Intelligent bedside table

By integrating a smart lighting module into the bedside table, the lighting unit is controlled based on light intensity, object distance, and the status of external devices, solving the problem of the limited nighttime lighting function of existing bedside tables and achieving the effect of automatic lighting and functional integration.

CN121739342APending Publication Date: 2026-03-27HAIER YOUJIA INTELLIGENT TECH (BEIJING) CO LTD +3
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing bedside table night lights have limited functionality and cannot meet the user's bedroom lighting needs, requiring the user to rely on bedside lamps for indoor lighting.

Method used

A smart lighting module is integrated into the bedside table, including a light-sensing unit, an object sensing unit, a first lighting unit, and a second lighting unit. The control module controls the lighting units to turn on, off, and adjust their brightness based on light intensity information, object distance information, and the status of external devices, providing automatic lighting.

Benefits of technology

It integrates the functions of a bedside table, provides an automatic lighting mode, meets the user's bedroom lighting needs, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent bedside table, and relates to the technical field of intelligent home furnishing.The intelligent bedside table comprises an intelligent lighting module which comprises a light sensing unit, an object sensing unit, a first lighting unit and a second lighting unit and is connected with a control module, the control module is used for sending light intensity information detected by the light sensing unit and object distance information detected by the object sensing unit to the control module and providing illumination through the first illumination unit and the second illumination unit according to the control of the control module; wherein the first lighting unit is arranged at the top of the cabinet body, and the second lighting unit is arranged at the bottom of the cabinet body; the control module is in signal connection with at least one external device and used for controlling the intelligent lighting module according to at least one of the light intensity information, the object distance information and obtained control reference information, and the control reference information is obtained from the external device and comprises time information and external device working state information. The illumination module is integrated on the bedside table to provide automatic illumination for a user.
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Description

Technical Field

[0001] This application relates to the field of smart homes, and more specifically, to a smart bedside table. Background Technology

[0002] Bedside tables are very common furniture in modern homes. As a small standing cabinet, they are typically placed on either side of the bed, providing storage space for everyday items. Due to their placement, bedside tables usually contain frequently needed and accessed items. They also provide a platform for storage. Bedside lamps are the most common lighting fixtures in bedrooms, allowing users to easily turn them off when going to sleep and turn them on when they need to get up. With furniture development, some bedside tables now integrate nightlights at the bottom. These nightlights are always on, providing illumination to a small area around the bed, making it convenient for users to get up at night. However, nightlights on bedside tables typically serve only a basic floor lighting function; users still need to rely on bedside lamps on the bedside table for overall bedroom lighting. Summary of the Invention

[0003] The smart bedside table provided in this application embodiment is designed to integrate a lighting module on the bedside table and provide automatic lighting for users to meet their bedroom lighting needs.

[0004] In one aspect, this invention provides a smart bedside table, including a cabinet body, the smart bedside table further comprising:

[0005] The intelligent lighting module includes a photosensitive unit, an object sensing unit, a first lighting unit, and a second lighting unit. It is disposed on the outside of the cabinet and connected to a control module. The module transmits light intensity information detected by the photosensitive unit and object distance information detected by the object sensing unit to the control module, and provides corresponding lighting through the first lighting unit and the second lighting unit according to the control of the control module. The first lighting unit is disposed on the top of the cabinet, and the second lighting unit is disposed on the bottom of the cabinet.

[0006] A control module, located inside the cabinet and connected to at least one external device, is used to control the intelligent lighting module based on at least one of the light intensity information, the object distance information, and acquired control reference information, wherein the control reference information is acquired from the external device and includes time information and external device operating status information.

[0007] In one implementation of a smart bedside table, the control module is specifically used for:

[0008] Based on the light intensity information and light intensity threshold, and / or the time information and time threshold, control the first lighting unit and / or the second lighting unit to turn on or off; and / or,

[0009] If the detected external device operating status information indicates that a device with image display function is turned on, the brightness of the first lighting unit is controlled according to the device type; and / or,

[0010] If the detected external device operating status information indicates a change in the operating status of a device with indoor light adjustment function, the brightness of the first lighting unit is controlled according to the change in operating status; and / or,

[0011] If the first lighting unit has been controlled to be lit, the brightness of the first lighting unit is controlled accordingly based on the change in the light intensity information; and / or,

[0012] The second lighting unit is controlled to turn on or off based on the distance information of the object.

[0013] In one implementation of a smart bedside table, if the detected external device operating status information indicates that a device with image display function is turned on, controlling the brightness of the first lighting unit according to the device type includes:

[0014] If the device with image display function is a display screen type device, the brightness of the first lighting unit is controlled to be higher than the first brightness threshold.

[0015] If the device with image display function is a projection type device, the brightness of the first lighting unit is controlled to be lower than the second brightness threshold.

[0016] In one implementation of a smart bedside table, controlling the second lighting unit to turn on or off based on the object distance information includes:

[0017] If the second lighting unit is lit, and the object distance information is less than the distance threshold, the second lighting unit remains lit.

[0018] If the second lighting unit is lit and the object distance information is greater than or equal to the distance threshold, the second lighting unit is controlled to turn off.

[0019] If the second lighting unit is off and the object distance information is less than the distance threshold, control the second lighting unit to light up.

[0020] If the second lighting unit is in an off state, and the object distance information is greater than or equal to the distance threshold, the second lighting unit remains in an off state.

[0021] In one implementation of a smart bedside table, if the second lighting unit is lit and the object distance information is greater than or equal to the distance threshold, controlling the second lighting unit to turn off includes:

[0022] If the second lighting unit is lit, and the object distance information is greater than or equal to the distance threshold, the second lighting unit is controlled to turn off after a delay; wherein, the delay duration is determined according to the rate of change of the object distance information.

[0023] In one implementation of a smart bedside table, the control module is further configured to: after controlling the smart lighting module based on at least one of the light intensity information, the object distance information, and the acquired control reference information, control a preset controlled device to perform corresponding operations based on the lighting mode of the smart lighting module.

[0024] In one implementation of a smart bedside table, the first lighting unit includes: a lamp group composed of at least two types of LED beads with different color temperatures, the lamp group being positioned at the edge of the top panel of the cabinet.

[0025] In one implementation of a smart bedside table, the first lighting unit further includes a control component connected to the lamp group, used to control the lamp group to turn on, off, and adjust the color temperature according to the user's operation.

[0026] In one implementation of a smart bedside table, the smart bedside table further includes:

[0027] The smart speaker module includes a speaker unit and a pickup unit, and is connected to the control module for acquiring user voice commands and transmitting them to the control module. The voice commands include lighting commands.

[0028] The control module is also used to control the intelligent lighting module according to the lighting command.

[0029] In one implementation of a smart bedside table, the smart bedside table further includes:

[0030] Storage module, including storage compartments and locking unit,

[0031] The locking unit is installed on the front panel of the storage compartment and includes a locking assembly and a biometric sensor. It is connected to the control module and is used to detect biometric information through the biometric sensor and send it to the control module. The locking assembly locks and unlocks the storage compartment under the control of the control module.

[0032] The control module is also used to determine whether to lock or unlock the storage compartment based on the received biometric information and preset biometric information.

[0033] In one implementation of a smart bedside table, the smart bedside table further includes:

[0034] The charging module, including a wireless charging unit and a wired charging unit, is used to charge user devices.

[0035] The smart bedside table provided in this embodiment of the invention integrates a smart lighting module on the cabinet body, which is divided into a first lighting unit at the top of the cabinet and a second lighting unit at the bottom of the cabinet. Under the control of the control module, the smart lighting module provides corresponding lighting according to relevant reference information. This solves the technical problem that a single-function night light installed on the bedside table cannot meet the user's lighting needs, realizes the provision of an automatic lighting mode for the user, and improves the functional integration of the bedside table. Attached Figure Description

[0036] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0037] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0038] Figure 1 This is a schematic diagram of the hardware environment for an interaction method of a smart home device according to an embodiment of this application;

[0039] Figure 2 This is a structural schematic diagram of a smart bedside table according to an embodiment of this application. Detailed Implementation

[0040] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0041] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0042] According to one aspect of the embodiments of this application, an interaction method for smart home devices is provided. This interaction method for smart home devices is widely applicable to whole-house intelligent digital control application scenarios such as smart homes, smart home ecosystems, and intelligence house ecosystems. Optionally, in this embodiment, the above-mentioned interaction method for smart home devices can be applied to, for example... Figure 1 The hardware environment shown consists of terminal device 102 and server 104. For example... Figure 1 As shown, server 104 is connected to terminal device 102 via a network and can be used to provide services (such as application services) to the terminal or clients installed on the terminal. A database can be set up on the server or independently of the server to provide data storage services for server 104. Cloud computing and / or edge computing services can be configured on the server or independently of the server to provide data processing services for server 104.

[0043] The aforementioned network may include, but is not limited to, at least one of the following: wired network, wireless network. The aforementioned wired network may include, but is not limited to, at least one of the following: wide area network, metropolitan area network, local area network. The aforementioned wireless network may include, but is not limited to, at least one of the following: Wi-Fi (Wireless Fidelity), Bluetooth. The terminal device 102 may not be limited to PC, mobile phone, tablet computer, smart bedside table, smart air conditioner, smart range hood, smart refrigerator, smart oven, smart stove, smart washing machine, smart water heater, smart washing equipment, smart dishwasher, smart projector, smart TV, smart clothes rack, smart curtains, smart audio-visual equipment, smart socket, smart speaker, smart speaker box, smart fresh air equipment, smart kitchen and bathroom equipment, smart bathroom equipment, smart robot vacuum cleaner, smart window cleaning robot, smart mopping robot, smart air purifier, smart steam oven, smart microwave oven, smart water heater, smart air purifier, smart water dispenser, smart door lock, etc.

[0044] This application provides an embodiment of a smart bedside table, such as... Figure 2 The diagram shown illustrates the structure of a smart bedside table. The smart bedside table includes a cabinet body 2, and further includes:

[0045] The intelligent lighting module includes a photosensitive unit, an object sensing unit, a first lighting unit 3, and a second lighting unit 8. It is located on the outside of the cabinet and connected to a control module. The module transmits light intensity information detected by the photosensitive unit and object distance information detected by the object sensing unit to the control module. It then provides corresponding lighting through the first lighting unit 3 and the second lighting unit 8 according to the control of the control module. The first lighting unit 3 is located at the top of the cabinet 2, and the second lighting unit 8 is located at the bottom of the cabinet 2.

[0046] A control module, located inside the cabinet and connected to at least one external device, is used to control the intelligent lighting module based on at least one of the light intensity information, the object distance information, and acquired control reference information, wherein the control reference information is acquired from the external device and includes time information and external device operating status information.

[0047] The photosensitive unit can be a sensor for detecting light intensity, such as a photoresistor or other photosensitive element, and can be installed on the top panel of the bedside table and / or the side wall of the cabinet. One or more such sensors can be installed. The object sensing unit can be a sensor for detecting distance, such as an infrared photoelectric sensor or an ultrasonic ranging device. It can be installed at the front of the cabinet, which refers to the side of the bedside table away from the wall after placement; this side is generally where drawers or other storage compartments are located. The first lighting unit 3 can include a light group composed of multiple LEDs, which can be light-emitting diodes (LEDs), and the light group can be in the shape of a strip. The first lighting unit 3 can include multiple strip light groups, located at the edge of the top of the cabinet 2. For example,... Figure 2 In the first lighting unit 3, three light groups are respectively positioned on the left and right sides of the top of the cabinet and at the edge of the back. The first lighting unit 3 can replace a bedside lamp, providing indoor lighting for the user. When the first lighting unit 3 includes multiple light groups, each light group can be individually controlled to turn on / off and adjust its brightness. The second lighting unit 8 can include light groups composed of multiple LEDs, and the light groups can be in a strip shape. The second lighting unit 8 can include one or more strip light groups positioned at the bottom edge of the cabinet 2, for example, as shown in... Figure 2In this design, the second lighting unit 8 includes a light assembly positioned at the front edge of the bottom of the cabinet. The control module may include a microprocessor and integrate a communication unit, supporting wireless communication methods such as Bluetooth and WiFi. The control module can interact with external devices, which can be smart home devices such as gateway devices, smart curtains, smart TVs, projectors, and ceiling lights, or user terminal devices such as smartphones, PCs, and tablets. External device operating status information refers to information indicating the operating status of the external device, such as whether the external device is enabled and what functions it is performing. Taking a smart TV as an example, the external device operating status information includes whether it is powered on, whether it is playing video, and the brightness of the display screen. The control module can pre-set control rules for the smart lighting module. The control rules can take at least one of the light intensity information, the object distance information, and the control reference information as input. By matching the entries in the preset control rules, the outputs are the on / off state and brightness of the first and second lighting units, thereby controlling the first lighting unit 3 and the second lighting unit 8 to provide corresponding lighting. Time information can be obtained from the server after establishing a communication connection with the gateway device, or it can be provided by the clock configured locally on the smart bedside table. Of course, it's understood that the smart bedside table needs a power source, typically using AC mains power. Optionally, batteries can be used to power the smart lighting and control modules. These batteries can be rechargeable and charged using AC mains power. The control rules for the smart lighting module can be set by default within the smart bedside table, set and modified by the user through communication with the control module via a terminal device, or sent from the server to the smart bedside table.

[0048] In one implementation of a smart bedside table, the control module is specifically used for:

[0049] Based on the light intensity information and light intensity threshold, and / or the time information and time threshold, control the first lighting unit and / or the second lighting unit to turn on or off; and / or,

[0050] If the detected external device operating status information indicates that a device with image display function is turned on, the brightness of the first lighting unit is controlled according to the device type; and / or,

[0051] If the detected external device operating status information indicates a change in the operating status of a device with indoor light adjustment function, the brightness of the first lighting unit is controlled according to the change in operating status; and / or,

[0052] If the first lighting unit has been controlled to be lit, the brightness of the first lighting unit is controlled accordingly based on the change in the light intensity information; and / or,

[0053] The second lighting unit is controlled to turn on or off based on the distance information of the object.

[0054] The lighting module controls the intelligent lighting module's on / off state by comparing current light intensity and time information with corresponding thresholds to determine whether the first and / or second lighting units should be turned on or off. If the light intensity is greater than the threshold, the indoor light is relatively sufficient, and lighting is not required; if the light intensity is less than or equal to the threshold, the indoor light is relatively insufficient, and lighting is required. The sunrise and sunset times are fixed, and the time thresholds can be set based on these times. For example, one hour after sunrise can be designated as the first time, and one hour before sunset as the second time. The period from the first to the second time on the same day is the period without lighting, while the period from the second time on the current day to the first time on the following day is the period requiring lighting. Therefore, it's understandable that while controlling lighting based on light intensity information, time information can also be considered. This means using both light intensity and time information as control conditions for lighting. After all, the lighting conditions in each room are different, daily weather conditions vary, and the degree of light transmission through windows, the degree of light blocking by curtains, and the placement of the smart bedside table will also change depending on user habits. Activating lighting based on time may result in situations where lighting is needed during periods when it's not required. For example, during periods when lighting is not needed according to the time information, if the light intensity information is less than or equal to the light intensity threshold, at least one of the first and second lighting units should be activated. Besides controlling the on / off state of the first and second lighting units, the brightness of the activated first lighting unit can be further controlled. If the first lighting unit is already activated, its brightness can be controlled accordingly based on changes in the light intensity information. The light intensity information and the brightness of the first lighting unit can be controlled in a preset inverse ratio; that is, the higher the brightness represented by the light intensity information, the lower the brightness of the first lighting unit; conversely, the lower the brightness represented by the light intensity information, the higher the brightness of the first lighting unit.

[0055] In addition to light intensity and time information, external device status information can be used, either alone or in combination, as a condition for controlling lighting. Smart bedside tables are typically placed near the bed, but user habits vary. If a user is accustomed to placing or hanging smart TVs, projectors, computers, or using smartphones, tablets, or other personal devices in the bedroom, appropriate indoor lighting is also required. These devices all have image display capabilities, and the device types mentioned above refer to the type of image presentation. Smart TVs, computers, smartphones, and tablets all have displays that are self-illuminating, with images displayed directly on the screen. Projectors or wearable devices, on the other hand, typically project images onto a surface using a beam of light. This beam needs to propagate through space, and excessively high ambient brightness can affect the quality of the viewed image. Therefore, different imaging types have different requirements for ambient light. Although high brightness can affect viewing, this generally occurs in situations with strong outdoor sunlight, while indoor natural light is usually not too strong, and indoor lighting generally does not affect screen viewing. Therefore, for devices displaying images on a screen, controlling the brightness of the first lighting unit ensures the room is moderately bright; the brightness range corresponding to moderate brightness can be preset. Conversely, for devices projecting images with beams of light, controlling the brightness of the first lighting unit ensures the room is moderately dim; the brightness range corresponding to moderate dimness can also be preset. It is understandable that the detected light intensity information can determine whether the current indoor brightness meets the set lighting requirements. The aforementioned external devices can establish a pre-connection with the smart bedside table, directly sending their own external device status information to the smart bedside table. Alternatively, both the external devices and the smart bedside table can establish a connection with the gateway device within the smart home system, with the gateway device forwarding the external device status information. Alternatively, both the external devices and the smart bedside table can maintain communication with the server, where the server obtains the external device's status, determines the external device's status information, and sends it to the smart bedside table.

[0056] Devices with indoor light adjustment functions generally refer to devices that regulate the amount of natural light entering a room, as well as indoor lighting equipment. Smart bedside tables are typically placed in bedrooms, which usually have smart curtains and windows with light-adjustable transmission. Smart ceiling lights are also commonly installed in bedrooms. A communication connection can be established between the smart curtains and / or windows with light-adjustable transmission and the smart bedside table. The current light-blocking level information of the curtains and / or windows with light-adjustable transmission is provided to the control module of the smart bedside table. Based on preset rules and the light-blocking level information, the brightness of the first lighting unit is determined, and the brightness of the first lighting unit is adjusted accordingly when the light-blocking level changes. For example, when the smart curtains are fully open, the brightness of the first lighting unit is controlled at a lower level; when the smart curtains are fully closed, the brightness of the first lighting unit is controlled at a higher level. Similarly, a communication connection can be established between the smart ceiling light and the smart bedside table. The current brightness information of the smart ceiling light is provided to the control module of the smart bedside table, and the brightness of the first lighting unit is determined according to preset rules and brightness information. The brightness of the first lighting unit is adjusted accordingly when the brightness of the smart ceiling light changes. Of course, the brightness of the first lighting unit can be determined by combining the conditions of both the light-blocking and light-emitting devices, thereby linking the ambient light-related devices in the smart home to provide users with an automatically dimming environment and a comfortable lighting experience. Furthermore, it eliminates the need to control each ambient light-related device individually, reducing the amount of adjustment required from the user.

[0057] In one implementation of a smart bedside table, if the detected external device operating status information indicates that a device with image display function is turned on, controlling the brightness of the first lighting unit according to the device type includes:

[0058] If the device with image display function is a display screen type device, the brightness of the first lighting unit is controlled to be higher than the first brightness threshold.

[0059] If the device with image display function is a projection type device, the brightness of the first lighting unit is controlled to be lower than the second brightness threshold.

[0060] Because the second lighting unit is installed close to the ground, the lighting range it provides is limited to the area surrounding the smart bedside table. The second lighting unit can be controlled to turn on or off based on the user's movement and distance around the bedside table. Object distance information indicates the distance between the user and the smart bedside table. If the user is detected within a preset distance range of the smart bedside table, the second lighting unit is turned on to provide floor lighting; if the user is detected outside the preset distance range, the second lighting unit is turned off. Optionally, to avoid the influence of obstacles other than the user in the environment, temperature sensing data can be incorporated. If the object's temperature is outside the normal human body temperature range, its distance can be ignored.

[0061] In one implementation of a smart bedside table, controlling the second lighting unit to turn on or off based on the object distance information includes:

[0062] If the second lighting unit is lit, and the object distance information is less than the distance threshold, the second lighting unit remains lit.

[0063] If the second lighting unit is lit and the object distance information is greater than or equal to the distance threshold, the second lighting unit is controlled to turn off.

[0064] If the second lighting unit is off and the object distance information is less than the distance threshold, control the second lighting unit to light up.

[0065] If the second lighting unit is in an off state, and the object distance information is greater than or equal to the distance threshold, the second lighting unit remains in an off state.

[0066] In one implementation of a smart bedside table, if the second lighting unit is lit and the object distance information is greater than or equal to the distance threshold, controlling the second lighting unit to turn off includes:

[0067] If the second lighting unit is in the lit state and the object distance information is greater than or equal to the distance threshold, control the second lighting unit to turn off with a delay; wherein, the delay duration is determined according to the change rate of the object distance information. The change rate of the object distance information represents the walking speed of the user. If the user is within the preset distance range of the smart bedside table, the second lighting unit is in the lit state. If the object distance information is equal to the distance threshold and then the object distance information is greater than the distance threshold, it means that the user has left the preset distance range of the smart bedside table. Instead of immediately turning off the second lighting unit, it can be turned off with a delay, providing lighting for a period of time after the user leaves the preset distance range of the smart bedside table. The delay duration can be selected from 2 to 10 seconds. Because the second lighting unit mainly provides ground lighting and can be used as a night light. Then the lighting function of the night light is reflected in the situation where the user gets out of bed and moves around at night. If the user walks faster, the delay duration can be determined to be a shorter time, because if the user leaves quickly, they may come back quickly; if the user walks slower, the delay duration can be determined to be a longer time, because if the user leaves slowly, they may come back slowly. Of course, this specific determination method of the delay duration is an example and does not uniquely limit the determination of the delay duration.

[0068] In an implementation manner of the smart bedside table, the control module is further configured to: after controlling the smart lighting module according to at least one of the light intensity information, the object distance information, and the obtained control reference information, control a preset controlled device to perform a corresponding operation according to the lighting mode of the smart lighting module.

[0069] Among them, in some of the above implementation manners, the smart bedside table can be directly or indirectly connected to devices such as smart curtains, windows with light transmission adjustment functions, smart ceiling lights, smart TVs, computers, smartphones, and tablets for mutual communication. Of course, the external devices for establishing connections are not limited to the devices mentioned above. Therefore, in addition to controlling the smart lighting module according to at least one of the light intensity information, the object distance information, and the obtained control reference information, the control module can also perform other linkage operations. After controlling the smart lighting module to provide corresponding lighting, it can also send control instructions to the external preset controlled devices to enable the preset controlled devices to cooperate with the lighting brightness of the smart lighting module to provide corresponding scene control for the user. For example, after adjusting the smart lighting module, the brightness of the device with an image display function is adjusted accordingly. If the brightness of the first lighting unit is increased, the brightness of the display screen type device can be controlled to increase. If the brightness of the first lighting unit is decreased, the brightness of the smart ceiling light can be controlled to increase. It can be understood that the smart home scenario in the bedroom can be defined by the user themselves as to which devices are to be controlled in linkage and what the specific actions of each device are in the linkage control, thus forming a scenario where multiple devices work together in coordination.

[0070] In one implementation of a smart bedside table, the first lighting unit includes: a lamp group composed of at least two types of LED beads with different color temperatures, the lamp group being positioned at the edge of the top panel of the cabinet.

[0071] The color temperature of the LED chips can be selected within the range of 3000K-6000K. For example, two LED chips with different color temperatures can be selected: one with a higher color temperature (cool white light) and the other with a lower color temperature (warm white light). Alternatively, LED chips with low, medium, and high color temperatures can be selected. Multiple LED chips with different color temperatures are arranged to form a light group, and the color temperature of the light group can be adjusted by changing the brightness of the LED chips.

[0072] In one implementation of a smart bedside table, the first lighting unit further includes a control component connected to the lamp group, used to control the lamp group to turn on, off, and adjust the color temperature according to the user's operation.

[0073] Users can manually adjust the brightness and / or color temperature of the first lighting unit. The control components can be touch switches and touch panels, allowing users to control the first lighting unit through touch gestures such as tapping, double-tapping, and swiping. For example, three touch switches can be used: the first switch controls on / off, the second controls brightness (multiple preset brightness values ​​can be cycled through by touching the second switch), and the third switch controls color temperature (multiple preset color temperature values ​​can be cycled through by touching the third switch). Alternatively, a strip-shaped touch panel can replace the touch switches for controlling brightness and color temperature, allowing users to control these settings through swiping.

[0074] In one implementation of a smart bedside table, the smart bedside table further includes:

[0075] The smart speaker module 5 includes a speaker unit and a pickup unit, and is connected to the control module. It is used to acquire user voice commands and transmit them to the control module. The voice commands include lighting commands.

[0076] The control module is also used to control the smart lighting module according to the lighting instructions. The smart speaker can be pre-configured with a network, allowing for both voice control and control via a mobile app. A voice pickup unit acquires the user's voice, and a speaker unit plays the interactive voice commands. Users can conveniently control the lighting via voice commands. Furthermore, in this implementation, the smart bedside table connects to external devices, allowing users to control preset controlled devices via the smart speaker mounted on the bedside table.

[0077] In one implementation of a smart bedside table, the smart bedside table also includes a Bluetooth speaker 6. Users' smartphones can connect to the Bluetooth speaker 6 via Bluetooth and easily play music using their mobile music playback software. It utilizes Bluetooth 5.0, which is high-speed and stable, with strong anti-interference capabilities. It has a built-in Bluetooth V5.0 core chip, ensuring stable and fast transmission, and a direct connection distance of over 10 meters, allowing users to wirelessly play music.

[0078] In one implementation of a smart bedside table, the smart bedside table further includes:

[0079] Storage module, including storage compartments and locking unit,

[0080] The locking unit is installed on the front panel of the storage compartment and includes a locking assembly and a biometric sensor 7. It is connected to the control module and is used to detect biometric information through the biometric sensor 7 and send it to the control module. The locking assembly locks and unlocks the storage compartment under the control of the control module.

[0081] The control module is also used to determine whether to lock or unlock the storage compartment based on the received biometric information and preset biometric information.

[0082] The smart bedside table features general storage functions, with storage modules. Storage compartments can be drawers or cubicles with sliding doors, and locking units can be fingerprint locks, palm vein locks, etc., protecting user privacy and ensuring safe storage of items. Palm vein recognition is a type of vein recognition, belonging to biometrics. A palm vein recognition system first obtains an individual's palm vein distribution map using a vein recognition device. Feature values ​​are extracted from the palm vein distribution map using a specialized comparison algorithm. Images of veins in the fingers, palms, and backs of the hands are acquired using an infrared CCD camera, and the digital images of the veins are stored, along with the feature values. During vein comparison, vein images are captured in real time, feature values ​​are extracted, and advanced filtering, image binarization, and thinning techniques are used to extract features from the digital image. These features are compared with the vein feature values ​​stored in the host computer, and a complex matching algorithm is used to match the vein features, thereby identifying and confirming the individual's identity.

[0083] In one implementation of a smart bedside table, the smart bedside table further includes:

[0084] The charging module includes a wireless charging unit 1 and a wired charging unit 4, which are used to charge user devices.

[0085] The wireless charging unit 1 can be installed inside the top panel of the smart bedside table. Devices with wireless charging capabilities, such as mobile phones, can be automatically charged simply by placing them in the designated area, eliminating the hassle of repeatedly plugging in data cables. The phone is fully charged while the user sleeps. Wireless intelligent sensing disconnects the charging when fully charged. The wired charging unit 4 can be installed on the side wall of the cabinet and can be adapted to various device charging interfaces, such as USB, for data cable charging.

[0086] The above description is only a preferred embodiment of this application. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this application, and these improvements and modifications should also be considered within the scope of protection of this application.

Claims

1. An intelligent bedside cabinet comprising a cabinet body, characterized in that, The intelligent bedside cabinet further comprises: The intelligent lighting module comprises a light sensing unit, an object sensing unit, a first lighting unit and a second lighting unit, is arranged on the outer side of the cabinet body and is connected with the control module, is used for sending the light intensity information detected by the light sensing unit and the object distance information detected by the object sensing unit to the control module, and providing corresponding lighting through the first lighting unit and the second lighting unit according to the control of the control module; wherein the first lighting unit is arranged on the top of the cabinet body, and the second lighting unit is arranged on the bottom of the cabinet body; The control module is arranged in the interior of the cabinet body and is connected with at least one external device signal, is used for controlling the intelligent lighting module according to at least one of the light intensity information, the object distance information and the obtained control reference information, wherein the control reference information is obtained from the external device and comprises time information and external device working state information.

2. The smart bedside cabinet as claimed in claim 1, wherein, The control module is specifically used for: controlling the first lighting unit and / or the second lighting unit to be lit or extinguished according to the light intensity information and a light intensity threshold value, and / or the time information and a time threshold value; and / or controlling the brightness of the first lighting unit according to the type of the device if the monitored external device working state information is that the device with image display function is turned on; and / or controlling the brightness of the first lighting unit according to the working state change of the device with indoor light adjusting function if the monitored external device working state information is that the working state of the device with indoor light adjusting function changes; and / or controlling the brightness of the first lighting unit according to the change of the light intensity information if the first lighting unit has been controlled to be lit; and / or controlling the second lighting unit to be lit or extinguished according to the object distance information.

3. The smart bedside cabinet as claimed in claim 2, wherein, The controlling the brightness of the first lighting unit according to the type of the device if the monitored external device working state information is that the device with image display function is turned on comprises: controlling the brightness of the first lighting unit to be higher than a first brightness threshold value if the device with image display function is a display screen type device; and controlling the brightness of the first lighting unit to be lower than a second brightness threshold value if the device with image display function is a projection type device.

4. The smart bedside cabinet as claimed in claim 2, wherein, The controlling the second lighting unit to be lit or extinguished according to the object distance information comprises: keeping the second lighting unit in the lit state if the second lighting unit is in the lit state and the object distance information is less than a distance threshold value; controlling the second lighting unit to be extinguished if the second lighting unit is in the lit state and the object distance information is greater than or equal to the distance threshold value; controlling the second lighting unit to be lit if the second lighting unit is in the extinguished state and the object distance information is less than the distance threshold value; keeping the second lighting unit in the extinguished state if the second lighting unit is in the extinguished state and the object distance information is greater than or equal to the distance threshold value.

5. The smart bedside cabinet as claimed in claim 4, wherein, The controlling the second lighting unit to be extinguished if the second lighting unit is in the lit state and the object distance information is greater than or equal to the distance threshold value comprises: If the second lighting unit is in the lighting state, the object distance information is greater than or equal to the distance threshold, the second lighting unit is controlled to be turned off after a delay; wherein the delay time is determined according to the rate of change of the object distance information.

6. The smart bedside cabinet as claimed in claim 2, wherein, The control module is further configured to: after controlling the smart lighting module according to at least one of the light intensity information, the object distance information and the acquired control reference information, controlling a preset controlled device to perform a corresponding operation according to the lighting mode of the smart lighting module.

7. The smart bedside cabinet as claimed in claim 1, wherein, The first lighting unit comprises: A lamp group composed of at least two color temperature lamp beads, the lamp group is arranged at the edge position of the top panel of the cabinet body.

8. The smart bedside cabinet as claimed in claim 7, wherein, The first lighting unit further comprises a control assembly connected with the lamp group, for controlling the lamp group to turn on, turn off and adjust the color temperature according to the user's operation.

9. The smart bedside cabinet as claimed in claim 1, wherein, Further comprising: A smart sound box module comprising a sound unit and a sound pickup unit, connected with the control module, for acquiring a user voice instruction and transmitting it to the control module, the voice instruction comprising a lighting instruction; The control module is further configured to control the smart lighting module according to the lighting instruction.

10. The smart bedside cabinet as claimed in claim 1, wherein, Further comprising: A storage module comprising a storage compartment and a lock unit, The lock unit is installed on the front panel of the storage compartment, comprising a lock assembly and a biometric sensor, connected with the control module, for detecting biometric information through the biometric sensor and sending it to the control module, and locking and unlocking the storage compartment through the lock assembly under the control of the control module; The control module is further configured to determine whether to lock or unlock the storage compartment according to the received biometric information and the preset biometric information.