Ad-hoc network energy-saving lamp system
By using a self-organizing network energy-saving lamp system, which utilizes wireless network control of sensors and lamp network chips, combined with big data and AI, the problem of unintelligent adjustment of existing lamps has been solved, achieving intelligent lighting and energy-saving effects, and improving the lighting quality of public areas.
Patent Information
- Application Number
- CN202421702523.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-07-18
AI Technical Summary
Existing indoor lighting adjustment methods are not intelligent enough. Manual control and human infrared sensing methods pose safety hazards and uneven lighting, especially in public areas where lighting is used at a moderate frequency but often unattended, leading to resource waste and a poor user experience.
The self-organizing network energy-saving lamp system uses sensors and lamp network chips installed on the lamps to achieve intelligent control of the lamps through wireless local area networks and 4G networks. Combined with big data analysis and AI computing, it can achieve on-demand lighting and automatic energy saving.
It enables intelligent control of lighting fixtures, improves the lighting experience and energy-saving effect in public areas, reduces resource waste, and enhances safety and visibility.
Smart Images

Figure CN223809944U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of lighting, especially relates to a self-organizing network energy-saving lamp system. BACKGROUND
[0002] Indoor lighting is closely related to people's production and life, along with the acceleration of urbanization process in our country, indoor lighting is more and more intelligent, in order to adapt to different light intensity, people design a large number of lighting lamps with automatic control, so as to facilitate the normal use of lamps.
[0003] At present, the current indoor lamp adjusting method is: one, manual control energy-saving mode, personnel are responsible for manual on / off lamp operation.Two, human body infrared induction energy-saving mode, when the person passes through, the infrared sensor in the lamp tube senses the person and controls the lamp to open, and the lamp is closed after the person walks. However, these energy-saving modes have obvious defects, the lighting mode is not intelligent, people need to find the switch in the dark environment, the intelligent collection distance of the human body infrared induction sensor is only 2-3 meters, only the lamp in the area can be lit when the person passes through, the front of the person is still pitch black, there is a certain fear and safety hazard. The lighting of public area is very important to building, it can improve the visibility, safety and aesthetic degree of building, and can provide better use experience for people. At the same time, due to the medium frequency of use of the lighting lamps in public area, there are more unattended states, and there is a certain regularity. Therefore, it is necessary to use the self-organizing network energy-saving lamp system to improve the experience and energy saving of public area lighting. SUMMARY
[0004] In order to achieve the above purpose, the utility model provides a kind of self-organizing network energy-saving lamp system, can realize intelligent lighting in lighting area.
[0005] The utility model provides a kind of self-organizing network energy-saving lamp system, including a plurality of lamps, gateway and remote control terminal;
[0006] Sensor and lamp networking chip are installed on the lamp, and communication connection is established between adjacent lamp networking chips through wireless local area network;Each lamp networking chip is connected with the gateway through wireless local area network, and the gateway is connected with the remote terminal through wireless network.
[0007] Further, the gateway is connected with the remote terminal through 4G network or TCP / IP protocol.
[0008] Further, the sensor is infrared sensor.
[0009] Further, the wireless local area network is wireless MESH communication network.
[0010] Further, the lamp networking chip is connected with the lamp through dimming unit.
[0011] The utility model discloses a lamp networking chip and sensor are installed in the existing lamp, and each lamp networking chip and gateway form LAN.
[0012] The utility model discloses a lamp networking chip and sensor are installed in the existing lamp, and each lamp networking chip and gateway form LAN.
[0013] The utility model discloses a lamp networking chip and sensor are installed in the existing lamp, and each lamp networking chip and gateway form LAN. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the self-organizing network energy-saving lamp system principle block diagram of a specific embodiment of the utility model;
[0015] Figure 2 It is the connection structure schematic diagram of lamp networking chip and lamp of a specific embodiment of the utility model;
[0016] Figure 3 It is the lamp distribution structure schematic diagram in a specific embodiment of the utility model. DETAILED DESCRIPTION
[0017] The following through specific concrete example explains the implementation of the utility model, and the person skilled in the art can easily understand other advantages and effects of the utility model from the content disclosed in the specification. The utility model can also be implemented or applied by another different specific implementation, and each detail in the specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the utility model. It should be noted that the following examples and features in the examples can be combined with each other without conflict.
[0018] It should be noted that the drawings provided in the following examples only illustrate the basic concept of the utility model in a schematic manner, and only show the components related to the utility model in the drawings, not the number, shape and size of the components during actual implementation. The shape, number and proportion of each component during actual implementation can be changed arbitrarily, and the component layout pattern can be more complex.
[0019] Some exemplary embodiments of the utility model are described for the purpose of illustration, and it should be understood that the utility model can be implemented in other ways not specifically shown in the drawings.
[0020] As Figure 1 shown, the utility model provides a self -organizing network energy -conserving lamp system, including a plurality of lamps and lanterns, gateway and remote control terminal,
[0021] Each lamp is installed with infrared sensor and lamp networking chip, and the adjacent lamp networking chips are connected through wireless MESH communication network; each lamp networking chip is connected with the gateway through wireless LAN, and the gateway is connected with the remote terminal through 4G network or TCP / IP protocol.
[0022] The lamp can adopt the existing lamp, and in actual application, the original lighting circuit structure can be directly used, and the infrared sensor and the lamp networking chip are only added on the lamp, which is combined with the gateway and the internet of things intelligent lighting system based on SAAS software technology development, IE browser operation mode, and supports cloud deployment. And advanced wireless MESH communication technology is adopted, the original design scheme is not changed, and the rewiring is not changed, so that the unified control and management of the lamp are realized.
[0023] As Figure 2 shown, in the embodiment, the lamp networking chip adopts STM32 series ARM processor, each lamp further includes a dimming unit, an output control unit, a power module and a data acquisition module, the dimming unit is adjusted by the lamp networking chip to adjust the brightness of the lamp, when the traffic is large, the brightness is adjusted to the maximum, and when the traffic is small, the brightness can be appropriately reduced. The lamp networking chip can also control the dimming unit to adjust the brightness of the lamp in the sleep period. The dimming unit in the embodiment can adopt the existing dimming module, which can realize the brightness adjustment of the lamp.
[0024] The platform can realize multi-scene setting by fine management and control of regions, gateways, scenes and devices through big data analysis, AI operation and other methods, so that the building lighting can realize on-demand lighting and automatic energy saving.
[0025] As Figure 3 shown, in a lighting area, a plurality of lamps and lanterns are provided, and each lamp is provided with an infrared sensor and a lamp networking chip, and the brightness of the lamp can be adjusted as follows:
[0026] 1. The infrared sensor of the lamp is used to detect whether a person passes under the lamp, when a person is detected, the lamp networking chip increases the brightness of the lamp through the dimming unit, when no one passes, the brightness of the lamp is reduced or the lamp is directly turned off; the lamp networking chip can record the number of people passing through the lamp per unit time, and adjust the brightness of the lamp according to the size of the traffic, for example, when the traffic is large, the brightness of the lamp is increased through the dimming chip, and vice versa, the brightness of the lamp is reduced. The brightness adjustment range is 0-100%.
[0027] When the pedestrian leaves, the lamp networking chip controls the lamps to delay for a period of time, for example, the delay time is 0 seconds, 20 seconds, 30 seconds, 300 seconds, 600 seconds, etc., and the specific delay time and the brightness of the lamps in the delay time can be set as needed, and the lamp networking chip controls the lamps according to the set value.
[0028] 2. When no one passes through the lamps for a long time, the lamps can enter a sleep state, and the brightness of the lamps in the sleep state can be adjusted at any time as needed, and the brightness of the lamps in the sleep state ranges between 0-100%.
[0029] 3. Each lamp in a lighting area is connected to a remote terminal, and the lamps can communicate and inductively link with each other, for example, when the infrared sensor of the current lamp detects the presence of a person, the corresponding lamp is turned on, and the remote terminal controls the lamps near the lamp to be turned on at the same time, and as the pedestrian walks, the next lamp infrared sensor senses the pedestrian and then gives the next two lamps a turn-on instruction, until the pedestrian walks out of the lighting area, realizing the effect that the lamps are turned on in advance when a person comes. The size of the lighting area is defined as needed, all lamps can be set as a group on the platform, or different lamps can be set as multiple groups, and the lamps in the lighting area can be set as a single lamp networking, a single lamp networking, a whole group networking, and a whole group networking control structure on the platform as needed, realizing the control effect of one-key full brightness, one-key full darkness, and one-key recovery.
[0030] 4. The virtual loop is defined arbitrarily, and there is no limit to the number of loops.
[0031] 5. The communication distance of the sensor switch can be adjusted (40-100 meters, set by the forwarding switch).
[0032] 6. Remote control is supported.
[0033] 7. State reporting and data uplink are supported.
[0034] The above embodiments only exemplarily illustrate the principles and effects of the present application, and are not used to limit the present application. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes made by those skilled in the art without departing from the spirit and technical thought disclosed by the present application should be covered by the claims of the present application.
Claims
1. A self-organizing network energy saving light system comprising a number of luminaires, characterized in that, The gateway and the remote control terminal are also included; The sensor and the lamp networking chip are installed on the lamp, and the adjacent lamp networking chips are connected through a wireless local area network; each lamp networking chip is connected with the gateway through the wireless local area network, and the gateway is connected with the remote terminal through a wireless network; The sensor is connected with the lamp networking chip, the lamp networking chip is connected with the lamp through a dimming unit, the lamp networking chip receives the sensing signal of the sensor, sends a dimming signal to the dimming unit to adjust the brightness of the lamp, and the dimming signal includes a signal for increasing the brightness of the lamp, a signal for reducing the brightness of the lamp, a signal for turning off the lamp, and a brightness delay signal.
2. The self-organizing network energy saving lamp system of claim 1, wherein, The gateway is connected with the remote terminal through a 4G network or a TCP / IP protocol.
3. The self-organizing network energy saving lamp system of claim 1, wherein, The sensor is an infrared sensor.
4. The self-organizing network energy saving lamp system of claim 1, wherein, The wireless local area network is a wireless MESH communication network.