Intelligent adjustment method of lamp strip, lamp strip, equipment and readable storage medium

By introducing intelligent control modules into full-color gradient light strips, precise adjustment of the length of the light strip and intelligent control of light effect are achieved, and the problem of insufficient flexibility in the length of the light strip and light effect control in the prior art is solved, improving the convenience and effect of use.

CN120186830AInactive Publication Date: 2025-06-20BWEETECH ELECTRONICS TECH (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202510491997.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing full-color gradient light strip lacks precise and flexible light strip length adjustment and light effect control solutions, resulting in complex operational processes and limited control flexibility.

Method used

By introducing an intelligent control module into the light strip, receiving length adjustment instructions and light effect control instructions, the precise length adjustment and light effect adjustment of the light strip can still maintain uniform color and gradient effects.

Benefits of technology

It realizes flexible adjustment of the length of the light strip and intelligent control of light effects, improves the convenience and flexibility of use, avoids cumbersome manual settings, and ensures that the cut light strip can still achieve the expected gradient effect and uniform brightness distribution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an intelligent adjustment method of a lamp strip, the lamp strip, equipment and a readable storage medium. The intelligent adjustment method of the lamp strip comprises the steps of receiving a length adjustment instruction; based on the length adjusting instruction, the intelligent control module of the lamp strip adjusts the length of the lamp strip; receiving a lighting effect control instruction sent by the electronic equipment; based on the lighting effect control instruction, the intelligent control module carries out lighting effect adjustment on the lamp strip with the adjusted length, so that the lamp strip with the adjusted length can keep uniform color and gradual change effect; according to the method, the length of the lamp strip can be flexibly adjusted; the intelligent control module automatically adjusts lighting effect setting in the lamp strip according to an instruction sent by the electronic equipment, and it is ensured that the cut lamp strip can still achieve the expected gradual change effect and uniform brightness distribution; through the electronic equipment, a user can visually control the length, the brightness, the gradual change mode and the like of the lamp strip, tedious manual setting is avoided, the use convenience and flexibility are improved, and the user experience feeling is improved.
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Description

Technical Field

[0001] This application belongs to the technical field of intelligent light strip adjustment, and relates to an intelligent adjustment method for light strips, light strips, devices, and readable storage media. Background Art

[0002] With the continuous progress of smart home technology, traditional lighting systems are gradually transforming into personalized and intelligent solutions. In this trend, full-color gradient light strips, with their diverse color transformations and continuous gradient display effects, have become widely used decorative lighting facilities in home living environments, commercial spaces, and entertainment venues. Most of the full-color gradient light strips on the market currently offer fixed lengths, requiring users to cut them according to specific application scenarios and make corresponding adjustments to the lighting control system. However, this operation process is complex and the control flexibility is limited. Summary of the Invention

[0003] This application provides an intelligent adjustment method for light strips, light strips, devices, and readable storage media, which is used to solve the problem of the lack of precise and flexible light strip length adjustment and light effect control solutions in the prior art.

[0004] In a first aspect, an embodiment of this application provides an intelligent adjustment method for a light strip. The method includes: receiving a length adjustment instruction; based on the length adjustment instruction, the intelligent control module of the light strip adjusts the length of the light strip; receiving a light effect control instruction sent by the electronic device; based on the light effect control instruction, the intelligent control module adjusts the light effect of the light strip after length adjustment, so that the light strip after length adjustment can still maintain uniform color and gradient effect.

[0005] In an implementation manner of the first aspect, before the intelligent control module of the light strip adjusts the length of the light strip based on the length adjustment instruction, the method further includes: detecting the adjustment length corresponding to the length adjustment instruction. If the adjustment length is within the preset length range of the light strip, adjusting the length of the light strip based on the adjustment length. If the adjustment length is not within the preset length range of the light strip, sending an updated length instruction to the electronic device until the updated adjustment length is within the preset length range of the light strip.

[0006] In an implementation manner of the first aspect, the length adjustment instruction includes an operation of cutting and / or extending the light strip.

[0007] In an intelligent adjustment method of a light strip provided by an embodiment of the present application, a length adjustment instruction is received; based on the length adjustment instruction, an intelligent control module of the light strip adjusts the length of the light strip; a light effect control instruction sent by an electronic device is received; based on the light effect control instruction, the intelligent control module adjusts the light effect of the light strip after length adjustment, so that the light strip after length adjustment can still maintain uniform color and gradient effect; the length of the light strip can be adjusted flexibly; the intelligent control module in the light strip automatically adjusts the light effect settings of each module in the light strip according to the instruction sent by the electronic device, ensuring that the cut light strip can still achieve the expected gradient effect and uniform brightness distribution; through the electronic device, the user can intuitively control the length, color, brightness, gradient mode, etc. of the light strip, avoiding cumbersome manual settings, greatly improving the convenience and flexibility of use, and enhancing the user experience.

[0008] In a second aspect, an embodiment of the present application provides a light strip, which applies the intelligent adjustment method described in any item of the first aspect. The light strip includes: a light strip main body, including a plurality of LED lamp bead modules, and adjacent LED lamp bead modules are connected by a flexible circuit; or several adjacent LED lamp bead modules are electrically connected through an extended light strip installation structure; a cutting line, arranged at the flexible circuit for cutting the light strip; an intelligent control module, electrically connected to the light strip main body, for receiving a length adjustment instruction, adjusting the length of the light strip main body based on the length adjustment instruction, and / or for receiving a light effect control instruction, adjusting the light effect of the light strip main body after length adjustment based on the light effect control instruction.

[0009] In one implementation of the second aspect, each LED lamp bead module is composed of red, green, and blue LED lamp beads; each LED lamp bead module independently controls color and brightness.

[0010] In one implementation of the second aspect, the light strip further includes a length sensor, one end of the length sensor is electrically connected to the plurality of LED lamp bead modules, and the other end is electrically connected to the intelligent control module, for detecting the actual length of the light strip main body and transmitting the actual length to the intelligent control module.

[0011] In a third aspect, an embodiment of the present application provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, it implements the intelligent adjustment method described in any item of the first aspect of the embodiments of the present application.

[0012] Fourthly, an embodiment of the present application provides an electronic device, which includes a memory and a processor; the memory is used to store a computer program; the processor is used to execute the computer program and implement the intelligent adjustment method according to any one of the first aspects of the embodiments of the present application when executing the computer program. Description of the Drawings

[0013] Figure 1A Shown is a schematic diagram of an application scenario corresponding to the intelligent adjustment method of the light strip provided by an embodiment of the present application.

[0014] Figure 1B Shown is a flowchart of the intelligent adjustment method of the light strip provided by an embodiment of the present application.

[0015] Figure 2A Shown is a PWM waveform provided by an embodiment of the present application.

[0016] Figure 2B Shown is a schematic diagram of the light effect control instruction structure provided by an embodiment of the present application.

[0017] Figure 3 Shown is a schematic diagram of the structure of the light strip provided by an embodiment of the present application.

[0018] Figure 4 Shown is a parameter design interface diagram of the electronic device provided by an embodiment of the present application.

[0019] Figure 5 Shown is a flowchart of the electronic device and the light strip transmitting instructions provided by an embodiment of the present application.

[0020] Figure 6 Shown is a schematic diagram of the structure of the electronic device in an embodiment of the present application.

[0021] Description of Component Labels

[0022] Steps S11 to S14 300 Light strip main body

[0023] 301 Extension light strip installation structure

[0024] 302 Cutting line

[0025] 303 Intelligent control module

[0026] 400 Power supply

[0027] 501 Start the electronic device to connect to the light strip

[0028] 502 Select the light strip to be length-adjusted

[0029] 503 Send a length adjustment instruction

[0030] 504 Receive length adjustment instruction 505 Detect whether the adjustment length corresponding to the length adjustment instruction is within the preset length range of the light strip 506 Cut or extend the light strip

[0031] 507 Whether the light strip length meets the requirement

[0032] 508 Send light effect control instruction

[0033] 509 Receive light effect control instruction 510 The light strip changes the lit length and the light strip performs light effect adjustment 511 End

[0034] 60 Electronic device

[0035] 61 Processor

[0036] 62 Non-volatile storage medium

[0037] 63 System bus

[0038] 64 Internal memory

[0039] 65 Network interface Detailed implementation manners

[0040] The following uses specific specific examples to illustrate the implementation manners of the present application. Those skilled in the art can easily understand other advantages and effects of the present application from the content disclosed in this specification. The present application can also be implemented or applied through other different specific implementation manners. Various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present application. It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0041] It should be noted that the diagrams provided in the following embodiments only illustrate the basic concept of the present application in a schematic manner. Therefore, only the components related to the present application are shown in the diagrams, rather than being drawn according to the number, shape, and size of the components in actual implementation. The form, quantity, and ratio of each component in actual implementation can be arbitrarily changed, and the component layout pattern may also be more complex.

[0042] In the process of cutting the light strip in the prior art, there is a lack of precise and flexible light strip length adjustment and light effect control solutions. Therefore, how to effectively achieve precise and flexible length adjustment and light effect control for light strips of different lengths has become one of the technical problems that need to be solved urgently.

[0043] At least for the above problems, the embodiment of the present application provides an intelligent adjustment method, which can be implemented by an intelligent control module. The intelligent control module is capable of receiving a length adjustment instruction; based on the length adjustment instruction, the intelligent control module of the light strip adjusts the length of the light strip, achieving precise and flexible adjustment of the light strip length.

[0044] In addition, the intelligent control module of the light strip is further capable of receiving a light effect control instruction sent by the electronic device; based on the light effect control instruction, the intelligent control module adjusts the light effect of the light strip after length adjustment, so that the light strip after length adjustment can still maintain uniform color and gradient effect, solving the problem of light effect control of the light strip.

[0045] In the present application, the intelligent control module is used to control the length adjustment and light effect of the light strip. The intelligent control module can be directly connected and communicate with the light strip, or indirectly connected and communicate with the light strip through another structure. The connection and communication relationship between the intelligent control module and the light strip can be flexibly set according to the needs of those skilled in the art. The protection scope of the present application does not limit the specific connection or communication relationship between the intelligent control module and the light strip.

[0046] Next, the technical solutions in the embodiments of the present application will be described in detail with reference to the accompanying drawings in the embodiments of the present application.

[0047] Figure 1A Shown is a schematic diagram of an application scenario corresponding to the intelligent adjustment method of the light strip provided by an embodiment of the present application. As Figure 1A shown, this application scenario includes: an electronic device and a light strip. The electronic device is used to send a length adjustment instruction and a light effect control instruction to the light strip. The intelligent control module in the light strip is used to adjust the length and light effect of the light strip according to the length adjustment instruction and the light effect control instruction sent by the electronic device, so that the light strip after length adjustment can still maintain uniform color and gradient effect.

[0048] Figure 1B Shown is a flowchart of the intelligent adjustment method of the light strip provided by an embodiment of the present application. As Figure 1B shown, the intelligent adjustment method of the light strip provided by the embodiment of the present application includes steps S11 to S14.

[0049] S11, receive a length adjustment instruction.

[0050] In an embodiment of the present application, the length adjustment instruction can be sent by the electronic device or from other instruction sending devices.

[0051] Specifically, the light strip is connected to the electronic device through a wireless communication method or a wired communication method. Among them, the wireless communication methods include communication methods such as Bluetooth and Wi-Fi. The electronic device communicates with the intelligent control module in the light strip through Bluetooth or Wi-Fi to control the working state of the light strip in real time, ensuring that the light strip is always in the working mode set by the user.

[0052] Exemplarily, the length adjustment instruction is to adjust the length of the light strip to 5m, 10m, etc.

[0053] In some embodiments, the length adjustment instruction includes operations of cutting and / or extending the light strip.

[0054] Exemplarily, if the original length of the light strip is 8m and the light strip receives a length adjustment instruction sent by the electronic device: adjust the length of the light strip to 5m, then the length adjustment instruction at this time is to cut the light strip; if the original length of the light strip is 8m and the light strip receives a length adjustment instruction sent by the electronic device: adjust the length of the light strip to 10m, then the length adjustment instruction at this time is to extend the light strip.

[0055] It should be noted that the specific values of the original length of the light strip and the corresponding values for length adjustment listed in the above examples are only used for illustrative purposes. In actual applications, the original length of any other suitable light strip can be selected for length adjustment according to specific application requirements, and the present application does not limit the above specific values.

[0056] S12. Based on the length adjustment instruction, the intelligent control module of the light strip adjusts the length of the light strip.

[0057] In some embodiments, before the intelligent control module of the light strip adjusts the length of the light strip based on the length adjustment instruction, it detects the adjustment length corresponding to the length adjustment instruction. If the adjustment length is within the preset length range of the light strip, it adjusts the length of the light strip based on the adjustment length. If the adjustment length is not within the preset length range of the light strip, it sends an updated length instruction to the electronic device until the updated adjustment length is within the preset length range of the light strip.

[0058] Exemplarily, if the original length of the light strip is 10m, and if the intelligent control module of the light strip receives a length adjustment instruction sent by an electronic device "adjust the length of the light strip to 8m", then the intelligent control module of the light strip detects the received length adjustment instruction. If the actual length of the light strip required by the user is 8m, it means that the adjusted length corresponding to the length adjustment instruction is within the preset length range of the light strip. On the contrary, if the actual length of the light strip required by the user is 7m, then the actual length of the light strip required by the user and the adjusted length corresponding to the length adjustment instruction sent by the electronic device are not within the preset length range of the light strip. At this time, the intelligent control module of the light strip sends an updated length instruction to the electronic device. After receiving this updated length instruction, the electronic device sends a length adjustment instruction "adjust the length of the light strip to 7m" to the intelligent control module of the light strip again. The intelligent control module of the light strip detects the received length adjustment instruction again. At this time, the adjusted length corresponding to the length adjustment instruction is within the preset length range of the light strip, and the adjusted length corresponding to the length adjustment instruction is the same as the actual length of the light strip required by the user. The intelligent control module of the light strip stops sending the updated length instruction to the electronic device, and the intelligent control module of the light strip performs the length adjustment work of the light strip according to the length adjustment instruction "adjust the length of the light strip to 7m".

[0059] It should be noted that the specific numerical values of the length of the light strip listed in the above examples are only used for illustrative purposes. In actual applications, other arbitrary appropriate length values of the light strip can be selected according to specific application requirements, and the present application does not limit this.

[0060] Exemplarily, the sensor in the light strip is used to detect the actual length of the light strip. Among them, the sensor includes: length detection sensor, cutting detection sensor, etc.

[0061] In some implementation manners of the present application, the length sensor is an electrical sensor. The electrical sensor converts the power signal into a voltage signal. The power of light strips with different lengths is different. The sensor can detect and convert different power values into corresponding voltage values. The intelligent control module reads the voltage value on the sensor through ADC and calculates the actual length of the light strip through formula calculation.

[0062] The electrical sensor can also directly convert the measured length into electricity, mainly including inductive sensors, capacitive sensors, electrical contact sensors, piezoelectric sensors, magnetic grating sensors or / and induction synchro sensors, etc.

[0063] For example, when the magnetic core is located in the middle position of the coil in an inductive sensor, the inductances generated by the two coils are equal, and the bridge remains balanced; when the measuring rod with the magnetic core moves up and down, the inductances generated by the two coils are not equal, the bridge is unbalanced, and a voltage is output, and its magnitude is proportional to the moving distance of the measuring rod.

[0064] In some implementations of the present invention, the cutting detection sensor is a shear force sensor. The shear force sensor is based on the relationship between the elastic deformation of the material and the change in resistance. When an external force acts on the sensor, it causes the elastic body to bend, thereby changing the resistance value inside the sensor and outputting an electrical signal.

[0065] It should be noted that the types of sensors listed in the above examples are only for illustrative purposes. In actual applications, other any suitable sensors can be selected according to specific application requirements, and the present application does not limit this.

[0066] Specifically, cutting lines are provided at preset intervals on the light strip, facilitating the user to cut the light strip according to the length adjustment instruction received by the intelligent control module.

[0067] Exemplarily, the preset intervals on the light strip can be set to any suitable distances such as 25 cm, 30 cm, etc.

[0068] It should be noted that the preset intervals listed in the above examples are only for illustrative purposes. In actual applications, other any suitable values can be set according to specific application requirements, and the present application does not limit this.

[0069] Specifically, an extended light strip installation structure is also provided on the light strip, facilitating the user to extend the light strip according to the length adjustment instruction received by the intelligent control module.

[0070] Exemplarily, the extended light strip installation structure is a connection terminal for connecting different segments of the light strip. There are various types of connection terminals, such as welded connection terminals and pluggable connection terminals. Welded connection terminals need to connect the wires of the light strip through soldering. This connection method is relatively firm but the operation is relatively complex. Pluggable connection terminals can directly insert the light strip for connection, with convenient installation, which is the preferred solution of the present application.

[0071] S13, receiving the light effect control instruction sent by the electronic device.

[0072] Specifically, the intelligent control module of the light strip receives the light effect control instruction sent by the electronic device.

[0073] Exemplarily, the light effect control instructions include: switch, brightness, color, color temperature, etc.

[0074] It should be noted that in addition to the switch, brightness, color, and color temperature listed in the examples, the light effect control instructions also include other any suitable light effect control instructions, and the present application does not limit this.

[0075] S14. Based on the light effect control instruction, the intelligent control module adjusts the light effect of the light strip after length adjustment, so that the light strip after length adjustment can still maintain uniform color and gradient effect.

[0076] Specifically, based on the signal in the intelligent control module to drive the LED control chip in the light strip to output Pulse Width Modulation (PWM), the light effect adjustment of the light strip is realized.

[0077] Please refer to Figure 2A , Figure 2A which shows the PWM waveform provided by an embodiment of the present application.

[0078] Please refer to Figure 2B , Figure 2B which shows the schematic diagram of the light effect control instruction structure provided by an embodiment of the present application.

[0079] As can be seen from Figure 2B , the original length of the light strip is 10m. Figure 2B The uppermost part in Figure 2B shows the schematic diagram of the light effect control instruction structure when the length of the light strip remains unchanged; Figure 2B The middle part in

[0080] shows the schematic diagram of the light effect control instruction structure when the length of the light strip becomes shorter to 5m;

[0081] Specifically, after the length of the light strip is adjusted, the intelligent control module detects the length of the light strip after length adjustment in real time through the sensor in the light strip, and sends the length to the electronic device. At the same time, according to the actual length of the light strip after length adjustment, the intelligent control module resends the light effect control instruction. The intelligent control module adjusts parameters such as the current, brightness and color distribution of the light strip according to the light effect control instruction, and controls the length of the light strip in real time to ensure that the light strip is always in the working mode set by the user and to ensure that the gradient effect of the light strip is not affected.An embodiment of the present application provides an intelligent adjustment method for a light strip. In this method, a length adjustment instruction is received; based on the length adjustment instruction, the intelligent control module of the light strip adjusts the length of the light strip; a light effect control instruction sent by an electronic device is received; based on the light effect control instruction, the intelligent control module adjusts the light effect of the light strip after length adjustment, so that the light strip after length adjustment can still maintain uniform color and gradient effect; through the intelligent control of the electronic device, the user can intuitively control the length, color, brightness, gradient mode, etc. of the light strip, avoiding cumbersome manual settings and greatly improving the convenience and flexibility of use; and through the sensors built in the light strip, it can automatically identify the new length of the light strip after the light strip is cut or extended, control the length of the light strip in real time, and send the new length of the light strip to the electronic device, so that the electronic device adjusts the light effect parameters according to the new length of the light strip and sends a light effect control instruction to the light strip to ensure that the light strip is always in the working mode set by the user and to ensure that the gradient effect of the light strip is not affected. Moreover, the electronic device can display the status of the light strip in real time and feedback the control effect, and the user can adjust it at any time according to needs.

[0082] Figure 3 Shown is a schematic structural diagram of a light strip provided by an embodiment of the present application. As Figure 3 can be seen, the light strip includes: a light strip main body 300, which includes a plurality of LED lamp bead modules, and adjacent LED lamp bead modules are connected by a flexible circuit; or several adjacent LED lamp bead modules are electrically connected by an extended light strip installation structure; a cutting line 302, which is arranged at the flexible circuit and is used for cutting the light strip; an intelligent control module 303, which is electrically connected to the light strip main body 300 and is used for receiving a length adjustment instruction and adjusting the length of the light strip main body 300 based on the length adjustment instruction, and / or for receiving a light effect control instruction and adjusting the light effect of the light strip main body 300 after length adjustment based on the light effect control instruction.

[0083] Exemplarily, there is a cutting line 302 every 25 cm in the light strip main body 300, or there is a cutting line 302 every 30 cm in the light strip main body 300. In actual application, the distance between adjacent cutting lines in the light strip main body 300 can be reasonably set according to specific situations, and the present application does not limit this.

[0084] In some embodiments, each LED lamp bead module is composed of red, green, and blue LED lamp beads; each LED lamp bead module independently controls color and brightness.

[0085] Among them, one end of the intelligent control module 303 is connected to the power supply 400, and the other end is connected to the light strip.

[0086] Further, the sensors in the light strip are connected to the intelligent control module through an Analog-to-Digital Converter (ADC).

[0087] Specifically, the sensors in the light strip are connected to the LED lamp bead module in the light strip through a current signal.

[0088] Specifically, adjacent LED lamp bead modules are connected by a flexible circuit, which supports cutting. Moreover, each LED lamp bead module independently controls color and brightness.

[0089] Specifically, the light strip is wirelessly connected to the electronic device for transmitting length adjustment instructions and / or light effect control instructions.

[0090] In some embodiments, the light strip further includes a length sensor. One end of the length sensor is electrically connected to the multiple LED lamp bead modules, and the other end is electrically connected to the intelligent control module. The length sensor is used to detect the actual length of the light strip main body and transmit the actual length to the intelligent control module.

[0091] The light strip provided by the embodiment of the present application includes: multiple LED lamp bead modules, each of which is composed of red, green, and blue LED lamp beads; an extended light strip installation structure for extending the light strip; a cutting line for cutting the light strip; an intelligent control module. The intelligent control module is used to receive a length adjustment instruction and / or a light effect control instruction. The extended light strip installation structure in the light strip can extend the light strip in a timely manner according to the actual needs of the user, which is convenient to operate. In addition, each LED lamp bead module in the light strip independently controls color and brightness, and adjacent LED lamp bead modules are connected by a flexible circuit, which supports cutting, improving the convenience and flexibility of cutting. The user can directly cut from the cutting point without cutting at other hardware connection structures of the light strip, avoiding the occurrence of situations such as damage to the light strip during the cutting process. This improves the service life of the light strip. The light strip is wirelessly connected to the electronic device, and can transmit length adjustment instructions and light effect control instructions in real time, realizing the intelligent control of the light strip by the electronic device, avoiding cumbersome manual settings, and greatly improving the convenience and flexibility of use.

[0092] Please refer to Figure 4 , Figure 4 , which shows the parameter design interface diagram of the electronic device provided by an embodiment of the present application. As Figure 4 can be seen, the length adjustment instruction sent by the electronic device to the light strip is "7m".

[0093] It should be noted that in actual applications, the parameter design interface of the electronic device can also send any other appropriate length adjustment instructions such as "5m", "8m", etc. to the light strip, and the present application does not limit this.

[0094] Please refer to Figure 5 , Figure 5 which shows a flowchart of the electronic device transmitting instructions to the light strip provided by an embodiment of the present application. As can be seen from Figure 5 , this flowchart includes 501 to 511.

[0095] Among them, starting the electronic device to connect to the light strip 501 means that the electronic device is in the powered-on state. Selecting the light strip to be length-adjusted 502 means that the electronic device establishes a connection with the light strip to be length-adjusted. Sending a length adjustment instruction 503 means that the electronic device sends a length adjustment instruction to the light strip. Then, entering the light strip end, receiving the length adjustment instruction 504 means that the light strip end receives a length adjustment instruction. Detecting whether the adjustment length corresponding to the length adjustment instruction is within the preset length range of the light strip 505 is used to determine whether the adjustment length corresponding to the length adjustment instruction is correct. Trimming or extending the light strip 506 is used to perform trimming or extending operations on the light strip according to the length adjustment instruction. Whether the light strip length conforms 507 is used to determine again whether the adjustment length corresponding to the length adjustment instruction meets the user's needs. Sending a light effect control instruction 508 is used to send a light effect control instruction to the light strip. Receiving the light effect control instruction 509 means that the light strip receives the light effect control instruction sent by the electronic device. The light strip changing the lighting length and the light strip performing light effect adjustment 510 means that the light strip changes the lighting length of the length-adjusted light strip and performs light effect adjustment on the light strip according to the received light effect control instruction.

[0096] It should be noted that Figure 5 the specific implementation process in

[0097] is similar to the steps corresponding to the above respective drawings, and the present application will not elaborate on this.

[0098] In several embodiments provided by the present application, it should be understood that the disclosed device or method can be implemented in other ways. For example, the device embodiments described above are only illustrative. For example, the division of modules / units is only a logical function division, and there may be other division methods in actual implementation. For example, multiple modules or units can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed mutual coupling or direct coupling or communication connection can be through some interfaces, and the indirect coupling or communication connection of devices or modules or units can be in electrical, mechanical or other forms.

[0099] The modules / units described as separate components may or may not be physically separated, and the components shown as modules / units may or may not be physical modules, that is, they may be located in one place or distributed over multiple network units. Some or all of the modules / units can be selected according to actual needs to achieve the objectives of the embodiments of the present application. For example, in the embodiments of the present application, the various functional modules / units can be integrated in a processing module, or each module / unit can exist physically alone, or two or more modules / units can be integrated in one module / unit.

[0100] Those of ordinary skill in the art should further realize that the units and steps of the examples described in combination with the embodiments disclosed herein can be implemented by electronic hardware, computer software, or a combination of the two. To clearly illustrate the interchangeability of hardware and software, the composition and steps of the examples have been generally described according to functions in the above description. Whether these functions are executed in a hardware or software manner depends on the specific application and design constraints of the technical solution. Professional technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered to exceed the scope of the present application.

[0101] The embodiments of the present application also provide a computer-readable storage medium. Those of ordinary skill in the art can understand that all or part of the steps in the methods of the above embodiments can be completed by instructing a processor through a program, and the program can be stored in a computer-readable storage medium. The storage medium is a non-transitory medium, such as random access memory, read-only memory, flash memory, hard disk, solid-state drive, magnetic tape, floppy disk, optical disc, and any combination thereof. The above storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server or a data center that includes one or more integrated available media. The available medium can be a magnetic medium (such as a floppy disk, hard disk, magnetic tape), an optical medium (such as a digital video disc (DVD)), or a semiconductor medium (such as a solid-state disk (SSD)).

[0102] The embodiments of the present application also provide an electronic device. Figure 6 Shown is a schematic structural diagram of the electronic device 60 in an embodiment of the present application. The intelligent adjustment method provided by the embodiments of the present application can be applied to Figure 6 the electronic device 60 shown, but not limited thereto. As Figure 6As shown, the electronic device 60 includes a processor 61, a memory, a system bus 63, and a network interface 65. Among them, the memory may include a non-volatile storage medium 62 and an internal memory 64.

[0103] The non-volatile storage medium 62 can store an operating system and computer programs. The computer programs include program instructions, which when executed, can cause the processor to execute any one of the intelligent adjustment methods provided in the embodiments of the present application.

[0104] The processor is used to provide computing and control capabilities to support the operation of the entire computer device.

[0105] The internal memory 64 provides an environment for the operation of the computer programs in the non-volatile storage medium. When the computer programs are executed by the processor, the processor can be caused to execute any one of the intelligent adjustment methods provided in the embodiments of the present application.

[0106] The network interface 65 is used for network communication, such as sending assigned tasks, etc. Those skilled in the art can understand that Figure 1A the structure shown in is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine some components, or have different component arrangements.

[0107] It should be understood that the processor 61 may be a central processing unit (CPU), and the processor may also be other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), field programmable gate arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. Among them, the general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.

[0108] The electronic device 60 in the embodiments of the present application may be included in terminal devices such as tablet computers, laptop computers, mobile phones, supercomputers, smart wearable devices, etc., and may also be applied to databases, servers, and service response systems based on terminal artificial intelligence. The embodiments of the present application do not impose any restrictions on the specific type of the electronic device.

[0109] For example, the electronic device can be a station (STAION, ST) in a WLAN, and can be a cellular phone, cordless phone, Session Initiation Protocol (SIP) phone, Wireless Local Loop (WLL) station, a handheld device with wireless communication function, a computing device or other processing devices connected to a wireless modem, a computer, a laptop computer, a handheld communication device, a handheld computing device, and / or other devices for communicating on a wireless system, as well as next-generation communication systems, such as mobile terminals in a 5G network, mobile terminals in a future evolved Public Land Mobile Network (PLMN), or mobile terminals in a future evolved Non-terrestrial Network (NTN), etc.

[0110] By way of example and not limitation, when the electronic device is a wearable device, the wearable device can also be a general term for devices that apply wearable technology to the intelligent design of daily wear and develop wearable devices, such as gloves, watches, etc. configured with a near-field communication module. A wearable device is a portable device that is worn directly on the body or integrated into the user's clothes or accessories. By attaching to the user's body and using a pre-bound electronic card, operations such as payment and authentication can be performed. A wearable device is not just a hardware device, but more importantly, it realizes powerful functions through software support, data interaction, and cloud interaction. Broadly speaking, wearable intelligent devices include those with complete functions and large sizes that can achieve complete or partial functions without relying on a smartphone, such as smart watches or smart glasses, as well as those that only focus on a certain type of application function and need to cooperate with other devices such as smartphones, such as various smart watches and smart bracelets with a display screen.

[0111] The descriptions of the processes or structures corresponding to the above respective figures have their own focuses. For parts not detailed in a certain process or structure, reference can be made to the relevant descriptions of other processes or structures.

[0112] The above embodiments are only illustrative of the principles and effects of the present application and are not intended to limit the present application. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes made by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present application should still be covered by the claims of the present application.

Claims

1. A smart adjustment method for a light strip, characterized in that: The method comprises: receiving a length adjustment instruction; Based on the length adjustment instruction, the intelligent control module of the light strip adjusts the length of the light strip; Receiving a light effect control instruction sent by the electronic device; Based on the light effect control instruction, the intelligent control module adjusts the light effect of the light strip after the length adjustment, so that the light strip after the length adjustment can still maintain a uniform color and gradient effect.

2. The intelligent adjustment method of the light strip according to claim 1, characterized in that: Before the intelligent control module of the light strip adjusts the length of the light strip based on the length adjustment instruction, the method further includes: The adjustment length corresponding to the length adjustment instruction is detected. If the adjustment length is within the preset length range of the light strip, the length of the light strip is adjusted based on the adjustment length. If the adjustment length is not within the preset length range of the light strip, an update length instruction is sent to the electronic device until the updated adjustment length is within the preset length range of the light strip.

3. The intelligent adjustment method of the light strip according to claim 1, characterized in that: The length adjustment instruction includes cutting and / or extending the light strip.

4. A light strip, characterized in that: The light strip comprises: The light strip body includes a plurality of LED lamp bead modules, and adjacent LED lamp bead modules are connected by flexible circuits; Or a number of adjacent LED lamp bead modules are electrically connected via an extended lamp belt mounting structure; A cutting line, arranged at the flexible circuit, for cutting the light strip; The intelligent control module is electrically connected to the light strip body, and is used to receive a length adjustment instruction, and adjust the length of the light strip body based on the length adjustment instruction, and / or to receive a light effect control instruction, and adjust the light effect of the light strip body after the length is adjusted based on the light effect control instruction.

5. The light strip according to claim 4, characterized in that: Each of the LED lamp bead modules is composed of red, green and blue LED lamp beads; each of the LED lamp bead modules independently controls color and brightness.

6. The light strip according to claim 4, characterized in that: The light strip also includes a length sensor, one end of which is electrically connected to the multiple LED lamp bead modules, and the other end is electrically connected to the intelligent control module, for detecting the actual length of the light strip body and transmitting the actual length to the intelligent control module.

7. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the method according to any one of claims 1 to 3 is implemented.

8. An electronic device, characterized in that: The electronic device comprises: A memory storing a computer program; A processor is communicatively connected to the memory, and executes the method according to any one of claims 1 to 3 when calling the computer program.

Citation Information

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