Lighting fixture control system
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- DONGGUAN JIASHENG LIGHTING TECHNOLOGY CO LTD
- Filing Date
- 2026-05-27
- Publication Date
- 2026-08-03
AI Technical Summary
【0014】 本考案の技術案は、複数の照明器具制御モジュールにより照明器具制御システムを構成する。複数の照明器具制御モジュールは、複数の照明器具制御領域に区分され、各照明器具制御領域は、少なくとも1つの照明器具制御モジュールを含む。照明器具制御モジュールは、照明器具に接続され、人体信号を検出すると、照明器具制御信号を出力して動作させるように照明器具を駆動し、且つ領域トリガー信号を同一の照明器具制御領域における他の照明器具制御モジュールに出力する。照明器具制御モジュールは、対応する領域トリガー信号を受信すると、照明器具制御信号を出力して動作させるように照明器具を駆動する。各照明器具制御領域の照明器具制御モジュールから出力された領域トリガー信号は、異なる。これによって、本方案の照明器具制御システムは、1つの領域内の照明器具が人体から離れている場合でも、1つの照明器具制御モジュールが人体を検知すると、1つの領域内の複数の照明器具を同時に起動させるように制御することができ、さらに室内の複数の領域の照明器具に対して、領域ごとの独立制御を実現でき、異なる照明器具制御領域の間の照明器具制御モジュールが互いに干渉しないことを保証する。
Smart Images

Figure 0003256883000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of lighting fixture control, and particularly to a lighting fixture control system.
Background Art
[0002] Currently, there are many lighting fixtures indoors. In order to facilitate the control of lighting fixtures, in some cases, the lighting fixtures may be configured to be activated by acoustic control or human body detection. However, the activation range by acoustic control or human body detection is narrow, and the lighting fixtures cannot be activated unless the user approaches, and the lighting fixtures cannot be activated from a distant position, so the lighting effect is not good.
Summary of the Invention
Problems to be Solved by the Invention
[0003] In view of the deficiencies of the above prior art, the object of the present invention is to provide a lighting fixture control system such that when a lighting fixture for detecting a human body indoors is far from the human body, when one lighting fixture control module detects the human body, a plurality of lighting fixtures can be simultaneously activated.
Means for Solving the Problems
[0004] The technical solution of the present invention is as follows.
[0005] A lighting fixture control system, including a plurality of lighting fixture control modules, which are divided into a plurality of lighting fixture control regions each including at least one lighting fixture control module, the lighting fixture control module is connected to a lighting fixture, and when detecting a human body signal, outputs a lighting fixture control signal to drive the lighting fixture to operate, and outputs a region trigger signal to other lighting fixture control modules in the same lighting fixture control region, and when receiving a corresponding region trigger signal, outputs a lighting fixture control signal to drive the lighting fixture to operate, The area trigger signals output from the lighting fixture control module in each of the aforementioned lighting fixture control areas are different.
[0006] Selectively, the lighting fixture control module is A human body detection module that outputs a human body detection signal when it detects a human body, A main control module connected to the human body detection module and connected to a lighting fixture, which, upon receiving a human body detection signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs a region trigger signal. A wireless communication module connected to the main control module and communicating with a wireless communication module in another lighting fixture control module, the wireless communication module includes a wireless communication module that outputs the region trigger signal to the wireless communication module in the other lighting fixture control module, and further receives the region trigger signal output from the wireless communication module in the other lighting fixture control module and outputs the received region trigger signal to the main control module, The aforementioned main control module is further used to drive the lighting fixtures by outputting a lighting fixture control signal when it receives a region trigger signal output from the wireless communication module.
[0007] Selectively, the human body detection module is one of the following: an infrared detection module, a microwave detection module, or an imaging detection module.
[0008] Selectively, the main control module is, Encoder and Each of the following is connected to the human body detection module, the wireless communication module, and the encoder, respectively, and includes a processor connected to a lighting fixture, which, upon receiving a human body detection signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and generates a region trigger signal corresponding to the lighting fixture control area where the lighting fixture control module is located using the encoder, and outputs the region trigger signal to the wireless communication module.
[0009] Selectively, the wireless communication module is An antenna for receiving a region trigger signal output from a wireless communication module in another lighting fixture control module, A communication chip connected to the antenna and further connected to the main control module, which converts the region trigger signal received from the antenna and outputs it to the main control module, and further outputs the region trigger signal output from the main control module, A transmitting circuit connected to the communication chip, including a transmitting circuit for transmitting a region trigger signal output from the communication chip to an antenna in another lighting fixture control module.
[0010] Selectively, the lighting fixture control module is The enclosure further includes a storage compartment formed inside, and the human body detection module, the main control module, and the wireless communication module are provided inside.
[0011] Selectively, the lighting fixture control module is The system further includes an interaction control module connected to the main control module, which, when triggered by a user, outputs an interaction control signal to the main control module.
[0012] Selectively, the interaction control module is A control screen connected to the main control module, which, when triggered by the user, outputs a touch signal to the main control module, It includes an audio module connected to the main control module for collecting user voice and outputting an audio signal to the main control module.
[0013] Selectively, the lighting fixture control module is A power supply module provided within the housing, the output terminal of which is connected to the power supply terminal of the human body detection module, the power supply terminal of the main control module, and the power supply terminal of the wireless communication module, further including a power supply module for providing operating voltage to the human body detection module, the main control module, and the wireless communication module. [Effects of the Invention]
[0014] The technical solution of this invention constitutes a lighting fixture control system using multiple lighting fixture control modules. The multiple lighting fixture control modules are divided into multiple lighting fixture control areas, and each lighting fixture control area includes at least one lighting fixture control module. The lighting fixture control module is connected to a lighting fixture and, upon detecting a human body signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs an area trigger signal to other lighting fixture control modules in the same lighting fixture control area. Upon receiving a corresponding area trigger signal, the lighting fixture control module drives the lighting fixture to operate by outputting a lighting fixture control signal. The area trigger signals output from the lighting fixture control modules in each lighting fixture control area are different. As a result, the lighting fixture control system of this invention can control multiple lighting fixtures in one area to activate simultaneously when one lighting fixture control module detects a human body, even when the lighting fixtures in that area are away from a human body. Furthermore, it can achieve independent control of lighting fixtures in multiple areas of a room, and ensures that lighting fixture control modules between different lighting fixture control areas do not interfere with each other. [Brief explanation of the drawing]
[0015] To more clearly illustrate embodiments of the present invention or technical concepts in the prior art, the drawings that may be used in the description of embodiments or the prior art are briefly described below. Clearly, the drawings in the following description are only a few embodiments of the present invention, and those skilled in the art can obtain other drawings based on the structures shown in these drawings without expending any creative effort. [Figure 1]It is a schematic diagram of a functional module of an embodiment of the lighting fixture control system of the present invention. [Figure 2] It is a schematic diagram of a functional module of an embodiment of the lighting fixture control module in the lighting fixture control system of the present invention. [Figure 3] It is a schematic diagram of a functional module of an embodiment of the main control module in the lighting fixture control system of the present invention. [Figure 4] It is a schematic diagram of a functional module of an embodiment of the wireless communication module in the lighting fixture control system of the present invention. [Figure 5] It is a schematic diagram of a functional module of another embodiment of the lighting fixture control module in the lighting fixture control system of the present invention. [Figure 6] It is a schematic diagram of a circuit structure of an embodiment of the main control module in the lighting fixture control system of the present invention. <� [Figure 7] It is a schematic diagram of a circuit structure of an embodiment of the wireless communication module in the lighting fixture control system of the present invention.
Modes for Carrying Out the Invention
[0016] In order to make the object, technical solution and effect of the present invention clearer and more distinct, the present invention will be described in more detail below with reference to the drawings and by way of examples. It should be understood that the specific embodiments described in this specification are only for the purpose of explaining the present invention and not for limiting the present invention. <�
[0017] In the embodiments and the scope of the patent application, unless otherwise specifically limited for the articles, "a", "one", "the" and "this" may include plural forms. In the embodiments of the present invention, if there are descriptions regarding "first", "second", etc., these descriptions of "first", "second", etc. are only used for the purpose of description, and it is not understood that they indicate or imply their relative importance or implicitly indicate the number of the indicated technical features. Therefore, the features defined by "first", "second" may explicitly or implicitly include at least one feature.
[0018] It should be further understood that the term “including” as used in the specification of this invention means the presence of the aforementioned features, integers, steps, actions, elements and / or components, but does not exclude the presence or addition of one or more other features, integers, steps, actions, elements, components and / or groups thereof. When an element is said to be “connected” or “joined” to another element, it should be understood that it may be directly connected or joined to the other element, or intermediate elements may be present. Furthermore, “connected” or “joined” as used herein may include wireless connection or wireless coupling. The term “and / or” as used herein includes all or any units and all combinations of one or more related list items.
[0019] A person skilled in the art will understand that all terms used herein (including technical and scientific terms) have the same meaning as those commonly understood by a person skilled in the art unless otherwise defined herein. Furthermore, terms as defined in general dictionaries should be understood to have the same meaning as in the context of the prior art, and should not be interpreted in an idealized or overly formal sense unless specifically defined herein.
[0020] Furthermore, while the technical solutions between each embodiment can be combined with each other, this must be based on the premise that they can be realized by a person skilled in the art. If a combination of technical solutions results in a contradiction or is not feasible, then this combination of technical solutions must be considered nonexistent and outside the scope of protection required by this invention.
[0021] Currently, there are many lighting fixtures in a room, and in order to simplify their control, they are sometimes configured to be activated by sound control or human detection. However, the activation range of sound control and human detection is narrow, and the fixtures cannot be activated unless a user approaches them, making it impossible to activate them from a distance, resulting in poor lighting performance.
[0022] To solve the above problems, this invention proposes a lighting fixture control system.
[0023] Referring to Figure 1, in one embodiment, the lighting fixture control system is, A plurality of lighting fixture control modules 10, each comprising a plurality of lighting fixture control modules 10 divided into a plurality of lighting fixture control areas, each containing at least one lighting fixture control module 10, The lighting fixture control module 10 is connected to a lighting fixture, and when it detects a human body signal, it drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs a region trigger signal to other lighting fixture control modules 10 in the same lighting fixture control region, and when it receives a corresponding region trigger signal, it drives the lighting fixture to operate by outputting a lighting fixture control signal. The area trigger signals output from the lighting fixture control module 10 for each of the lighting fixture control areas are different.
[0024] In this embodiment, multiple lighting control modules 10 are installed in a room and can be connected to and controlled by multiple lighting fixtures in the room. To understand this, the lighting control area can correspond to multiple different areas in the room, such as a bedroom area, a living room area, a kitchen area, etc. At least one lighting control module 10 is provided in each lighting control area to control lighting fixtures. One lighting control module 10 may control multiple lighting fixtures, or one lighting control module 10 may control one lighting fixture. The lighting control modules 10 can be activated using a human body detection method. When a user enters a lighting fixture control area and is detected by the nearest lighting fixture control module 10, the lighting fixture control module 10 closest to the user can drive the connected lighting fixture to be operated and output an area trigger signal to other lighting fixture control modules 10 in the same lighting fixture control area. These other lighting fixture control modules 10 then drive the connected lighting fixtures to be operated. As a result, when one lighting fixture control module 10 detects a person, other lighting fixtures in the same lighting fixture control area can be turned on together, eliminating the need for the user to approach other lighting fixtures and providing a good lighting experience. Furthermore, in this lighting fixture control system, the area trigger signals output from the lighting fixture control modules 10 in each lighting fixture control area are different. This prevents area trigger signals from different lighting fixture control areas from influencing each other and causing lighting fixtures in other lighting fixture control areas to be operated, thus avoiding an increase in system power consumption.
[0025] The technical solution of this invention constitutes a lighting fixture control system using multiple lighting fixture control modules. The multiple lighting fixture control modules are divided into multiple lighting fixture control areas, and each lighting fixture control area includes at least one lighting fixture control module. The lighting fixture control module is connected to a lighting fixture and, upon detecting a human body signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs an area trigger signal to other lighting fixture control modules in the same lighting fixture control area. Upon receiving a corresponding area trigger signal, the lighting fixture control module drives the lighting fixture to operate by outputting a lighting fixture control signal. The area trigger signals output from the lighting fixture control modules in each lighting fixture control area are different. As a result, the lighting fixture control system of this solution can control multiple lighting fixtures in one area to activate simultaneously when one lighting fixture control module detects a human body, even when the lighting fixtures in that area are away from a human body. Furthermore, it can achieve independent control of lighting fixtures in multiple areas of a room for each lighting fixture control area, and ensures that the lighting fixture control modules between each lighting fixture control area do not interfere with each other.
[0026] Furthermore, the lighting fixture control module may also trigger the lighting fixture to turn on via voice control, and can be specifically configured according to the actual situation and user needs.
[0027] Referring to Figure 2, in one embodiment, the lighting fixture control module 10 is A human body detection module 11 outputs a human body detection signal when it detects a human body, A main control module 12 is connected to the human body detection module 11 and the lighting fixture, and when it receives a human body detection signal, it drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs a region trigger signal. Includes a wireless communication module 13 connected to the main control module 12, which is connected to a wireless communication module 13 in another lighting fixture control module, which outputs the area trigger signal to the wireless communication module 13 in the other lighting fixture control module, which receives the area trigger signal output from the wireless communication module 13 in the other lighting fixture control module, and which outputs the received area trigger signal to the main control module 12. The main control module 12 is further used to drive the lighting fixtures by outputting lighting fixture control signals when it receives a region trigger signal output from the wireless communication module 13.
[0028] In this embodiment, the lighting fixture control module consists of a human body detection module 11, a main control module 12, and a wireless communication module 13. The human body detection module 11 can detect a human body within a set range, and when it detects a human body, it outputs a corresponding electrical signal, i.e., a human body detection signal, to the main control module 12. When the main control module 12 receives the human body detection signal, it can output a corresponding lighting fixture control signal to drive the connected lighting fixture to turn it on. At the same time, the main control module 12 can output a region trigger signal to the wireless communication module 13, which in turn outputs the region trigger signal to the wireless communication module 13 of other lighting fixture control modules in the same lighting fixture control area. This allows the wireless communication module 13 of the other lighting fixture control module to output the region trigger signal to the connected main control module 12, and when the main control module 12 of the other lighting fixture control module receives the region trigger signal, it can drive the lighting fixture to turn it on. In this embodiment, by installing a lighting fixture control module, when a human body is detected, the corresponding lighting fixture is driven to turn on, and a region trigger signal is output to other lighting fixture control modules, thereby controlling all lighting fixtures in the same lighting fixture control region to turn on.
[0029] In another embodiment, a voice detection module may be used instead of the human body detection module 11, allowing the user to control the lighting fixtures by voice. However, if the voice is too loud, lighting fixtures in other lighting fixture control areas may be turned on. Therefore, the human body detection module 11 or the voice detection module can be configured specifically according to the actual situation and the user's needs.
[0030] Furthermore, in one embodiment, the human body detection module 11 is one of an infrared detection module, a microwave detection module, or an imaging detection module.
[0031] In this embodiment, the human body detection module 11 may be any of the following: an infrared detection module, a microwave detection module, an imaging detection module, or a Doppler detection module. The infrared detection module detects changes in infrared radiation from the human body, outputs a level signal to determine the position of the human body, and can be divided into two types: a passive infrared detection module and an active infrared detection module. The microwave detection module detects changes in the intensity of the microwave signal, outputs a level signal to determine the position of the human body. The imaging detection module acquires human body image information using a camera to determine the position of the human body. The above three types of human body detection modules 11 are merely examples, and in actual applications, the appropriate human body detection module 11 can be selected according to the user's needs.
[0032] Referring to Figure 3, in one embodiment, the main control module 12 is Encoder 122 and, Each of the following is connected to the human body detection module 11, the wireless communication module 13, and the encoder 122, respectively, and includes a processor 121 connected to the lighting fixture, which, upon receiving a human body detection signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and generates a region trigger signal corresponding to the region where the lighting fixture control module 10 is located using the encoder 122 and outputs it to the wireless communication module 13.
[0033] In this embodiment, the encoder 122 may have multiple ranges corresponding to different lighting fixture control areas. The processor 121 may be a digital signal processor (DSP), a programmable logic device (PLD), a field programmable gate array (FPGA), a microprocessor, a single-chip microprocessor (MCU), or other electronic element. When the processor 121 receives a human body detection signal, it drives the lighting fixture to operate by outputting a lighting fixture control signal, and generates a region trigger signal corresponding to the region where the lighting fixture control module is located using the encoder 122 and outputs it to the wireless communication module 13, and outputs the region trigger signal to other lighting fixture control modules via the wireless communication module 13. The wireless communication module 13 in the other lighting fixture control module can output the region trigger signal to the processor 121 in the main control module 12. When the processor 121 receives the region trigger signal, it may drive the lighting fixture to turn on. The specific circuit structure of the processor 121 and encoder 122 in the main control module 12 can be configured with reference to Figure 6.
[0034] It should be explained that the module configurations of the multiple lighting fixture control modules in this embodiment are the same, differing only in the region trigger signals generated and output by the encoder 122 in different lighting fixture control regions. As a result, even if another lighting fixture control region receives a region trigger signal, the processor 121 does not drive the lighting fixture to turn on. The processor 121 in each lighting fixture control region is configured to drive the lighting fixture to turn on only based on the region trigger signal output from that lighting fixture control region.
[0035] Referring to Figure 4, in one embodiment, the wireless communication module 13 is An antenna 131 for receiving a region trigger signal output from the wireless communication module 13 in another lighting fixture control module, A communication chip 132 connected to the antenna 131 and further connected to the main control module 12, which converts the region trigger signal received from the antenna 131 and outputs it to the main control module 12, and further outputs the region trigger signal output from the main control module 12, A transmitting circuit 133 connected to the communication chip 132, which includes a transmitting circuit 133 for transmitting a region trigger signal output from the communication chip 132 to an antenna 131 in another lighting fixture control module.
[0036] In this embodiment, the wireless communication module 13 consists of an antenna 131, a communication chip 132, and a transmitting circuit 133. The communication chip 132 employs wireless communication technology, which is a communication method that exchanges information by utilizing the characteristic that electromagnetic wave signals can propagate in free space. The antenna 131 is used to receive a region trigger signal output from the wireless communication module 13 of another lighting fixture control module and then output it to the communication chip 132. The communication chip 132 is used to convert the region trigger signal into a digital signal and then output it to the main control module 12. The communication chip 132 can also convert the region trigger signal output from the main control module 12 into a communication signal and then transmit it via the transmitting circuit 133. The specific circuit structure of the wireless communication module 13 can be configured with reference to Figure 7.
[0037] Referring to Figure 5, in one embodiment, the lighting fixture control module is The device further includes a housing 14 in which a storage compartment is formed, and the human body detection module 11, the main control module 12, and the wireless communication module 13 are installed inside.
[0038] In this embodiment, the housing 14 can be used to fix the relative positions of the human body detection module 11, the main control module 12, and the wireless communication module 13, ensuring safety and stability inside the storage chamber formed by the lighting fixture control module housing 14. During operation of the lighting fixture control module, the relative positions of the human body detection module 11, the main control module 12, and the wireless communication module 13 do not change, guaranteeing the stability and safety of the operation of the lighting fixture control module. The specific material of the housing 14 can be selected according to the actual situation and user needs.
[0039] Referring to Figure 5, in one embodiment, the lighting fixture control module is The system further includes an interaction control module 15 connected to the main control module 12, which, when triggered by the user, outputs an interaction control signal to the main control module 12.
[0040] In this embodiment, the interaction control module 15 can function as the core component for interaction between the user and the lighting fixture control module, and is fixedly mounted to a wall or other fixed object, and an electrical connection is made via wires and lighting fixtures. The interaction control module 15 can output user commands to the main control module 12 in the form of interaction signals, and upon receiving a display control signal output from the main control module 12, it can display a corresponding interaction image, the specific image being displayed according to the actual situation. In this embodiment, by providing the interaction module, the user can select and control one or more lighting fixtures within a single lighting fixture control area to be turned on.
[0041] Furthermore, an interaction control module 15 can be provided independently as needed. Wireless control is performed by wirelessly connecting the interaction control module 15, the lighting fixture control module, and the housing 14 which includes the human body detection module 11, the main control module 12, and the wireless communication module 13. Alternatively, the lighting fixture control module can be wirelessly controlled using a mobile phone or Bluetooth.
[0042] Furthermore, in one embodiment, the interaction control module 15 is A control screen connected to the main control module 12, which, when triggered by the user, outputs a touch signal to the main control module 12, The system includes an audio module connected to the main control module 12 for collecting user voice and outputting an audio signal to the main control module 12.
[0043] In this embodiment, the interaction control module 15 may specifically include a control screen and an audio module. The control screen may be a touchscreen, and the user can output an electrical signal, i.e., a touch signal, to the main control module 12 by triggering a virtual button on the touchscreen. The control screen may be provided with entity buttons, each button controlling one lighting fixture. The control screen may also have a display function, and the display specifically displays a corresponding interaction image based on a display control signal output from the main control module 12, for example, showing which lighting fixture is lit. The audio module can collect user voice and output an audio signal to the main control module 12, thereby controlling the lighting fixtures to turn on based on the audio signal.
[0044] Referring to Figure 5, in one embodiment, the lighting fixture control module is A power supply module 16 provided within the housing 14, the output terminals of which are connected to the power supply terminal of the human body detection module 11, the power supply terminal of the main control module 12, and the power supply terminal of the wireless communication module 13, further comprising a power supply module 16 for providing operating voltage to the human body detection module 11, the main control module 12, and the wireless communication module 13.
[0045] In this embodiment, the power supply module 16 may be a power supply chip or a DC-DC circuit, or it may be equipped with a battery, and it can provide operating voltage to the human body detection module 11, the main control module 12, and the wireless communication module 13, and can also provide appropriate operating voltage to other modules in the lighting fixture control module, thereby ensuring the normal operation of the lighting fixture control module.
[0046] The applications of this invention are not limited to the examples described above, and those skilled in the art should understand that improvements or modifications can be made in accordance with the above description, and that all such improvements and modifications should fall within the scope of the utility model registration claims attached to this invention. [Explanation of Symbols]
[0047] 10. Lighting fixture control module 11. Human body detection module 12. Main control module 121, Processor 122, Encoder 13. Wireless communication module 131, Antenna 132. Communication chip 133. Transmitter Circuit 14. Cabinet 15. Interaction control module 16. Power module
Claims
1. A lighting fixture control system, A plurality of lighting fixture control modules, comprising a plurality of lighting fixture control modules divided into a plurality of lighting fixture control areas, each containing at least one lighting fixture control module, The aforementioned lighting fixture control module is connected to a lighting fixture, and upon detecting a human body signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs a region trigger signal to other lighting fixture control modules in the same lighting fixture control region, and upon receiving a corresponding region trigger signal, drives the lighting fixture to operate by outputting a lighting fixture control signal. A lighting fixture control system characterized in that the area trigger signals output from the lighting fixture control module in each of the lighting fixture control areas are different.
2. The aforementioned lighting fixture control module is A human body detection module that outputs a human body detection signal when it detects a human body, A main control module connected to the human body detection module and connected to a lighting fixture, which, upon receiving a human body detection signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and also outputs a region trigger signal. A wireless communication module connected to the main control module and communicating with a wireless communication module in another lighting fixture control module, the wireless communication module includes a wireless communication module that outputs the region trigger signal to the wireless communication module in the other lighting fixture control module, and further receives the region trigger signal output from the wireless communication module in the other lighting fixture control module and outputs the received region trigger signal to the main control module, The lighting fixture control system according to claim 1, characterized in that the main control module is used to drive the lighting fixture by outputting a lighting fixture control signal when it receives a region trigger signal output from the wireless communication module.
3. The lighting fixture control system according to claim 2, characterized in that the human body detection module is one of an infrared detection module, a microwave detection module, or a photographic detection module.
4. The main control module is Encoder and The lighting fixture control system according to claim 2, characterized in that it includes a processor connected to the human body detection module, the wireless communication module, and the encoder, respectively, and connected to a lighting fixture, the processor which, upon receiving a human body detection signal, drives the lighting fixture to operate by outputting a lighting fixture control signal, and generates a region trigger signal corresponding to the lighting fixture control region where the lighting fixture control module is located using the encoder, and outputs the region trigger signal to the wireless communication module.
5. The aforementioned wireless communication module is An antenna for receiving a region trigger signal output from a wireless communication module in another lighting fixture control module, A communication chip connected to the antenna and further connected to the main control module, which converts the region trigger signal received from the antenna and outputs it to the main control module, and further outputs the region trigger signal output from the main control module, The lighting fixture control system according to claim 2, characterized in that it includes a transmitting circuit connected to the communication chip, for transmitting a region trigger signal output from the communication chip to an antenna in another lighting fixture control module.
6. The aforementioned lighting fixture control module is The lighting fixture control system according to any one of claims 2 to 5, further comprising a housing having a storage compartment formed inside, and the human body detection module, the main control module, and the wireless communication module provided inside.
7. The aforementioned lighting fixture control module is The lighting fixture control system according to claim 6, further comprising an interaction control module connected to the main control module and for outputting an interaction control signal to the main control module when triggered by a user.
8. The interaction control module is A control screen connected to the main control module, which, when triggered by the user, outputs a touch signal to the main control module, The lighting fixture control system according to claim 7, further comprising a voice module connected to the main control module for collecting user voice and outputting a voice signal to the main control module.
9. The aforementioned lighting fixture control module is The lighting fixture control system according to claim 6, further comprising a power supply module provided within the housing, the output terminal of which is connected to the power supply terminal of the human body detection module, the power supply terminal of the main control module, and the power supply terminal of the wireless communication module, and further comprising a power supply module for providing operating voltage to the human body detection module, the main control module, and the wireless communication module.