Lighting device control system with function detection mechanism
The lighting device control system with a function detection mechanism addresses the issue of mismatched control interfaces by actively detecting the capabilities of the lighting device and displaying corresponding control options, thereby improving user experience and control effectiveness.
Patent Information
- Application Number
- DE102023120826
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-01-16
- Filing Date
- 2023-08-05
- Publication Date
- 2025-05-28
- Estimated Expiration
- 2043-08-05
AI Technical Summary
Existing dimming controllers lack customized control interfaces, leading to mismatches between controller functions and lighting device capabilities, resulting in user confusion and ineffective control.
A lighting device control system with a function detection mechanism, including an active function detection device and a control device. The active function detection device sends dimming and color temperature signals to the lighting device, detecting input current and light color temperature to generate test results, which the control device uses to analyze and display appropriate control interfaces.
Ensures that control interfaces match the capabilities of the lighting device, preventing user errors and enhancing user experience by providing accurate and functional control options.
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
Field of the invention
[0001] The present invention relates to a lighting device control system and, more particularly, to a lighting device control system having a function detection mechanism. State of the art
[0002] With the improvement of living standards, people's requirements for lighting fixtures are becoming higher and higher. To meet different market needs, various smart lighting fixtures with dimming functions have been developed. Some existing lighting fixtures only support the switch function, some existing lighting fixtures only support the dimming function and the switch function, and some existing lighting fixtures only support the dimming function, the color temperature function, and the switch function. However, the existing dimming controllers do not provide customized control pages or control interfaces, so it cannot be guaranteed that the control pages or control interfaces of these dimming controllers fully meet the functions of different lighting fixtures.For example, if a dimming controller provides a switch interface, a dimming interface, and a color temperature interface, and the lighting device only supports the dimming function and the switch function, the color temperature interface of the dimming controller cannot fulfill its function, so when the user operates the color temperature interface, the color temperature of the lighting device cannot be changed. As a result, the user may fall into the misconception that the lighting device or the dimming controller is not working.
[0003] Therefore, these dimming controllers cannot be directly used for such lighting devices because the user needs to use special dimming controllers for different lighting devices, which is extremely cumbersome to use and therefore cannot meet the requirements of practical applications.
[0004] Various conventional lighting systems are known in which a suitable user interface is selected from a plurality of user interfaces. For example, US 2016 / 0192460 A1 describes a lighting control system and methods for detecting and providing a lighting interface from a plurality of lighting interfaces for operating a light-emitting element and for dimming control using multiple power levels of the lighting interface. CN 207 783 207 U describes an LED drive device and a dimming system, wherein the LED drive device is configured with a module for identifying dimming signals in order to perform appropriate brightness and color temperature control.Document US 2012 / 0169248 A1 describes an intelligent dimmable power supply device for energy-saving lamps with a dimming signal detection and power conversion control unit, wherein the intelligent dimmable power supply device can automatically detect a dimmer type and a dimming method for dimming the energy-saving lamp. Object of the invention
[0005] The object of the invention is to improve the practical applicability of lighting device systems. Technical solution
[0006] According to an embodiment of the present invention, a lighting device control system with a function detection mechanism is proposed, comprising an active function detection device and a control device, wherein the active function detection device is connected to an external power supply and a lighting device and comprises an active detection signal generation module and a function detection module, the active detection signal generation module sends a dimming signal and a color temperature signal to the lighting device,the function detection module detects the input current of the lighting device and the light color temperature of the lighting device to generate a dimming function test result and a color temperature function test result, and the control device generates a function analysis result according to the dimming function test result and the color temperature function test result and displays a control page corresponding to the function analysis result according to the function analysis result.
[0007] In one embodiment, the control device sends a detection command to the active detection signal generation module to control the active detection signal generation module to send a dimming signal and a color temperature signal to the lighting device.
[0008] In one embodiment, the function detection module comprises a current detector, wherein when the current detector detects a change in the input current of the lighting device, it generates a detection success signal of the dimming function and, when it does not detect a change in the input current of the lighting device, it generates a detection failure signal of the dimming function.
[0009] In one embodiment, the function detection module comprises a color temperature detector, wherein when the color temperature detector detects a change in the light color temperature of the lighting device, it generates a detection success signal of the color temperature function and, when it does not detect a change in the light color temperature of the lighting device, it generates a detection failure signal of the color temperature function.
[0010] In one embodiment, the color temperature detector is a photoresistor sensor.
[0011] In one embodiment, the control side is the first control interface, the second control interface, the third control interface, or the fourth control interface, wherein the first control interface comprises a switch interface, the second control interface comprises a switch interface and a color temperature interface, the third control interface comprises a switch interface and a dimming interface, and the fourth control interface comprises a switch interface, a color temperature interface, and a dimming interface.
[0012] In one embodiment, the lighting device control system further comprises a control interface selector switch, wherein the control interface selector switch has a first position corresponding to the first control interface, a second position corresponding to the second control interface, a third position corresponding to the third control interface, and a fourth position corresponding to the fourth control interface.
[0013] In one embodiment, the control interface selector switch further comprises a function detection position, wherein the function detection position serves to control the active detection signal generation module for sending a dimming signal and a color temperature signal to the lighting device.
[0014] In one embodiment, the active function detection device further comprises a wireless communication chip, wherein the wireless communication chip receives a dimming function test result and a color temperature function test result and sends them to the control device by means of a wireless communication protocol.
[0015] In one embodiment, the wireless communication protocol is a WIFI communication protocol, a Bluetooth communication protocol, or a Zigbee communication protocol.
[0016] Based on the above description, the lighting device control system with function detection mechanism according to an embodiment of the present invention can provide one or more of the following advantages: (1) In one embodiment of the present invention, the lighting device control system includes an active function detection device and a controller, wherein the active function detection device includes an active detection signal generation module and a function detection module, the active detection signal generation module sends a dimming signal and a color temperature signal to the lighting device, and the function detection module detects the input current of the lighting device and the light color temperature of the lighting device to generate a dimming function test result and a color temperature function test result. Through the active detection mechanism, the control device can generate a function analysis result according to the dimming function test result and the color temperature function test result, and display a control page corresponding to the function analysis result according to the function analysis result.In this way, it can be ensured that the control side control functions provided by the control device fully correspond to the functions of the lighting device, so as to effectively prevent the user from mistakenly thinking that the lighting device or the dimming control is defective, thus effectively improving the user experience and better meeting the actual application needs. (2) In one embodiment of the present invention, the lighting device control system includes an active function detection device and a control device, wherein the active function detection device includes an active detection signal generation module and a function detection module. In this way, an active detection mechanism can be provided, so that it can be ensured that the control-side control functions provided by the control device fully correspond to the functions of the lighting device. Therefore, the lighting device control system can be used for various lighting devices. The application possibilities of the lighting device control system are more diverse. (3) In one embodiment of the present invention, the active function detection means of the lighting device control system has a function detection position, a first position corresponding to the first control interface, a second position corresponding to the second control interface, a third position corresponding to the third control interface, and a fourth position corresponding to the fourth control interface. In this way, the user can actively start the active detection mechanism or directly specify the control interface to be provided by the control side of the control device by selecting the above positions. Therefore, the invention is flexible in use and can meet application requirements. (4) In one embodiment of the present invention, the control device of the lighting device control system may be an electronic device such as a smartphone, a smart watch, a tablet computer, a laptop, or a personal computer. The control device may execute an application program to generate a functional analysis result based on a dimming function test result and a color temperature function test result, and display a control page corresponding to the functional analysis result. In this way, the user can perform the above-mentioned functions via any mobile device, enabling more convenient operation and thus easily achieving widespread popularity of the lighting device control system. (5) In one embodiment of the present invention, the controller of the lighting device control system can execute application programs to perform a greater number of different functions, allowing the controller to perform various intelligent operations and thus improving the functionality of the lighting device. Therefore, the lighting device control system can better meet future development trends. (6) In an embodiment of the present invention, the lighting device control system is designed to be simple, so that the desired advantageous effects can be achieved without a great increase in cost, which is of great commercial value. Brief description of the drawings Fig. 1 shows a block diagram of an embodiment of the lighting device control system with function detection mechanism according to the invention; Fig. Fig. 2 shows a first schematic diagram of the operating state of the embodiment of the lighting device control system with function detection mechanism according to the invention; Fig. 3 shows a first schematic view of the embodiment of the lighting device control system with function detection mechanism according to the invention; Fig. 4 shows a second schematic view of the embodiment of the lighting device control system with function detection mechanism according to the invention; Fig. 5 shows a third schematic view of the embodiment of the lighting device control system with function detection mechanism according to the invention; Fig. 6 shows a fourth schematic view of the embodiment of the lighting device control system with function detection mechanism according to the invention; Fig. 7 shows a block diagram of another embodiment of the lighting device control system with function detection mechanism according to the invention.
[0017] In the following, the detailed features and advantages of the present invention will be described in detail in the embodiments, so that the present invention can be easily implemented by those skilled in the art according to the description. According to the contents, claims, and drawings disclosed in this specification, those skilled in the art can easily understand the purpose and advantages of this invention. Detailed description of the implementation examples
[0018] The embodiments of the lighting device control system with a function detection mechanism according to the invention are described below with reference to the drawings. For clarity and descriptive purposes, the sizes and proportions of the various components shown in the drawings are not necessarily drawn to scale. In the following description and / or claims, when a component is referred to as being "connected" or "coupled" to another component, it may be directly connected or coupled to the other component, or there may be intervening components. When a component is referred to as being "directly connected" or "directly coupled" to another component, there are no intervening components. Other terms used to describe the relationship between components or layers should be interpreted in the same way.For ease of understanding, the same components in the following embodiments are provided with the same reference numerals.
[0019] It will be Fig. 1, which shows a block diagram of an embodiment of the lighting device control system with a function detection mechanism according to the invention. As shown in the figure, the lighting device control system 1 comprises an active function detection device 11 and a control device 12. Communication exists between the active function detection device 11 and the control device 12. In one embodiment, the control device 12 can be a smartphone, a smartwatch, a tablet computer, a laptop, a personal computer, or another existing electronic device.
[0020] The active function detection device 11 is connected to the external power supply PS and the lighting device LD, so that the external power supply PS is connected to the lighting device LD through the active function detection device 11. The active function detection device 11 includes an active detection signal generation module 111, a function detection module 112, and a wireless communication chip 113. The function detection module 112 is connected to the active detection signal generation module 111 and the wireless communication chip 113. The function detection module 112 includes a current detector 1121 and a color temperature detector 1122. In one embodiment, the current detector 1121 is a circuit having at least one resistor or a circuit with a current detection function to provide the current detection function.In one embodiment, the color temperature detector 1122 is a photoresistor sensor or an existing component with a color temperature sensing function.
[0021] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0022] It will be Fig. 2, which shows a first schematic diagram of the operating state of the embodiment of the lighting device control system with a function detection mechanism according to the present invention. As can be seen from the diagram, the control device 12 sends a detection command Cs to the active detection signal generation module 11 to control the active detection signal generation module 11 to send a dimming signal Ds and a color temperature signal Ts to the lighting device LD. After the lighting device LD receives the dimming signal Ds, the function detection module 112 determines whether the input current of the lighting device LD changes using the current detector 1121 and generates a dimming function test result Rs1, and the dimming function test result Rs1 is transmitted to the control device 12 through the wireless communication chip 113.When the current detector 1121 detects a change in the input current of the lighting device LD, it generates a dimming function detection success signal as the dimming function test result Rs1. Conversely, when the current detector 1121 detects no change in the input current of the lighting device LD, it generates a dimming function detection failure signal as the dimming function test result Rs1.
[0023] Similarly, after the lighting device LD receives the color temperature signal Ts, the function detection module 112 detects the light color temperature of the lighting device LD through the color temperature detector 1122 to generate a color temperature function test result Rs2, and the color temperature function test result Rs2 is sent to the control device 12 through the wireless communication chip 113. When the color temperature detector 1122 detects that there is a change in the light color temperature of the lighting device LD, the color temperature detector 1122 generates a color temperature function detection success signal as the color temperature function test result Rs2. Conversely, when the color temperature detector 1122 detects that there is no change in the light color temperature of the lighting device LD, the color temperature detector 1122 generates a color temperature function detection failure signal as the color temperature function test result Rs2.Here, the wireless communication chip 113 can receive the dimming function test result Rs1 and the color temperature function test result Rs2 and send them to the control device 12 through the wireless communication protocol.
[0024] Then, the control device 12 generates a function analysis result according to the dimming function test result Rs1 and the color temperature function test result Rs2, and displays a control page corresponding to the function analysis result according to the function analysis result.
[0025] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0026] It will be Fig. 3, which shows a first schematic view of the embodiment of the lighting device control system with a function detection mechanism according to the present invention. As described above, the control device 12 generates a function analysis result according to the dimming function test result Rs1 and the color temperature function test result Rs2, and displays a control page corresponding to the function analysis result according to the function analysis result. As shown in the figure, when the dimming function test result Rs1 and the color temperature function test result Rs2 received by the control device 12 are the dimming function detection failure signal and the color temperature function detection failure signal, respectively, the function analysis result indicates that the lighting device LD does not have a dimming function and a color temperature function.In this way, the control side indicated by the control device 12 is the first control interface UF1, which includes only the switch interface S1.
[0027] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0028] It will be Fig. 4, which shows a second schematic view of the embodiment of the lighting device control system with a function detection mechanism according to the present invention. As shown in the figure, when the dimming function test result Rs1 and the color temperature function test result Rs2 received by the control device 12 are the dimming function detection failure signal and the color temperature function detection success signal, respectively, the function analysis result indicates that the lighting device LD does not have a dimming function but does have a color temperature function. Thus, the control side indicated by the control device 12 is the second control interface UF2, which includes a switch interface S1 and a color temperature interface S2.
[0029] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0030] It will be Fig. 5, which shows a third schematic view of the embodiment of the lighting device control system with a function detection mechanism according to the present invention. As shown in the figure, when the dimming function test result Rs1 and the color temperature function test result Rs2 received by the control device 12 are the detection success signal of the dimming function and the detection failure signal of the color temperature function, respectively, the function analysis result indicates that the lighting device LD has a dimming function but no color temperature function. Thus, the control side indicated by the control device 12 is the third control interface UF3, which includes a switch interface S1 and a dimming interface S3.
[0031] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0032] It will be Fig. 6, which shows a fourth schematic view of the lighting device control system with a function detection mechanism according to the present invention. As shown in the figure, when the dimming function test result Rs1 and the color temperature function test result Rs2 received by the control device 12 are the detection success signal of the dimming function and the detection success signal of the color temperature function, respectively, the function analysis result indicates that the lighting device LD has a dimming function and a color temperature function. Thus, the control side indicated by the control device 12 is the fourth control interface UF4, which includes a switch interface S1, a color temperature interface S2, and a dimming interface S3.
[0033] From the above description, it can be seen that through the active detection mechanism, the control device 12 can generate a function analysis result according to the dimming function test result Rs1 and the color temperature function test result Rs2, and display a control page corresponding to the function analysis result according to the function analysis result. In this way, it can ensure that the control page control functions provided by the control device 12 fully correspond to the functions of the lighting device LD, effectively preventing the user from mistakenly thinking that the lighting device LD or the dimming control is defective, thus effectively improving the user experience and better meeting actual application requirements.
[0034] Furthermore, the active detection mechanism ensures that the control-side control functions provided by the control device 12 fully correspond to the functions of the lighting device LD. Thus, the lighting device control system 1 can be used for various lighting devices LD. The application possibilities of the lighting device control system are more diverse and flexible.
[0035] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0036] It's worth noting that existing dimming controllers don't provide customized control pages or control interfaces, so it can't be guaranteed that the control pages or control interfaces of these dimming controllers fully match the functions of different lighting devices. Therefore, users may mistakenly think that the lighting device or dimming controller is malfunctioning. Therefore, existing dimming controllers cannot fully meet the needs of practical applications.In contrast, the lighting device control system according to an embodiment of the present invention includes an active function detection device and a control device, wherein the active function detection device includes an active detection signal generation module and a function detection module, the active detection signal generation module sends a dimming signal and a color temperature signal to the lighting device, the function detection module detects the input current of the lighting device and the light color temperature of the lighting device to generate a dimming function test result and a color temperature function test result, and the control device generates a function analysis result according to the dimming function test result and the color temperature function test result and displays a control page corresponding to the function analysis result according to the function analysis result.In this way, it can be ensured that the control side control functions provided by the control device fully correspond to the functions of the lighting device, so as to effectively prevent the user from mistakenly thinking that the lighting device or the dimming control is defective, thus effectively improving the user experience and better meeting the actual application needs.
[0037] According to one embodiment of the present invention, the lighting device control system comprises an active function detection device and a control device, wherein the active function detection device comprises an active detection signal generation module and a function detection module. In this way, an active detection mechanism can be provided, whereby it can be ensured that the control-side control functions provided by the control device fully correspond to the functions of the lighting device. Therefore, the lighting device control system can be used for various lighting devices. The application possibilities of the lighting device control system are more diverse.
[0038] Furthermore, the active function detection device of the lighting device control system according to an embodiment of the present invention has a function detection position, a first position corresponding to the first control interface, a second position corresponding to the second control interface, a third position corresponding to the third control interface, and a fourth position corresponding to the fourth control interface. Thus, the user can actively start the active detection mechanism or directly specify the control interface to be provided by the control side of the control device by selecting the above positions. Therefore, the invention is flexible in use and can meet application requirements.
[0039] Furthermore, the control device of the lighting device control system according to an embodiment of the present invention may be an electronic device such as a smartphone, a smartwatch, a tablet computer, a laptop, or a personal computer. The control device can execute an application program to generate a functional analysis result based on a dimming function test result and a color temperature function test result, and display a control page corresponding to the functional analysis result. In this way, the user can perform the above-mentioned functions via any mobile device, enabling more convenient operation and thus easily achieving widespread popularity of the lighting device control system.
[0040] Furthermore, the control device of the lighting device control system according to an embodiment of the present invention can execute application programs to perform a greater number of different functions, allowing the control device to perform various intelligent operations and thus improving the functionality of the lighting device. Therefore, the lighting device control system can better meet future development trends.
[0041] Furthermore, the lighting device control system according to an embodiment of the present invention is designed simply, so that the desired advantageous effects can be achieved without a significant increase in cost, which is of great commercial value. From the above description, it is clear that the lighting device control system with a function detection mechanism according to an embodiment of the present invention can indeed achieve excellent technical effects.
[0042] It will be Fig.7, which shows a block diagram of another embodiment of the lighting device control system with a function detection mechanism according to the invention. As shown in the figure, the lighting device control system 1 includes an active function detection device 11 and a control device 12. Communication is established between the active function detection device 11 and the control device 12, wherein the active function detection device 11 is connected to the external power supply PS and the lighting device LD, so that the external power supply PS is connected to the lighting device LD through the active function detection device 11. The active function detection device 11 includes an active detection signal generation module 111, a function detection module 112, and a wireless communication chip 113.
[0043] The above components are similar to those of the above embodiment, so they will not be described again here. The difference from the above embodiment is that, in the present embodiment, the active function detection device 11 of the lighting device control system 1 further comprises a control interface selector switch 114. The control interface selector switch 114 has a function detection position, a first position, a second position, a third position, and a fourth position. The first position corresponds to the first control interface UF1, the second position to the second control interface, the third position to the third control interface, and the fourth position to the fourth control interface.
[0044] The user can select either the function detection position, the first position, the second position, the third position, or the fourth position by operating the control interface selector switch 114 to perform the corresponding function.
[0045] If the user knows that the lighting device LD does not have a dimming function and a color temperature function, they can operate the control interface selector switch 114 to select the first position. Thus, the dimming function test result Rs1 and the color temperature function test result Rs2 received by the control device 12 are the dimming function detection failure signal and the color temperature function detection failure signal, respectively, so the control page displayed by the control device 12 is the first control interface UF1.
[0046] Similarly, the user can also operate the control interface selector switch 114 to select the second position, the third position, or the fourth position, whereby the control device 12 displays the second control interface UF2, the third control interface UF3, or the fourth control interface UF4.
[0047] If the user does not know whether the lighting device LD has a dimming function and a color temperature function, he can operate the control interface to select the function detection position and thus actively start the active detection mechanism described above.
[0048] Furthermore, the control device 12 of the lighting device control system 1 can execute application programs to perform a greater number of different functions, allowing the control device 12 to perform various intelligent operations and thus improving the functionality of the lighting device LD. Therefore, the lighting device control system 1 can better meet future development trends.
[0049] The present embodiment is for illustrative purposes only and is not intended to limit the scope of the present invention. Equivalent modifications or changes made according to the lighting device control system with function detection mechanism of the present embodiment are also within the scope of the present invention.
[0050] Although the steps of the method according to the invention are shown and described in a specific order, the order of the steps can be changed and certain steps can be performed in reverse order, or some steps can be performed concurrently with others. In another embodiment, the various steps can be performed intermittently and / or alternately.
[0051] In summary, the lighting device control system according to an embodiment of the present invention comprises an active function detection device and a controller, wherein the active function detection device comprises an active detection signal generation module and a function detection module, the active detection signal generation module sends a dimming signal and a color temperature signal to the lighting device, and the function detection module detects the input current of the lighting device and the light color temperature of the lighting device to generate a dimming function test result and a color temperature function test result. Through the active detection mechanism, the control device can generate a function analysis result according to the dimming function test result and the color temperature function test result, and display a control page corresponding to the function analysis result according to the function analysis result.In this way, it can be ensured that the control side control functions provided by the control device fully correspond to the functions of the lighting device, so as to effectively prevent the user from mistakenly thinking that the lighting device or the dimming control is defective, thus effectively improving the user experience and better meeting the actual application needs.
[0052] According to one embodiment of the present invention, the lighting device control system comprises an active function detection device and a control device, wherein the active function detection device comprises an active detection signal generation module and a function detection module. In this way, an active detection mechanism can be provided, whereby it can be ensured that the control-side control functions provided by the control device fully correspond to the functions of the lighting device. Therefore, the lighting device control system can be used for various lighting devices. The application possibilities of the lighting device control system are more diverse.
[0053] Furthermore, the active function detection device of the lighting device control system according to an embodiment of the present invention has a function detection position, a first position corresponding to the first control interface, a second position corresponding to the second control interface, a third position corresponding to the third control interface, and a fourth position corresponding to the fourth control interface. Thus, the user can actively start the active detection mechanism or directly specify the control interface to be provided by the control side of the control device by selecting the above positions. Therefore, the invention is flexible in use and can meet application requirements.
[0054] Furthermore, the control device of the lighting device control system according to an embodiment of the present invention may be an electronic device such as a smartphone, a smartwatch, a tablet computer, a laptop, or a personal computer. The control device can execute an application program to generate a functional analysis result based on a dimming function test result and a color temperature function test result, and display a control page corresponding to the functional analysis result. In this way, the user can perform the above-mentioned functions via any mobile device, enabling more convenient operation and thus easily achieving widespread popularity of the lighting device control system.
[0055] Furthermore, the control device of the lighting device control system according to an embodiment of the present invention can execute application programs to perform a greater number of different functions, allowing the control device to perform various intelligent operations and thus improving the functionality of the lighting device. Therefore, the lighting device control system can better meet future development trends.
[0056] Furthermore, the lighting device control system according to an embodiment of the present invention is designed simply, so that the desired advantageous effects can be achieved without a great increase in costs, which is of great commercial value.
[0057] It should be noted that although the above embodiments have been described herein, the invention is not limited to them. Changes and modifications made to the embodiments described herein based on the innovative concepts of the present invention, or equivalent structures or equivalent processes used using the description and drawings of the present invention, in which the technical solutions are directly or indirectly applied to other related technical fields, all fall within the scope of the present invention. List of reference symbols 1 Lighting device control system 11 active function detection device 111 active detection signal generation module 112 Function detection module 1121 Current detector 1122 Color Temperature Detector 113 wireless communication chip 114 Control interface selector switch 12 Control device LD lighting device PS external power supply Cs detection command The dimming signal Ts color temperature signal Rs1 dimming function test result Rs2 color temperature function test result UF1 first control interface UF2 second control interface UF3 third control interface UF4 fourth control interface S1 switch interface S2 color temperature interface S3 dimming interface
Claims
[1] Lighting device control system (1) with function detection mechanism, characterized by that this includes: an active function detection device (11) connected to an external power supply (PS) and a lighting device (LD) and comprising an active detection signal generation module (111) and a function detection module (112), wherein the active detection signal generation module (111) sends a dimming signal (Ds) and a color temperature signal (Ts) to the lighting device (LD), the function detection module (112) detects the input current of the lighting device (LD) and the light color temperature of the lighting device (LD) to generate a dimming function test result (Rs1) and a color temperature function test result (Rs2); and a control device (12) which generates a function analysis result according to the dimming function test result (Rs1) and the color temperature function test result (Rs2) and displays a control page corresponding to the function analysis result according to the function analysis result. [2] Lighting device control system (1) with function detection mechanism according to claim 1, characterized by that the control device (12) sends a detection command (Cs) to the active detection signal generation module (111) to control the active detection signal generation module (111) to send a dimming signal (Ds) and a color temperature signal (Ts) to the lighting device (LD). [3] Lighting device control system (1) with function detection mechanism according to claim 1, characterized byin that the function detection module (112) comprises a current detector (1121), wherein, when the current detector (1121) detects a change in the input current of the lighting device (LD), it generates a detection success signal of the dimming function and, when it does not detect a change in the input current of the lighting device (LD), it generates a detection failure signal of the dimming function. [4] Lighting device control system (1) with function detection mechanism according to claim 1, characterized by in that the function detection module (112) comprises a color temperature detector (1122), wherein, when the color temperature detector (1122) detects a change in the light color temperature of the lighting device (LD), it generates a detection success signal of the color temperature function and, when it does not detect a change in the light color temperature of the lighting device (LD), it generates a detection failure signal of the color temperature function. [5] Lighting device control system (1) with function detection mechanism according to claim 4, characterized by that the color temperature detector (1122) is a photoresistor sensor. [6] Lighting device control system (1) with function detection mechanism according to claim 1, characterized by that the control side is the first control interface (UF1), the second control interface (UF2), the third control interface (UF3) or the fourth control interface (UF4), wherein the first control interface (UF1) has a switch interface (S1), the second control interface (UF2) has a switch interface (S1) and a color temperature interface (S2), the third control interface (UF3) has a switch interface (S1) and a dimming interface (S3) and the fourth control interface (UF4) has a switch interface (S1), a color temperature interface (S2) and a dimming interface (S3). [7] Lighting device control system (1) with function detection mechanism according to claim 6, characterized by in that the lighting device control system (1) further comprises a control interface selector switch (114), wherein the control interface selector switch (114) has a first position corresponding to the first control interface (UF1), a second position corresponding to the second control interface (UF2), a third position corresponding to the third control interface (UF3), and a fourth position corresponding to the fourth control interface (UF4). [8] Lighting device control system (1) with function detection mechanism according to claim 7, characterized byin that the control interface selector switch (114) further has a function detection position, wherein the function detection position serves to control the active detection signal generation module (111) for sending a dimming signal (Ds) and a color temperature signal (Ts) to the lighting device (LD). [9] Lighting device control system (1) with function detection mechanism according to claim 1, characterized by in that the active function detection device (11) further comprises a wireless communication chip (113), wherein the wireless communication chip (113) receives a dimming function test result (Rs1) and a color temperature function test result (Rs2) and sends them to the control device (12) by means of a wireless communication protocol. [10] Lighting device control system (1) with function detection mechanism according to claim 1, characterized bythat the wireless communication protocol is a WIFI communication protocol, a Bluetooth communication protocol or a Zigbee communication protocol.
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