Light control device for intelligent control system
By connecting the lighting monitoring and control device and the lamp monitoring device via WIFI signal, and combining them with a photometric sensor and a camera, the problem of traditional lighting control equipment being unable to be remotely operated is solved, realizing the convenience of remote lighting control and real-time illumination observation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional lighting control equipment cannot remotely monitor and control lights, and operators cannot know the indoor light level and lighting conditions when they are away from the light-illuminating area.
It employs a lighting monitoring and control device and a lamp monitoring device, which are wirelessly connected via WIFI signal. Combined with a photometric sensor and a miniature wide-angle camera, it detects and captures indoor lighting conditions in real time, and displays the results on a screen, enabling remote control and real-time observation.
The range of lighting control has been expanded, enabling operators to intuitively observe the indoor lighting environment in real time in non-lit areas, thus achieving the convenience and real-time nature of remote lighting control.
Smart Images

Figure CN224068842U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of light control technology, more specifically, it relates to a light control device for intelligent control system. BACKGROUND
[0002] The intelligent control system is an intelligent management system based on the Internet of Things technology, which can control and manage various devices through sensors, actuators and controllers, so as to realize the intelligent and automatic operation of the devices. At present, in the traditional home light equipment control, it is usually necessary to use an infrared remote controller or a wall switch to control the brightness and on-off of the electric lamp. In order to ensure that the electric lamp can stably receive the infrared remote control signal and allow the operator to observe the indoor brightness of the lighting area in real time, the operator needs to hold the remote controller and align the remote control near the lamp, so it can be seen that the traditional light control equipment cannot perform remote monitoring and control of the electric lamp, and the lamp itself does not have real-time feedback of the illumination level, which causes the operator to be unable to know the indoor illumination level and lighting condition without leaving the light irradiation area. SUMMARY
[0003] In order to solve the above technical problems, the utility model provides a light control device for intelligent control system to solve the problem that the traditional light control equipment cannot perform remote monitoring and control of the electric lamp, which causes the operator to be unable to know the indoor illumination level and lighting condition without leaving the light irradiation area.
[0004] The utility model provides a light control device for intelligent control system, including light monitoring control device and lamp monitoring device, the light monitoring control device includes baffle, casing, first WIFI signal transceiver, handle, sheath, display screen, frame, knob, seat board, branch, screw rod, sliding plate, backboard, battery box, monitoring controller, vertical rod, iron sheet, LED pilot lamp, magnetic sheet, vertical board, light button and light adjustment knob, the front side of casing is equipped with through groove, and the through groove in casing is installed with display screen, and the back side of casing is connected with backboard through bolt, and the inner side of casing is welded with vertical board, and the back side of vertical board is installed with battery box and monitoring controller, and the inside of casing is installed with first WIFI signal transceiver, and the left side and right side of casing are welded with handle, and the outer side of handle is bonded with sheath, and the front side of casing is installed with LED pilot lamp, light button and light adjustment knob, and the left side and right side of casing are equipped with recess, and the top and bottom of recess of casing are bonded with iron sheet, and the inside of recess of casing is welded with vertical rod, and the outer side of vertical rod is connected with baffle slidingly, and baffle is bonded with magnetic sheet, the back side of backboard is welded with frame, and the back side of frame is hinged with seat board, and the upper side of seat board is hinged with branch, and the other end of branch is hinged with sliding plate, the top of screw rod is welded with knob.
[0005] In at least some embodiments, the lamp monitoring device comprises a lamp holder, a lampshade, a second WIFI signal transceiver, a ring-shaped LED light plate, a light sensor, a support disc, a light controller, a miniature wide-angle camera and a support; the lower side of the lamp holder is connected with the lampshade through bolts, the bottom end of the lampshade is provided with a through hole, the miniature wide-angle camera is installed in the through hole of the lampshade, the upper side of the miniature wide-angle camera is installed with the support, the upper side of the support is installed with the light sensor, the light sensor is distributed on the bottom side of the ring-shaped LED light plate, and the lower side of the lamp holder is welded with the support disc.
[0006] In at least some embodiments, the baffle is made of transparent acrylic plastic material, and the baffle is a concave structure, two groups of cuboid protrusions are arranged on the inner side of the concave structure of the baffle close to the rear end, magnetic sheets are attached to the top end and the bottom end of the baffle protrusions, a through hole structure penetrating from top to bottom is arranged at the center of each group of protrusions, and two groups of vertical rods are respectively inserted into the through holes of the rectangular protrusions of the baffle, and the vertical rods support the baffle to slide on the front side of the shell.
[0007] In at least some embodiments, the frame is a front-to-back penetrating rectangular frame structure, the upper side and the lower side of the frame are provided with through holes, the outer side of the threaded rod close to the top end and the bottom end is respectively rotationally connected in the through holes of the frame, the left side and the right side of the frame are provided with left-to-right penetrating long slot, the sliding plate is inserted into the long slot of the frame, and the front side and the rear side of the sliding plate are respectively attached to the front side wall and the rear side wall of the long slot of the frame.
[0008] In at least some embodiments, the center of the sliding plate is provided with a through hole penetrating from top to bottom, and the threaded rod is engagedly connected in the through hole of the sliding plate.
[0009] In at least some embodiments, the rear side of the back plate is provided with six groups of front-to-back penetrating air permeable slots, and the front end of the air permeable slot of the back plate is covered and bonded with a polyurethane reticulated sponge gasket.
[0010] Compared with the prior art, the utility model has the following beneficial effects:
[0011] 1. In the utility model, on the one hand, the first WIFI signal transceiver is controlled by the monitoring controller to send and receive control signals, and the second WIFI signal transceiver is controlled by the light controller to send and receive control signals, so that the light monitoring control device and the lamp monitoring device are wirelessly connected through the remote WIFI signal mode, replacing the traditional infrared alignment remote control wireless signal transmission mode, and the control range distance of the light monitoring control device to the lamp monitoring device is expanded; on the other hand, the luminosity sensor in the lamp monitoring device detects the light brightness of the annular LED lamp panel in real time, the miniature wide-angle camera shoots the light condition of the indoor space outside the lampshade in real time, and the picture is transmitted to the display screen of the light monitoring control device through the wireless WIFI signal to be displayed, so that the operating personnel can more intuitively observe the indoor light environment in real time in the non-illumination area. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is the structural schematic diagram of the utility model.
[0013] Figure 2 It is the structural schematic diagram of the light monitoring control device of the utility model.
[0014] Figure 3 It is the left side view structural schematic diagram of the light monitoring control device of the utility model.
[0015] Figure 4 It is the right side view cut structure schematic diagram of the light monitoring control device of the utility model.
[0016] Figure 5 It is the rear side view cut structure schematic diagram of the light monitoring control device of the utility model.
[0017] Figure 6 It is the structural schematic diagram of the A part of the utility model. Figure 5
[0018] Figure 7 It is the structural schematic diagram of the B part of the utility model. Figure 5
[0019] Figure 8 It is the structural schematic diagram of the lamp monitoring device of the utility model.
[0020] Figure 9 It is the cut structure schematic diagram of the lamp monitoring device of the utility model.
[0021] Figure 10 It is the cut structure schematic diagram of the lamp monitoring device of the utility model.
[0022] Figure 11 It is the structural schematic diagram of the light monitoring control device of the utility model in the inclined state.
[0023] Figure 12 is the rear side view structural schematic diagram of the light monitoring control device in the inclined placement state.
[0024] Figure 13 is the electrical principle block diagram of the utility model.
[0025] Reference signs:
[0026] 1, light monitoring control device;101, baffle;102, casing;103, first WIFI signal transceiver;104, handle;105, sheath;106, display screen;107, frame;108, knob;109, seat plate;110, support plate;111, threaded rod;112, sliding plate;113, back plate;114, battery box;115, monitoring controller;116, vertical rod;117, iron sheet;118, LED indicator light;119, magnetic sheet;120, vertical plate;121, light button;122, light adjustment knob;
[0027] 2, lamp monitoring device;201, lamp stand;202, lampshade;203, second WIFI signal transceiver;204, annular LED lamp plate;205, luminosity sensor;206, support disc;207, light controller;208, miniature wide-angle video camera;209, support. DETAILED DESCRIPTION
[0028] The embodiments of the utility model will be further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0029] As Figures 1-13As shown, the utility model provides a light control device for wisdom control system, including light monitoring control device 1 and lamps and lanterns monitoring device 2, light monitoring control device 1 includes baffle 101, casing 102, first WIFI signal transceiver 103, handle 104, sheath 105, display screen 106, frame 107, knob 108, seat plate 109, branch plate 110, threaded rod 111, sliding plate 112, backboard 113, battery box 114, monitoring controller 115, vertical rod 116, iron sheet 117, LED pilot lamp 118, magnetic sheet 119, vertical plate 120, light button 121 and light adjustment knob 122, the front side of casing 102 is equipped with through groove, and the through groove of casing 102 is installed with display screen 106, and the back side of casing 102 is connected with backboard 113 by bolt, and the inner side of casing 102 is welded with vertical plate 120, and the back side of vertical plate 120 is installed with battery box 114 and monitoring controller 115, and the inside of casing 102 is installed with first WIFI signal transceiver 103, and the left side and the right side of casing 102 are welded with handle 104, and the outer side of handle 104 is bonded with sheath 105, and the front side of casing 102 is installed with LED pilot lamp 118, light button 121 and light adjustment knob 122, and the left side and the right side of casing 102 are equipped with recess, and the top and bottom of the recess of casing 102 are bonded with iron sheet 117, and the recess of casing 102 is welded with vertical rod 116, and the outer side of vertical rod 116 is slidably connected with baffle 101, and baffle 101 is bonded with magnetic sheet 119, and the back side of backboard 113 is welded with frame 107, and the back side of frame 107 is hinged with seat plate 109, and the upper side of seat plate 109 is hinged with branch plate 110, and the other end of branch plate 110 is hinged with sliding plate 112, and the top of threaded rod 111 is welded with knob 108.
[0030] In the embodiment, the lamps and lanterns monitoring device 2 includes a lamp holder 201, a lampshade 202, a second WIFI signal transceiver 203, an annular LED lamp plate 204, a light sensor 205, a light controller 207, a miniature wide-angle camera 208, and a support 209. The lower side of the lamp holder 201 is connected with the lampshade 202 by bolts. The bottom end of the lampshade 202 is provided with a through hole. The miniature wide-angle camera 208 is installed in the through hole of the lampshade 202. The miniature wide-angle camera 208 can observe the lighting condition of the room outside the lampshade 202 in real time through the through hole of the lampshade 202. The upper side of the miniature wide-angle camera 208 is installed with the support 209. The upper side of the support 209 is installed with the light sensor 205. The light sensor 205 is distributed on the bottom side of the annular LED lamp plate 204. The light sensor 205 can detect the light brightness of the annular LED lamp plate 204 in real time. The lower side of the lamp holder 201 is welded with the support disc 206. The inner side of the support disc 206 is installed with the light controller 207 and the second WIFI signal transceiver 203. The lower side of the support disc 206 is installed with the annular LED lamp plate 204.
[0031] In the embodiment, the baffle 101 is made of transparent acrylic plastic material, the baffle 101 is a concave structure, two groups of rectangular convex strips are arranged on the inner side of the concave structure of the baffle 101 close to the rear end, the top end and the bottom end of the convex strip of the baffle 101 are bonded with magnetic sheets 119, and a through hole structure penetrating from top to bottom is arranged at the center of each group of convex strips of the baffle 101. Two groups of vertical rods 116 are respectively inserted into the through holes of the rectangular convex strips of the baffle 101, the vertical rods 116 support the baffle 101 to slide up and down on the front side of the shell 102, when the baffle 101 slides upward to the top end of the groove of the shell 102, the top end of the convex strip of the baffle 101 is attracted to the iron sheet 117 at the top end of the groove of the shell 102 by the magnetic sheet 119 bonded thereto, so that the baffle 101 does not slide downward due to gravity during the pressing of the light button 121 and the light adjusting knob 122 by the operator, when the baffle 101 slides downward to the bottom end of the groove of the shell 102, the bottom end of the convex strip of the baffle 101 is attracted to the iron sheet 117 at the bottom end of the groove of the shell 102 by the magnetic sheet 119 bonded thereto, and the baffle 101 shields the light button 121 and the light adjusting knob 122, so that external objects cannot press and touch the light button 121 and the light adjusting knob 122 by mistake.
[0032] In the embodiment, the frame 107 is a rectangular frame structure penetrating from front to back, the upper side and the lower side of the frame 107 are provided with through holes, the outer side of the threaded rod 111 close to the top end and the bottom end is respectively rotationally connected in the through holes of the frame 107, the left side and the right side of the frame 107 are provided with long slot grooves penetrating from left to right, the sliding plate 112 is inserted into the long slot groove of the frame 107, and the front side and the rear side of the sliding plate 112 are respectively attached to the front side wall and the rear side wall of the long slot groove of the frame 107, so that the threaded rod 111 cannot drive the sliding plate 112 to flip left and right, and the directional movement of the supporting sliding plate 112 up and down along the long slot groove of the frame 107 is ensured.
[0033] In the embodiment, the center of the sliding plate 112 is provided with a through hole penetrating from top to bottom, the threaded rod 111 is connected in the threaded hole of the sliding plate 112, during the rotation of the knob 108 to drive the threaded rod 111, the threaded rod 111 drives the sliding plate 112 to move directionally along the long slot groove of the frame 107, the supporting plate 110 on the rear side of the sliding plate 112 is flipped, the supporting plate 110 drives the hinge seat plate 109 to flip synchronously, and the adjustment of the inclination angle of the light monitoring control device 1 is completed.
[0034] In this embodiment, the back side of the back plate 113 is provided with six groups of front and rear through air through grooves, the front end of the air through grooves of the back plate 113 is covered and bonded with a polyurethane reticulated sponge gasket, through the high air permeability of the polyurethane reticulated sponge gasket and the reticular structure of the sponge, in the case of ensuring that the heat generated by the operation of the first WIFI signal transceiver 103, the battery box 114 and the monitoring controller 115 inside the casing 102 is normally dissipated through the air through grooves of the back plate 113, the outside dust is prevented from entering the inside of the casing 102.
[0035] The specific use mode and effect of this embodiment are as follows:
[0036] The utility model discloses a long -range light monitoring operation control work is carried out in non -lighting area, first push baffle 101 is moved upwards along vertical pole 116, until the magnetic sheet 119 of the top of baffle 101 cuboid convex stripe is attracted at the iron sheet 117 of the top of the recess of shell 102, then manually press the light button 121 of corresponding lamp monitoring device 2 of shell 102 front side, and light button 121 starts through the wire control monitoring controller 115, and monitoring controller 115 is lit through the wire control LED pilot lamp 118, and the light button 121 of LED pilot lamp 118 is lit and shows that corresponding lamp monitoring device 2 is in control state, then manually rotate light adjustment knob 122, and light adjustment knob 122 will adjust signal transmission to monitoring controller 115 through wire, and monitoring controller 115 sends control instruction to first WIFI signal transceiver 103 through wire, and first WIFI signal transceiver 103 will control instruction transmission to second WIFI signal transceiver 203 with wireless WIFI signal mode, and second WIFI signal transceiver 203 will control signal transmission to illumination controller 207 through wire, and illumination controller 207 controls annular LED lamp plate 204, luminosity sensor 205 and micro wide-angle video camera 208 synchronous start through wire, and annular LED lamp plate 204 emits corresponding brightness, and luminosity sensor 205 detects the illumination degree of annular LED lamp plate 204, and micro wide-angle video camera 208 shoots the illumination environment of indoor outside lamp shade 202, and micro wide-angle video camera 208 will shoot image transmission to illumination controller 207 through wire, and luminosity sensor 205 will illumination intensity data transmission to illumination controller 207 through wire, and illumination controller 207 will shoot image signal and illumination intensity data signal transmission to second WIFI signal transceiver 203, and second WIFI signal transceiver 203 will shoot image signal and illumination intensity data signal transmission to first WIFI signal transceiver 103 with wireless WIFI signal mode, and first WIFI signal transceiver 103 will shoot image signal and illumination intensity data signal transmission to monitoring controller 115 through wire, and monitoring controller 115 will shoot image signal and illumination intensity data signal transmission to display screen 106 and carry out real -time display, and let the operator observe the display image of display screen 106 and carry out long -range light control in non -lighting area.
[0037] The mounting mode, connection mode or setting mode of all the components above are common mechanical modes, such as welding, threaded connection, screw connection and the like, and the specific structure, model and coefficient index of all the components are self-owned technology, as long as the beneficial effects can be achieved, implementation can be carried out. The first WIFI signal transceiver 103, the display screen 106, the battery box 114, the monitoring controller 115, the light button 121, the light adjusting knob 122, the LED indicator lamp 118, the second WIFI signal transceiver 203, the annular LED lamp plate 204, the light sensor 205, the light controller 207, the miniature wide-angle camera 208 are all common devices on the market, when purchased and used, only need to be connected according to the use instruction book purchased together, and then used, therefore, will not be described here.
[0038] The technical scheme of the utility model is not limited to the scope of the utility model embodiments, and the technical content not described in the utility model is all known technology.
Claims
1. A light control device for a smart control system, characterized in that: The utility model provides a light monitoring control device (1) and lamp monitoring device (2) are included, the light monitoring control device (1) includes baffle (101), casing (102), first WIFI signal transceiver (103), handle (104), sheath (105), display screen (106), frame (107), knob (108), seat plate (109), support plate (110), threaded rod (111), sliding plate (112), backboard (113), battery box (114), monitoring controller (115), stand (116), iron sheet (117), LED pilot lamp (118), magnetic sheet (119), vertical board (120), light button (121) and light adjustment knob (122), the front side of casing (102) is equipped with through groove, and the through groove of casing (102) is installed with display screen (106), and the back side of casing (102) is connected with backboard (113) through bolt, and the inner side of casing (102) is welded with vertical board (120), and the back side of vertical board (120) is installed with battery box (114) and monitoring controller (115), and casing (102) is installed with first WIFI signal transceiver (103) inside, and the left side and right side of casing (102) are welded with handle (104), and the outside of handle (104) is bonded with sheath (105), and the front side of casing (102) is installed with LED pilot lamp (118), light button (121) and light adjustment knob (122), and the left side and right side of casing (102) are equipped with recess, and the top and bottom of recess of casing (102) are bonded with iron sheet (117), and the recess of casing (102) is welded with stand (116) inside, and the outside of stand (116) is connected with baffle (101) slidingly, and baffle (101) is bonded with magnetic sheet (119);The back side of backboard (113) is welded with frame (107), and the back side of frame (107) is hinged with seat plate (109), and the upper side of seat plate (109) is hinged with support plate (110), and the other end of support plate (110) is hinged with sliding plate (112);The top of threaded rod (111) is welded with knob (108).
2. The light control device for a smart control system of claim 1, wherein: The lamp monitoring device (2) comprises a lamp holder (201), a lampshade (202), a second WIFI signal transceiver (203), an annular LED lamp plate (204), a light sensor (205), a support disc (206), a light controller (207), a miniature wide-angle camera (208) and a support (209); the lower side of the lamp holder (201) is connected with the lampshade (202) through bolts, the bottom end of the lampshade (202) is provided with a through hole, the miniature wide-angle camera (208) is installed in the through hole of the lampshade (202), the upper side of the miniature wide-angle camera (208) is installed with the support (209), the upper side of the support (209) is installed with the light sensor (205), the light sensor (205) is distributed on the bottom side of the annular LED lamp plate (204), and the lower side of the lamp holder (201) is welded with the support disc (206); the inner side of the support disc (206) is installed with the light controller (207) and the second WIFI signal transceiver (203), and the lower side of the support disc (206) is installed with the annular LED lamp plate (204).
3. The light control device for a smart control system of claim 1, wherein: The baffle (101) is made of transparent acrylic plastic material, the baffle (101) is a concave structure, two groups of rectangular convex strips are arranged on the inner side of the concave structure of the baffle (101) close to the rear end, magnetic sheets (119) are attached to the top end and the bottom end of the convex strips of the baffle (101), and through hole structures penetrating from top to bottom are arranged at the center positions of each group of convex strips of the baffle (101). Two groups of vertical rods (116) are respectively inserted into the through holes of the rectangular convex strips of the baffle (101), and the vertical rods (116) support the baffle (101) to slide on the front side of the shell (102).
4. The light control device for a smart control system of claim 1, wherein: The frame (107) is a front-to-back penetrating rectangular frame structure, the upper side and the lower side of the frame (107) are provided with through holes, the outer side of the threaded rod (111) close to the top end and the bottom end is respectively rotationally connected in the through holes of the frame (107), the left side and the right side of the frame (107) are provided with left-to-right penetrating long slot, the sliding plate (112) is inserted into the long slot of the frame (107), and the front side and the rear side of the sliding plate (112) are respectively attached to the front side wall and the rear side wall of the long slot of the frame (107).
5. The light control device for a smart control system of claim 1, wherein: The center position of the sliding plate (112) is provided with a through hole penetrating from top to bottom, and the threaded rod (111) is engagedly connected in the threaded hole of the sliding plate (112).
6. The light control device for a smart control system of claim 1, wherein: The rear side of the back plate (113) is provided with six groups of front-to-back penetrating air ventilation slots, and the front end of the air ventilation slot of the back plate (113) is covered and attached with a polyurethane reticulated sponge gasket.