Energy-saving lighting system capable of automatically adjusting lighting intensity

By combining infrared sensors and luminous flux sensors, intelligent adjustment of the street lighting system is realized, solving the energy waste and safety problems caused by unreasonable lighting in the existing system, and improving the system's response speed and adjustment accuracy.

CN223744954UActive Publication Date: 2025-12-30SHENZHEN YINGDONG SMART ENERGY CO LTD
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Patent Information

Application Number
CN202422739700.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-12-30
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

Existing street lighting systems cannot automatically adjust lighting intensity according to actual lighting conditions and pedestrian traffic, resulting in unnecessary energy consumption and untimely lighting.

Method used

An infrared sensor is used to detect the passing of objects and is electrically connected to the control box. Combined with a luminous flux sensor to detect the ambient brightness in real time, the lighting intensity of the lamps is automatically adjusted to achieve intelligent control.

Benefits of technology

It improves the rationality of lighting use, reduces unnecessary power consumption, and enhances energy efficiency and safety for walking or driving at night.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an energy-saving lighting system capable of automatically adjusting lighting intensity. The control box is fixedly connected to the lamp pole, and the control box is provided with two supports; the infrared sensor is fixedly connected to the lamp pole and electrically connected with the control box; the luminous flux sensor is fixedly connected to the control box, and the luminous flux sensor is also electrically connected with the control box; the two lamps are fixedly connected to the two supports respectively and are electrically connected with the control box through the two supports; wherein the lighting system detects whether an object passes through or not through the infrared sensor, and the lighting system obtains the surrounding brightness through the luminous flux sensor so as to automatically adjust the lighting intensity of the lamp. The infrared sensor is used for detecting whether an object passes or not, and the infrared sensor is electrically connected with the control box, so that the lighting system can improve the reasonability of using lamplight. And the luminous flux sensor is adopted to obtain the surrounding brightness, and the illumination intensity of the lamp is automatically adjusted, so that the energy consumption of the illumination system during use is effectively reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of wisdom illumination, especially an energy -conserving lighting system of automatic regulation illumination intensity. BACKGROUND

[0002] With the rapid development of the internet of things technology and the increasing demand of city on energy saving and emission reduction, the wisdom street lamp system gradually occupies the dominant position in the city lighting market. The wisdom street lamp system can provide more efficient city lighting management through centralized control and data analysis, reduces the artificial control cost, and the wisdom street lamp system can also reduce the energy consumption of city through intelligent dimming.

[0003] At present, the street lamp lighting system being used in most cities controls the opening and closing of light through time, and this control mode has many defects. For example, when affected by the summer solstice or winter solstice and some weather, the day is darker or brighter than usual time period, at this time, still through time end control light opening and closing can cause the light illumination not timely or unnecessary light illumination. Secondly, in some places such as parks and squares, the interior used lighting system is usually opened or closed according to time period, because the human flow of these places is less in the early morning, obviously it is unnecessary to let the lighting system continue to use.

[0004] Therefore, it is necessary to provide an energy -conserving lighting system of automatic regulation illumination intensity, which can improve the rationality of using light and effectively reduce the energy consumption of lighting system in use. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims at providing an energy -conserving lighting system of automatic regulation illumination intensity, which can improve the rationality of using light and effectively reduce the energy consumption of lighting system in use.

[0006] According to an aspect of the present application, an energy -conserving lighting system of automatic regulation illumination intensity is provided, which comprises:

[0007] A lamp pole;

[0008] A control box is fixedly connected to the lamp pole, and the control box is provided with two supports;

[0009] An infrared sensor is fixedly connected to the lamp pole and electrically connected to the control box;

[0010] A luminous flux sensor is fixedly connected to the control box and located at one end of the control box away from the lamp pole, and the luminous flux sensor is also electrically connected to the control box;

[0011] Lamps, two lamps are fixedly connected to two supports respectively, and are electrically connected with the control box through the two supports;

[0012] The lighting system detects whether an object passes through through the infrared sensor, and obtains ambient brightness through the luminous flux sensor to automatically adjust the lighting intensity of the lamps.

[0013] More preferably, the lamp rod comprises:

[0014] A base is fixedly connected to the lamp rod and located on the side of the lamp rod away from the control box, and the base forms a first surface.

[0015] More preferably, the lamp rod further comprises:

[0016] A first fixing part is integrally formed on the lamp rod and located between the lamp rod and the control box.

[0017] The control box is fixed to the lamp rod through the first fixing part.

[0018] More preferably, the lamp rod further comprises:

[0019] A limiting ring is fixedly connected to the lamp rod and located between the first fixing part and the base.

[0020] More preferably, the infrared sensor comprises:

[0021] An ear is fixedly connected to the infrared sensor, and the ear is fixed around the lamp rod and located between the limiting ring and the base.

[0022] The infrared sensor moves on the lamp rod through the ear.

[0023] More preferably, the lamp comprises:

[0024] A shell;

[0025] A lens is fixedly connected to the shell.

[0026] The shell is integrally formed with a threaded hole and located on the side of the shell away from the lens.

[0027] More preferably, the lamp further comprises:

[0028] A lamp holder is integrally formed on the support and located on the side of the support away from the control box, and the lamp holder is provided with a fixing hole.

[0029] More preferably, the shell is fixedly connected to the lamp holder through the fixing hole and the threaded hole aligned and screwed into a bolt.

[0030] More preferably, the lamp pole further comprises:

[0031] A second fixing part integrally formed in the lamp pole and located between the lamp pole and the base;

[0032] Wherein, the lamp pole is fixedly connected to the base by the second fixing part and the base being bolted together in a direction perpendicular to the first surface.

[0033] More preferably, the lamp pole is perpendicular to the base in a direction parallel to the first surface.

[0034] The utility model has the following beneficial effects:

[0035] The infrared sensor detects whether there is an object passing by, and the infrared sensor is electrically connected with the control box, so that the lighting system can improve the rationality of using light. BRIEF DESCRIPTION OF DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0037] Figure 1 The utility model discloses a three-dimensional structure schematic diagram of the lighting system of one embodiment of the utility model;

[0038] Figure 2 The utility model discloses a three-dimensional structure schematic diagram of the lighting system of one embodiment of the utility model;

[0039] Figure 3 The utility model discloses a three-dimensional structure schematic diagram of the lighting system of one embodiment of the utility model;

[0040] Figure 4 The utility model discloses a three-dimensional structure schematic diagram of the lighting system of one embodiment of the utility model;

[0041] Figure 5 The utility model discloses a three-dimensional structure schematic diagram of the lighting system of one embodiment of the utility model;

[0042] Figure 6The three-dimensional exploded structure schematic view of the lamp in the lighting system according to an embodiment of the utility model;

[0043] Figure 7 The three-dimensional structure schematic view of the lamp holder in the lighting system according to an embodiment of the utility model;

[0044] The drawing number explanation: 100, lighting system;10, lamp pole;11, support;12, base;13, first fixed part;14, limit ring;15, second fixed part;20, control box;30, infrared sensor;31, support lug;40, luminous flux sensor;50, lamp;51, shell;51A, threaded hole;52, lens;53, lamp holder;53A, fixed hole;S1, first surface. DETAILED DESCRIPTION

[0045] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the accompanying drawings. The preferred embodiments of the present application are shown in the drawings. However, the present application can be embodied in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that the disclosure of the present application can be more thoroughly and completely understood.

[0046] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. The terms "vertical", "horizontal", "left", "right", and similar expressions used herein are for illustrative purposes only.

[0047] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0048] Please refer to Figure 1 - Figure 7 The embodiment of the utility model provides a kind of energy-saving lighting system 100 of automatic regulation illumination intensity, the lighting system 100 includes: lamp pole 10, control box 20, infrared sensor 30, luminous flux sensor 40 and lamp 50.

[0049] The control box 20 is fixedly connected to the lamp pole 10, and the control box 20 is provided with two supports 11. The infrared sensor 30 is fixedly connected to the lamp pole 10 and electrically connected to the control box 20. The light flux sensor 40 is fixedly connected to the control box 20 and located at one end of the control box 20 away from the lamp pole 10, and the light flux sensor 40 is also electrically connected to the control box 20. Two lamp fixtures 50 are fixedly connected to two supports 11 respectively and electrically connected to the control box 20 through two supports 11. The lighting system 100 detects whether there is an object passing through through the infrared sensor 30, and obtains the surrounding brightness through the light flux sensor 40 to automatically adjust the lighting intensity of the lamp fixture 50.

[0050] The infrared sensor 30 detects whether there is an object passing through, which can automatically increase the lighting brightness when a person or object approaches, and reduce the brightness or turn off the light when there is no object passing through. This intelligent control method can reduce unnecessary power consumption and greatly improve energy utilization efficiency. When the infrared sensor 30 detects that there is an object passing through, the lighting system 100 will turn on the light to provide better lighting conditions for pedestrians and improve the safety of walking or driving at night. The light flux sensor 40 is used to detect the brightness change of the surrounding environment in real time, and can adjust the lighting intensity of the lamp fixture 50 according to the actual lighting conditions. For example, although the time period is at night, the light is good, the system turns on the light, and the time period is in the daytime but the light is insufficient, the system turns off the light. This adaptive function not only can avoid unnecessary power consumption, but also can improve the safety of pedestrians and drivers. The system centralizes the control of the infrared sensor 30, the light flux sensor 40 and the lamp fixture 50 in the control box 20, and directly connects the lamp fixture 50 to the control box 20 through the support 11. This integrated design simplifies the installation process of the equipment, reduces the maintenance workload, and makes the system more efficient and easy to manage. By fixing the light flux sensor 40 at one end of the control box 20 away from the lamp pole 10, the shadow or interference of the lamp pole 10 can be avoided, and the light flux sensor 40 can accurately perceive the change of the surrounding light. This design helps to improve the response speed and adjustment accuracy of the entire lighting system 100.

[0051] More preferably, the lamp pole 10 comprises a base 12. The base 12 is fixedly connected to the lamp pole 10 and located at one side of the lamp pole 10 away from the control box 20, and the surface formed by the base 12 is a first surface S1.

[0052] The base 12 is fixedly connected to the lamp pole 10, providing a solid support for the lamp pole 10. The base 12 is located on the side of the lamp pole 10 away from the control box 20, ensuring the overall stability of the lamp pole 10 after installation, effectively preventing the lamp pole 10 from tilting or collapsing in strong winds, vibrations, and other situations. The base 12 can balance the weight distribution of the lamp pole 10, avoiding the displacement of the center of gravity of the lamp pole 10 due to the weight of the control box 20 and other equipment, thereby improving the safety of the entire lighting system 100. The design of the base 12 and the lamp pole 10 can maintain the cleanliness and coordination of the appearance, avoiding the exposure of complex connecting components, not only improving the aesthetics of the system, but also reducing the interference and damage possibility of external environment to internal equipment.

[0053] More preferably, the lamp pole 10 further comprises a first fixing part 13. The first fixing part 13 is integrally formed on the lamp pole 10 and located between the lamp pole 10 and the control box 20. The control box 20 is fixed to the lamp pole 10 through the first fixing part 13.

[0054] The first fixing part 13 provides an additional fixing point, helping to stabilize the connection of the control box 20 and the lamp pole 10. This design can effectively reduce the movement of the control box 20 caused by vibration or external force, thereby improving the stability and durability of the entire system. By setting the first fixing part 13, the installation position of the control box 20 can be fixed at a predetermined position, simplifying the installation process. The first fixing part 13 allows the control box 20 to be compactly fixed on the lamp pole 10 without interfering with other components of the lamp pole 10. This optimizes the spatial layout on the lamp pole 10, allowing all components (such as the control box 20, sensors, etc.) to be arranged in order, avoiding space waste or component interference. By fixing the control box 20 to the lamp pole 10 through the first fixing part 13, the risk of movement or falling of the control box 20 during use can be reduced. This helps to prevent safety hazards caused by unstable position of the control box 20, ensuring normal operation and safe use of the lamp 50.

[0055] More preferably, the lamp pole 10 further comprises a limiting ring 14. The limiting ring 14 is fixedly connected to the lamp pole 10 and located between the first fixing part 13 and the base 12.

[0056] The setting of the limiting ring 14 on the lamp pole 10 can effectively limit the up and down movement of the components (such as control box 20, sensor, etc.) on the lamp pole 10. It acts as a physical barrier to ensure that the components remain in the predetermined position during installation or use, avoiding position deviation due to vibration or external force. The limiting ring 14 helps to ensure the installation accuracy of the components on the lamp pole 10. The components can be precisely positioned by the limiting ring 14 as a reference point, thereby reducing errors and improving the installation quality and consistency of the overall system. The limiting ring 14 acts as a physical barrier to protect other components on the lamp pole 10 from possible collisions or impacts. It can reduce the risk of damage to the components when subjected to external forces, thereby prolonging the service life of the system.

[0057] More preferably, the infrared sensor 30 comprises an ear 31. The ear 31 is fixedly connected to the infrared sensor 30, and the ear 31 is fixedly connected around the lamp pole 10 and located between the limiting ring 14 and the base 12. The infrared sensor 30 moves on the lamp pole 10 through the ear 31.

[0058] The setting of the ear 31 allows the infrared sensor 30 to move up and down along the lamp pole 10, so that the position of the sensor can be adjusted according to actual needs. This adjustability is very important for optimizing the detection range and effect of the sensor, especially in different installation environments or lighting needs, fine adjustments can be made to ensure optimal performance. The design of the ear 31 of the infrared sensor 30 allows it to be adjusted according to the height of the lamp pole 10 or the installation position. For different lighting environments or areas to be monitored, the height of the sensor can be adjusted to adapt to different sensing requirements, thereby improving the adaptability and flexibility of the system. By adjusting the position of the sensor through the ear 31, the detection area and sensing effect can be optimized. If the sensor is too low or too high, it may affect its detection effect on objects. The design of the ear 31 allows adjustment according to actual conditions to ensure that the sensor can cover the required monitoring area, improving detection accuracy and reliability. The design of the ear 31 makes it easier to install and maintain the sensor. During installation, the installer can adjust the position of the sensor through the ear 31 to place it in the best position. At the same time, maintenance personnel can easily adjust the height of the sensor when needed to adapt to different needs or for inspection. The ear 31 fixes the infrared sensor 30 on the lamp pole 10 while allowing it to move between the limiting ring 14 and the base 12, which can enhance the stability of the sensor. This design can reduce external impact or vibration on the sensor during use, ensuring the stability and reliability of the sensor over a long period of use.

[0059] More preferably, the lamp 50 comprises a housing 51 and a lens 52.

[0060] The lens 52 is fixedly connected to the housing 51. The housing 51 is integrally formed with a threaded hole 51A on the side away from the lens 52.

[0061] The threaded hole 51A formed on the housing 51 is used to install a bolt or screw, allowing the lamp 50 to be quickly and securely fixed to the support 11 or other structure. The threaded hole 51A provides a standard connection interface, simplifying the installation process and reducing installation time and difficulty. The threaded hole 51A is located on the side of the housing 51 away from the lens 52, which layout can avoid accidental damage to the lens 52 during installation. By fixing through the threaded hole 51A on the side away from the lens 52, more stable support can be provided to reduce loosening caused by vibration or external force. The lens 52 is fixedly connected to the housing 51, which can ensure the stability of the lens 52 and make the lens 52 remain in the precise position without being affected by the external environment. In addition, this design can also effectively protect the lens 52, ensuring that the lamp 50 can continuously provide high-quality light output during operation.

[0062] More preferably, the lamp 50 further comprises a lamp holder 53. The lamp holder 53 is integrally formed on the support 11 and located on the side of the support 11 away from the control box 20, and the lamp holder 53 is provided with a fixing hole 53A.

[0063] The lamp holder 53 is integrally formed on the support 11, which integrated design enhances the overall structural strength of the lamp 50, ensuring that the lamp 50 will not displace or loosen during long-term use. The stable connection between the lamp holder 53 and the support 11 provides good support, effectively improving the stability of the lamp 50. The lamp holder 53 is arranged on the side of the support 11 away from the control box 20, which layout can make the lamp 50 away from the control box 20, avoiding the influence of the heat dissipation or electromagnetic interference of the control box 20 on the performance of the lamp 50, while also ensuring that the lamp 50 can better illuminate the target area. The fixing hole 53A on the lamp holder 53 also provides a standardized interface for the installation of the lamp 50, making it easy to securely fix the lamp 50 on the support 11. Through the fixing hole 53A, the installer can easily install the lamp 50 in place, while also facilitating the adjustment of the angle or direction of the lamp 50. This design makes it easy and effective to adjust through the operation of the fixing hole 53A and the screw when the lamp 50 needs to be maintained or adjusted, providing convenience for the daily maintenance and repair of the lamp 50.

[0064] More preferably, the housing 51 is fixedly connected to the lamp holder 53 by aligning the fixing hole 53A with the threaded hole 51A and screwing in the bolt.

[0065] By aligning the fixing hole 53A with the threaded hole 51A and screwing in the bolt, this connection can ensure that the shell 51 of the lamp 50 is firmly fixed on the lamp holder 53. The bolt connection has strong mechanical strength and can withstand the weight of the lamp 50 and the impact of the external environment, preventing the lamp 50 from loosening or falling off during use. Aligning the fixing hole 53A and the threaded hole 51A and turning in the bolt is a common and simple installation method, and this design makes the installation process of the lamp 50 faster and more efficient. The installer only needs to screw the bolt into the threaded hole 51A to complete the installation of the lamp 50, reducing the installation steps and time. The use of bolt connection design makes it very easy to disassemble and reassemble when the lamp 50 needs to be maintained or adjusted. By loosening the bolt, the lamp 50 can be maintained or replaced as needed, making daily maintenance and repair work more convenient. The firmness of the bolt connection also improves the safety of the system, avoiding the risk of the lamp 50 falling off due to accidental factors, especially in outdoor environments, better coping with the impact of bad weather such as wind and rain.

[0066] More preferably, the lamp pole 10 further comprises a second fixing part 15. The second fixing part 15 is integrally formed on the lamp pole 10 and located between the lamp pole 10 and the base 12. In the direction perpendicular to the first surface S1, the lamp pole 10 is fixedly connected to the base 12 through the bolt connection between the second fixing part 15 and the base 12.

[0067] The second fixing part 15 makes the connection between the lamp pole 10 and the base 12 more secure. Through bolt connection, it can ensure that the lamp pole 10 remains stable when subjected to external forces such as wind, rain, and impact, preventing displacement, shaking, or tilting of the lamp pole 10 due to external forces or vibrations over a long period of use, especially in outdoor environments. A stable structural design can effectively avoid safety hazards caused by loosening or tilting of the lamp pole 10, ensuring the normal operation of the street lighting system. This reinforced connection structure can improve the overall wind resistance and seismic performance of the lamp pole 10, extending its service life. By adding the second fixing part 15 between the lamp pole 10 and the base 12, the bolt connection makes the installation process more convenient and accurate. The installer can accurately fix the lamp pole 10 on the base 12 through the second fixing part 15, reducing installation errors and improving installation efficiency.

[0068] More preferably, in the direction parallel to the first surface S1, the lamp pole 10 is perpendicular to the base 12.

[0069] The vertically installed lamp pole 10 can ensure that the light fixture 50 is correctly oriented towards the predetermined lighting area. This can avoid uneven lighting or dark areas caused by the inclination of the lamp pole 10, thereby achieving uniform and effective lighting effects. The vertically installed lamp pole 10 can evenly distribute external loads (such as wind force and the weight of the light fixture 50), reducing stress concentration on the base 12, thereby improving the overall stability of the lamp pole 10. This design helps to prevent the lamp pole 10 from tilting or collapsing due to uneven stress. The vertical installation can reduce potential safety hazards caused by the inclination of the lamp pole 10, such as avoiding the danger of the lamp pole 10 collapsing to pedestrians or vehicles. Ensuring the verticality of the lamp pole 10 also helps the safe and stable operation of the light fixture 50, preventing the light fixture 50 from malfunctioning or being damaged due to inclination.

[0070] In this way, the infrared sensor 30 detects whether an object passes through, and the infrared sensor 30 is electrically connected with the control box 20, so that the lighting system 100 can improve the rationality of using light. The luminous flux sensor 40 is used to obtain the surrounding brightness, and the lighting intensity of the light fixture 50 is automatically adjusted, which effectively reduces the energy consumption of the lighting system 100 in use.

[0071] The above-described embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as limiting the scope of the application. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of protection of the present application.

Claims

1. An energy saving lighting system that automatically adjusts the intensity of the lighting, characterized in that, The lighting system comprises a lamp pole; A control box is fixedly connected to the lamp pole, and the control box is provided with two supports; A base is fixedly connected to the lamp pole and located on the side of the lamp pole away from the control box, and the base forms a first surface; A first fixing part is integrally formed on the lamp pole and located between the lamp pole and the control box; wherein the control box is fixed to the lamp pole through the first fixing part; A limiting ring is fixedly connected to the lamp pole and located between the first fixing part and the base; An infrared sensor comprises an ear, the ear is fixedly connected to the infrared sensor, the ear is fixed to the lamp pole and located between the limiting ring and the base, wherein the infrared sensor moves on the lamp pole through the ear, and the infrared sensor is electrically connected to the control box; A luminous flux sensor is fixedly connected to the control box and located at the end of the control box away from the lamp pole, and the luminous flux sensor is also electrically connected to the control box; Two lamps are respectively fixedly connected to two supports and electrically connected to the control box through two supports, wherein the lamp comprises a shell and a lens, the lens is fixedly connected to the shell, the shell is integrally formed with a threaded hole and located on the side of the shell away from the lens; A lamp holder is integrally formed on the support and located on the side of the support away from the control box, the lamp holder is provided with a fixing hole, a bolt is screwed into the fixing hole and aligned with the threaded hole, and the shell is fixedly connected to the lamp holder, Wherein, the lighting system detects whether there is an object passing through through the infrared sensor, and the lighting system obtains the surrounding brightness through the luminous flux sensor to automatically adjust the lighting intensity of the lamp.

2. An energy saving lighting system that automatically adjusts the lighting intensity according to claim 1, characterized in that, The lamp pole further comprises: A second fixing part is integrally formed on the lamp pole and located between the lamp pole and the base; Wherein, in the direction perpendicular to the first surface, the lamp pole is fixedly connected to the base through the second fixing part and the base is bolted.

3. An energy saving lighting system that automatically adjusts the lighting intensity according to claim 2, characterized in that, In the direction parallel to the first surface, the lamp pole is perpendicular to the base.