WO2020233433A1 - 具有监控功能的庭院灯 - Google Patents

具有监控功能的庭院灯 Download PDF

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Publication number
WO2020233433A1
WO2020233433A1 PCT/CN2020/089595 CN2020089595W WO2020233433A1 WO 2020233433 A1 WO2020233433 A1 WO 2020233433A1 CN 2020089595 W CN2020089595 W CN 2020089595W WO 2020233433 A1 WO2020233433 A1 WO 2020233433A1
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WIPO (PCT)
Prior art keywords
lamp
light
monitoring function
main housing
function according
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PCT/CN2020/089595
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English (en)
French (fr)
Inventor
汪玉华
Original Assignee
Wang Yuhua
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Application filed by Wang Yuhua filed Critical Wang Yuhua
Publication of WO2020233433A1 publication Critical patent/WO2020233433A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • 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

Definitions

  • the present disclosure relates to the field of lamps, in particular to a garden lamp with monitoring function.
  • the present disclosure provides a garden lamp with monitoring function, which makes installation and use more convenient.
  • the present disclosure provides a courtyard lamp with monitoring function, and the technical solutions adopted are as follows:
  • the garden lamp includes at least a waterproof main housing and a light pole.
  • the main housing is composed of an upper lamp housing and a lower light-transmitting lampshade.
  • a main control element, a camera assembly, a lighting device, a memory, and a wireless communication device are provided.
  • the top of the main housing is provided with a hole, and the hole is adapted to the size and shape of the lens of the camera assembly for use The lens of the camera assembly is installed, and the light pole is connected to the main housing.
  • the garden light may further include a bracket, and the light pole is connected to the main housing through the bracket.
  • an ambient light sensing device may also be provided inside the main housing.
  • the garden light may also be connected to an external controller through a wire, and an ambient light sensing device may be provided in the external controller.
  • the lighting device when the ambient light sensing device senses that the ambient light brightness is lower than the set value, the lighting device starts to emit light until when the ambient light sensing device senses that the ambient light brightness is higher than the set value. At a fixed value, the lighting device stops emitting light.
  • the lighting device when the ambient light sensing device senses that the brightness of the ambient light is lower than the set value, the lighting device starts to emit light, and stops emitting light after a set period of time has elapsed, and within a certain period of time when it stops emitting light The ambient light sensing device can no longer sense the brightness of the ambient light.
  • the garden light may further include a power lead, and the garden light may be electrically connected to an external power source through the power lead.
  • the captured image data when an object is moving in the image data captured by the camera assembly, the captured image data can be stored in the memory, and when there is no object in the image data captured by the camera assembly During exercise, the captured image data may not be stored in the memory.
  • the image data captured by the camera assembly may be transmitted to a network server through the wireless communication device for remote viewing by the user.
  • the lighting device may use LEDs as light-emitting elements.
  • the lower end of the light pole may have an embedded part for burying in the soil.
  • the embedded part of the light pole may be ribbed. After the yard lamp is fixed to the ground by burying the embedded part in soil, the main The height of the highest point where the housing emits light may not exceed 1.10 meters from the ground, and the light emitted through the main housing may be irradiated in a downwardly inclined direction or a horizontal direction but not in an upwardly inclined direction.
  • the outside of the light pole may be provided with a force block for pressing down or hammering during installation.
  • a dustproof cover made of transparent material may be provided on the outer periphery of the part of the lens that is installed with the camera assembly that is exposed outside the hole.
  • Fig. 1 is a schematic diagram of the external structure of a courtyard lamp with a monitoring function according to an embodiment of the present disclosure.
  • Fig. 2 is a schematic diagram of the external structure of a courtyard lamp with a monitoring function according to another embodiment of the present disclosure.
  • Fig. 3 is a schematic circuit block diagram of each element of a courtyard lamp with a monitoring function according to an embodiment of the present disclosure.
  • the courtyard lamp 1 includes a lamp housing 2, a transparent lamp shade 3, a bracket 4, a light pole 5 and a power lead 6, a lamp housing 2 and a transparent
  • the light lampshade 3 constitutes a waterproof main housing.
  • a main control element 11, a camera assembly 12, a lighting device 14, a memory 15 and a wireless communication device 16 are provided inside the main housing (not shown in FIG. 1, and their connection relationship is schematically shown in FIG. 3) ,
  • the top of the main housing (the top of the lamp housing 2) is provided with a hole for mounting the lens 8 of the camera assembly 12 that matches the size and shape of the lens 8 of the camera assembly 12.
  • the lamp pole 5 is connected by a bracket 4. To the main housing.
  • the main housing is composed of an upper lamp housing 2 and a lower light-transmitting lamp cover 3. More specifically, the lamp housing 2 is formed as a housing that opens downwards, and the light-transmitting lamp cover 3 is formed as a housing that opens upwards, and the main housing is formed by buckling the lamp housing 2 and the light-transmitting lamp cover 3 with each other.
  • the light-transmitting lampshade 3 is made of light-transmitting material to allow the light emitted by the lighting device 14 in the main housing to pass through.
  • the lamp housing 2 can be made of, for example, an opaque material to hide part or all of the components such as the main control element 11, the camera assembly 12, the lighting device 14, the memory 15 and the wireless communication device 16 arranged in the main housing, thereby Improve the aesthetics of the courtyard lamp 1.
  • the lamp housing 2 and the light-transmitting lamp cover 3 can be connected together by any known methods such as screw connection, welding connection, and snap connection. Both the lamp housing 2 and the light-transmitting lamp cover 3 are impermeable, and the connection between the lamp housing 2 and the light-transmitting lamp cover 3 is also formed to be water-impermeable, thereby forming a waterproof main housing, thus preventing it from being installed in the main housing
  • the devices and components of the device are damp.
  • the camera assembly 12 arranged in the main housing is arranged such that when the camera assembly 12 is installed in place, the lens 8 of the camera assembly 12 just passes through the hole opened at the top of the lamp housing 2, so that the lens 8 is exposed from the main housing, So that the lens 8 can monitor the surrounding environment.
  • the outer periphery of the part of the lens 8 of the camera assembly 12 exposed out of the hole may be provided with a dustproof cover (not shown) made of a transparent material to protect the lens 8.
  • the light pole 5 is connected to the main housing through a bracket 4.
  • the bracket 4 includes three spaced apart branch brackets. As shown in Figure 1, each branch bracket converges at one end close to the light pole 5 to be connected to the upper end of the light pole 5, and the other end of each branch bracket extends toward the main housing in a divergent manner, and each branch The other end of the bracket is connected to the lamp housing 2 of the main housing.
  • the thinner lamp post 5 and the thicker main casing are firmly connected by the branch brackets; and since each branch bracket is spaced apart, the transparency from the main casing is ensured
  • the light emitted by the light lampshade 3 is not blocked; in addition, the branch bracket is connected to the upper lamp housing 2 to ensure the firmness of the connection and minimize the blocking of the light-transmitting lampshade 3.
  • this structure also improves the aesthetics of the courtyard lamp 1.
  • the stent 4 having three branch stents, however, the branch stents of the stent 4 may be any number more than one.
  • the bracket 4 can be omitted, and the light pole 5 is directly connected to the main housing.
  • the prior art garden lights usually use manual control or timer to control the switch of the lighting device, which is inconvenient to use.
  • the garden light of the present disclosure also includes an external controller (not shown in the figure), which is connected to the circuit in the main housing of the garden light 1 through a wire.
  • the courtyard lamp 1 of the present disclosure is also provided with an ambient light sensing device 13 inside the main housing or inside the external controller.
  • the lighting device 14 starts to emit light, until the ambient light sensing device 13 senses that the ambient light is higher than the set value, the lighting device 14 stops Light; or, when the ambient light sensing device 13 senses that the ambient light brightness is lower than the set value and needs to turn on the lighting, the lighting device 14 starts to emit light, and stops emitting light after the set time has elapsed, and for a certain period of time after stopping light emitting
  • the internal ambient light sensing device 13 no longer senses the brightness of the ambient light. In other words, the lighting device 14 no longer emits light within the certain period of time regardless of whether the ambient light is lower than the set value.
  • the power supply of the courtyard lamp 1 of the present disclosure uses an external power source, and the courtyard lamp 1 is electrically connected to the external power source through the power lead 6.
  • the power lead 6 is drawn from the main housing, passes through the hollow part of the light pole 5, and is drawn from a position of the light pole 5 near the ground, so as to be electrically connected to an external power source.
  • the power source of the courtyard lamp 1 is not limited to an external power source, and other power sources such as photovoltaic panels may also be used.
  • the courtyard lamp 1 of the present disclosure has two ways to store the image data taken by the camera assembly 12.
  • the first storage method is local storage. Specifically, the image data taken by the camera assembly 12 is stored in a memory card as the memory 15, and when the stored image data needs to be consulted, the memory card is taken out and read by a card reader. Due to the limited storage space of the memory card, in order to save storage space, when there is no movement in the image data captured by the camera assembly 12, the image data will not be stored in the memory card, only when there is movement in the image data captured by the camera assembly 12 At this time, the captured image data is stored in the memory 15.
  • the second storage method is as follows: the image data taken by the camera assembly 12 is transmitted to a network server for storage through the wireless communication device 16 for remote viewing by the user.
  • the wireless communication device 16 uses, for example, a WIFI device.
  • the lens 8 of the camera assembly 12 may use, for example, a fisheye lens with a shooting angle equal to or greater than 180 degrees, and the lens 8 faces the sky.
  • 360-degree monitoring of the surrounding environment of the courtyard lamp 1 can be realized without blind spots.
  • the original picture taken by the fisheye lens will produce distortion, but this distortion can be corrected by hardware or software algorithms. This is an existing technology and will not be repeated here.
  • the lower end of the light pole 5 has an embedded part 7.
  • the embedded portion 7 has a rib-like shape. Specifically, as shown in FIG. 1 or FIG. 2, the embedded portion 7 has a quadrangular thorn shape.
  • the embedded part 7 may be integrally formed with the light pole 5 or may be a separate component from the light pole 5. It should be understood that the embedded portion 7 may be formed in other shapes, as long as it is formed into a shape that is beneficial for fixing the garden lamp 1 to the ground.
  • the height of the highest point of the main housing (translucent lampshade 3) from the ground is different. More than 1.10 meters, and through the main housing (light-transmitting lampshade 3), the illuminating direction includes the horizontal direction and the downward direction, excluding the upward direction. In other words, the light emitted through the main housing is irradiated in a downwardly inclined direction or a horizontal direction but not in an upwardly inclined direction, and the height of the horizontal irradiation does not exceed 1.10 meters.
  • a force block 17 is provided on the outside of the light pole to withstand depression or hammering during installation. Through the force block 17, it can be pressed down (such as a foot pedal) or beaten The method is to embed or puncture the embedded part 7 into the soil.
  • the force block 17 is disposed at the upper end of the embedded part 7. When the embedded part 7 is buried in the soil, the force block 17 is substantially flush with the ground, thereby improving the aesthetics of the courtyard lamp 1.
  • FIG. 3 depicts a schematic circuit diagram of the main control element 11, the camera assembly 12, the ambient light sensing device 13, the lighting device 14, the memory 15 and the wireless communication device 16 of the courtyard lamp 1.
  • the camera assembly 12, the ambient light sensing device 13, the lighting device 14, the memory 15 and the wireless communication device 16 are all electrically connected to the main control element 11.
  • the main control element 11 may be a conventional control element such as a microprocessor and a microcontroller.
  • the camera assembly 12 may be any suitable type of surveillance camera assembly on the market.
  • the ambient light sensing device 13 may include optical elements such as a photosensitive sensor.
  • the lighting device 14 can use any known light-emitting element. To save power, the lighting device 14 may use, for example, an LED (light emitting diode) as a light emitting element.
  • the memory 15 may be a non-volatile memory, such as a read-only memory (ROM), flash memory, or other memory.
  • the wireless communication device 16 may implement wireless communication through any known wireless communication method, and as described above, the wireless communication device 16 may be a WIFI device.
  • the main control component 11 determines whether there is an object in the image data captured by the camera assembly 12 and selects whether to store the image data in the memory 15 or not, or select whether to store the image data through the wireless communication device 16 Transfer to the web server.
  • the main control element 11 can set the starting conditions of the lighting device 14. For example, when the main control element 11 receives the signal sent by the ambient light sensing device 13 to indicate that the ambient light is lower than the set value, the main control element 11 sends a signal to the lighting device 14 to start the lighting device 14; When the component 11 receives a signal from the ambient light sensing device 13 to indicate that the ambient light is higher than a set value, the main control component 11 sends a signal to the lighting device 14 to turn off the lighting device 14.
  • the main control element 11 may also include a timer, which starts timing when the lighting device 14 is started, and turns off the lighting device 14 after a predetermined period of time has elapsed.

Abstract

一种具有监控功能的庭院灯(1),至少包括防水的主壳体和灯杆(5),其中:主壳体由上部的灯外壳(2)和下部的透光灯罩(3)构成,主壳体内部设置有主控元件(11)、摄像头组件(12)、照明装置(14)、存储器(15)和无线通信装置(16),主壳体的顶端开设有孔部,孔部与摄像头组件(12)的镜头(8)大小及形状相适配以用于安装摄像头组件(12)的镜头(8),灯杆(5)连接到主壳体。

Description

具有监控功能的庭院灯 技术领域
本公开涉及灯具领域,尤其涉及一种具有监控功能的庭院灯。
背景技术
随着社会经济的发展,为了方便人们的晚间的生活,以及保障人们的人身安全和财产安全,小区、公园以及家庭庭院等场所都安装有照明设备以及监控设备,其中庭院灯是上述场所常见的照明设备,深受人们的喜爱。但是通常照明设备和监控设备都是互相独立的,功能比较单一,且安装照明设备和监控设备施工工作量大,不利于节约社会资源。针对上述缺点,本公开提供了一种具有监控功能的庭院灯,使安装和使用更加方便。
公开内容
为克服上述缺点,本公开提供一种具有监控功能的庭院灯,所采用的技术方案如下:
一种具有监控功能的庭院灯,所述庭院灯至少包括防水的主壳体和灯杆,其中:所述主壳体由上部的灯外壳和下部的透光灯罩构成,所述主壳体内部设置有主控元件、摄像头组件、照明装置、存储器和无线通信装置,所述主壳体的顶端开设有孔部,所述孔部与所述摄像头组件的镜头大小及形状相适配以用于安装所述摄像头组件的所述镜头,所述灯杆连接到所述主壳体。
在一些实施例中,所述庭院灯还可以包括支架,所述灯杆通过所述支架连接到所述主壳体。
在一些实施例中,所述主壳体内部还可以设置有环境光线感应装置。
在一些实施例中,所述庭院灯还可以通过电线连接到外部控制 器,所述外部控制器内可以设置有环境光线感应装置。
在一些实施例中,当所述环境光线感应装置感应到环境光线亮度低于设定数值时,所述照明装置开始发光,直到当所述环境光线感应装置感应到环境光线亮度高于所述设定数值时,所述照明装置停止发光。
在一些实施例中,当所述环境光线感应装置感应到环境光线亮度低于设定数值时,所述照明装置开始发光,并在经过设定时长之后停止发光,且在停止发光的一定时长内所述环境光线感应装置可以不再感测环境光线亮度。
在一些实施例中,所述庭院灯还可以包括电源引线,所述庭院灯可以通过所述电源引线与外接电源电连接。
在一些实施例中,当所述摄像头组件拍摄到的影像资料中有物体运动时,可以将所拍摄的所述影像资料存储到所述存储器,当所述摄像头组件拍摄到的影像资料中没有物体运动时,则可以不将所拍摄的影像资料存储到所述存储器。
在一些实施例中,所述摄像头组件拍摄的影像资料可以通过所述无线通信装置传送到网络服务器,供使用者远程查看。
在一些实施例中,所述照明装置可以使用LED作为发光元件。
在一些实施例中,所述灯杆的下端可以具有用于埋置于泥土中的埋置部。
在一些实施例中,所述灯杆的所述埋置部可以为棱刺状的,在通过将所述埋置部埋置于泥土中而将所述庭院灯固定于地面之后,所述主壳体发光的最高点距地面的高度可以不超过1.10米,并且透过所述主壳体发射的光可以沿向下倾斜方向或水平方向照射而不沿向上倾斜方向照射。
在一些实施例中,所述灯杆的外部可以设置有用于在安装时下压或锤击的着力块。
在一些实施例中,安装摄像头组件的所述镜头的露出于所述孔部之外的部分的外周可以设置有透明材料制成的防尘外罩。
附图说明
图1是根据本公开的一个实施例的具有监控功能的庭院灯的外部结构示意图。
图2是根据本公开的另一实施例的具有监控功能的庭院灯的外部结构示意图。并且
图3是根据本公开的实施例的具有监控功能的庭院灯的各元件的示意性电路方框图。
图中各附图标记的含义分别是:
1.庭院灯,
2.灯外壳,
3.透光灯罩,
4.支架,
5.灯杆,
6.电源引线,
7.埋置部,
8.摄像头组件的镜头,
11.主控元件,
12.摄像头组件,
13.环境光线感应装置,
14.照明装置,
15.存储器,
16.无线通信装置,
17.着力块。
具体实施方式
下面结合附图,对本公开的各实施例作进一步详述。
本公开提供一种具有监控功能的庭院灯1,如附图1所示,该庭院灯1包括灯外壳2、透光灯罩3、支架4、灯杆5和电源引线6,灯外壳2和透光灯罩3组成防水的主壳体。主壳体内部设置有主控元件11、摄像头组件12、照明装置14、存储器15和无线通信装置 16(在图1中未示出,在图3中示意性地示出了它们的连接关系),在主壳体的顶端(灯外壳2的顶端)开设有与摄像头组件12的镜头8大小及形状相适配的用来安装摄像头组件12的镜头8的孔部,灯杆5通过支架4连接到主壳体。
具体地说,在本实施例中,主壳体由上部的灯外壳2和下部的透光灯罩3构成。更具体地说,灯外壳2形成为向下敞开的壳体,透光灯罩3形成为向上敞开的壳体,主壳体由灯外壳2和透光灯罩3彼此扣合形成。透光灯罩3由透光材料制成,以允许主壳体内的照明装置14发出的光透过。灯外壳2例如可以由不透光材料制成,以隐藏设置于主壳体内的诸如主控元件11、摄像头组件12、照明装置14、存储器15和无线通信装置16等元件的部分或全部,从而提高庭院灯1的美观度。灯外壳2和透光灯罩3可以通过螺纹连接、焊接连接、卡扣连接等任何已知的方式连接在一起。灯外壳2和透光灯罩3均为不透水的,并且灯外壳2和透光灯罩3之间的连接也形成为不透水的,从而形成防水的主壳体,因此能够防止设置于主壳体内的各装置和元件受潮。
设置于主壳体内的摄像头组件12布置为当摄像头组件12安装就位时,摄像头组件12的镜头8恰好穿过上述灯外壳2的顶端开设的孔部,从而使镜头8露出于主壳体,以便镜头8能够对周围环境进行监控。在其它实施例中,摄像头组件12的镜头8的露出于孔部之外的部分的外周可以设置有透明材料制成的防尘外罩(未示出),以保护镜头8。
灯杆5通过支架4连接到主壳体。在本实施例中,支架4包括三个间隔开的分支支架。如图1所示,每个分支支架在靠近灯杆5的一端汇聚以连接至灯杆5的上端,并且每个分支支架的另一端以发散的方式朝向主壳体延伸,并且,每个分支支架的另一端连接至主壳体的灯外壳2。这样,形成了如下构造:通过分支支架牢固地将较细的灯柱5和较粗的主壳体连接在一起;并且由于每个分支支架是间隔开的,从而确保了从主壳体的透光灯罩3发出的光不被遮挡;另外,分支支架与位于上部的灯外壳2连接,确保了连接的牢固性, 并且最大程度减小对透光灯罩3的遮挡。此外,这种构造还提高了庭院灯1美观度。
本领域技术人员应当理解的是,尽管本实施例示出了具有三个分支支架的支架4,然而,支架4的分支支架可以是多于一个的任何数量。在其它实施例中,还可以省去支架4,而使灯杆5直接与主壳体连接。
现有技术的庭院灯通常使用手工控制或定时器控制照明装置的开关,使用不方便。本公开的庭院灯还包括外部控制器(图中未示出),该外部控制器通过电线连接到庭院灯1的主壳体内的电路。本公开的庭院灯1的主壳体内部或外部控制器内部还设置有环境光线感应装置13。当环境光线感应装置13感应到环境光线亮度低于设定数值,需要开启照明时,照明装置14开始发光,直到当环境光线感应装置13感应到环境光线高于设定数值时,照明装置14停止发光;或者,当环境光线感应装置13感应到环境光线亮度低于设定数值,需要开启照明时,照明装置14开始发光,并在经过设定时长之后停止发光,且在停止发光后的一定时长内环境光线感应装置13不再感测环境光线亮度。也就是说,照明装置14在该一定时长内不再发光而不论环境光线是否低于设定数值。
为了供电的稳定性,在一些实施例中,本公开的庭院灯1的电源使用外接电源,庭院灯1通过电源引线6与外接电源电连接。在一些实施例中,电源引线6从主壳体引出,穿过灯杆5的中空部分,并从灯杆5的位于地面附近的位置引出,从而与外接电源电连接。然而,庭院灯1的电源不限于外接电源,也可是使用光伏电池板等其它电源。
本公开的庭院灯1有两种方式存储摄像头组件12所拍摄的影像资料。第一种存储方式是本地存储。具体而言,将摄像头组件12所拍摄的影像资料存入作为存储器15的存储卡,在需要查阅所存储的影像资料时,将存储卡取出,并使用读卡器读取即可。由于存储卡存储空间有限,为节省存储空间,当摄像头组件12所拍摄的影像资料中无物体运动时,不将该影像资料存入存储卡,仅当摄像头组件 12拍摄的影像资料中有物体运动时,才将所拍摄的影像资料存储到存储器15。
第二种存储方式是这样的:将摄像头组件12拍摄的影像资料通过无线通信装置16传送到网络服务器存储,供使用者远程查看。在一些实施例中,无线通信装置16例如使用WIFI装置。
在一些实施例中,摄像头组件12的镜头8例如可以使用拍摄角度等于或大于180度的鱼眼镜头,镜头8朝向天空方向。当摄像头组件12工作时,即可实现对庭院灯1周围环境360度无死角监控。当然,鱼眼镜头所拍摄的原始画面会产生畸变,但这种畸变可以通过硬件或软件算法进行校正,这是已有技术,在此不再赘述。
灯杆5的下端具有埋置部7。施工人员通过将埋置部7埋置或穿刺入泥土中而将庭院灯1固定于地面。在一些实施例中,埋置部7具有棱刺状的形状。具体地说,如图1或图2所示,埋置部7为四棱刺状形状。埋置部7可以与灯杆5一体成型,或者可以与灯杆5是分开的部件。应理解的是,埋置部7可以形成为其它形状,只要形成有利于将庭院灯1固定于地面的形状即可。
在其它实施例中,当灯杆5的埋置部埋置于泥土中而将本公开的庭院灯1固定于地面之后,主壳体(透光灯罩3)发光的最高点距地面的高度不超过1.10米,并且透过主壳体(透光灯罩3)的发光照射方向包括水平方向和下俯方向,不包括上仰方向。换言之,透过主壳体发射的光沿向下倾斜方向或水平方向照射而不沿向上倾斜方向照射,并且该水平照射的高度不超过1.10米。
在其它实施例中,如图2所示,在灯杆的外部设置有用于在安装时承受下压或锤击的着力块17,通过着力块17,可以用下压(如脚踏)或捶打的方式,把埋置部7埋置或穿刺入泥土中。在一些实施例中,着力块17设置于埋置部7的上端,当埋置部7被埋置于泥土中时,着力块17基本与地面齐平,从而提高庭院灯1的美观度。
图3描述了庭院灯1的主控元件11、摄像头组件12、环境光线感应装置13、照明装置14、存储器15和无线通信装置16的示意性电路图。摄像头组件12、环境光线感应装置13、照明装置14、存储 器15和无线通信装置16均电连接至主控元件11。
主控元件11可以是微处理器、微控制器等常规控制元件。摄像头组件12可以是任何市售的适当型号的监控摄像头组件。环境光线感应装置13可以包括光敏传感器等光学元件。照明装置14可以使用已知的任何发光元件。为节省电能,照明装置14例如可以使用LED(发光二极管)作为发光元件。存储器15可以是非易失性存储器,诸如只读存储器(ROM)、闪速存储器或其它存储器等。无线通信装置16可以通过任何已知的无线通信方式实现无线通信,并且如上文所述,无线通信装置16可以为WIFI装置。
在庭院灯1运行期间,主控元件11判断摄像头组件12所拍摄的影像资料中是否有物体运动而选择将影像资料存储或不存储在存储器15中,或者选择是否经由无线通信装置16将影像资料传送到网络服务器。
主控元件11可以设定照明装置14的启动条件。例如,当主控元件11接收到环境光线感应装置13发送的用于表示环境光线低于设定数值的信号时,主控元件11向照明装置14发送信号,以启动照明装置14;当主控元件11接收到环境光线感应装置13发送的用于表示环境光线高于设定数值的信号时,主控元件11向照明装置14发送信号,以关闭照明装置14。或者,主控元件11还可以包括计时器,在照明装置14启动时开始计时,在经历预定时长后,关闭照明装置14。
以上结合实施例描述了本公开的主要特征,技术原理及优点,上述实施例并不用于限制本公开,凡在不脱离本公开精神和原则的前提下,对本公开作出的任何修改,等同替换及改进,均应落入本公开保护的范围之内。

Claims (14)

  1. 一种具有监控功能的庭院灯,所述庭院灯至少包括防水的主壳体和灯杆,其中:所述主壳体由上部的灯外壳和下部的透光灯罩构成,所述主壳体内部设置有主控元件、摄像头组件、照明装置、存储器和无线通信装置,所述主壳体的顶端开设有孔部,所述孔部与所述摄像头组件的镜头大小及形状相适配以用于安装所述摄像头组件的所述镜头,所述灯杆连接到所述主壳体。
  2. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述庭院灯还包括:支架,所述灯杆通过所述支架连接到所述主壳体。
  3. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述主壳体内部还设置有环境光线感应装置。
  4. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述庭院灯通过电线连接到外部控制器,所述外部控制器内设置有环境光线感应装置。
  5. 根据权利要求3或4所述的具有监控功能的庭院灯,其中:当所述环境光线感应装置感应到环境光线亮度低于设定数值时,所述照明装置开始发光,直到当所述环境光线感应装置感应到环境光线亮度高于所述设定数值时,所述照明装置停止发光。
  6. 根据权利要求3或4所述的具有监控功能的庭院灯,其中:当所述环境光线感应装置感应到环境光线亮度低于设定数值时,所述照明装置开始发光,并在经过设定时长之后停止发光,且在停止发光后的一定时长内所述环境光线感应装置不再感测环境光线亮度。
  7. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述庭院灯还包括电源引线,所述庭院灯通过所述电源引线与外接电源电连接。
  8. 根据权利要求1所述的具有监控功能的庭院灯,其中:当所述摄像头组件拍摄到的影像资料中有物体运动时,将所拍摄的所述影像资料存储到所述存储器,当所述摄像头组件拍摄到的影像资料中没有物体运动时,则不将所拍摄的影像资料存储到所述存储器。
  9. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述摄像头组件拍摄的影像资料通过所述无线通信装置传送到网络服务器,供使用者远程查看。
  10. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述照明装置使用LED作为发光元件。
  11. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述灯杆的下端具有用于埋置于泥土中的埋置部。
  12. 根据权利要求11所述的具有监控功能的庭院灯,其中:所述灯杆的所述埋置部为棱刺状的,在通过将所述埋置部埋置于泥土中而将所述庭院灯固定于地面之后,所述主壳体发光的最高点距地面的高度不超过1.10米,并且透过所述主壳体发射的光沿向下倾斜方向或水平方向照射而不沿向上倾斜方向照射。
  13. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述灯杆的外部设置有用于在安装时下压或锤击的着力块。
  14. 根据权利要求1所述的具有监控功能的庭院灯,其中:所述摄像头组件的所述镜头的露出于所述孔部之外的部分的外周设置 有透明材料制成的防尘外罩。
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