数据进行图像处理。
图3示出了根据本公开的一种优选实施例的用于对安检数据进行操作的系统300的架构。图3中的服务器310与图2中的服务器210的主要区别在于,服务器310中包括多个数据加载应用以及分别与每个数据加载应用相对应的多个图像处理模块。所述服务器310根据安检数据的参数信息从多个不同的数据加载应用中选择一个应用,使用所选择的应用对安检数据进行加载,并在加载完成后,使用与所选择的数据加载应用相对应的图像处理模块对所加载的数据进行图像处理。
由于安检设备的多样性,所采集的安检数据也不尽相同,因此,在进行安检数据加载之前,需要根据安检数据参数信息判断通过何种手段对所述安检数据进行加载。图3中所示出的服务器310通过选择数据加载应用及相应图像处理模块,能够实现更好的技术效果。
图4示出了根据本公开实施例的用于对安检数据进行操作的方法400的流程图。所述方法开始于步骤S410,客户端通过网络向服务器发送针对目标安检数据的操作请求。然后,在步骤S420中,所述服务器在接收所述操作请求之后,基于所述操作请求从存储服务器加载所述目标安检数据,通过图像处理模块对所加载的目标安检数据进行图像处理,对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码,并且以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。接下来,在步骤S430中,所述客户端接收所述视频流并对所接收的视频流进行操作。
图4中所示的方法400与图2中所示的用于对安检数据进行操作的系统200相对应,并优选地由所述系统200执行。因此,上文中针对系统200进行的描述 在此适用。
图3中所示的系统300同样适于执行方法400,上文中针对系统300进行的描述在此同样适用。
图5更为详细地示出了用于对安检数据进行操作的服务器500的结构框图。
如图5所示,所述服务器500包括收发机510、图像加载单元520、图像处理单元530和编码单元540。所述收发机510被配置为通过网络从客户端接收针对目标安检数据的操作请求。所述图像加载单元520连接到所述收发机510,被配置为基于所述操作请求从存储服务器加载所述目标安检数据。所述图像处理单元530,连接到所述图像加载单元520,所述图像处理单元530包括图像处理模块,并且被配置为对所述目标安检数据进行图像处理。编码单元540被配置为对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码。所述收发机510还被配置为以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
在一个优选实施例中,所述图像加载单元520被配置为根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据。然后,所述图像处理单元520被配置为通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
优选地,所述初始操作指令还包括图像参数指令,以及所述图像处理单元520被配置为:根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
在一个优选实施例中中,所述收发机510还被配置为从所述客户端接收附加操作指令。所述图像处理单元530还被配置为使得所述图像处理模块根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理。所述编码单元540还被配置为对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码。所述收发机510最后以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
应该指出的是,所述服务器500可以对应于图2中的服务器210或图3中的服务器310。在上文中,结合图2和图3进行的描述在此同样适用,不再赘述。
图6示出了由例如图5所示的服务器500执行的用于对安检数据进行操作的 方法600的流程图。
所述方法600开始于步骤S610,其中通过网络从客户端接收针对目标安检数据的操作请求。然后,在步骤S620中,基于所述操作请求,从存储服务器加载所述目标安检数据。接下来,在步骤S630中,通过图像处理模块对所加载的目标安检数据进行图像处理。接下来,在步骤S640中,对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码。最后,在步骤S650中,以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
在一个实施例中,在步骤S650之后,所述方法600还可包括:从所述客户端接收附加操作指令;所选择的图像处理模块根据所述附加操作指令对所述目标安检数据进行新的图像处理或对之前经过处理的目标安检数据进行附加图像处理;以及对经过附加图像处理的目标安检数据进行编码;以视频流的方式将经过编码的目标安检数据通过网络发送到所述客户端,以供所述客户端处的用户对所述目标安检数据继续进行操作。
需要指出的是,图6中方法600的各个步骤与图5中的服务器的各个组件是相对应的,图5描述中的内容,进而图2-4的描述中的内容,在此均适用,不再赘述。本领域技术人员应当理解将图5以及图2-4中的具体说明以适当的方式加入到对图6的方法600的各个步骤进行解释的内容中,这都包含在本公开的保护范围内。
还需要指出的是,本公开的技术方案适用于安检领域的多个场景,比如判图场景和安检培训场景。两种场景中都需要从存储服务器获得由安检设备采集的安检数据,并在进行图像处理后针对不同目的(比如,危险排查或学习)进行查看。
虽然已参照几个典型实施例描述了本公开,但应当理解,所用的术语是说明和示例性、而非限制性的术语。由于本公开能够以多种形式具体实施而不脱离公开的精神或实质,所以应当理解,上述实施例不限于任何前述的细节,而应在随附权利要求所限定的精神和范围内广泛地解释,因此落入权利要求或其等效范围内的全部变化和改型都应为随附权利要求所涵盖。

Claims (32)

  1. 一种由服务器执行的用于对安检数据进行操作的方法,包括:
    通过网络从客户端接收针对目标安检数据的操作请求;
    基于所述操作请求,从存储服务器加载所述目标安检数据;
    通过图像处理模块对所加载的目标安检数据进行图像处理;
    对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码;
    以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
  2. 根据权利要求1所述的方法,其中,通过分别包括多个安检端口的多个安检设备采集所述安检数据,以及所述目标安检数据是由位于目标安检设备处的目标安检端口采集的。
  3. 根据权利要求1所述的方法,
    其中,所述服务器根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据,以及
    其中,所述服务器通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
  4. 根据权利要求3所述的方法,其中,所述安检数据的参数信息包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、安检数据质量信息。
  5. 根据权利要求1所述的方法,其中,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
  6. 根据权利要求1所述的方法,其中,所述初始操作指令还包括图像参数指令,以及所述通过图像处理模块对所加载的目标安检数据进行图像处理的步骤包括:
    根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
  7. 根据权利要求1所述的方法,其中,所述存储服务器是所述服务器的一部分或与所述服务器分离布置。
  8. 根据权利要求1所述的方法,其中,在所述以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端的步骤之后,所述方法还包括:
    从所述客户端接收附加操作指令;
    所述图像处理模块根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理;以及
    对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码;
    以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
  9. 一种用于对安检数据进行操作的服务器,包括:
    收发机,被配置为通过网络从客户端接收针对目标安检数据的操作请求;
    图像加载单元,连接到所述收发机,被配置为基于所述操作请求从存储服务器加载所述目标安检数据;
    图像处理单元,连接到所述图像加载单元,所述图像处理单元包括图像处理模块,并且被配置为对所述目标安检数据进行图像处理;
    编码单元,被配置为对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码,
    所述收发机还被配置为以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
  10. 根据权利要求9所述的服务器,其中,通过分别包括多个安检端口的多个安检设备采集所述安检数据,以及所述目标安检数据是由位于目标安检设备处的目标安检端口采集的。
  11. 根据权利要求9所述的服务器,
    其中,所述图像加载单元被配置为根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据,以及
    其中,所述图像处理单元被配置为通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
  12. 根据权利要求11所述的服务器,其中,所述安检数据的参数信息包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、 安检数据质量信息。
  13. 根据权利要求9所述的服务器,其中,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
  14. 根据权利要求9所述的服务器,其中,所述初始操作指令还包括图像参数指令,以及所述图像处理单元被配置为:
    根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
  15. 根据权利要求9所述的服务器,其中,所述存储服务器是所述服务器的一部分或与所述服务器分离布置。
  16. 根据权利要求9所述的服务器,其中,
    所述收发机还被配置为从所述客户端接收附加操作指令;
    所述图像处理单元还被配置为使得所述图像处理模块根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理;
    所述编码单元还被配置为对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码;以及
    所述收发机还被配置为以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端。
  17. 一种对安检数据进行操作的方法,包括:
    客户端通过网络向服务器发送针对目标安检数据的操作请求;
    所述服务器接收所述操作请求,并执行以下步骤:
    基于所述操作请求从存储服务器加载所述目标安检数据,
    通过图像处理模块对所加载的目标安检数据进行图像处理,
    对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码,
    以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端;以及
    所述客户端接收所述视频流并对所接收的视频流进行操作。
  18. 根据权利要求17所述的方法,其中,通过分别包括多个安检端口的多个安检设备采集所述安检数据,以及所述目标安检数据是由位于目标安检设备处的 目标安检端口采集的。
  19. 根据权利要求17所述的方法,
    其中,所述服务器根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据,以及
    其中,所述服务器通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
  20. 根据权利要求19所述的方法,其中,所述安检数据的参数信息包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、安检数据质量信息。
  21. 根据权利要求17所述的方法,其中,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
  22. 根据权利要求17所述的方法,其中,所述初始操作指令还包括图像参数指令,以及所述通过图像处理模块对所加载的目标安检数据进行图像处理的步骤包括:
    根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
  23. 根据权利要求17所述的方法,其中,所述存储服务器是所述服务器的一部分或与所述服务器分离布置。
  24. 根据权利要求17所述的方法,其中,在所述客户端接收所述视频流并对所接收的视频流进行操作的步骤之后,所述方法还包括:
    所述客户端通过网络向所述服务器发送附加操作指令;
    所述服务器接收所述附加操作指令,并执行以下操作:
    根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理,以及
    对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码,
    以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端;以及
    所述客户端接收所述视频流并对所接收的视频流进行操作。
  25. 一种对安检数据进行操作的系统,包括:
    客户端;以及
    服务器,通过网络与所述客户端进行通信,
    其中,所述客户端被配置为通过网络向服务器发送针对目标安检数据的操作请求,
    所述服务器被配置为
    基于所述操作请求从存储服务器加载所述目标安检数据;
    通过图像处理模块对所加载的目标安检数据进行图像处理;
    对经过图像处理的目标安检数据或包括所述经过图像处理的目标安检数据的图形界面进行编码;
    以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端,以及
    所述客户端还被配置为接收所述视频流并对所接收的视频流进行操作。
  26. 根据权利要求25所述的系统,其中,通过分别包括多个安检端口的多个安检设备采集所述安检数据,以及所述目标安检数据是由位于目标安检设备处的目标安检端口采集的。
  27. 根据权利要求25所述的系统,
    其中,所述服务器根据所述目标安检数据的参数信息选择多个数据加载应用之一从所述存储服务器加载所述目标安检数据,以及
    其中,所述服务器通过与所选择的数据加载应用相对应的图像处理模块对所加载的目标安检数据进行图像处理。
  28. 根据权利要求27所述的系统,其中,所述安检数据的参数信息包括以下各项中的至少一项:安检设备索引信息、安检端口信息、安检数据格式信息、安检数据质量信息。
  29. 根据权利要求25所述的系统,其中,所述操作请求中包括初始操作指令,所述初始操作指令包括指定所述目标安检数据的指令。
  30. 根据权利要求25所述的系统,其中,所述初始操作指令还包括图像参数指令,以及所述服务器被配置为:
    根据所述安检数据的参数信息和/或所述图像参数指令,通过图像处理模块对所加载的目标安检数据进行图像处理。
  31. 根据权利要求25所述的系统,其中,所述存储服务器是所述服务器的一部分或与所述服务器分离布置。
  32. 根据权利要求25所述的系统,其中,
    所述客户端还被配置为通过网络向所述服务器发送附加操作指令;
    所述服务器还被配置为接收所述附加操作指令,并执行以下操作:
    根据所述附加操作指令对所述目标安检数据或图形界面进行新的图像处理或对之前经过处理的目标安检数据或图形界面进行附加图像处理,以及
    对经过新的图像处理或附加图像处理的目标安检数据或图形界面进行编码,
    以视频流的方式将经过编码的目标安检数据或图形界面通过网络发送到所述客户端;以及
    所述客户端还被配置为接收所述视频流并对所接收的视频流进行操作。
PCT/CN2017/095844 2016-11-15 2017-08-03 用于对安检数据进行操作的方法、服务器和系统 WO2018090673A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201611029778.0 2016-11-15
CN201611029778.0A CN108076113B (zh) 2016-11-15 2016-11-15 用于对安检数据进行操作的方法、服务器和系统

Publications (1)

Publication Number Publication Date
WO2018090673A1 true WO2018090673A1 (zh) 2018-05-24

Family

ID=60119803

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/095844 WO2018090673A1 (zh) 2016-11-15 2017-08-03 用于对安检数据进行操作的方法、服务器和系统

Country Status (6)

Country Link
US (1) US10430669B2 (zh)
EP (1) EP3322180A1 (zh)
CN (1) CN108076113B (zh)
AU (1) AU2017232056B2 (zh)
CA (1) CA2982065C (zh)
WO (1) WO2018090673A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109788066B (zh) * 2019-01-30 2022-11-18 北京金科汇智科技有限公司 一种基于影像的材料检测试验过程记录系统和方法

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102567960A (zh) * 2010-12-31 2012-07-11 同方威视技术股份有限公司 一种用于安全检查系统的图像增强方法
CN104822047A (zh) * 2015-04-16 2015-08-05 中国科学院上海技术物理研究所 一种基于网络自适应医学图像传输显示方法
JP2016004285A (ja) * 2014-06-13 2016-01-12 三菱電機株式会社 点検情報管理システム
CN105338015A (zh) * 2014-06-27 2016-02-17 清华大学 一种基于b/s架构的辐射图像检查系统及方法
CN105637886A (zh) * 2014-09-25 2016-06-01 华为技术有限公司 用于向客户端提供图形用户界面的服务器,以及客户端
CN105827957A (zh) * 2016-03-16 2016-08-03 上海斐讯数据通信技术有限公司 一种图像处理的系统和方法
CN205656319U (zh) * 2016-04-13 2016-10-19 同方威视技术股份有限公司 安检监视控制系统和安检监视终端

Family Cites Families (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6314452B1 (en) 1999-08-31 2001-11-06 Rtimage, Ltd. System and method for transmitting a digital image over a communication network
US8494210B2 (en) * 2007-03-30 2013-07-23 Optosecurity Inc. User interface for use in security screening providing image enhancement capabilities and apparatus for implementing same
US20090031381A1 (en) * 2007-07-24 2009-01-29 Honeywell International, Inc. Proxy video server for video surveillance
CN101527763A (zh) * 2008-03-07 2009-09-09 西安盛泽电子有限公司 面向手持终端的数字图像合成装置
US8259816B2 (en) 2009-03-12 2012-09-04 MIST Innovations, Inc. System and method for streaming video to a mobile device
JP5665288B2 (ja) * 2009-07-24 2015-02-04 キヤノン株式会社 情報処理装置、情報処理方法、制御プログラム
CN102148959B (zh) * 2010-02-09 2016-01-20 北京中星微电子有限公司 一种视频监控系统及其图像的运动目标检测方法
CN102075733B (zh) * 2010-12-01 2012-10-03 上海市城市建设设计研究院 基于视频分析技术的船舶超载检测方法及系统
US8773532B2 (en) * 2011-06-13 2014-07-08 Alcatel Lucent Video surveillance system integrating real and logical video streams
US9392303B2 (en) * 2011-10-26 2016-07-12 Ronnie Yaron Dynamic encoding of multiple video image streams to a single video stream based on user input
US20140118541A1 (en) 2012-10-26 2014-05-01 Sensormatic Electronics, LLC Transcoding mixing and distribution system and method for a video security system
JP6011479B2 (ja) * 2013-07-08 2016-10-19 富士ゼロックス株式会社 アプリケーション管理装置、アプリケーション管理システムおよびプログラム
CN104105006B (zh) * 2014-07-23 2017-12-26 北京永新视博信息技术有限公司 一种视频图像处理方法和系统
CN104536791A (zh) * 2014-12-29 2015-04-22 北京奇虎科技有限公司 基于移动终端的页面资源加载方法及装置
CN104967801B (zh) * 2015-02-04 2019-09-17 腾讯科技(深圳)有限公司 一种视频数据处理方法和装置
CN105866853B (zh) * 2016-04-13 2019-01-01 同方威视技术股份有限公司 安检监视控制系统和安检监视终端
CN106055295B (zh) * 2016-05-24 2018-11-16 腾讯科技(深圳)有限公司 图片处理方法、图片绘制方法及装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102567960A (zh) * 2010-12-31 2012-07-11 同方威视技术股份有限公司 一种用于安全检查系统的图像增强方法
JP2016004285A (ja) * 2014-06-13 2016-01-12 三菱電機株式会社 点検情報管理システム
CN105338015A (zh) * 2014-06-27 2016-02-17 清华大学 一种基于b/s架构的辐射图像检查系统及方法
CN105637886A (zh) * 2014-09-25 2016-06-01 华为技术有限公司 用于向客户端提供图形用户界面的服务器,以及客户端
CN104822047A (zh) * 2015-04-16 2015-08-05 中国科学院上海技术物理研究所 一种基于网络自适应医学图像传输显示方法
CN105827957A (zh) * 2016-03-16 2016-08-03 上海斐讯数据通信技术有限公司 一种图像处理的系统和方法
CN205656319U (zh) * 2016-04-13 2016-10-19 同方威视技术股份有限公司 安检监视控制系统和安检监视终端

Also Published As

Publication number Publication date
AU2017232056A1 (en) 2018-05-31
CN108076113A (zh) 2018-05-25
CA2982065A1 (en) 2018-05-15
AU2017232056B2 (en) 2019-09-12
EP3322180A1 (en) 2018-05-16
US10430669B2 (en) 2019-10-01
CN108076113B (zh) 2021-04-16
CA2982065C (en) 2021-01-26
US20180137371A1 (en) 2018-05-17

Similar Documents

Publication Publication Date Title
US10579829B1 (en) Application remoting using network vector rendering
US10873614B2 (en) Method and apparatus for configuration and deployment of media processing in the network
US20160337290A1 (en) Message Push Method and Apparatus
US11431806B2 (en) Internet of things information system of multiple objects
CN105830134A (zh) 面向加密通信的图像压缩扩展方法及装置、程序以及存储介质
CN103518210A (zh) 用于动态地调整视频图像参数以便于执行后续应用的方法
CN105637886A (zh) 用于向客户端提供图形用户界面的服务器,以及客户端
US9628810B1 (en) Run-length encoded image decompressor for a remote desktop protocol client in a standards-based web browser
US8521837B2 (en) Three-dimensional earth-formation visualization
US20120254381A1 (en) Method and apparatus of capturing a screen image of a remotely managed machine
CN109104632A (zh) 一种电视终端ar场景的实现方法及系统
CN102770827B (zh) 用于在终端的屏幕上显示多媒体内容的方法
US8931687B2 (en) Techniques for optimization of barcodes
WO2018090673A1 (zh) 用于对安检数据进行操作的方法、服务器和系统
US20230351705A1 (en) Method and apparatus for performing anchor based rendering for augmented reality media objects
US20240056549A1 (en) Method, computer device, and computer program for providing high-quality image of region of interest by using single stream
CN114173087A (zh) 视频数据获取及处理方法、边缘网关及存储介质
CN103369361B (zh) 图像数据回显的控制方法、服务器及终端
CN111866058B (zh) 数据处理方法及系统
KR101403321B1 (ko) 클라우드 스트리밍 서비스를 위한 서버의 테스트 방법, 이를 위한 시스템 및 장치
US11196842B2 (en) Collaborative and edge-enhanced augmented reality systems
KR101445539B1 (ko) 클라우드 스트리밍 서비스를 위한 서버의 테스트 방법, 이를 위한 장치 및 시스템
US20200401700A1 (en) Infrastructure for securing and/or managing iot-type devices
US20210112109A1 (en) Av1 codec for real-time video communication
US20210154576A1 (en) Vector graphics-based live streaming of video games

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: 17871926

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: 17871926

Country of ref document: EP

Kind code of ref document: A1