CN118158873A - Intelligent light control system - Google Patents
Intelligent light control system Download PDFInfo
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- CN118158873A CN118158873A CN202410436715.5A CN202410436715A CN118158873A CN 118158873 A CN118158873 A CN 118158873A CN 202410436715 A CN202410436715 A CN 202410436715A CN 118158873 A CN118158873 A CN 118158873A
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- 230000001960 triggered effect Effects 0.000 claims description 13
- 238000012544 monitoring process Methods 0.000 claims description 5
- 230000006870 function Effects 0.000 description 6
- 241001465382 Physalis alkekengi Species 0.000 description 4
- 238000010586 diagram Methods 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 238000009434 installation Methods 0.000 description 3
- 230000006855 networking Effects 0.000 description 3
- 230000008033 biological extinction Effects 0.000 description 2
- 230000004397 blinking Effects 0.000 description 1
- 238000011217 control strategy Methods 0.000 description 1
- 238000005034 decoration Methods 0.000 description 1
- 238000004134 energy conservation Methods 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 238000005286 illumination Methods 0.000 description 1
- 238000005192 partition Methods 0.000 description 1
- 230000029058 respiratory gaseous exchange Effects 0.000 description 1
Classifications
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B47/00—Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
- H05B47/10—Controlling the light source
- H05B47/175—Controlling the light source by remote control
- H05B47/19—Controlling the light source by remote control via wireless transmission
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B47/00—Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
- H05B47/10—Controlling the light source
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Circuit Arrangement For Electric Light Sources In General (AREA)
Abstract
The invention discloses an intelligent light control system, which relates to the technical field of electronics, and comprises an intelligent controller and a plurality of switches, wherein the intelligent controller is connected into a circuit between a power supply and a lamp, the intelligent controller is respectively in wireless pairing with the plurality of switches, the intelligent controller is used for receiving a control signal sent by the switch, controlling the power supply to supply power to the lamp indicated by the control signal according to the control signal, and feeding back the luminous state of the lamp to the switch. The intelligent light control system can improve the convenience and the intelligence of controlling the lamp.
Description
Technical Field
The embodiment of the invention relates to the technical field of electronics, in particular to an intelligent light control system.
Background
The intelligent control and management of the lamplight can realize the management of lamplight opening, dimming, one-to-one remote control, partition lamplight full-on and full-off and the like, and can realize the functions of intelligent illumination such as energy conservation, environmental protection, comfort and convenience by using various control modes such as remote control, timing, concentration and remote control.
In the prior art, the light control is controlled by depending on a wiring installation switch during decoration, particularly, the control is performed by pulling a power line between the two switches, high cost such as manpower, wires, pipes and the like is required to be consumed, and in the later stage, if lamps are newly added or the layout of the lamps in a room is adjusted, the existing switch cannot be continuously used due to the fixed position of the existing switch, so that inconvenience is brought to a user.
Disclosure of Invention
The embodiment of the invention provides an intelligent light control system, which can be used for connecting an intelligent controller between a power supply and a lamp, wherein the intelligent controller is in wireless pairing with switches, and each switch can be used for controlling the luminous state of the lamp by controlling the intelligent controller, so that the problems of high wiring cost between the switches, inconvenience caused by changing the control relationship between the switches and the lamp due to fixed position of the switches depending on wiring and the like are solved.
The embodiment of the invention provides an intelligent light control system, which comprises:
An intelligent controller and a plurality of switches;
The intelligent controller is connected into a circuit between the power supply and the lamp;
the intelligent controller is respectively matched with the switches in a wireless manner;
The intelligent controller is used for receiving the control signal sent by the switch, controlling the power supply to supply power to the lamp indicated by the control signal according to the control signal, and feeding back the luminous state of the lamp to the switch.
According to the embodiment of the invention, the intelligent light control system comprises the intelligent controller and the plurality of switches, the intelligent controller is connected into a circuit between the power supply and the lamps, the intelligent controller is in wireless pairing with the plurality of switches respectively, the intelligent controller receives control signals sent by the switches, controls the power supply to supply power to the lamps indicated by the control signals according to the control signals, feeds back the luminous state of the lamps to the switches, and controls the lamps through the intelligent controller without wiring between the switches and the lamps.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following description will briefly introduce the drawings that are needed in the embodiments or the description of the prior art, and it is obvious that the drawings in the following description are only some embodiments of the present invention.
Fig. 1 is a schematic structural diagram of an intelligent light control system according to an embodiment of the present invention;
Fig. 2 is a schematic diagram of switch connection in the intelligent light control system according to an embodiment of the present invention;
Fig. 3 is a schematic diagram of a control relationship and an installation position of a switch and a lamp in an embodiment of the invention.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments of the present invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to fall within the scope of the invention.
The embodiment of the invention provides an intelligent light control system, wherein an intelligent controller is arranged at a wiring position of a power supply, the intelligent controller can be in wireless connection with a plurality of switches in a room, a user can dynamically adjust the positions and the numbers of the switches matched with the intelligent controller according to the number of lamps, the layout of the lamps and the use requirement of the lamps, the switch wires are not required to be distributed, the cost is greatly reduced, the number and the positions of the switches of the control lamps can be adjusted at will on the basis of the initial installation positions and the number, and the intelligence and convenience for controlling the lamps are improved.
Referring to fig. 1, fig. 1 is a schematic structural diagram of an intelligent light control system according to the present invention, the intelligent light control system includes:
An intelligent controller 10 and a plurality of switches 20;
The switch 20 may comprise a first switch 21 and a second switch 22 as shown in fig. 1, and may further comprise further switches.
The intelligent controller 10 is connected into a circuit between the power supply 30 and the lamp 40;
the intelligent controller 10 completes wireless pairing with the plurality of switches 20 respectively, as in fig. 1, the intelligent controller 10 successfully pairs with the first switch 21 and the second switch 22;
the switch 20 has a setting panel that receives a setting instruction from a user, and can be paired with or disconnected from the intelligent controller 10.
The intelligent controller 10 is configured to receive a control signal sent by the switch 20, control the power supply 20 to supply power to the lamp 40 indicated by the control signal according to the control signal, and feed back a light emitting state of the lamp 40 to the switch 20.
The lamp 40 includes a plurality of lamps, such as a lamp including a lighting lamp provided at a bedroom, a living room, a restaurant, a bathroom, etc., and an effect lamp including a spot lamp provided at a living room, a restaurant lamp, etc. in a user's home.
The intelligent controller 10 may be specifically an intelligent chip with a signal and data processing function, and may control a power supply mode of the power supply 30 for the lamp 40 according to a control signal sent by the switch 20, so that the lamp 40 may implement functions of turning on, flashing or turning off according to the control signal, and send a current lighting state of the lamp corresponding to the control signal to the switch that sends the control signal, where the lighting state includes: the intelligent controller 10 can also monitor the power consumption information of the lamp in the states of lighting, continuous lighting, flashing lighting, non-lighting, extinction and the like.
Further, the intelligent controller 10 may be further connected with an intelligent terminal such as a computer or a mobile phone, and send the obtained control instruction of the switch 20, the lighting state of the lamp 40, and the information such as the power consumption information of the lamp 40 to the intelligent terminal for the user to control, view and analyze.
In the embodiment of the invention, the intelligent light control system comprises an intelligent controller and a plurality of switches, the intelligent controller is connected into a circuit between a power supply and the lamps, the intelligent controller is respectively in wireless pairing with the plurality of switches, the intelligent controller receives a control signal sent by the switches, controls the power supply to supply power to the lamps indicated by the control signal according to the control signal, feeds back the luminous state of the lamps to the switches, and controls the lamps through the intelligent controller.
Further, the switches are connected through a wireless network, and when the switches are used for receiving the luminous state of the lamp fed back by the intelligent controller, the operation information of the lamp, the execution time of the operation and the position information of the lamp are broadcast to other switches with the distance between the switches being smaller than the preset distance. The information sharing of the lighting states of the lamps is realized between the switches, the preset lamp control scheme can be automatically executed by the switches according to the lighting states of the lamps, and the intelligence of controlling the lamps by the switches is improved.
Referring specifically to fig. 2, in fig. 2, for example, 5 switches are wirelessly connected to each other, only the first switch 21 is wirelessly connected to the second switch 22, the third switch 23, the fourth switch 24, and the fifth switch 25, respectively, and the connection relationship between the second switch 22, the third switch 23, the fourth switch 24, and the fifth switch 25 is not shown in fig. 2 for ease of understanding. And the first switch 21, the second switch 22, the third switch 23, the fourth switch 24 and the fifth switch 25 are also paired with an intelligent controller (not shown in fig. 2). When the intelligent controller controls the three lamps to emit light according to the control instruction of the first switch 21, and feeds back the light emitting states of the three lamps to the first switch 21. When the first switch 21 receives the fed back light emitting states of the three lamps, the operation information of the three lamps, the specific execution time of the operation information and the position information of the three lamps corresponding to the control instruction are broadcast to the second switch 22 and the third switch 23 which are less than the preset distance from the first switch 21, but not to the fourth switch 24 and the fifth switch 25 which are more than the preset distance from the first switch 21. The preset distance may be, for example, 50 cm.
Further, in another embodiment, the switch 20 can automatically implement special indoor lighting effect through the linkage of a plurality of switches on a specified date according to the setting of the user, so as to improve the intelligence of the lamp control. The user can implement the setting through the setting panel of the switch.
The switch 20 is used for sending a control signal containing preset light mode information to the intelligent controller 10 when a preset date is triggered; the intelligent controller 10 is configured to control the power supply 30 to supply power to the plurality of lamps indicated by the preset light mode according to the control signal including the preset light mode.
Specifically, the preset date may be a preset commemorative day such as a birthday, the preset light mode is a stage light mode, the stage light mode includes a specific lighting fixture that lights up, whether the lighting mode of the lighting fixture is continuous lighting, blinking lighting or color changing lighting, and the duration of the lighting fixture from lighting up to lighting down;
The switch 20 is used for sending a control signal containing information of the pre-stage lighting mode to the intelligent controller 10 when the anniversary is triggered, wherein the control signal contains information of each lamp corresponding to the stage lighting mode, and each lamp can comprise a living room lamp and a restaurant lamp. When the switch 20 is triggered, it is first determined whether the current day is the commemorative day according to the built-in clock, if so, the control signal is sent out, and if not, the non-linkage light control signal is sent out according to the daily setting.
Specifically, the control signal may include automatic control information of each lamp corresponding to the stage lighting mode, according to the automatic control information, the lamps may flash alternately in a preset time period according to the control of the switch 20, or may change the light color alternately, for example, the lamps are turned on for the first time to be white, turned off for the second time to be warm, turned off for the third time to be yellow, and so on.
The intelligent controller 10 is configured to control the power supply 30 to supply power to the living room lamp and the restaurant lamp according to the control signal, so that the living room lamp and the restaurant lamp emit light according to the stage lighting mode, thereby creating a stage effect indoors.
Further, in another embodiment, the intelligent light control system has the performance of automatic learning, sensing and decision making, a lamp control strategy can be automatically generated according to the habit of a user, automatic networking can be realized among the switches, between the switches and the intelligent controller, and between the intelligent controller and the intelligent controller, the problem that indoor wireless signals are influenced by walls and distances can be effectively solved through the networking mode, the coverage range and the stability of the wireless signals can be improved, the linkage control of the lamp is formed, and the intelligence of the lamp control is improved.
The first switch 21 and the second switch 22 are control switches of different lamps, the first switch 21 controls the first lamp, and the second switch 22 controls the second lamp.
The first switch 21 is configured to generate a habit control task according to the history information of the first lamp triggered to control and the received history feedback light status information of the second lamp broadcasted by the second switch 22, where the habit control task includes a task triggering condition and a task execution content;
The history information of the triggered control first lamp is included in a history period, and based on the operation of a switch by a user, the switch controls the lighting state of the first lamp to be on or off and the time corresponding to the lighting state, such as the on-lamp (lamp on) time and the off-lamp (lamp off) time; the history period may be a statistical period of 3 days, 7 days, etc. in the past.
The historical feedback light status information of the second light fixture is information about the feedback light status of the second light fixture, which is sent by the intelligent controller 10 to the second switch 22 in the historical period, after the second switch 22 receives the historical feedback light status information, the second switch 22 broadcasts the received information to other switches with a distance from the second switch 22 smaller than the preset distance, such as the first switch 21, the third switch 23, and the like;
The habit control task comprises a task trigger condition and task execution content, wherein the task trigger condition comprises a trigger time period or trigger environment brightness, and the trigger time period is from 22 pm to 3 am; trigger ambient brightness, e.g., 0.001-0.03 lux at night; the task execution content comprises the identification of the controlled lamp and the lighting state of the controlled lamp, including on or off.
The first switch 21 is configured to send a control instruction to the intelligent controller 10 according to the task execution content when the task trigger condition is met and the light status information broadcast by the second switch 22 and identical to the historical feedback light status information is received, that is, if the historical feedback light status information is on and the second switch 22 controls the second light to turn on again, the control instruction is used to instruct the intelligent controller 10 to control the first light to execute the task execution content, for example, control the power supply 30 to supply power to the first light, so as to turn on the first light.
In this embodiment, the switch has learned the turn-on habit of user, has formed the linkage between the first switch of control different lamps and lanterns and second switch based on the automatic networking ability of switch according to the turn-on habit of user, and when the user passes through the second switch according to the habit of user and lights the second lamps and lanterns, the first lamps and lanterns of non-second switch control are lighted automatically to the second switch that the user did not contact, have improved the convenience of user's operation and the intelligent of control lamps and lanterns.
The embodiment can also be applied to the operation of turning off the lamp by a user, the user does not need to turn off the first lamp through the first switch and can turn off the second lamp through the second switch, and the first switch receives the information of turning off the second lamp broadcasted by the second switch and automatically turns off the first lamp based on the habit control task. The principle is the same as above.
Specifically, the first switch 21 is configured to, if the number of times the first lamp is triggered to be turned on in the triggering period of the preset history period reaches a preset number of times, and in the triggering period of the history period, receive information of the second lamp being turned on, broadcasted by the second switch 22, which indicates that the second lamp is turned on at a preset time interval before the first lamp is turned on, the second lamp is turned on, and after the second lamp is turned on, a small preset time interval passes, the first lamp is turned on, where the preset time interval is very short, for example, 30 seconds, which indicates that there is a correlation between the second lamp and the first lamp being turned on in the triggering period, that is, after the second lamp is turned on by the second switch 22, the first lamp is turned on by the first switch 21, then the second switch 22 generates the habit control task, where the habit control task includes the triggering period, the triggering environment brightness, and the execution content of the first lamp being turned on;
when the second lamp is turned on in the triggering period or the triggering environment brightness and the information broadcast by the second switch 22 is received, a control instruction is sent to the intelligent controller 10 according to the execution content of turning on the first lamp, where the control instruction is used to instruct the intelligent controller 10 to control the power supply 30 to supply power to the first lamp so as to turn on the first lamp.
In one embodiment, referring to fig. 3, the first switch 21 is a control switch for a bathroom light 41, and is disposed at a bathroom doorway. The second switch 22 and the third switch 23 are double-control switches paired with the bedroom lamp 42, the second switch 22 is arranged at the bedside, and the third switch 23 is arranged at the bedroom doorway. When the user turns on the second switch 22 habitually at night to turn on the bedroom lamp, the second switch 22 sends a turn-on control instruction to an intelligent controller (not shown in fig. 3) to instruct the intelligent controller to turn on the bedroom lamp 42, the intelligent controller feeds back a piece of luminous state information of the bedroom lamp to the second switch 22, the luminous state information comprises an identifier of the bedroom lamp, the lighting state of the bedroom lamp and the lighting time, the second switch 22 broadcasts the luminous state information of the bedroom lamp, and the second switch 22 receives the piece of information; the user does not turn on the third switch 23, but walks to the toilet to turn on the first switch 21, the first switch 21 sends a lamp-on control instruction to the intelligent controller to instruct the intelligent controller to light the toilet lamp 41, and the intelligent controller feeds back a piece of lighting state information of the toilet lamp to the first switch 21, wherein the lighting state information comprises the identification of the toilet lamp, the lighting state of the toilet lamp and the lighting time;
if the second switch 22 is activated to illuminate the bedroom lamp 42 every 12 to 3 hours in the past 3 days, and then the first switch 21 is activated to illuminate the bathroom lamp 41 for about 30 seconds, the first switch 21 generates a habit control task.
When the first switch 21 receives the information of the lighting of the bedroom lamp 42 broadcasted by the second switch 22 between 12 and 3 points at night, a control instruction is sent to the intelligent controller to light the bathroom lamp 41. Thereby, the user turns on the bedroom lamp through the second switch 22 of the bedside, and the first switch 21 is automatically triggered to turn on the bathroom lamp 41, so that great convenience is provided for the user to use the lamp.
Similarly, the above embodiment can also be applied to the operation of turning off the bedroom lamp by the user, the user does not need to turn off the bedroom lamp 41 through the first switch 21, and can turn off the bedroom lamp 42 through the second switch 22 at the bedside after returning to the bedroom, so that the first switch 21 of the bathroom receives the information of turning off the bedroom lamp 42 broadcasted by the second switch 22, and automatically turns off the bedroom lamp 42 based on the generated habit control task. The habit control task is generated based on the extinction information of the lamp during the trigger period in the history sunday, as in the previous embodiment.
In another embodiment, the switch is wirelessly connected with the smart bracelet, and the switch is used for acquiring sleep information in the smart bracelet and controlling the luminous state of the lamp according to the sleep information. The intelligence of the switch control lamp can be further improved.
The sleep information refers to information related to sleep of a user, and specifically, the sleep information includes: sleep monitoring information and alarm clock information;
the switch is used for sending out a light-off control instruction to the intelligent controller when the sleep monitoring information shows that the user enters sleep, and the light-off control instruction is used for indicating the intelligent controller to control all the lighted lamps to be powered off;
Judging that the user enters sleep can be achieved by monitoring data such as heartbeat, respiration and the like.
The light-off control instruction instructs the intelligent controller to disconnect the power supply to the total circuit, and all the lamps are powered off and extinguished, and also can disconnect the power supply to the branch circuit of the lighted lamp, and the currently lighted lamp is extinguished.
The switch is also used for sending a lamp-on control instruction to the intelligent controller when the alarm clock time is reached, the lamp-on control instruction is used for indicating the intelligent controller to control the power supply to supply power to the specified lamp, and when the alarm clock rings, a user gets up, and then the bedside lamp or the bedroom lamp can be turned on for the user.
Further, in another embodiment, the intelligent controller and each switch are not only terminals, but also network relays, when the control instruction received by the intelligent controller and the switch is not the operation instruction of the current equipment, the control instruction is correspondingly forwarded to the correct equipment, so that a decentralised cluster network is formed, and the problem of unstable multi-signal of a large wall body with an indoor area can be effectively solved.
Specifically, the switch comprises a first switch and a second switch, the intelligent controller or the first switch receives a control instruction sent by the second switch, whether the receiving equipment of the control instruction is correct is judged, the control instruction comprises a receiving equipment identifier, namely, the intelligent controller judges whether the control instruction is sent to the intelligent controller, the first switch judges whether the control instruction is sent to the first switch, and if the control instruction is incorrect, the control instruction is forwarded to the correct receiving equipment according to the receiving equipment identifier.
Further, in another embodiment, the switch support event is customized, so that convenience of controlling the lamp by the switch can be improved.
The switch is provided with a setting panel, the setting panel can respond to the setting operation of a user, the switch is used for acquiring the light-emitting state of the lamp which is correspondingly controlled by the switch currently when the setting panel is triggered to set, and if the light-emitting state is a preset state, the corresponding function of the lamp is opened and controlled according to the setting operation of the user.
Specifically, if the lamp controlled by the switch is in a lighting state, the user can turn on the "timing off" function of the switch through long-press operation, and the user can set the off time length by continuously pressing the setting panel; if the lamp correspondingly controlled by the switch is in an off state, the user can turn on the 'timing on' function of the switch through long-press operation.
Further, the intelligent controller 10 can be connected to a platform of an intelligent terminal such as a computer and a mobile phone, so that a user can control the intelligent controller 10 to control the lamp to work through an application interface of the intelligent terminal, and the lamp is controlled without a switch.
The intelligent controller 10 may be one or more.
In the foregoing embodiments, the descriptions of the embodiments are emphasized, and for parts of one embodiment that are not described in detail, reference may be made to the related descriptions of other embodiments.
The foregoing describes an intelligent lighting control system provided by the present invention, and those skilled in the art, based on the concepts of the embodiments of the present invention, will be able to implement the present invention in various aspects, including embodiments and applications.
Claims (10)
1. An intelligent light control system, comprising:
An intelligent controller and a plurality of switches;
The intelligent controller is connected into a circuit between the power supply and the lamp;
the intelligent controller is respectively matched with the switches in a wireless manner;
The intelligent controller is used for receiving the control signal sent by the switch, controlling the power supply to supply power to the lamp indicated by the control signal according to the control signal, and feeding back the luminous state of the lamp to the switch.
2. The control system according to claim 1, wherein a plurality of the switches are connected through a wireless network, and the switches are configured to broadcast operation information of the lamps, execution time of the operation, and position information of the lamps to other switches having a distance from the switches smaller than a preset distance when receiving the light emitting state of the lamps fed back by the intelligent controller.
3. The control system of claim 1, wherein the switch is configured to send a control signal containing preset light pattern information to the intelligent controller when a preset date is triggered;
The intelligent controller is used for controlling the power supply to supply power to the lamps indicated by the preset light mode according to the control signal containing the preset light mode.
4. A control system according to claim 3, wherein the preset date is a preset commemorative day and the preset light pattern is a stage light pattern;
The switch is used for sending the control signal to the intelligent controller when the souvenir day is triggered, and the control signal contains information of each lamp corresponding to the stage lighting mode;
The intelligent controller is used for controlling the power supply to supply power to the lamps so that the lamps emit light according to the stage lighting mode.
5. The control system of claim 1, wherein the first switch is configured to generate a habit control task according to the history information of the first lamp triggered and the received history feedback light status information of the second lamp broadcasted by the second switch, and the habit control task includes a task triggering condition and task execution content;
And when the task triggering condition is met and the light state information which is broadcast by the second switch and is the same as the historical feedback light state information is received, a control instruction is sent to the intelligent controller according to the task execution content, and the control instruction is used for indicating the intelligent controller to control the first lamp to execute the task execution content.
6. The control system of claim 5, wherein the task trigger condition comprises a trigger period or trigger ambient brightness;
The first switch is configured to generate the habit control task if the number of times that the first lamp is triggered to be turned on in the triggering time period of the preset history period reaches a preset number of times, and in the triggering time period of the history period, information of the second lamp turned on, which is broadcasted by the second switch, is received, and the information further indicates that the second lamp is turned on at a preset time interval before the first lamp is turned on, where the habit control task includes the triggering time period, the triggering environment brightness and execution content of turning on the first lamp;
and when the triggering time period or the triggering environment brightness is reached and the information of the second lamp which is broadcasted by the second switch and is lightened is received, sending a control instruction to the intelligent controller according to the execution content of the first lamp which is lightened, wherein the control instruction is used for instructing the intelligent controller to control the power supply to supply power to the first lamp.
7. The control system of claim 1, wherein the switch is wirelessly connected to the smart band;
The switch is used for acquiring sleep information in the intelligent bracelet and controlling the luminous state of the lamp according to the sleep information.
8. The control system of claim 7, wherein the sleep information includes sleep monitoring information and alarm clock information;
the switch is used for sending a light-off control instruction to the intelligent controller when the sleep monitoring information shows that the user enters sleep, and the light-off control instruction is used for indicating the intelligent controller to control all the lighted lamps to be powered off;
The switch is also used for sending a lamp-on control instruction to the intelligent controller when the alarm clock time is reached, and the lamp-on control instruction is used for indicating the intelligent controller to control the power supply to supply power for the specified lamp.
9. The control system of claim 1, wherein the switch comprises a first switch and a second switch;
And the intelligent controller or the first switch receives the control instruction sent by the second switch, judges whether the receiving equipment of the control instruction is correct or not, and forwards the control instruction to the correct receiving equipment if the receiving equipment of the control instruction is incorrect.
10. The control system according to claim 1, wherein the switch has a setting panel, and the switch is configured to obtain a lighting state of a lamp controlled correspondingly by the switch when the setting panel is triggered to perform setting, and if the lighting state is a preset state, to turn on and control a corresponding function of the lamp according to a setting operation.
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CN202410436715.5A CN118158873A (en) | 2024-04-11 | 2024-04-11 | Intelligent light control system |
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CN202410436715.5A CN118158873A (en) | 2024-04-11 | 2024-04-11 | Intelligent light control system |
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