WO2020010555A1 - 一种安检设备 - Google Patents

一种安检设备 Download PDF

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Publication number
WO2020010555A1
WO2020010555A1 PCT/CN2018/095333 CN2018095333W WO2020010555A1 WO 2020010555 A1 WO2020010555 A1 WO 2020010555A1 CN 2018095333 W CN2018095333 W CN 2018095333W WO 2020010555 A1 WO2020010555 A1 WO 2020010555A1
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WO
WIPO (PCT)
Prior art keywords
detection
detected
target
security inspection
inspection device
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PCT/CN2018/095333
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English (en)
French (fr)
Inventor
祁春超
王荣
黄雄伟
Original Assignee
深圳市华讯方舟太赫兹科技有限公司
华讯方舟科技有限公司
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Application filed by 深圳市华讯方舟太赫兹科技有限公司, 华讯方舟科技有限公司 filed Critical 深圳市华讯方舟太赫兹科技有限公司
Priority to PCT/CN2018/095333 priority Critical patent/WO2020010555A1/zh
Publication of WO2020010555A1 publication Critical patent/WO2020010555A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S13/00Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
    • G01S13/88Radar or analogous systems specially adapted for specific applications
    • G01S13/89Radar or analogous systems specially adapted for specific applications for mapping or imaging
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01VGEOPHYSICS; GRAVITATIONAL MEASUREMENTS; DETECTING MASSES OR OBJECTS; TAGS
    • G01V3/00Electric or magnetic prospecting or detecting; Measuring magnetic field characteristics of the earth, e.g. declination, deviation
    • G01V3/12Electric or magnetic prospecting or detecting; Measuring magnetic field characteristics of the earth, e.g. declination, deviation operating with electromagnetic waves
    • 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 invention relates to the technical field of security inspection, in particular to a security inspection device.
  • Security equipment can conduct non-contact detection of people to find intentionally hidden weapons, bombs and other items that threaten public safety.
  • Security inspection equipment has been widely used in airports, terminals, convention centers, stadiums and other large places to ensure that all personnel entering certain areas do not carry dangerous goods that threaten the safety of others.
  • the present invention provides a security inspection device.
  • the security inspection device includes: a detection room provided with a first detection port communicating with the interior of the detection room; and a protection mechanism for detecting when a target to be detected enters the interior of the detection room.
  • the first detection port When it is in a dangerous state, the first detection port is closed; wherein, the first detection port includes an inlet and an outlet, the target to be detected enters the detection chamber through the inlet and is detected, and the protective component is used when the target to be detected is in a dangerous state, The entrance and the exit are closed; a detection mechanism is provided in the detection room to detect the target to be detected after the target to be detected enters the detection room.
  • the present invention provides another security inspection device.
  • the security inspection device includes: a detection room provided with a first detection port communicating with the interior of the detection room; and a protection mechanism for detecting when a target to be detected enters the interior of the detection room. When it is in a dangerous state, close the first detection port.
  • the security inspection equipment includes: a detection room, a protection mechanism, and a detection mechanism.
  • the detection room is provided with a first detection port that communicates with the interior of the detection room.
  • the protection mechanism is used to enter the detection room when the object to be detected enters.
  • the first detection port is closed, wherein the first detection port includes an inlet and an outlet, and the target to be detected enters the detection chamber through the inlet to be detected, and the protective component is used to In a dangerous state, the entrance and the exit are closed, and the detection mechanism is set in the detection room to detect the target after the target enters the detection room. In this way, the target can be prevented from escaping or taking other aggressive behavior, thereby Improve public safety.
  • FIG. 1 is a schematic structural diagram of a first embodiment of a security inspection device provided by the present application.
  • FIG. 2 is a schematic cross-sectional view of the first detection port opened in FIG. 1;
  • FIG. 3 is a schematic cross-sectional view of a second embodiment of a security inspection device provided by the present application.
  • FIG. 4 is a schematic cross-sectional view of closing the inlet and the outlet in FIG. 3;
  • FIG. 5 is a schematic cross-sectional view of a third embodiment of a security inspection device provided by the present application.
  • FIG. 6 is a schematic cross-sectional view of opening the inlet and the outlet and closing the second detection port in FIG. 5.
  • Security equipment can conduct non-contact detection of people to find intentionally hidden weapons, bombs and other items that threaten public safety.
  • Security inspection equipment has been widely used in airports, terminals, convention centers, stadiums and other large places to ensure that all personnel entering certain areas do not carry dangerous goods that threaten the safety of others.
  • FIG. 1 is a schematic structural diagram of a first embodiment of a security inspection device provided by the present application.
  • the security inspection device 10 in this embodiment includes a detection room 11 and a protection component 12.
  • the detection room 11 has a certain internal height, which is larger than the maximum height of the general population after raising their hands, such as 2.5 meters, the top is sealed, and the interior has a receiving space so that the target 13 to be detected can be placed therein. Be detected.
  • the detection chamber 11 is made of a material having a certain strength, such as stainless steel, tempered glass, bulletproof glass, and the like, of course, it can also be other materials, which is not limited herein.
  • the shape of the cross section of the detection chamber 11 may be circular or rectangular, and of course, it may be other shapes, which is not limited herein.
  • FIG. 2 is a schematic cross-sectional view of the first detection port 111 opened in FIG. 1.
  • the detection chamber 11 is provided with a first detection port 111 communicating with the inside thereof.
  • the first detection port 111 has a certain width and height, such as a width of 0.8 meters and a height of 2.0 meters, so that the target 13 to be detected can enter the detection chamber 11 through the first detection port 111 and be detected.
  • the protection assembly 12 is configured to open the first detection port 111 when the target 13 to be detected does not enter the detection chamber 11 or when the target 13 is in a safe state, as shown in FIG. 2.
  • the protection component 12 is further configured to close the first detection port 111 when the target 13 to be detected enters the detection room 11 and is in a dangerous state, as shown in FIG. 1.
  • the protection assembly 12 includes a protection member 121 and a driving member (not shown in the figure).
  • the protection member 121 is movably connected to the detection chamber 11.
  • the driving member is used to drive the protection member 121 to be opposite when the target 13 to be detected is in a dangerous state. Move in the detection chamber 11 to close the first detection port 111.
  • the protective member 121 when the protective member 121 opens the first detection port 111, the protective member 121 is housed in the wall of the detection chamber 11 under the driving of the driving member, as shown in FIG. 2, but of course, it can also be other methods, such as a protective member 121 is closely attached to the inner wall of the detection chamber 11 and is not limited herein.
  • the driving member is a motor
  • the motor can drive the protective member 121 to open or close the first detection port 111, and of course, it can also be other driving methods, which is not limited herein.
  • the trajectory of the movement of the protective member 121 relative to the detection chamber 11 is an arc or a straight line.
  • it may also be a trajectory of other forms, which is not limited herein.
  • the guards 121 are provided in pairs to move away from each other when the first detection port 111 is opened under the driving of the driving member, and close to each other when the first detection port 111 is closed, which can improve opening or closing the first detection.
  • the rate of port 111 is provided in pairs to move away from each other when the first detection port 111 is opened under the driving of the driving member, and close to each other when the first detection port 111 is closed, which can improve opening or closing the first detection.
  • the security inspection device 10 of this embodiment further includes a detection mechanism 14.
  • the detection mechanism 14 is disposed in the detection room 11 to detect the target 13 after the target 13 enters the detection room 11.
  • the detection mechanism 14 is movably disposed in the detection chamber 11 and performs an all-round detection on the target 13 to be detected in a running manner surrounding the target 13 to be detected.
  • the detection mechanism 14 includes a plurality of groups of detection units 141 and a driving unit (not shown in the figure), and each group of detection units 141 includes a transmitter (not shown in the figure) and a receiver (not shown in the figure).
  • the transmitter is configured to transmit a detection signal to the target 13 to be detected
  • the receiver is configured to receive the detected signal reflected from the target 13 to be detected.
  • the target 13 to be detected is stationary inside the detection room 11, and a plurality of sets of detection units 141 are arranged in an array along the inner wall of the detection room 11 from the top of the detection room 11 to the bottom thereof, and are surrounded by the drive unit Detect the movement of target 13 to achieve 360 ° all-round detection, so as to get more image information.
  • the transmitter emits electromagnetic waves with a certain power to the target 13 to be detected.
  • the electromagnetic waves can be millimeter waves with a wavelength of 10 to 1 mm.
  • the electromagnetic wave reflected from the detection target 13 is then reconstructed, and the holographic image of the detection target 13 is reconstructed. Due to the high frequency of the millimeter wave, the imaging resolution is higher, and hidden objects can be easily seen.
  • the detection room 11 is at least partially transparent, so that the target 13 to be detected is in a visible state when it is detected inside the detection room 11.
  • the detection room 11 is partially made of transparent and material with a certain strength, such as tempered glass, bulletproof glass, etc., so that the target 13 to be detected is visible when it is detected inside the detection room 11, thereby increasing the detection process. Controllability.
  • the target to be detected 13 is an ordinary person
  • the ordinary person enters the detection room 11 through the first detection port 111, and the detection mechanism 14 then performs a comprehensive detection on the ordinary person in a running mode surrounding the ordinary person, and displays the ordinary person.
  • a holographic image of a person detects a dangerous item, such as a weapon, a bomb, etc., that is, an ordinary person is in a dangerous state
  • the first detection port 111 is closed by the protective component 12 to prevent the ordinary person in the dangerous state from escaping or taking other aggressive behavior.
  • public safety is improved.
  • no dangerous article that is, the ordinary person is in a safe state
  • the ordinary person indicating the safe state exits the detection room 11 through the first detection port 111.
  • FIG. 3 is a schematic cross-sectional view of a second embodiment of a security inspection device provided by the present application.
  • the first detection port 111 of this embodiment further includes an inlet 1111 and an outlet 1112, and other structures are the same as those of the first embodiment described above, and details are not described herein again.
  • FIG. 4 is a schematic cross-sectional view of closing the inlet 1111 and the outlet 1112 in FIG. 3.
  • the protection component 12 is configured to open the inlet 1111 when the target 13 to be detected does not enter the detection chamber 11, and open the outlet 1112 when the target 13 is in a safe state, as shown in FIG. 3.
  • the target 13 to be detected enters the interior of the detection room 11 through the inlet 1111, and the protection assembly 12 is further configured to close the inlet 1111 and the outlet 1112 when the target 13 to be detected is in a dangerous state, as shown in FIG. 4.
  • the inlet 1111 and the outlet 1112 are disposed opposite to each other, and of course, they may be disposed adjacent to each other, which is not limited herein.
  • the target 13 to be detected is an ordinary person
  • the ordinary person enters the detection room 11 through the inlet 1111
  • the detection mechanism 14 then performs a comprehensive detection on the ordinary person in a running mode surrounding the ordinary person, and displays the ordinary person's hologram Image
  • dangerous items such as weapons and bombs are detected, that is, ordinary people are in a dangerous state
  • the entrance 1111 and the exit 1112 are closed by the protective component 12 to prevent ordinary people in dangerous states from escaping or taking other aggressive behaviors, thereby improving public
  • no dangerous article is detected, that is, the ordinary person is in a safe state
  • the ordinary person indicating the safe state exits the detection room 11 through the exit 1112.
  • FIG. 5 is a schematic cross-sectional view of a third embodiment of a security inspection device provided by the present application.
  • the detection chamber 11 of this embodiment is further provided with a second detection port 112 that communicates with the inside thereof.
  • the other structures are the same as those of the second embodiment and the first embodiment described above, and will not be repeated here.
  • FIG. 6 is a schematic cross-sectional view of opening the inlet 1111 and the outlet 1112 and closing the second detection port 112 in FIG. 5.
  • the protection component 12 is configured to open the inlet 1111 when the target 13 to be detected does not enter the detection chamber 11, and close the second detection port 112 and open the outlet 1112 when the target 13 is in a safe state, such as Shown in Figure 6.
  • the protection component 12 is further configured to open the second detection port 112 when the target 13 to be detected is in a dangerous state, so that the target 13 to be further inspected through the second detection port 112, as shown in FIG. 5 .
  • the security inspection equipment when designing the security inspection equipment, it is only possible to improve the accuracy of the security inspection equipment as much as possible, but it is not guaranteed that the security inspection equipment is completely accurate.
  • the target 13 to be detected When the target 13 to be detected is in a dangerous state, the target 13 to be detected can be directly controlled. Security inspectors conduct further security checks on ordinary people in a dangerous state, thereby further ensuring the accuracy of detection.
  • the second detection port 112 or the outlet 1112 can be selected to come out of the detection room 11 according to the detection result. , To a certain extent can play a role in shunting.
  • the target 13 to be detected is an ordinary person
  • the ordinary person enters the detection room 11 through the inlet 1111, and the detection mechanism 14 then performs a comprehensive detection on the ordinary person in a running mode surrounding the ordinary person, and displays the ordinary person's hologram Image
  • dangerous items such as weapons and bombs are detected, that is, ordinary people are in a dangerous state
  • the inlet 1111 and the outlet 1112 are closed by the protective component 12 and the second detection port 112 is opened so that ordinary people in the dangerous state can pass
  • the second detection port 112 performs further security inspections. For example, a security inspector conducts further security checks on ordinary people in a dangerous state. If no dangerous items are detected, that is, the ordinary people are in a safe state, the ordinary people in a safe state are instructed to pass the exit 1112 out of the detection chamber 11.
  • the security inspection equipment provided in this application includes: a detection room and a protection mechanism.
  • the detection room is provided with a first detection port that communicates with the interior of the detection chamber.
  • the protection mechanism is used to detect when the object to be detected enters the detection chamber. When it is in a dangerous state, the first detection port is closed. In this way, the target to be detected can be prevented from escaping or taking other aggressive behaviors, thereby improving public safety.

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Abstract

一种安检设备(10),包括:检测室(11)、防护机构(12)及检测机构(14),检测室(11)设有连通检测室(11)内部的第一检测口(111),防护机构(12)用于在待检测目标(13)进入检测室(11)内部被检测、且呈危险状态时,关闭第一检测口(111),其中,第一检测口(111)包括进口(1111)和出口(1112),待检测目标(13)通过进口(1111)进入检测室(11)内部被检测,防护机构(12)用于在待检测目标(13)呈危险状态时,关闭进口(1111)及出口(1112),检测机构(14)设置于检测室(11)内,以在待检测目标(13)进入检测室(11)内后,检测待检测目标(13)。该安检设备(10)可以阻止待检测目标(13)逃跑或采取其他过激行为,从而提高公共安全性。

Description

一种安检设备 技术领域
本发明涉及安检技术领域,特别是涉及一种安检设备。
背景技术
安检设备可对人身进行非接触检测,用以发现故意隐藏的武器、炸弹等威胁公共安全的物品。安检设备已广泛应用于机场、码头、会展中心、体育馆等大型场所,以保证进入一定区域的所有人员不携带有威胁他人安全的危险品。
现有的安检设备一般是一个门进出,或者一个门进一个门出,这样存在安全隐患,暴力分子容易在检查出危险物品的时候逃跑或采取其他过激行为。
技术问题
现有技术中安检设备无法阻止暴力分子逃跑。
技术解决方案
为解决上述技术问题,本发明提供一种安检设备,该安检设备包括:检测室,设有连通检测室内部的第一检测口;防护机构,用于在待检测目标进入检测室内部被检测,且呈危险状态时,关闭第一检测口;其中,所述第一检测口包括进口及出口,待检测目标通过进口进入检测室内部被检测,防护组件用于在待检测目标呈危险状态时,关闭进口及所述出口;检测机构,设置于检测室内,以在待检测目标进入检测室内后,检测待检测目标。
为解决上述技术问题,本发明提供另一种安检设备,该安检设备包括:检测室,设有连通检测室内部的第一检测口;防护机构,用于在待检测目标进入检测室内部被检测,且呈危险状态时,关闭第一检测口。
有益效果
区别于现有技术的情况,本发明提供的安检设备包括:检测室、防护机构及检测机构,检测室设有连通检测室内部的第一检测口,防护机构用于在待检测目标进入检测室内部被检测,且呈危险状态时,关闭第一检测口,其中,所述第一检测口包括进口及出口,待检测目标通过进口进入检测室内部被检测,防护组件用于在待检测目标呈危险状态时,关闭进口及所述出口,检测机构设置于检测室内,以在待检测目标进入检测室内后,检测待检测目标,通过这种方式可以阻止待检测目标逃跑或采取其他过激行为,从而提高公共安全性。
附图说明
图1是本申请提供的安检设备第一实施例的结构示意图;
图2是图1中打开第一检测口的截面示意图;
图3是本申请提供的安检设备第二实施例的截面示意图;
图4是图3中关闭进口及出口的截面示意图;
图5是本申请提供的安检设备第三实施例的截面示意图;
图6是图5中打开进口及出口并关闭第二检测口的截面示意图。
本发明的实施方式
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作 简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
安检设备可对人身进行非接触检测,用以发现故意隐藏的武器、炸弹等威胁公共安全的物品。安检设备已广泛应用于机场、码头、会展中心、体育馆等大型场所,以保证进入一定区域的所有人员不携带有威胁他人安全的危险品。
现有的安检设备一般是一个门进出,或者一个门进一个门出,这样存在安全隐患,暴力分子容易在检查出危险物品的时候逃跑或采取其他过激行为,为了解决上述技术问题,本申请提供了如下实施例。
参阅图1,图1是本申请提供的安检设备第一实施例的结构示意图。本实施例的安检设备10包括检测室11及防护组件12。
本实施例中,检测室11具有一定的内部高度,大于普通人群举起双手后的最大身高,比如2.5米,顶部密封,且其内部具有一容置空间,以使得待检测目标13可以置身其中被检测。可选地,检测室11由具有一定强度的材料构成,比如不锈钢、钢化玻璃、防弹玻璃等,当然还可以是其他材料,在此不作限制。
可选地,检测室11横截面的形状可以是圆形,也可以是矩形,当然还可以是其他形状,在此不作限制。
共同参阅图1至图2,图2是图1中打开第一检测口111的截面示意图。
可选地,检测室11设有连通其内部的第一检测口111。
本实施例中,第一检测口111具有一定的宽度和高度,比如宽度为0.8米、高度为2.0米,以便于待检测目标13可以通过第一检测口111进入检测室11内部被检测。
可选地,防护组件12用于在待检测目标13未进入检测室11内部时,或在待检测目标13呈安全状态时,打开第一检测口111,如图2所示。
可选地,防护组件12进一步用于在待检测目标13进入检测室11内部被检测,且呈危险状态时,关闭第一检测口111,如图1所示。
具体地,防护组件12包括防护件121及驱动件(图中未示出),防护件121与检测室11活动连接,驱动件用于在待检测目标13呈危险状态时,驱动防护件121相对于检测室11移动以关闭第一检测口111。
可选地,防护件121打开第一检测口111时,防护件121在驱动件的驱动下容置于检测室11的墙壁内,如图2所示,当然也可以是其他方式,比如防护件121紧贴检测室11内壁,在此不作限制。
可选地,驱动件为电机,电机可以驱动防护件121打开或关闭第一检测口111,当然也可以是其他驱动方式,在此不作限制。
可选地,防护件121相对于检测室11移动的轨迹呈弧线形或直线形,当然也可以是其他形式的轨迹,在此不作限制。
可选地,防护件121成对设置,以在驱动件的驱动下打开第一检测口111时,彼此远离,在关闭第一检测口111时,彼此靠近,这样可以提高打开或关闭第一检测口111的速率。
本实施例的安检设备10还包括检测机构14,检测机构14设置于检测室11内,以在待检测目标13进入检测室11内部后,检测待检测目标13。
可选地,检测机构14活动地设置于检测室11内,以环绕待检测目标13的运行方式对待检测目标13进行全方位检测。
可选地,检测机构14包括多组检测单元141及驱动单元(图中未示出),每组检测单元141包括发射器(图中未示出)及接受器(图中未示出),其中,发射器用于向待检测目标13发射检测信号,接受器用于接受从待检测目标13反射的被检测信号。
本实施例中,待检测目标13在检测室11内部静止不动,多组检测单元141从检测室11顶 部至其底部阵列式地沿检测室11内壁设置,并在驱动单元的驱动下环绕待检测目标13运动,以实现360°全方位检测,从而得到更多的图像信息。
可以理解地,不同物体对电磁波的吸收与反射程度不一样,发射器向待检测目标13发射具有一定功率的电磁波,其中,电磁波可以是波长为10~1毫米的毫米波,接收器采集被待检测目标13反射回来的电磁波,然后重建待检测目标13的全息图像,由于毫米波的高频率,使得成像的分辨率更高,可以很容易地看见隐藏的物品。
可选地,检测室11至少部分呈透明设置,以使得待检测目标13在检测室11内部被检测时呈可视状态。
本实施例中,检测室11部分由透明且具有一定强度的材料构成,比如钢化玻璃、防弹玻璃等,以使得待检测目标13在检测室11内部被检测时呈可视状态,从而增加检测过程的可控性。
可以理解地,以待检测目标13为普通人为例,普通人通过第一检测口111进入检测室11,检测机构14随即以环绕普通人的运行方式对普通人进行全方位检测,并显示出普通人的全息图像,若检测出危险物品,比如武器、炸弹等,也就是普通人呈危险状态,则通过防护组件12关闭第一检测口111,阻止危险状态的普通人逃跑或采取其他过激行为,从而提高公共安全性,若没有检测出危险物品,也就是普通人呈安全状态,则指示安全状态的普通人通过第一检测口111走出检测室11。
共同参阅图1至图3,图3是本申请提供的安检设备第二实施例的截面示意图。本实施例的第一检测口111进一步包括进口1111及出口1112,其他结构与上述第一实施例相同,在此不再赘述。
共同参阅图1至图4,图4是图3中关闭进口1111及出口1112的截面示意图。
可选地,防护组件12用于在待检测目标13未进入检测室11内部时,打开进口1111,且在待检测目标13呈安全状态时,打开出口1112,如图3所示。
可选地,待检测目标13通过进口1111进入检测室11内部被检测,防护组件12进一步用于在待检测目标13呈危险状态时,关闭进口1111及出口1112,如图4所示。
可选地,进口1111与出口1112相对设置,当然也可以相邻设置,在此不作限制。
可以理解地,以待检测目标13为普通人为例,普通人通过进口1111进入检测室11,检测机构14随即以环绕普通人的运行方式对普通人进行全方位检测,并显示出普通人的全息图像,若检测出危险物品,比如武器、炸弹等,也就是普通人呈危险状态,则通过防护组件12关闭进口1111及出口1112,阻止危险状态的普通人逃跑或采取其他过激行为,从而提高公共安全性,若没有检测出危险物品,也就是普通人呈安全状态,则指示安全状态的普通人通过出口1112走出检测室11。
共同参阅图1至图5,图5是本申请提供的安检设备第三实施例的截面示意图。本实施例的检测室11还设有连通其内部的第二检测口112,其他结构与上述第二实施例及第一实施例相同,在此不再赘述。
共同参阅图1至图6,图6是图5中打开进口1111及出口1112并关闭第二检测口112的截面示意图。
可选地,防护组件12用于在待检测目标13未进入检测室11内部时,打开进口1111,且在待检测目标13呈安全状态时,关闭第二检测口112,并打开出口1112,如图6所示。
可选地,防护组件12进一步用于在待检测目标13呈危险状态时,打开第二检测口112,以使得待检测目标13通过第二检测口112进行进一步的安检工作,如图5所示。
可以理解地,在设计安检设备时,只可能尽可能地提高安检设备的准确率,但不能保证安检设备完全准确,当待检测目标13呈危险状态时,可以直接控制待检测目标13,也可以由安检员对危险状态的普通人作进一步的安检,从而进一步保证检测的准确性。
本实施例中,由于第二检测口112与出口1112的性质相同,待检测目标13在检测室11内部检测完毕后,根据检测结果可以选择第二检测口112或出口1112从检测室11内部出来,一定程度上可以起到分流的作用。
可以理解地,以待检测目标13为普通人为例,普通人通过进口1111进入检测室11,检测机构14随即以环绕普通人的运行方式对普通人进行全方位检测,并显示出普通人的全息图像,若检测出危险物品,比如武器、炸弹等,也就是普通人呈危险状态,则通过防护组件12关闭进口1111及出口1112,并打开第二检测口112,以使得危险状态的普通人通过第二检测口112进行进一步的安检工作,比如由安检员对危险状态的普通人作进一步的安检,若没有检测出危险物品,也就是普通人呈安全状态,则指示安全状态的普通人通过出口1112走出检测室11。
区别于现有技术的情况,本申请提供的安检设备包括:检测室及防护机构,检测室设有连通检测室内部的第一检测口,防护机构用于在待检测目标进入检测室内部被检测,且呈危险状态时,关闭第一检测口,通过这种方式可以阻止待检测目标逃跑或采取其他过激行为,从而提高公共安全性。

Claims (20)

  1. 一种安检设备,其中,所述安检设备包括:
    检测室,设有连通所述检测室内部的第一检测口;
    防护机构,用于在待检测目标进入所述检测室内部被检测,且呈危险状态时,关闭所述第一检测口;
    其中,所述第一检测口包括进口及出口,所述待检测目标通过所述进口进入所述检测室内部被检测,所述防护组件用于在所述待检测目标呈危险状态时,关闭所述进口及所述出口;
    检测机构,设置于所述检测室内,以在所述待检测目标进入所述检测室内后,检测所述待检测目标。
  2. 根据权利要求1所述的安检设备,其中,所述检测室还设有连通所述检测室内部的第二检测口,所述防护组件进一步用于在所述待检测目标呈危险状态时,打开所述第二检测口,以使得所述待检测目标通过所述第二检测口进行进一步的安检工作。
  3. 根据权利要求1所述的安检设备,其中,所述防护组件进一步用于在所述待检测目标未进入所述检测室内部时,打开所述进口,且在所述待检测目标呈安全状态时,打开所述出口。
  4. 根据权利要求1所述的安检设备,其中,所述防护组件包括驱动件及防护件,所述防护件与所述检测室活动连接,所述驱动件用于在所述待检测目标呈危险状态时,驱动所述防护件相对于所述检测室移动以关闭所述第一检测口。
  5. 根据权利要求4所述的安检设备,其中,所述防护件相对于所述 检测室移动的轨迹呈弧线形或直线形。
  6. 根据权利要求1所述的安检设备,其中,所述检测机构活动地设置于所述检测室内,以环绕所述待检测目标的运行方式对所述待检测目标进行全方位检测。
  7. 根据权利要求6所述的安检设备,其中,所述检测机构包括多组检测单元及驱动单元,所述驱动单元驱动所述多组检测单元以环绕所述待检测目标的运行方式对所述待检测目标进行全方位检测。
  8. 根据权利要求7所述的安检设备,其中,所述多组检测单元均包括发射器及接收器,所述发射器用于向所述待检测目标发射检测信号,所述接收器用于接受从所述待检测目标反射的被检测信号。
  9. 根据权利要求1所述的安检设备,其中,所述检测室至少部分呈透明设置,以使得所述待检测目标在所述检测室内部被检测时呈可视状态。
  10. 一种安检设备,其中,所述安检设备包括:
    检测室,设有连通所述检测室内部的第一检测口;
    防护机构,用于在待检测目标进入所述检测室内部被检测,且呈危险状态时,关闭所述第一检测口。
  11. 根据权利要求10所述的安检设备,其中,所述第一检测口包括进口及出口,所述待检测目标通过所述进口进入所述检测室内部被检测,所述防护组件用于在所述待检测目标呈危险状态时,关闭所述进口及所述出口。
  12. 根据权利要求10所述的安检设备,其中,所述检测室还设有连 通所述检测室内部的第二检测口,所述防护组件进一步用于在所述待检测目标呈危险状态时,打开所述第二检测口,以使得所述待检测目标通过所述第二检测口进行进一步的安检工作。
  13. 根据权利要求11所述的安检设备,其中,所述防护组件进一步用于在所述待检测目标未进入所述检测室内部时,打开所述进口,且在所述待检测目标呈安全状态时,打开所述出口。
  14. 根据权利要求10所述的安检设备,其中,所述防护组件包括驱动件及防护件,所述防护件与所述检测室活动连接,所述驱动件用于在所述待检测目标呈危险状态时,驱动所述防护件相对于所述检测室移动以关闭所述第一检测口。
  15. 根据权利要求14所述的安检设备,其中,所述防护件相对于所述检测室移动的轨迹呈弧线形或直线形。
  16. 根据权利要求10所述的安检设备,其中,所述安检设备还包括检测机构,所述检测机构设置于所述检测室内,以在所述待检测目标进入所述检测室内后,检测所述待检测目标。
  17. 根据权利要求16所述的安检设备,其中,所述检测机构活动地设置于所述检测室内,以环绕所述待检测目标的运行方式对所述待检测目标进行全方位检测。
  18. 根据权利要求17所述的安检设备,其中,所述检测机构包括多组检测单元及驱动单元,所述驱动单元驱动所述多组检测单元以环绕所述待检测目标的运行方式对所述待检测目标进行全方位检测。
  19. 根据权利要求18所述的安检设备,其中,所述多组检测单元均 包括发射器及接收器,所述发射器用于向所述待检测目标发射检测信号,所述接收器用于接受从所述待检测目标反射的被检测信号。
  20. 根据权利要求10所述的安检设备,其中,所述检测室至少部分呈透明设置,以使得所述待检测目标在所述检测室内部被检测时呈可视状态。
PCT/CN2018/095333 2018-07-11 2018-07-11 一种安检设备 WO2020010555A1 (zh)

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