LED lamp tube lighting system based on Bluetooth 2.4 wireless networking
By setting up an LED lamp lighting system based on Bluetooth 2.4 wireless networking indoors, real-time lighting adjustment is achieved using thermal imaging sensing module and Bluetooth connection, the lighting blind spot problem is solved and energy consumption is reduced, and users' efficient lighting needs are met.
Patent Information
- Application Number
- CN202422041174.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-22
AI Technical Summary
There are lighting blind spots in existing indoor temporary lighting places, so the light will be on only when the person reaches the door, which may cause the user to be injured. The lighting blind spots are larger when the movement speed is accelerated, which cannot meet the needs of efficient lighting.
The LED lamp lighting system based on Bluetooth 2.4 wireless network is adopted. The thermal imaging sensing module is provided between the LED lamp modules. The adjacent modules are wirelessly connected through Bluetooth 2.4G. Multiple modules are connected in two directions with the control device. The light within 10-30 meters in front of the user is pre-activated, and the front light within 30 meters is kept on as the user moves, and the rear light enters a dormant state.
It effectively avoids the emergence of lighting blind spots, and greatly reduces energy consumption, meets users' high-efficiency lighting needs, and adjusts brightness and color temperature through ambient light sensor and temperature acquisition module to further meet user needs.
Smart Images

Figure CN223053154U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lighting, and more specifically, to an LED tube lighting system based on Bluetooth 2.4 wireless networking. Background Art
[0002] In some temporary lighting places indoors, in order to avoid the all-weather operation of the lighting lamp affecting the service life of the lighting lamp and reducing the power consumption of public lighting, an LED induction lamp with a light control and human body induction function is generally selected to replace the ordinary LED lighting lamp. The induction lamp is in the off state when no one passes by, and the LED lamp can be turned on when the environment is relatively dark and someone enters the induction area.
[0003] The patent closest to the prior art, publication number: CN218936130U, a solar corridor lamp. The utility model relates to lighting equipment, including a corridor lamp housing, a solar photovoltaic panel, a charging control module, a battery module, a light control induction device, and a light control LED lamp group. The solar photovoltaic panel, the light control induction device, and the light control LED lamp group are respectively embedded on the surface of the corridor lamp housing, and the solar photovoltaic panel is located within the light irradiation range of the light control LED lamp group. The charging control module and the battery module are respectively arranged inside the corridor lamp housing. The charging control module is electrically connected to the solar photovoltaic panel and the battery module respectively. The battery module is electrically connected to the light control LED lamp group, and a light control induction device is electrically connected between the battery module and the light control LED lamp group.
[0004] The lamps used in some existing indoor temporary lighting places still cause blind spots in lighting. The light will only turn on when a person arrives, which is likely to cause injury to the user. If the user uses a means of transportation at this time, the moving speed will be faster and the lighting blind spot will be larger, unable to meet the demand for efficient lighting.
[0005] In view of this, the utility model proposes an energy-saving LED tube lighting system based on Bluetooth 2.4 wireless networking with high efficiency in lighting. Summary of the Utility Model
[0006] The utility model proposes an energy-saving LED tube lighting system based on Bluetooth 2.4 wireless networking with high efficiency in lighting.
[0007] An LED tube lighting system based on Bluetooth 2.4 wireless networking, comprising a plurality of LED tube modules, an indoor light collection device, an outdoor color temperature collection device, and a control device, characterized in that: LED tube modules are arranged at intervals on the indoor top, and the LED tube modules are used for lighting. Each LED tube module is provided with a thermal imaging induction module, and the thermal imaging induction module is used to sense moving objects within the range of each LED tube module. Adjacent LED tube modules are wirelessly connected via Bluetooth 2.4G, and a plurality of LED tube modules are bidirectionally connected to the control device via Bluetooth 2.4G.
[0008] Further, the distance between adjacent LED tube modules is 2m - 3m.
[0009] In some embodiments, an outdoor ambient light sensor module is further provided outdoors. The outdoor ambient light sensor module is connected to the LED tube module through the control device, and the outdoor ambient light sensor module is used to collect outdoor ambient light data and adjust the brightness of the LED tube module.
[0010] Further, the outdoor ambient light sensor module includes an outdoor ambient light color temperature module and an outdoor ambient light illumination module. Both the outdoor ambient light color temperature module and the outdoor ambient light illumination module are connected to the LED tube module through the control device. The outdoor ambient light color temperature module is used to collect outdoor ambient light color temperature data and adjust the brightness of the LED tube module, and the outdoor ambient light illumination module is used to collect outdoor ambient light illumination and adjust the brightness of the LED tube module.
[0011] In some embodiments, an indoor ambient light sensor module is further provided near the indoor entrance and exit. The indoor ambient light sensor module is connected to the LED tube module through the control device, and the indoor ambient light sensor module is used to collect light data at the indoor entrance and exit and adjust the brightness of the LED tube module.
[0012] Further, the indoor ambient light sensor module includes an indoor ambient light color temperature module and an indoor ambient light illumination module. Both the indoor ambient light color temperature module and the indoor ambient light illumination module are connected to the LED tube module through the control device. The indoor ambient light color temperature module is used to collect indoor entrance and exit ambient light color temperature data and adjust the brightness of the LED tube module, and the indoor ambient light illumination module is used to collect indoor entrance and exit ambient light illumination and adjust the brightness of the LED tube module.
[0013] In some embodiments, each LED tube module is further provided with a weight regularization control module, which is used to perform weighted processing on the data of the outdoor ambient light sensor module and the outdoor ambient light sensor module to obtain an environmental weight value and adjust the LED tube module.
[0014] In some embodiments, an outdoor temperature acquisition module is further provided outdoors, which is used to acquire outdoor ambient temperature data and assist in adjusting the color temperature of the LED lamp tube module according to the outdoor ambient temperature data.
[0015] In some embodiments, the control terminal is a computer, a tablet computer or a smart phone.
[0016] The beneficial effects of the present utility model: The present utility model provides an LED lamp tube lighting system based on Bluetooth 2.4 wireless networking. LED lamp tube modules are arranged at intervals on the indoor top. Each LED lamp tube module is provided with a thermal imaging induction module. Adjacent LED lamp tube modules are wirelessly connected through Bluetooth 2.4G. Multiple LED lamp tube modules are bidirectionally connected to the control device through Bluetooth 2.4G. The lamps within 10 - 30 meters in front of the user can be turned on at 100% brightness in advance, and the lamps within 30 meters in front of the user always maintain 100% brightness as the user moves, while the lamps behind enter the sleep state, which can prevent the occurrence of lighting blind spots and greatly reduce energy consumption; the indoor ambient light sensor module and the outdoor ambient light sensor module are set to adjust the brightness of the LED lamp tube module to meet the user's usage requirements; an outdoor temperature acquisition module is provided to assist in adjusting the color temperature of the LED lamp tube module, further comprehensively meeting the user's usage requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic structural diagram of an LED lamp tube lighting system based on Bluetooth 2.4 wireless networking according to the present application.
[0018] Figure 2 It is a schematic usage diagram of an LED lamp tube lighting system based on Bluetooth 2.4 wireless networking according to the present application.
[0019] The following specific embodiments will further illustrate the present utility model in conjunction with the above-mentioned drawings. SPECIFIC EMBODIMENTS
[0020] The following embodiments are described to assist in understanding the present application. The embodiments are not and should not be construed in any way as limiting the protection scope of the present application.
[0021] In the following description, those skilled in the art will recognize that throughout this discussion, components may be described as separate functional units (which may include sub-units), but those skilled in the art will recognize that various components or portions thereof may be divided into separate components or integrated together (including being integrated within a single system or component).
[0022] At the same time, the connections between components or systems are not intended to be limited to direct connections. Instead, the data between these components can be modified, reformatted, or otherwise changed by intermediate components. Additionally, additional or fewer connections may be used. It should also be noted that the terms "coupled", "connected", or "input" should be understood to include direct connections, indirect connections through one or more intermediate devices, and wireless connections. Embodiment 1:
[0023] As Figure 1 shown, it is a schematic structural diagram of an LED tube lighting system based on Bluetooth 2.4 wireless networking according to the present application; as Figure 2 shown, it is a schematic usage diagram of an LED tube lighting system based on Bluetooth 2.4 wireless networking according to the present application.
[0024] An LED tube lighting system based on Bluetooth 2.4 wireless networking includes a plurality of LED tube modules, an indoor light collection device, an outdoor color temperature collection device, and a control device. It is characterized in that: LED tube modules are arranged at intervals on the indoor top, and the LED tube modules are used for lighting. Each LED tube module is provided with a thermal imaging induction module, and the thermal imaging induction module is used to sense moving objects within the range of each LED tube module. Adjacent LED tube modules are wirelessly connected via Bluetooth 2.4G, and the plurality of LED tube modules are wirelessly and bidirectionally connected to the control device via Bluetooth 2.4G.
[0025] The distance between adjacent LED tube modules is 2m - 3m.
[0026] An outdoor ambient light sensor module is also provided outdoors. The outdoor ambient light sensor module is connected to the LED tube module through the control device, and the outdoor ambient light sensor module is used to collect outdoor ambient light data and adjust the brightness of the LED tube module.
[0027] The outdoor ambient light sensor module includes an outdoor ambient light color temperature module and an outdoor ambient light illumination module. Both the outdoor ambient light color temperature module and the outdoor ambient light illumination module are connected to the LED tube module through the control device. The outdoor ambient light color temperature module is used to collect outdoor ambient light color temperature data and adjust the brightness of the LED tube module, and the outdoor ambient light illumination module is used to collect outdoor ambient light illumination and adjust the brightness of the LED tube module.
[0028] An indoor ambient light sensor module is also provided near the indoor entrance and exit. The indoor ambient light sensor module is connected to the LED tube module through the control device, and the indoor ambient light sensor module is used to collect light data at the indoor entrance and exit and adjust the brightness of the LED tube module.
[0029] The indoor ambient light sensor module includes an indoor ambient light color temperature module and an indoor ambient light illuminance module. Both the indoor ambient light color temperature module and the indoor ambient light illuminance module are connected to the LED tube module through a control device. The indoor ambient light color temperature module is used to collect the ambient light color temperature data at the indoor entrance and exit and adjust the brightness of the LED tube module. The indoor ambient light illuminance module is used to collect the ambient light illuminance at the indoor entrance and exit and adjust the brightness of the LED tube module.
[0030] Each LED tube module is also provided with a weight regularization control module, which is used to perform weighted processing on the data of the outdoor ambient light sensor module and the outdoor ambient light sensor module to obtain an ambient weight value and adjust the LED tube module.
[0031] An outdoor temperature acquisition module is also provided outside, which is used to acquire the outdoor ambient temperature data and assist in adjusting the color temperature of the LED tube module according to the outdoor ambient temperature data.
[0032] The control terminal is a computer, a tablet computer or a smart phone.
[0033] The beneficial effects of the present utility model: The present utility model provides an LED tube lighting system based on Bluetooth 2.4 wireless networking. LED tube modules are arranged at intervals on the indoor top. Each LED tube module is provided with a thermal imaging induction module. Adjacent LED tube modules are wirelessly connected through Bluetooth 2.4G. Multiple LED tube modules are bidirectionally connected to the control device through Bluetooth 2.4G. The lights within 10 - 30 meters in front of the user can be turned on at 100% brightness in advance, and the lights within 30 meters in front of the user always remain at 100% brightness as the user moves, while the lights behind enter the sleep state, which can prevent the appearance of lighting blind spots and greatly reduce energy consumption; the indoor ambient light sensor module and the outdoor ambient light sensor module are set to adjust the brightness of the LED tube module to meet the user's usage requirements; the outdoor temperature acquisition module is provided to assist in adjusting the color temperature of the LED tube module, further comprehensively meeting the user's usage requirements.
[0034] Although the present application has disclosed multiple aspects and embodiments, other aspects and embodiments will be obvious to those skilled in the art. Without departing from the concept of the present application, several deformations and improvements can still be made, and these all belong to the protection scope of the present application. The multiple aspects and embodiments disclosed in the present application are only used for illustration, and they are not intended to limit the present application. The actual protection scope of the present application is subject to the claims.
Claims
1. An LED lamp lighting system based on Bluetooth 2.4 wireless networking, comprising a plurality of LED lamp modules, an indoor light collection device, an outdoor color temperature collection device, and a control device, characterized in that: LED light tube modules are installed at intervals on the indoor ceiling for lighting purposes. Each LED light tube module is provided with a thermal imaging sensing module for sensing moving objects within the range of each LED light tube module. Adjacent LED light tube modules are connected wirelessly via Bluetooth 2.4G, and multiple LED light tube modules are bidirectionally connected to a control device via Bluetooth 2.4G wireless.
2. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 1, characterized in that: The adjacent LED lamp tube modules are spaced 2m-3m apart.
3. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 1, characterized in that: An outdoor ambient light sensor module is also provided outdoors, and the outdoor ambient light sensor module is connected to the LED lamp module through a control device. The outdoor ambient light sensor module is used to collect outdoor ambient light data and adjust the brightness of the LED lamp module.
4. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 3, characterized in that: The outdoor ambient light sensor module includes an outdoor ambient light color temperature module and an outdoor ambient light illumination module. Both the outdoor ambient light color temperature module and the outdoor ambient light illumination module are connected to the LED lamp tube module through a control device. The outdoor ambient light color temperature module is used to collect outdoor ambient light color temperature data and adjust the brightness of the LED lamp tube module. The outdoor ambient light illumination module is used to collect outdoor ambient light illumination and adjust the brightness of the LED lamp tube module.
5. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 1, characterized in that: An indoor ambient light sensor module is also provided near the indoor entrance and exit. The indoor ambient light sensor module is connected to the LED lamp module through a control device. The indoor ambient light sensor module is used to collect light data at the indoor environment entrance and exit and adjust the brightness of the LED lamp module.
6. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 5, characterized in that: The indoor ambient light sensor module includes an indoor ambient light color temperature module and an indoor ambient light illumination module. Both the indoor ambient light color temperature module and the indoor ambient light illumination module are connected to the LED lamp tube module through a control device. The indoor ambient light color temperature module is used to collect ambient light color temperature data at indoor entrances and exits and adjust the brightness of the LED lamp tube module. The indoor ambient light illumination module is used to collect ambient light illumination at indoor entrances and exits and adjust the brightness of the LED lamp tube module.
7. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 1, characterized in that: A weight regularization and control module is also provided in each LED lamp tube module, which is used to perform weighted processing on the outdoor ambient light sensor module data and the outdoor ambient light sensor module data to obtain an environmental weight value and adjust the LED lamp tube module.
8. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 1, characterized in that: The outdoor area is also provided with an outdoor temperature acquisition module, which is used to acquire outdoor ambient temperature data and assist in adjusting the color temperature of the LED lamp tube module according to the outdoor ambient temperature data.
9. The LED tube lighting system based on Bluetooth 2.4 wireless networking as claimed in claim 1, characterized in that: The control device is a computer, a tablet computer or a smart phone.
Citation Information
Patent Citations
Solar corridor lamp
CN218936130U