WO2019223363A1 - 箱柜设备 - Google Patents

箱柜设备 Download PDF

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Publication number
WO2019223363A1
WO2019223363A1 PCT/CN2019/073879 CN2019073879W WO2019223363A1 WO 2019223363 A1 WO2019223363 A1 WO 2019223363A1 CN 2019073879 W CN2019073879 W CN 2019073879W WO 2019223363 A1 WO2019223363 A1 WO 2019223363A1
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WO
WIPO (PCT)
Prior art keywords
cabinet
temperature
camera
control device
lens
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Application number
PCT/CN2019/073879
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English (en)
French (fr)
Inventor
吕秀凤
孙伟
Original Assignee
合肥美的智能科技有限公司
合肥华凌股份有限公司
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Application filed by 合肥美的智能科技有限公司, 合肥华凌股份有限公司 filed Critical 合肥美的智能科技有限公司
Publication of WO2019223363A1 publication Critical patent/WO2019223363A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F3/00Show cases or show cabinets
    • A47F3/04Show cases or show cabinets air-conditioned, refrigerated
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B17/00Details of cameras or camera bodies; Accessories therefor
    • G03B17/55Details of cameras or camera bodies; Accessories therefor with provision for heating or cooling, e.g. in aircraft
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices

Definitions

  • cameras are generally set inside the cabinets. Due to the difference between the internal temperature of the cabinet and the external environment, when the cabinet door is opened, It is easy to cause fogging of the lens part of the camera, and when the humidity in the cabinet is too high, it is also easy to fog the lens part, which causes the camera to shoot unconsciously, and the user cannot accurately know the condition of the items in the cabinet.
  • the existing heating elements are always heated, resulting in high energy consumption, frequent replacement of heating elements, which is not conducive to reducing costs, and is prone to failure due to excessively high heating temperatures, which results in relatively safe performance. low.
  • the purpose of this disclosure is to overcome the problems of the prior art that the lens of the camera in the cabinet is easy to fog or has high energy consumption and low safety performance when the door of the cabinet is opened, and provides a cabinet device.
  • the cabinet equipment can prevent the lens of the camera in the cabinet from generating fog when the door of the cabinet is opened, and the energy consumption is lower and the use is safer.
  • a cabinet device including:
  • a door body configured to close the opening
  • the cabinet equipment also includes:
  • a detection device configured to detect a switching state of the door body, and the detection device is further configured to detect temperature and / or humidity inside and outside the cabinet body;
  • a control device connected to the detection device and configured to control the heating element to heat the lens of the camera according to a detection result of the detection device.
  • control device controls the heating member to heat according to whether the door is opened by the detection device and the temperature and / or humidity inside and outside the cabinet body fed back by the detection device to prevent the lens of the camera from generating fog, which can ensure the clear shooting And because the heating element is not always heated, it can significantly reduce energy consumption, reduce the frequency of heating element replacement, help reduce costs, reduce the probability of failure due to excessive heating temperature, and make it safer to use.
  • the detection device includes:
  • a first temperature sensor configured in the cabinet body, and the first temperature sensor is connected to the control device;
  • a second temperature sensor is disposed outside the cabinet body, and the second temperature sensor is connected to the control device;
  • the control device is configured to control the door opening detection module when the door opening detection module feedbacks that the door is opened and the temperature difference between the temperature value of the second temperature sensor and the temperature value of the first temperature sensor is greater than a set value.
  • the heating element heats the lens of the camera.
  • the detection device includes:
  • a door opening detection module configured to feed back the switching state of the door body to the control device
  • a humidity sensor configured in the main body of the cabinet, and the humidity sensor is connected to the control device,
  • the control device is configured to control the heating element to heat the lens of the camera when the door opening detection module feedbacks that the door is opened and the humidity value of the humidity sensor is greater than a set value.
  • the detection device includes:
  • a door opening detection module configured to feed back the switching state of the door to the control device, and the door opening detection module is connected to the control device;
  • a second temperature and humidity sensor is disposed outside the cabinet body, and the second temperature and humidity sensor is connected to the control device;
  • the control device is configured to feed back the door opening detection module and the temperature value of the second temperature and humidity sensor, and the temperature difference between the temperature value of the first temperature and humidity sensor is greater than a set value and / Or when the humidity value of the first temperature and humidity sensor is greater than a set value, the heating element is controlled to heat the lens of the camera.
  • the heating member includes a heating sheet attached to an outer surface of the lens of the camera.
  • the heating element includes a heating sheet
  • the camera is disposed in a box body
  • the box body is provided with a lens hole aligned with the lens
  • the heating sheet is disposed in the box body near the lens. At the lens hole.
  • the box body is fixed on the cabinet main body by a snap connection or a bolt connection.
  • the camera is mounted on a top wall of the cabinet main body and the lens faces downward.
  • the camera is mounted on a bottom wall of the cabinet main body and the lens faces upward.
  • a partition is provided in the cabinet main body, wherein: the camera is installed on the top surface of the partition and the lens faces upward.
  • a partition is provided in the cabinet main body, wherein the camera is installed on the bottom surface of the partition and the lens faces downward.
  • the cabinet equipment is a refrigerator or a retail cabinet.
  • FIG. 1 is a schematic structural diagram of a cabinet device when a door is opened according to a preferred embodiment of the present disclosure
  • FIG. 2 is a schematic structural diagram of a cabinet device when a door body is closed according to a preferred embodiment of the present disclosure
  • FIG. 3 is a schematic structural diagram of a camera on which a heating sheet is installed
  • FIG. 4 is a schematic structural diagram when a camera is installed in a box body
  • FIG. 5 is a schematic structural view of FIG. 4 from another angle.
  • orientation words such as "up, down, left, and right” are used to refer to the up, down, left, and right shown in the drawings; It refers to the inside and outside of the outline of each component.
  • the present disclosure provides a cabinet device, which includes a cabinet main body 1 and a door body 2, the cabinet main body 1 is configured with an opening, the door body 2 is configured to close the opening, and the cabinet main body 1 further includes a camera 3 And the heating element 4, the camera 3 is installed in the cabinet main body 1, and the heating element 4 is configured to heat the lens of the camera 3; the cabinet equipment further includes a detection device and a control device, and the detection device is configured to detect the door body The on / off state of 2 and the temperature and / or humidity of the cabinet body 1 are detected.
  • the control device is connected to the detection device and is configured to control the camera heated by the heating element 4 according to the detection result of the detection device. 3 shots.
  • control device controls the heating element to heat according to whether the door 2 is opened by the detection device and the temperature and / or humidity inside and outside the cabinet body 1 fed back by the detection device to prevent the lens of the camera 3 from generating fog, which can ensure the camera 3 the sharpness of the shooting, and because the heating element 4 is not always heated, it can significantly reduce energy consumption, reduce the frequency of replacing the heating element 4, help reduce costs, and reduce the probability of failure due to high heating temperature, Use more secure.
  • the cabinet equipment may be a refrigerator or a retail cabinet, and the retail cabinet may be an unmanned retail cabinet that sells beverages and the like.
  • a weather strip 8 may be provided between the cabinet main body 1 and the door body 2, and the weather strip 8 may be fixed to one of the cabinet main body 1 and the door body 2.
  • the sealing strip 8 is fixed on the door body 2.
  • a first lamp body 9 may be provided in the cabinet main body 1, and a second lamp body 10 may be provided outside the cabinet main body 1.
  • the first lamp body 9 and the second lamp body 10 may play a role of lighting.
  • the cabinet can be provided with a door lock 11 and a door handle 12 to conveniently and reliably close the door body 2 and open the door body 2.
  • the control device is configured to control the heating element 4 to control the heating after a set time t Piece 4 stops heating.
  • the setting time t can be determined according to factors such as the installation environment of the cabinet and the heating value of the heating element 4.
  • the detection device may have, but is not limited to, the following four embodiments:
  • the detection device includes a door opening detection module, a first temperature sensor and a second temperature sensor, the door opening detection module is connected to the control device, and the door opening detection module is configured to feed back the door body 2 to the control device.
  • Switch state the first temperature sensor is arranged in the cabinet main body 1, and the first temperature sensor is connected to the control device; the second temperature sensor is arranged outside the cabinet main body 1, and the second The temperature sensor is connected to the control device; wherein the control device is configured to feed back the door opening detection module to open the door 2 and the temperature value T2 of the second temperature sensor and the temperature of the first temperature sensor.
  • the heating element 4 is controlled to heat the lens of the camera 3.
  • the control device controls the heating element 4 to perform heating according to the temperature difference T3 between the temperature inside and outside the cabinet body 1.
  • the detection device includes a door opening detection module and a humidity sensor, and the door opening detection module is configured to feedback the switching state of the door body 2 to the control device; the humidity sensor is disposed in the cabinet main body 1, and the humidity A sensor is connected to the control device, and the control device is configured to control the heating element 4 to heat the camera when the door opening detection module feedbacks that the door body 2 is opened and the humidity value K of the humidity sensor is greater than a set value K0. 3 shots.
  • the control device controls the heating element 4 to perform heating based on the humidity value K in the cabinet main body 1.
  • the control device controls the heating element 4 to heat the lens of the camera 3 according to the temperature difference T3 between the inside and outside temperature of the cabinet main body 1 and the humidity value K inside the cabinet main body 1.
  • the detection device includes a door opening detection module, a first temperature and humidity sensor 5 and a second temperature and humidity sensor 6, and the door opening detection module is configured to feed back the door body 2 to the control device.
  • Switch state, and the door opening detection module is configured to be connected to the control device;
  • a first temperature and humidity sensor 5 is configured in the cabinet main body 1, and a first temperature and humidity sensor 5 is connected to the control device;
  • the second The temperature and humidity sensor 6 is disposed outside the cabinet main body 1, and the second temperature and humidity sensor 6 is connected to the control device; wherein the control device is configured to feed back the door body 2 opening and
  • T3 T2-T1 is greater than the set value T0 and / or
  • the heating element 4 is controlled to heat the lens of the camera 3.
  • This embodiment is different from the third embodiment in that the temperature and humidity in the cabinet main body 1 are detected by the first temperature sensor and the humidity sensor respectively in the third embodiment, and in the fourth embodiment, the temperature and humidity in the cabinet main body 1 can be detected simultaneously by one component of the first temperature and humidity sensor 5.
  • the set time t for heating by the heating element 4 may be set in proportion to the temperature difference value T3 and / or the humidity value K.
  • the door opening detection module can perform detection by using a variety of methods such as a sector switch, a magnetic switch, and a hall switch. When the door body 2 is completely closed or opened, different electrical signals are generated to indicate the state of the door body.
  • the heating element 4 includes a heating sheet attached to an outer surface of the lens of the camera 3.
  • the heating element 4 includes a heating sheet
  • the camera 3 is disposed in a box body B1
  • a lens hole aligned with the lens is provided on the box body B1
  • the heating sheet is disposed near the lens at the lens hole of the box body B1.
  • the box B1 may be provided with an opening for accessing the camera 3, and the opening may cover the cover B2.
  • the box B1 may be provided with a first card slot C1, and the cover B2 may be provided with the first card slot.
  • Cover body B2 Placing the camera 3 in the box body B1 can protect the camera 3, and it is convenient to install the box B1 and the camera 3 in a position where it is easy to collide, and the risk of damage to the camera 3 can be reduced.
  • the box body B1 is fixed to the cabinet main body 1 by a snap connection or a bolt connection.
  • the box body B1 may be provided with a second card slot C2.
  • the cabinet body 1 may be provided with a second slot.
  • the clamping slot C2 is engaged with the fixed second buckle, so that the box body B1 is installed on the cabinet main body 1.
  • the mounting position of the camera 3 may have, but is not limited to, the following four options:
  • the camera 3 is installed on the top wall of the cabinet main body 1 with the lens facing downward;
  • the camera 3 is installed on the bottom wall of the cabinet main body 1 with the lens facing upward;
  • the camera 3 is mounted on the top surface of the partition plate 7 and the lens faces upward;
  • the camera 3 is mounted on the bottom surface of the partition plate 7 with the lens facing downward.

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  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • General Physics & Mathematics (AREA)
  • Chemical & Material Sciences (AREA)
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Abstract

一种箱柜设备,包括配置有敞口的箱柜主体(1)和可封闭敞口的门体(2),箱柜主体(1)包括安装在箱柜主体(1)内的摄像头(3)和配置为加热摄像头(3)的加热件(4);箱柜设备还包检测门体(2)的开关状态和检测箱柜主体(1)内外的温度和/或湿度的检测装置以及与检测装置相连且根据检测装置的检测结果控制加热件(4)加热摄像头(3)的镜头的控制装置。控制装置根据检测装置反馈门体(2)是否开启以及检测装置反馈的箱柜主体(1)内外温度和/或湿度来控制加热件(4)进行加热以防止摄像头(3)的镜头产生雾气,保证摄像头(3)拍摄的清晰度,由于加热件不是一直进行加热,能够显著降低能耗,减少加热件的更换频率,有助于降低成本,同时使用更加安全。

Description

箱柜设备
相关申请的交叉引用
本公开要求2018年5月25日提交的中国专利申请201820815521.6的权益,该公开的内容通过引用被合并于本文。
技术领域
本公开涉及摄像领域,具体地涉及一种箱柜设备。
背景技术
为了方便远程查看诸如冰箱、酒柜和无人零售柜等的箱柜内的物品情况,箱柜内部一般设置有摄像头,由于箱柜内部环境温度和外界环境温度有差异,在打开柜门时,容易引起摄像头的镜头部位起雾,并且箱柜内的湿度过大时,也容易使镜头部位起雾,从而导致摄像头拍摄不清醒,用户无法准确获知箱柜内的物品情况。另外,为了防止摄像头产生雾气,现有的加热件一直处于加热状态,导致能耗较高,加热件更换频繁,不利于降低成本,而且容易因加热温度过高而出现故障,导致安全使用性能较低。
因此,存在设计一种在箱柜的门体开启时能够防止箱柜内的摄像头的镜头产生雾气且能耗较低、使用更加安全的箱柜设备的需要。
公开内容
本公开的目的是为了克服现有技术存在的在箱柜的门体开启时箱柜内的摄像头的镜头容易起雾或能耗较高且使用安全性能较低的问题,提供一种箱柜设备,该箱柜设备在箱柜的门体开启时能够防止箱柜内的摄像头的镜头产生雾气且能耗较低、使用更加安全。
为了实现上述目的,本公开提供一种箱柜设备,包括:
箱柜主体,所述箱柜主体配置有敞口;和
门体,所述门体配置为可封闭所述敞口;
所述箱柜主体还包括:
摄像头和加热件,所述摄像头安装在所述箱柜主体内,所述加热件配置为加热所述摄像头的镜头;
所述箱柜设备还包括:
检测装置,所述检测装置配置为检测所述门体的开关状态,所述检测装置还配置为检测所述箱柜主体的内外温度和/或湿度;以及
控制装置,所述控制装置与所述检测装置相连,配置为根据所述检测装置的检测结果控制所述加热件加热所述摄像头的镜头。
在上述技术方案中,控制装置根据检测装置反馈门体是否开启以及检测装置反馈的箱柜主体内外温度和/或湿度来控制加热件进行加热以防止摄像头的镜头产生雾气,能够保证摄像头拍摄的清晰度,且由于加热件不是一直进行加热,能够显著降低能耗,减少加热件的更换频率,有助于降低成本,同时降低了因加热温度过高而出现故障的概率,使用更加安全。
可选地,所述控制装置配置为控制所述加热件加热设定时间后控制所述加热件停止加热。
可选地,所述检测装置包括:
开门检测模块,所述开门检测模块与所述控制装置相连,所述开门检测模块配置为向所述控制装置反馈所述门体的开关状态;
第一温度传感器,所述第一温度传感器配置在所述箱柜主体内,且所述第一温度传感器与所述控制装置相连;和
第二温度传感器,所述第二温度传感器配置在所述箱柜主体外,且所述第二温度传感器与所述控制装置相连;
其中,所述控制装置配置为在所述开门检测模块反馈所述门体开启且所述第二温度传感器的温度值与所述第一温度传感器的温度值的温差值大 于设定值时控制所述加热件加热所述摄像头的镜头。
可选地,所述检测装置包括:
开门检测模块,所述开门检测模块配置为向所述控制装置反馈所述门体的开关状态;和
湿度传感器,所述湿度传感器配置在所述箱柜主体内,且所述湿度传感器与所述控制装置相连,
所述控制装置配置为在所述开门检测模块反馈所述门体开启且所述湿度传感器的湿度值大于设定值时控制所述加热件加热所述摄像头的镜头。
可选地,所述检测装置包括:
开门检测模块,所述开门检测模块配置为向所述控制装置反馈所述门体的开关状态,且所述开门检测模块与所述控制装置相连;
第一温湿度传感器,所述第一温湿度传感器配置在所述箱柜主体内,且所述第一温湿度传感器与所述控制装置相连;和
第二温湿度传感器,所述第二温湿度传感器配置在所述箱柜主体外,且所述第二温湿度传感器与所述控制装置相连;
其中,所述控制装置配置为在所述开门检测模块反馈所述门体开启以及所述第二温湿度传感器的温度值所述第一温湿度传感器的温度值的温差值大于设定值和/或所述第一温湿度传感器的湿度值大于设定值时控制所述加热件加热所述摄像头的镜头。
可选地,所述加热件包括加热片,所述加热片贴附在所述摄像头的所述镜头的外表面上。
可选地,所述加热件包括加热片,所述摄像头设置在盒体内,所述盒体上设置有对准所述镜头的镜头孔,所述加热片靠近所述镜头设置在所述盒体的所述镜头孔处。
可选地,所述盒体通过卡接或者螺栓连接固定在所述箱柜主体上。
可选地,所述摄像头安装在所述箱柜主体的顶壁上且所述镜头朝下。
可选地,所述摄像头安装在所述箱柜主体的底壁上且所述镜头朝上。
可选地,所述箱柜主体内设置有隔板,其中:所述摄像头安装在所述隔板的顶面上且所述镜头朝上。
可选地,所述箱柜主体内设置有隔板,其中:所述摄像头安装在所述隔板的底面上且所述镜头朝下。
可选地,所述箱柜设备为冰箱或零售柜。
本公开的其它特征和优点将在随后的具体实施方式部分予以详细说明。
附图说明
图1是本公开优选实施方式的箱柜设备在门体打开时的结构示意图;
图2是本公开优选实施方式的箱柜设备在门体关闭时的结构示意图;
图3是安装有加热片的摄像头的结构示意图;
图4是摄像头安装在盒体内时的结构示意图;
图5是图4的另一角度的结构示意图。
附图标记说明
1   箱柜主体               2    门体
3   摄像头                 4   加热件
5   第一温湿度传感器       6   第二温湿度传感器
7   隔板                   8   密封条
9   第一灯体               10  第二灯体
11  门锁                   12  门把手
B1  盒体                   B2  盖体
C1  第一卡槽               F   第一卡扣
H   螺钉孔                 C2  第二卡槽
具体实施方式
以下结合附图对本公开的具体实施方式进行详细说明。应当理解的是,此处所描述的具体实施方式仅用于说明和解释本公开,并不用于限制本公开。
在本公开中,在未作相反说明的情况下,使用的方位词如“上、下、左、右”通常是指参考附图所示的上、下、左、右;“内、外”是指相对于各部件本身的轮廓的内外。
本公开提供一种箱柜设备,包括箱柜主体1和门体2,箱柜主体1配置有敞口,门体2配置为可封闭所述敞口,所述箱柜主体1还包括摄像头3和加热件4,摄像头3安装在箱柜主体1内,加热件4配置为加热摄像头3的镜头;所述箱柜设备还包括检测装置和控制装置,所述检测装置配置为检测所述门体2的开关状态以及检测所述箱柜主体1内外的温度和/或湿度,所述控制装置与所述检测装置相连,配置为根据所述检测装置的检测结果控制所述加热件4加热的摄像头3的镜头。
在上述技术方案中,控制装置根据检测装置反馈门体2是否开启以及检测装置反馈的箱柜主体1内外温度和/或湿度来控制加热件进行加热以防止摄像头3的镜头产生雾气,能够保证摄像头3拍摄的清晰度,且由于加热件4不是一直进行加热,能够显著降低能耗,减少加热件4的更换频率,有助于降低成本,同时降低了因加热温度过高而出现故障的概率,使用更加安全。
其中,所述箱柜设备可为冰箱或零售柜,零售柜可为售卖饮料等的无人零售柜。如图1和图2所示,箱柜主体1和门体2之间可设置密封条8,密封条8可固定在箱柜主体1和门体2中的一者上,在图1中,密封条8固定在门体2上。另外,箱柜主体1内可设置第一灯体9,箱柜主体1的外部可设置第二灯体10,第一灯体9和第二灯体10可起到照明的作用,并且, 箱柜上可设置门锁11和门把手12以方便可靠地关闭门体2和打开门体2。
考虑到在加热件4加热一定时间后,摄像头3的镜头上便不会再产生雾气,因此可选地,所述控制装置设置为控制所述加热件4加热设定时间t后控制所述加热件4停止加热。其中,设定时间t可根据箱柜的安装环境和加热件4的发热量等因素确定。
并且,检测装置可以有但不限于以下四种实施方式:
第一种实施方式
所述检测装置包括开门检测模块、第一温度传感器和第二温度传感器,所述开门检测模块与所述控制装置相连,所述开门检测模块配置为向所述控制装置反馈所述门体2的开关状态;所述第一温度传感器配置在箱柜主体1内,且所述第一温度传感器与所述控制装置相连;所述第二温度传感器配置在箱柜主体1外,且所述第二温度传感器与所述控制装置相连;其中,所述控制装置配置为在所述开门检测模块反馈所述门体2开启且所述第二温度传感器的温度值T2与所述第一温度传感器的温度值T1的温差值T3=T2-T1大于设定值T0时控制所述加热件4加热摄像头3的镜头。在该种实施方式中,控制装置根据箱柜主体1内外温度的温差值T3控制加热件4进行加热。
第二种实施方式
所述检测装置包括开门检测模块和湿度传感器,所述开门检测模块配置为向所述控制装置反馈所述门体2的开关状态;所述湿度传感器配置在箱柜主体1内,且所述湿度传感器与所述控制装置相连,所述控制装置配置为在所述开门检测模块反馈所述门体2开启且所述湿度传感器的湿度值K大于设定值K0时控制所述加热件4加热摄像头3的镜头。在该种实施方式中,控制装置根据箱柜主体1内的湿度值K控制加热件4进行加热。
第三种实施方式
由于在门体2开启时,箱柜主体1内外温差值过大或箱柜主体1内的 湿度值过大,都会引起摄像头3的镜头起雾,因此可将第一种实施方式和第二种实施方式结合起来形成第三种实施方式。也就是说,在第三种实施方式中,控制装置根据箱柜主体1的内外温度的温差值T3和箱柜主体1内部的湿度值K控制加热件4加热摄像头3的镜头。
第四种实施方式
如图1和图2所示,所述检测装置包括开门检测模块、第一温湿度传感器5和第二温湿度传感器6,所述开门检测模块配置为向所述控制装置反馈所述门体2的开关状态,且所述开门检测模块配置与所述控制装置相连;第一温湿度传感器5配置在所述箱柜主体1内,且第一温湿度传感器5与所述控制装置相连;第二温湿度传感器6配置在所述箱柜主体1外,且第二温湿度传感器6与所述控制装置相连;其中,所述控制装置配置为在所述开门检测模块反馈所述门体2开启以及所述第二温湿度传感器6的温度值T2与所述第一温湿度传感器5的温度值T1的温差值T3=T2-T1大于设定值T0和/或所述第一温湿度传感器5的湿度值K大于设定值K0时控制所述加热件4加热摄像头3的镜头。该种实施方式与第三种实施方式的不同之处在于,第三种实施方式中箱柜主体1内的温度和湿度是分别通过第一温度传感器和湿度传感器两个部件进行检测的,而在第四种实施方式中可通过第一温湿度传感器5一个部件同时检测箱柜主体1内的温度和湿度。
在上述四种实施方式中,加热件4加热的设定时间t可与温差值T3和/或湿度值K成正比设置。并且,开门检测模块可利用扇形开关、磁敏开关和霍尔开关等多种方式进行检测,在门体2完全关闭或者打开时分别产生不同的电信号,以指示门体的状态。
另外,加热件4的结构和设置位置可有多种选择。如图3所示,可选地,所述加热件4包括加热片,所述加热片贴附在所述摄像头3的所述镜头的外表面上。可选择地,如图4和图5所示,所述加热件4包括加热片,所述摄像头3设置在盒体B1内,所述盒体B1上设置有对准所述镜头的镜 头孔,所述加热片靠近所述镜头设置在所述盒体B1的所述镜头孔处。其中,盒体B1上可设置有用于取放摄像头3的开口,开口上可覆盖盖体B2,例如,盒体B1上可设置第一卡槽C1,盖体B2上可设置与第一卡槽C1卡合固定的第一卡扣F以将盖体B2覆盖在盒体B1的开口处,并且盖体B2上可设置用于安装螺钉的螺钉孔H,以便使摄像头3通过螺钉固定在所述盖体B2上。将摄像头3设置盒体B1内,可对摄像头3起到保护作用,方便将盒体B1和摄像头3安装在容易碰撞的位置,可降低摄像头3被损伤的风险。
为了方便安装和拆卸盒体B1,可选地,所述盒体B1通过卡接或者螺栓连接固定在所述箱柜主体1上。当盒体B1通过卡接固定在箱柜主体1上时,如图4和图5所示,盒体B1上可设置第二卡槽C2,此时箱柜主体1上可设置能够与第二卡槽C2卡合固定的第二卡扣,以便使盒体B1安装在箱柜主体1上。
另外,如图1所示,摄像头3的安装位置可以有但不限于以下四种选择:
1、所述摄像头3安装在所述箱柜主体1的顶壁上且所述镜头朝下;
2、所述摄像头3安装在所述箱柜主体1的底壁上且所述镜头朝上;
当所述箱柜主体1内设置有隔板7时:
3、所述摄像头3安装在所述隔板7的顶面上且所述镜头朝上;
4、所述摄像头3安装在所述隔板7的底面上且所述镜头朝下。
以上结合附图详细描述了本公开的实施方式,但是,本公开并不限于此。在本公开的技术构思范围内,可以对本公开的技术方案进行多种简单变型,包括各个具体技术特征以任何合适的方式进行组合。为了避免不必要的重复,本公开对各种可能的组合方式不再另行说明。但这些简单变型和组合同样应当视为本公开所公开的内容,均属于本公开的保护范围。

Claims (13)

  1. 一种箱柜设备,其特征在于,包括:
    箱柜主体(1),所述箱柜主体(1)配置有敞口;和
    门体(2),所述门体(2)配置为可封闭所述敞口;
    所述箱柜主体(1)还包括:
    摄像头(3)和加热件(4),所述摄像头(3)安装在所述箱柜主体(1)内,所述加热件(4)配置为加热所述摄像头(3)的镜头;
    所述箱柜设备还包括:
    检测装置,所述检测装置配置为检测所述门体(2)的开关状态,所述检测装置还配置为检测所述箱柜主体(1)的内外温度和/或湿度;以及
    控制装置,所述控制装置与所述检测装置相连,配置为根据所述检测装置的检测结果控制所述加热件(4)加热所述摄像头(3)的镜头。
  2. 根据权利要求1所述的箱柜设备,其特征在于,所述控制装置配置为控制所述加热件(4)加热设定时间后控制所述加热件(4)停止加热。
  3. 根据权利要求1所述的箱柜设备,其特征在于,所述检测装置包括:
    开门检测模块,所述开门检测模块与所述控制装置相连,所述开门检测模块配置为向所述控制装置反馈所述门体(2)的开关状态;
    第一温度传感器,所述第一温度传感器配置在所述箱柜主体(1)内,且所述第一温度传感器与所述控制装置相连;和
    第二温度传感器,所述第二温度传感器配置在所述箱柜主体(1)外,且所述第二温度传感器与所述控制装置相连;
    其中,所述控制装置配置为在所述开门检测模块反馈所述门体(2)开 启且所述第二温度传感器的温度值与所述第一温度传感器的温度值的温差值大于设定值时控制所述加热件(4)加热所述摄像头(3)的镜头。
  4. 根据权利要求1-3中任一项所述的箱柜设备,其特征在于,所述检测装置包括:
    开门检测模块,所述开门检测模块配置为向所述控制装置反馈所述门体(2)的开关状态;和
    湿度传感器,所述湿度传感器配置在所述箱柜主体(1)内,且所述湿度传感器与所述控制装置相连,
    所述控制装置配置为在所述开门检测模块反馈所述门体(2)开启且所述湿度传感器的湿度值大于设定值时控制所述加热件(4)加热所述摄像头(3)的镜头。
  5. 根据权利要求1所述的箱柜设备,其特征在于,所述检测装置包括:
    开门检测模块,所述开门检测模块配置为向所述控制装置反馈所述门体(2)的开关状态,且所述开门检测模块与所述控制装置相连;
    第一温湿度传感器(5),所述第一温湿度传感器(5)配置在所述箱柜主体(1)内,且所述第一温湿度传感器(5)与所述控制装置相连;和
    第二温湿度传感器(6),所述第二温湿度传感器(6)配置在所述箱柜主体(1)外,且所述第二温湿度传感器(6)与所述控制装置相连;
    其中,所述控制装置配置为在所述开门检测模块反馈所述门体(2)开启以及所述第二温湿度传感器(6)的温度值与所述第一温湿度传感器(5)的温度值的温差值大于设定值和/或所述第一温湿度传感器(5)的湿度值大于设定值时控制所述加热件(4)加热所述摄像头(3)的镜头。
  6. 根据权利要求1所述的箱柜设备,其特征在于,所述加热件(4) 包括加热片,所述加热片贴附在所述摄像头(3)的所述镜头的外表面上。
  7. 根据权利要求1所述的箱柜设备,其特征在于,所述加热件(4)包括加热片,所述摄像头(3)设置在盒体(B1)内,所述盒体(B1)上设置有对准所述镜头的镜头孔,所述加热片靠近所述镜头设置在所述盒体(B1)的所述镜头孔处。
  8. 根据权利要求7所述的箱柜设备,其特征在于,所述盒体(B1)通过卡接或者螺栓连接固定在所述箱柜主体(1)上。
  9. 根据权利要求1的箱柜设备,其特征在于:所述摄像头(3)安装在所述箱柜主体(1)的顶壁上且所述镜头朝下。
  10. 根据权利要求1的箱柜设备,其特征在于:所述摄像头(3)安装在所述箱柜主体(1)的底壁上且所述镜头朝上。
  11. 根据权利要求1的箱柜设备,其特征在于:所述箱柜主体(1)内设置有隔板(7),其中:所述摄像头(3)安装在所述隔板(7)的顶面上且所述镜头朝上。
  12. 根据权利要求1的箱柜设备,其特征在于:所述箱柜主体(1)内设置有隔板(7),其中:所述摄像头(3)安装在所述隔板(7)的底面上且所述镜头朝下。
  13. 根据权利要求1-12中任一项所述的箱柜设备,其特征在于,所述箱柜设备为冰箱或零售柜。
PCT/CN2019/073879 2018-05-25 2019-01-30 箱柜设备 WO2019223363A1 (zh)

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