Improved atmosphere lamp for indoor environment design

By improving the ambient light structure and employing diversion and multiple purification processes, the problem of clogging of the purification components has been solved, achieving efficient air purification and preventing secondary air pollution.

CN121828835APending Publication Date: 2026-04-10SHENYANG NORMAL UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-09-01
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The air purification components of existing ambient lights are prone to clogging after prolonged use, which leads to poor air filtration and may cause secondary indoor air pollution.

Method used

An improved ambient light for indoor environmental design was designed. Through structures such as guide components, interconnecting plates, lifting rods, covers, flow components, and slides, air is diverted and purified multiple times. Combined with rotating fan blades and a controller, air circulation is accelerated and air accumulation is avoided. Multi-layer filter components and barrier filters are used for further purification.

Benefits of technology

It effectively improves air purification efficiency, avoids blockage caused by air accumulating in a single location, ensures multiple purification effects of air, and prevents secondary indoor air pollution.

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Abstract

The invention discloses an improved atmosphere lamp for indoor environment design, the structure of the atmosphere lamp comprises a frame body, a purification device, an atmosphere lamp, a mounting seat and a rotating table, when the atmosphere lamp is used, a cover plate is lifted upwards through a lifting rod, so that indoor air flows into a flowing assembly through a protective cover; air is purified through the flowing assembly, the purified air can flow into the guiding assembly, the guiding assembly is movably adjusted under the action of the sliding way, the purified air is effectively guided out, and in the lighting process of the atmosphere lamp, the guided-out air can be matched with the atmosphere lamp to play a role in helping people.
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Description

Technical Field

[0001] This invention relates to the field of lighting technology, and more specifically to an improved ambient light for interior design. Background Technology

[0002] Lighting fixtures are the primary tools for indoor and outdoor illumination. Ambient lighting is one of the most common types of lighting fixtures. With the rapid development of technology, ambient lighting has also become a decorative element, enhancing the overall taste of an interior and creating a sense of technology and style. Indoor ambient lighting can be customized in color to improve user comfort. However, there are areas for improvement when using ambient lighting: When using ambient lighting, the purification component is normally integrated into the lighting unit, giving it a purification function. Through the cooperation of the ambient lighting and the purification component, when large-area lighting is not required, the ambient lighting provides illumination while the purification component assists in purifying the air, meeting the needs of different lighting scenarios and increasing the adaptability of the ambient lighting. When the purification component is purifying the indoor environment, air flows into it through the airflow guide component. During this process, because the air tends to accumulate in a single location, the same purification filter within the component may exhibit polarization during use. Over time, areas with more accumulated impurities are prone to blockage, resulting in reduced air filtration efficiency and secondary pollution of the indoor air. Summary of the Invention

[0003] To address the shortcomings of existing technologies, the present invention is achieved through the following technical solution: an improved ambient light for indoor environmental design, the structure of which includes a frame, a purification device, an ambient light, a mounting base, and a rotating platform. The frame is mounted on the mounting base, and the mounting base is fixedly connected to the top center of the rotating platform. The frame is provided with a plurality of ambient lights that are connected to it. The purification device is installed in the center of the frame, and the purification device passes through the frame and is connected to the top of the mounting base at its bottom.

[0004] As a further optimization of the invention, the purification device includes a purification component, a protective cover, a pressing head, and a barrier gasket. The purification component is disposed on the protective cover, and the barrier gasket is fitted and connected to the protective cover. The pressing head is installed on the top of the purification component. The protective cover is installed on the frame, and the purification component is disposed on the mounting base.

[0005] As a further optimization of the invention, the purification component includes a guide component, an interconnecting plate, a lifting rod, a cover plate, a flow component, and a slide rail. Slide rails are installed on both sides of the guide component. An interconnecting plate is provided on the top of the guide component, and the flow component is connected to the top of the interconnecting plate. The flow component and the guide component are connected through the interconnecting plate. A lifting rod is inserted into the top of the flow component. A cover plate is fitted to the end of the lifting rod away from the flow component. A pressing head is installed on the cover plate, which is located on a protective cover. The guide component is located on a mounting base.

[0006] As a further optimization of the invention, the flow assembly includes a barrier filter, a separator head, a connecting frame, a triangular guide plate, a filter assembly, and a flow chamber. The barrier filter is located in the middle of the connecting frame. The connecting frame is fixedly connected to the triangular guide plate. A filter assembly is provided between the connecting frame and the triangular guide plate. Multiple filter assemblies are provided and connected in series at equal intervals through four separator heads. The lower end of the filter assembly is connected to the barrier filter. The barrier filter is connected to the guide assembly through an interconnecting plate. A lifting rod is inserted into the top of the triangular guide plate.

[0007] As a further optimization of the invention, the filter assembly includes a flow guide component, a primary filter, a flow divider, and a high-efficiency filter. The flow guide component contains the primary filter and the high-efficiency filter. The top of the flow guide component is connected to the flow divider. The flow divider is located between the connecting frame and the triangular guide plate. Separators are connected to both the left and right sides of the flow divider. The lower end of the flow guide component is connected to a barrier filter.

[0008] As a further optimization of the invention, the guiding component includes a rotating head, a housing, rotating fan blades, a rotating gear, a controller, a limiting block, and an air outlet component. The rotating head is disposed on the air outlet component, which is connected to the housing. The end of the air outlet component away from the housing is slidably connected to a slide rail. The air outlet component is provided with a limiting block, and the rotating fan blades and rotating gear are respectively connected to the left and right sides of the limiting block. The rotating gear is electrically connected to the controller, which is mounted on the housing. The housing is connected to the barrier filter through an interconnecting plate, and the housing is disposed on a mounting base.

[0009] As a further optimization of the invention, the air outlet assembly includes a perforated plate, a fixed ornament, an adjusting block, a connecting filter, a moving rod, and a telescopic slide rod. The perforated plate is located at the lower end of the connecting filter. Adjusting blocks are connected to both the left and right sides of the connecting filter. One end of each adjusting block is connected to the fixed ornament, and the other end is connected to the slide rail. Two telescopic slide rods are provided between the two connecting filters. The telescopic slide rods are parallel to the moving rod and are slidably connected. A rotating head is installed on the telescopic slide rod, and the telescopic slide rod is in contact with the limiting block.

[0010] As a further optimization of the invention, the triangular guide plate and the filter assembly are connected to form an isosceles triangle structure.

[0011] As a further optimization of the invention, the connecting filter has a "[" shaped structure, with three ambient lights installed in the middle position.

[0012] As a further optimization of the invention, the barrier gasket connected to the protective cover is made of rubber material. After the outer ring of the cover plate comes into contact with the protective cover, the barrier gasket will be placed between the two, effectively playing a blocking role.

[0013] As a further optimization of the invention, the perforated plate is provided with multiple through holes, which effectively serve as a flow guide. Beneficial effects

[0014] The present invention provides an improved ambient light for indoor environmental design, which has the following beneficial effects: This invention utilizes a guide component, an interconnecting plate, a lifting rod, a cover plate, a flow component, and a slide rail. The lifting rod lifts the cover plate upwards, allowing indoor air to flow through the protective cover into the flow component. The flow component purifies the air, which then flows into the guide component. The guide component adjusts its movement via the slide rail, effectively expelling the purified air. This allows the expelled air to complement the ambient lighting during illumination, enhancing the overall ambiance.

[0015] This invention utilizes a barrier filter, a separator head, a connecting frame, a triangular guide plate, a filter assembly, and a flow chamber. Air is guided into the flow chamber through the triangular guide plate and then onto the filter assembly. Three filter assemblies are positioned between the four separator heads, arranged in parallel under the influence of the separator heads. These three filter assemblies effectively divert and purify the indoor air. The treated air is then guided downwards into the barrier filter for further processing, ensuring the air purification effect.

[0016] This invention comprises a rotating head, a housing, rotating fan blades, a rotating gear, a controller, a limiting block, and an air outlet assembly. The rotating fan blades rotate in coordination with the rotating gear and the controller. The simultaneous rotation of the two rotating fan blades accelerates the airflow, allowing the air to be quickly dispersed and discharged from the two air outlet assemblies. The air outlet assemblies move along the slide rails under the influence of the airflow, providing a buffering effect. The air outlet assembly is equipped with a rotating head, which rotates under the influence of the airflow, effectively improving the air filtration efficiency. Attached Figure Description

[0017] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a schematic diagram of the structure of an improved ambient light for indoor environment design according to the present invention; Figure 2 This is a schematic diagram of the internal structure of the purification device of the present invention.

[0018] Figure 3 This is a schematic diagram of the internal structure of the purification component of the present invention.

[0019] Figure 4 This is a cross-sectional structural diagram of the flow component of the present invention.

[0020] Figure 5 This is a schematic diagram of the internal structure of the filter component of the present invention.

[0021] Figure 6 This is a schematic diagram of the internal structure of the guiding component of the present invention.

[0022] Figure 7 This is a cross-sectional structural diagram of the air outlet component of the present invention.

[0023] In the diagram: Frame-1, Purification Device-2, Ambient Light-3, Mounting Base-5, Rotary Table-4, Purification Component-Q1, Protective Cover-E3, Press Head-W2, Barrier Gasket-R4, Guide Component-R11, Interconnecting Plate-P16, Lifting Rod-U14, Cover Plate-I15, Flow Component-Y13, Slide Rail-T12, Barrier Filter Element-D21, Separator Head-F23, Connecting Frame-J25, Triangular Guide Plate-G22, Filter Component-H24 Flow chamber - K26, flow guide component - K31, primary filter - Z33, flow divider - X34, high efficiency filter - L32, rotating head - C41, housing - B46, rotating fan blade - N42, rotating gear - Q45, controller - V43, limiting block - W47, air outlet assembly - M44, perforated plate - E51, fixed ornament - Y54, adjusting block - I56, connecting filter - T52, moving rod - U55, telescopic slide bar - R53. Implementation

[0024] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments. Example

[0025] Please see Figure 1The present invention provides a technical solution: an improved ambient light for indoor environmental design, the structure of which includes a frame 1, a purification device 2, an ambient light 3, a mounting base 5, and a rotating platform 4. The frame 1 is mounted on the mounting base 5, and the mounting base 5 is fixedly connected to the top center of the rotating platform 4. The frame 1 is provided with a plurality of ambient lights 3 connected thereto. The purification device 2 is installed in the center of the frame 1, and the purification device 2 passes through the frame 1 and its bottom is connected to the top of the mounting base 5.

[0026] Please see Figure 2 The purification device 2 includes a purification component Q1, a protective cover E3, a pressing head W2, and a barrier gasket R4. The purification component Q1 is mounted on the protective cover E3, and the barrier gasket R4 is connected to the protective cover E3. The pressing head W2 is installed on the top of the purification component Q1. The protective cover E3 is mounted on the frame 1, and the purification component Q1 is mounted on the mounting base 5.

[0027] Please see Figure 2 The barrier gasket R4 connected to the protective cover E3 is made of rubber material. After the outer ring of the cover plate I15 comes into contact with the protective cover E3, the barrier gasket R4 will be placed between the two, effectively playing a blocking role.

[0028] Please see Figure 3 The purification component Q1 includes a guide component R11, an interconnecting plate P16, a lifting rod U14, a cover plate I15, a flow component Y13, and a slide rail T12. Slide rails T12 are installed on both sides of the guide component R11. The top of the guide component R11 is provided with an interconnecting plate P16, and the top of the interconnecting plate P16 is connected to the flow component Y13. The flow component Y13 and the guide component R11 are connected through the interconnecting plate P16. A lifting rod U14 is inserted into the top of the flow component Y13. The end of the lifting rod U14 away from the flow component Y13 is fitted with the cover plate I15. A pressing head W2 is installed on the cover plate I15. The cover plate I15 is located on a protective cover E3, and the guide component R11 is located on a mounting base 5.

[0029] The aforementioned slide rail T12 is used to cooperate with the guide component R11. The left and right sides of the guide component R11 are connected to the slide rail T12, and the guide component R11 is adjusted by the action of the slide rail T12.

[0030] Please see Figure 4The flow assembly Y13 includes a barrier filter D21, a separator head F23, a connecting frame J25, a triangular guide plate G22, a filter assembly H24, and a flow chamber K26. The barrier filter D21 is located in the middle of the connecting frame J25. The connecting frame J25 is fixedly connected to the triangular guide plate G22. The filter assembly H24 is provided between the connecting frame J25 and the triangular guide plate G22. Multiple filter assemblies H24 are provided and are connected in series at equal intervals through four separator heads F23. The lower end of the filter assembly H24 is connected to the barrier filter D21. The barrier filter D21 is connected to the guide assembly R11 through the interconnecting plate P16. A lifting rod U14 is inserted into the top of the triangular guide plate G22.

[0031] Please see Figure 4 The triangular guide plate G22 and the filter assembly H24 are connected to form an isosceles triangle structure.

[0032] The aforementioned separator F23 is used in conjunction with the filter assembly H24. Three filter assemblies H24 are arranged between the four separators F23. The three filter assemblies H24 are arranged in parallel under the action of the separators F23, and the three filter assemblies H24 can effectively split the indoor air.

[0033] Please see Figure 5 The filter assembly H24 includes a flow guide component K31, a primary filter Z33, a flow divider X34, and a high-efficiency filter L32. The flow guide component K31 contains the primary filter Z33 and the high-efficiency filter L32. The top of the flow guide component K31 is connected to the flow divider X34. The flow divider X34 is located between the connecting frame J25 and the triangular guide plate G22. The left and right sides of the flow divider X34 are connected to the separator head F23. The lower end of the flow guide component K31 is connected to the barrier filter D21.

[0034] The aforementioned primary filter Z33 and high-efficiency filter L32 are used in conjunction with the airflow guide component K31. The airflow guide component K31 is equipped with a primary filter Z33 and a high-efficiency filter L32, which work together to filter the air. Example

[0035] Please see Figure 1 The present invention provides a technical solution: an improved ambient light for indoor environmental design, the structure of which includes a frame 1, a purification device 2, an ambient light 3, a mounting base 5, and a rotating platform 4. The frame 1 is mounted on the mounting base 5, and the mounting base 5 is fixedly connected to the top center of the rotating platform 4. The frame 1 is provided with a plurality of ambient lights 3 connected thereto. The purification device 2 is installed in the center of the frame 1, and the purification device 2 passes through the frame 1 and its bottom is connected to the top of the mounting base 5.

[0036] Please see Figure 2 The purification device 2 includes a purification component Q1, a protective cover E3, a pressing head W2, and a barrier gasket R4. The purification component Q1 is mounted on the protective cover E3, and the barrier gasket R4 is connected to the protective cover E3. The pressing head W2 is installed on the top of the purification component Q1. The protective cover E3 is mounted on the frame 1, and the purification component Q1 is mounted on the mounting base 5.

[0037] Please see Figure 2 The barrier gasket R4 connected to the protective cover E3 is made of rubber material. After the outer ring of the cover plate I15 comes into contact with the protective cover E3, the barrier gasket R4 will be placed between the two, effectively playing a blocking role.

[0038] Please see Figure 3 The purification component Q1 includes a guide component R11, an interconnecting plate P16, a lifting rod U14, a cover plate I15, a flow component Y13, and a slide rail T12. Slide rails T12 are installed on both sides of the guide component R11. The top of the guide component R11 is provided with an interconnecting plate P16, and the top of the interconnecting plate P16 is connected to the flow component Y13. The flow component Y13 and the guide component R11 are connected through the interconnecting plate P16. A lifting rod U14 is inserted into the top of the flow component Y13. The end of the lifting rod U14 away from the flow component Y13 is fitted with the cover plate I15. A pressing head W2 is installed on the cover plate I15. The cover plate I15 is located on a protective cover E3, and the guide component R11 is located on a mounting base 5.

[0039] The aforementioned slide rail T12 is used to cooperate with the guide component R11. The left and right sides of the guide component R11 are connected to the slide rail T12, and the guide component R11 is adjusted by the action of the slide rail T12.

[0040] Please see Figure 6 The guiding component R11 includes a rotating head C41, a housing B46, a rotating fan blade N42, a rotating gear Q45, a controller V43, a limiting block W47, and an air outlet component M44. The rotating head C41 is mounted on the air outlet component M44, which is connected to the housing B46. One end of the air outlet component M44 away from the housing B46 is slidably connected to the slide rail T12. The air outlet component M44 is provided with a limiting block W47, on which the rotating fan blade N42 and the rotating gear Q45 are respectively connected to the left and right sides. The rotating gear Q45 is electrically connected to the controller V43, which is mounted on the housing B46. The housing B46 is connected to the barrier filter D21 through an interconnecting plate P16 and is mounted on the mounting base 5.

[0041] The aforementioned rotating fan blade N42 is used in conjunction with the air outlet assembly M44. The rotating fan blade N42 rotates in conjunction with the rotating gear Q45 and the controller V43. The rotation of the rotating fan blade N42 accelerates the airflow, allowing the air to be quickly dispersed and discharged from the two air outlet assemblies M44, effectively improving the air filtration efficiency.

[0042] Please see Figure 7 The air outlet assembly M44 includes a perforated plate E51, a fixed ornament Y54, an adjusting block I56, a connecting filter T52, a moving rod U55, and a telescopic slide rod R53. The perforated plate E51 is located at the lower end of the connecting filter T52. Adjusting blocks I56 are connected to both sides of the connecting filter T52. One end of each adjusting block I56 is connected to the fixed ornament Y54, and the other end is connected to the slide rail T12. Two telescopic slide rods R53 are provided between the two connecting filters T52. The telescopic slide rods R53 are parallel to the moving rod U55 and are slidably connected. A rotating head C41 is installed on the telescopic slide rod R53. The telescopic slide rod R53 is in contact with the limiting block W47.

[0043] Please see Figure 7 The connecting filter T52 has a "[" shaped structure, with three ambient lights 3 connected to it installed in the middle position.

[0044] The perforated plate E51 has multiple through holes, which effectively guide the flow.

[0045] The working principle of the above technical solution is explained below: In use, the purification component Q1 is fixed on the mounting base 5, which is placed on the rotating table 4. The top of the purification component Q1 extends into the frame 1, and the protective cover E3 mounted on its top is positioned at the center of the top of the frame 1. When using the ambient lights 3, multiple ambient lights 3 work together to provide simultaneous illumination for decorative purposes. During illumination, pressing the pressing head W2 causes the lifting rod U14 to rise, pushing the cover I15 upwards. The cover I15 then separates from the protective cover E3, creating a flow channel between them. Indoor air enters the flow component Y13 through this channel and passes through the triangular guide plate. Air is introduced into the flow chamber K26 via G22, and then guided onto the filter assembly H24. Three filter assemblies H24 are positioned between the four separators F23, arranged parallel to each other under the influence of the separators F23. These three filter assemblies H24 effectively divert and purify the indoor air. The air is then diverted into the corresponding diversion guide X34, whose lower end has an arc-shaped structure, effectively guiding the air downwards into the primary filter Z33. After initial filtration, the primary filter Z33 guides the air downwards into the high-efficiency filter L32, which further purifies the air. The purified air then flows downwards through the guide diffuser K31 into the barrier filter D21. In the process, the air is further treated by the barrier filter D21 to ensure the air purification effect. The barrier filter D21 is connected to the outer shell B46 through the interconnect plate P16, effectively introducing the treated air into the inner shell B46. Two rotating fan blades N42 are installed on the outer shell B46. The rotating fan blades N42 rotate in cooperation with the rotating gear Q45 and the controller V43. The simultaneous rotation of the two rotating fan blades N42 will accelerate the air circulation. The air circulation will serve as the power for the telescopic slide rod R53 to move up and down on the moving rod U55, causing the two air outlet components M44 to move under the action of the telescopic slide rod R53. The adjusting blocks I56 connected to the left and right of the two air outlet components M44 are respectively connected to the fixed swing piece Y54 and the slide rail T12. The two air outlet components M44 can swing and adjust between the two sides under the action of the telescopic slide rod R53. The telescopic slide rod R53 is equipped with a rotating head C41, which rotates under the action of wind, effectively improving the air purification efficiency and effectively dispersing and conducting the air to the connecting filter T52. The air is further purified by the filter screen on the connecting filter T52. During the purification process, a small ambient light 3 is also installed on the connecting filter T52, which can be used in conjunction with the ambient lights 3 around the frame 1 to illuminate the ground, meeting the different lighting needs of the entire scene. After the air is processed by the connecting filter T52, it is conducted to the perforated plate E51. The perforated plate E51 has multiple through holes, which can effectively disperse and exhaust the air.This design prevents air from concentrating in a single area for purification, allowing the H24 filter and M44 air outlet components to work together to purify the air multiple times. This effectively improves air filtration and prevents secondary pollution of indoor air.

[0046] In summary, this invention combines a frame, a purification device, an ambient light, a mounting base, and a rotating platform to form a new and improved ambient light for indoor environmental design. A lifting rod raises the cover, allowing indoor air to flow through the protective cover into the flow assembly. The flow assembly purifies the air, which then flows into the guide assembly. The guide assembly, guided by a sliding track, effectively removes the purified air, allowing it to complement the ambient light during illumination and enhance the overall ambiance.

[0047] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the scope of the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0048] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An improved ambient light for indoor environmental design, comprising a frame (1), a purification device (2), an ambient light (3), a mounting base (5), and a rotating platform (4), characterized in that: The frame (1) is mounted on the mounting base (5), which is fixedly connected to the top center of the rotating table (4). The frame (1) is provided with multiple ambient lights (3) connected to it. A purification device (2) is installed in the middle of the frame (1), and the purification device (2) penetrates the frame (1) and its bottom is connected to the top of the mounting base (5). The purification device (2) includes a purification component (Q1), a protective cover (E3), a pressing head (W2), and a barrier gasket (R4). The purification component (Q1) is mounted on the protective cover (E3), and the barrier gasket (R4) is connected to the protective cover (E3). The pressing head (W2) is installed on the top of the purification component (Q1). The protective cover (E3) is mounted on the frame (1), and the purification component (Q1) is mounted on the mounting base (5).

2. An improved ambient light for interior environment design according to claim 1, characterized in that: The purification component (Q1) includes a guide component (R11), an interconnecting plate (P16), a lifting rod (U14), a cover plate (I15), a flow component (Y13), and a slide rail (T12). The guide component (R11) has slide rails (T12) installed on both sides inside. The guide component (R11) has an interconnecting plate (P16) on top. The flow component (Y13) is connected to the top of the interconnecting plate (P16). The flow component (Y13) and the guide component (R11) are connected through the interconnecting plate (P16). The lifting rod (U14) is inserted into the top of the flow component (Y13). The end of the lifting rod (U14) away from the flow component (Y13) is connected to the cover plate (I15). A pressing head (W2) is installed on the cover plate (I15). The cover plate (I15) is located on the protective cover (E3). The guide component (R11) is located on the mounting base (5).

3. An improved ambient light for indoor environment design according to claim 2, characterized in that: The flow assembly (Y13) includes a barrier filter (D21), a separator head (F23), a connecting frame (J25), a triangular guide plate (G22), a filter assembly (H24), and a flow chamber (K26). The barrier filter (D21) is located in the middle of the connecting frame (J25). The connecting frame (J25) is fixedly connected to the triangular guide plate (G22). A filter assembly (H24) is provided between the connecting frame (J25) and the triangular guide plate (G22). Multiple filter assemblies (H24) are provided and are connected in series at equal intervals through four separator heads (F23). The lower end of the filter assembly (H24) is connected to the barrier filter (D21). The barrier filter (D21) is connected to the guide assembly (R11) through an interconnecting plate (P16). A lifting rod (U14) is inserted into the top of the triangular guide plate (G22).

4. An improved ambient light for interior environment design according to claim 3, characterized in that: The filter assembly (H24) includes a flow guide component (K31), a primary filter (Z33), a flow divider component (X34), and a high-efficiency filter (L32). The flow guide component (K31) contains the primary filter (Z33) and the high-efficiency filter (L32). The top of the flow guide component (K31) is connected to the flow divider component (X34). The flow divider component (X34) is located between the connecting frame (J25) and the triangular guide plate (G22). The left and right sides of the flow divider component (X34) are connected to separator heads (F23). The lower end of the flow guide component (K31) is connected to the barrier filter component (D21).

5. An improved ambient light for interior environment design according to claim 2, characterized in that: The guide assembly (R11) includes a rotating head (C41), a housing (B46), rotating fan blades (N42), a rotating gear (Q45), a controller (V43), a limiting block (W47), and an air outlet assembly (M44). The rotating head (C41) is mounted on the air outlet assembly (M44), which is connected to the housing (B46). The end of the air outlet assembly (M44) away from the housing (B46) is slidably connected to the slide rail (T12). The air outlet assembly (M44) is provided with a limiting block (W47). The left and right sides of the limiting block (W47) are respectively connected to a rotating fan blade (N42) and a rotating gear (Q45). The rotating gear (Q45) is electrically connected to the controller (V43). The controller (V43) is mounted on the housing (B46). The housing (B46) is connected to the barrier filter (D21) through an interconnect plate (P16). The housing (B46) is located on the mounting base (5).

6. An improved ambient light for interior environment design according to claim 5, characterized in that: The air outlet assembly (M44) includes a perforated plate (E51), a fixed ornament (Y54), an adjusting block (I56), a connecting filter (T52), a moving rod (U55), and a telescopic slide rod (R53). The perforated plate (E51) is located at the lower end of the connecting filter (T52). Adjusting blocks (I56) are connected to both sides of the connecting filter (T52). One end of each adjusting block (I56) is connected to the fixed ornament (Y54), and the other end is connected to the slide rail (T12). Two telescopic slide rods (R53) are provided between the two connecting filters (T52). The telescopic slide rods (R53) are parallel to the moving rod (U55) and the two are slidably connected. A rotating head (C41) is installed on the telescopic slide rod (R53), and the telescopic slide rod (R53) is in contact with the limiting block (W47).

7. An improved ambient light for interior environment design according to claim 3, characterized in that: The triangular guide plate (G22) and the filter assembly (H24) are connected to form an isosceles triangle structure.

8. An improved ambient light for interior environment design according to claim 6, characterized in that: The connecting filter (T52) has a "[" shaped structure, with three ambient lights (3) installed in the middle.