Indoor light source simulation device
By combining components such as the control unit and projection control unit, the dynamic simulation problem of indoor light source simulation device is solved, realizing the realistic simulation of sunrise and sunset light and shadow, improving the realism and flexibility of light simulation, and meeting the high-efficiency requirements of indoor light source simulation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-30
- Publication Date
- 2026-04-14
AI Technical Summary
Existing indoor light source simulation devices lack dynamic simulation structures, resulting in rigid lighting simulations, inconveniently adjustable projection distances, an inability to achieve sunrise and sunset lighting effects, and poor realism in lighting simulation, thus affecting the overall simulation quality.
It employs components such as an installation control unit, projection control unit, movement adjustment unit, and simulation control device to achieve dynamic simulation and automatic adjustment of the position and size of sunlight. Combined with backlight bonding components and supplementary lights, it ensures the realism and flexibility of light and shadow effects.
It achieves more realistic and efficient simulation of sunrise and sunset light and shadow effects, avoids the rigidity of light simulation, improves the realism and flexibility of the overall light source simulation, and enhances the realism of light and shadow display and the atmosphere creation effect.
Smart Images

Figure CN121854779A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of indoor light source simulation technology, and in particular to an indoor light source simulation device. Background Technology
[0002] In actual lighting simulation work, a large number of indoor lighting simulations are involved. In interior environmental art design work, such as some villa basements, sunlight simulation is often required. It is also involved in work such as film and television set design. When light source simulation is required, the most realistic light source is "sunlight". At this time, a good indoor light source simulation device becomes particularly important.
[0003] However, existing indoor light source simulation devices lack dynamic simulation structures, have rigid lighting simulations, and their projection distances are not easily adjustable. They cannot simulate the light and shadow effects of sunrise and sunset, nor can they simulate auxiliary backgrounds. The lighting simulations are not realistic, which affects the overall simulation quality. Summary of the Invention
[0004] In view of this, the present invention provides an indoor light source simulation device, which has a projection control component that can be used to simulate the changes in the size of sunlight at different positions. At the same time, the simulation of sunrise and sunset is more realistic and efficient, ensuring the overall light source simulation effect is realistic and effectively guaranteeing the light and shadow effect. Meanwhile, the structure is aesthetically pleasing and automatically adjusts without the need for manual adjustment.
[0005] This invention provides the purpose and function of an indoor light source simulation device, specifically including an installation control unit; a backlight body fitting component is fixedly connected inside the installation control unit; a conveying installation unit is installed on the installation control unit; a moving adjustment unit is installed on the installation control unit; a set installation component is fixedly connected to the moving adjustment unit; an illumination unit is fitted onto the set installation component; a simulation control device is fixedly connected to the set installation component; an illumination unit is fixedly connected to the simulation control device; a projection control component is fixedly connected to the illumination unit; the installation control unit includes: an equipment mounting box, a flat-fitting glass, a mounting door frame, a simulated sliding door, and a light diffuser; the flat-fitting glass is fixedly connected to the equipment mounting box; the mounting door frame is fixedly connected to the equipment mounting box; the simulated sliding door has four panels, and the four simulated sliding door panels are installed on the mounting door frame; the light diffuser is fixedly connected to the equipment mounting box.
[0006] Furthermore, the projection control component includes: an illumination shield, an electric push rod, and a corrugated tube. The electric push rod is fixedly connected to the support mounting rod. The illumination shield is fixedly connected to the output shaft of the electric push rod. The corrugated tube is fixedly connected to the illumination shield, and the other end of the corrugated tube is fixedly connected to the support mounting rod.
[0007] Furthermore, the installation control unit also includes a background fill light, which is fixedly connected to the light distribution cover.
[0008] Furthermore, the conveying installation unit also includes: a conveyor belt and a conveying control motor, wherein the conveyor belt is driven between two conveyor belt pulleys; the conveying control motor is fixedly connected to the equipment mounting box; and an upper conveying roller is fixedly connected to the output shaft of the conveying control motor.
[0009] Furthermore, the mounting assembly includes: a mounting slider and a ball-and-socket hole, wherein the mounting slider is slidably connected to the movement control slot block; the mounting slider is threadedly connected to the movement control threaded rod; and the mounting slider has a ball-and-socket hole.
[0010] Furthermore, the backlight assembly includes a backlight box and a backlight lamp, wherein the backlight box is fixedly connected inside the equipment mounting box; the backlight lamp is fixedly connected to the backlight box; and a gap is provided between the backlight lamp and the backlight box.
[0011] Furthermore, the movable adjustment unit includes: a movable control slot block, a movable control threaded rod, and a drive control motor. The movable control slot block is fixedly connected inside the equipment mounting box; the movable control threaded rod is rotatably connected to the equipment mounting box; the movable control threaded rod is located inside the movable control slot block; the drive control motor is fixedly connected to the equipment mounting box; and the movable control threaded rod is fixedly connected to the output shaft of the drive control motor.
[0012] Furthermore, the simulation control device includes: a control mounting cylinder, auxiliary tension springs, traction positioning ropes, and control electric push rods. The control mounting cylinder is fixedly connected to the mounting slider. Four auxiliary tension springs are fixedly connected inside the control mounting cylinder. The other ends of the four auxiliary tension springs are respectively fixedly connected to the support mounting rods. There are four traction positioning ropes, each fixedly connected to the support mounting rod. There are four control electric push rods, each fixedly connected to the control mounting cylinder. The output shafts of the four control electric push rods are fixedly connected to the traction positioning ropes.
[0013] Furthermore, the conveying installation part includes: conveying rollers, conveyor pulleys, and background paper. There are two conveying rollers, which are rotatably connected to the equipment mounting box. The shaft ends of the two conveying rollers are fixedly connected to the conveyor pulleys. Background paper is wound on the two conveyor pulleys. The background paper is located between the front side of the backlight box and the flat laminated glass.
[0014] Furthermore, the irradiation unit includes: a support mounting rod, a fluorescent lamp, and an auxiliary ball head. The fluorescent lamp is fixedly connected to the support mounting rod; the auxiliary ball head is fixedly connected to the support mounting rod; and the auxiliary ball head is fitted onto the ball head hole.
[0015] Beneficial effects By employing a specially designed conveyor installation unit, efficient background display can be achieved, effectively increasing the overall realism of the lighting effects. This unit also assists in driving background switching, allowing for background changes based on different time periods, further enhancing the overall structural atmosphere. The installation control unit, using a simulated sliding door, further improves realism. A backlight box, combined with a flat-fitting glass panel, assists in the smooth application of the background paper, ensuring a good display effect and preventing wrinkles. The overall structure is simple. Backlights, along with background fill lights, provide supplementary lighting to the back and front of the background paper. Backlights can also illuminate the sky above the background paper, enhancing realism and resulting in a more authentic lighting simulation.
[0016] Furthermore, by employing a movable adjustment unit in conjunction with the mounting kit, the lighting position can be adjusted to ensure the overall lighting effect. It can simulate the position of the sun at different times, and the simulation of the horizontal angle of the sun's illumination is more realistic, improving the quality of indoor light source simulation and effectively enhancing the realism of the light source. The illumination position is adjusted by using a drive control motor to move the mounting kit slider.
[0017] Furthermore, by employing a specially designed irradiation unit in conjunction with a simulation control device, multi-angle control and switching can be achieved, ensuring the overall flexibility of the lighting simulation. This effectively assists in controlling the light source angle, further avoiding rigid lighting. The simulation control device can assist in controlling the sunlight irradiation angle, and further adjust the vertical and horizontal irradiation angles. This simulation control device enables efficient and practical simulation, effectively addressing the current market's lack of realism in light source simulation. The designed projection control unit allows for adjustment of the projection area, further simulating the light and shadow formed by sunlight penetrating doors and windows under different lighting conditions, resulting in more accurate projection and ensuring the accuracy of the lighting simulation. By controlling the electric push rod to drive the positioning rope, the rotation and adjustment of the support mounting rod can be achieved. An auxiliary tension spring assists in resetting and pulling back the support mounting rod. The electric push rod enables multi-directional adjustment. Driving the irradiation shield with the electric push rod adjusts the distance between it and the sunlight irradiation lamp, thus assisting in controlling the projection size. The structure is simple and practical. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0020] In the attached diagram: Figure 1 This is a schematic diagram of the overall structure of the simulation device of the present invention.
[0021] Figure 2 This is a schematic diagram of the internal structure of the simulation device of the present invention.
[0022] Figure 3 This is a cross-sectional view of the overall internal structure of the simulation device of the present invention.
[0023] Figure 4 This is a schematic diagram of the movable adjustment part of the present invention.
[0024] Figure 5 This is a schematic diagram of the conveying and mounting section of the present invention.
[0025] Figure 6 This is a schematic diagram of the analog control device structure of the present invention.
[0026] Figure 7 This is a schematic diagram of the installation components of the present invention.
[0027] Figure 8 This is a schematic diagram of the analog control device structure of the present invention.
[0028] Figure 9 This is a schematic diagram of the conveying and mounting section of the present invention.
[0029] List of reference numerals 1. Installation control unit; 101. Equipment mounting box; 1011. Flat-fitting glass; 102. Installation door frame; 103. Simulated sliding door; 104. Light diffuser; 105. Background fill light; 2. Backlight body bonding component; 201. Backlight box; 202. Backlight; 3. Conveying installation unit; 301. Conveying roller; 3011. Conveying pulley; 302. Background paper; 305. Conveying belt; 304. Conveying control motor; 4. Movement adjustment unit; 401. Movement control trough block; 40 2. Moving control threaded rod; 403. Drive control motor; 5. Mounting kit; 501. Mounting slider; 502. Ball sleeve hole; 6. Irradiation section; 601. Support mounting rod; 602. Daylight lamp; 603. Auxiliary ball head; 7. Simulation control device; 701. Control mounting cylinder; 702. Auxiliary tension spring; 703. Pull positioning rope; 704. Control electric push rod; 8. Projection control component; 801. Irradiation shield; 802. Electric push rod; 803. Corrugated pipe. Detailed Implementation
[0030] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.
[0031] Example: Please refer to Figures 1 to 9 As shown: This invention provides an indoor light source simulation device, including an installation control unit 1; a backlight body bonding component 2 is fixedly connected inside the installation control unit 1; a conveying installation unit 3 is installed on the installation control unit 1; a moving adjustment unit 4 is installed on the installation control unit 1; a set installation component 5 is fixedly connected to the moving adjustment unit 4; an illumination unit 6 is fitted on the set installation component 5; a simulation control device 7 is fixedly connected to the set installation component 5; the illumination unit 6 is fixedly connected to the simulation control device 7; a projection control component 8 is fixedly connected to the illumination unit 6; the installation control unit 1 includes: an equipment installation box 101, a flat bonding glass 1011, an installation door frame 102, a simulated sliding door 103, and a light diffuser 104. The flat bonding glass 1011 is fixedly connected to the equipment installation box 101; the installation door frame 102 is fixedly connected to the equipment installation box 101; the simulated sliding door 103 has four panels, and the four simulated sliding door panels 103 are installed on the installation door frame 102; the light diffuser 104 is fixedly connected to the equipment installation box 101.
[0032] The installation control unit 1 further includes: a background fill light 105, which is fixedly connected to the light distribution cover 104; the backlight body bonding component 2 includes: a backlight box 201 and a backlight 202, with the backlight box 201 fixedly connected inside the equipment mounting box 101; the backlight 202 is fixedly connected to the backlight box 201; a gap is provided between the backlight 202 and the backlight box 201; the conveying installation unit 3 includes: a conveying roller 301, a conveyor belt pulley 3011, and a background paper 302. Two conveyor rollers 301 are provided, each rotatably connected to the equipment mounting box 101. Conveyor pulleys 3011 are fixedly connected to the shaft ends of the two conveyor rollers 301. Background paper 302 is wound around the two conveyor pulleys 3011. The background paper 302 is located between the front of the backlight box 201 and the flat-fitted glass 1011. The conveyor mounting part 3 also includes a conveyor belt 305 and a conveyor control motor 304. The conveyor belt 305 is driven between the two conveyor pulleys 3011. The conveyor control motor 304 is fixedly connected to the two conveyor pulleys 3011. The upper conveyor roller 301 is fixedly connected to the output shaft of the conveyor control motor 304. By using the set conveyor mounting part 3, efficient background display can be achieved, which can effectively increase the overall light effect realism. The set conveyor mounting part 3 can also achieve background switching, which can switch the background for different time periods, further improving the overall structural atmosphere creation effect. The set installation control part 1 can further improve the realism by simulating the sliding door 103. The set backlight box 201, together with the flat-fitting glass 1011, can help to flat-fit the background paper 302, ensuring the background display effect and avoiding wrinkles in the background paper 302. The overall structure is simple. The backlight 202 and the background fill light 105 are used to fill the light on the back and front of the background paper 302 respectively. The backlight 202 can fill the sky of the background paper 302, improving the realism. The overall lighting simulation is more realistic.
[0033] The movable adjustment unit 4 includes: a movable control slot 401, a movable control threaded rod 402, and a drive control motor 403. The movable control slot 401 is fixedly connected inside the equipment mounting box 101; the movable control threaded rod 402 is rotatably connected to the equipment mounting box 101; the movable control threaded rod 402 is located inside the movable control slot 401; the drive control motor 403 is fixedly connected to the equipment mounting box 101; the movable control threaded rod 402 is fixedly connected to the output shaft of the drive control motor 403; the mounting assembly 5 includes: a mounting slider 501 and a ball sleeve hole 502. 01 is slidably connected to the movable control slot 401; the mounting slider 501 is threadedly connected to the movable control threaded rod 402; the mounting slider 501 has a ball-shaped hole 502. By using the movable adjustment part 4 and the mounting part 5, the lighting position can be adjusted to ensure the overall lighting effect. It can simulate the position of the sun at different times, and the horizontal irradiation angle of the sun is simulated more realistically, improving the quality of indoor light source simulation and effectively improving the realism of the light source. The mounting slider 501 is moved by the drive control motor 403 to adjust the irradiation position.
[0034] The irradiation unit 6 includes: a support mounting rod 601, a fluorescent lamp 602, and an auxiliary ball head 603. The fluorescent lamp 602 is fixedly connected to the support mounting rod 601. The auxiliary ball head 603 is fixedly connected to the support mounting rod 601 and is fitted onto the ball sleeve hole 502. The analog control device 7 includes: a control mounting cylinder 701, auxiliary tension springs 702, a traction positioning rope 703, and a control electric push rod 704. The control mounting cylinder 701 is fixedly connected to the mounting slider 501. Four auxiliary tension springs 702 are fixedly connected inside the control mounting cylinder 701. The other ends of the four auxiliary tension springs 702 are respectively fixedly connected to the support mounting rod. On the support mounting rod 601; four traction positioning ropes 703 are provided, and the four traction positioning ropes 703 are respectively fixedly connected to the support mounting rod 601; four control electric push rods 704 are provided, and the four control electric push rods 704 are respectively fixedly connected to the control mounting cylinder 701; traction positioning ropes 703 are fixedly connected to the output shafts of the four control electric push rods 704; the projection control component 8 includes: an illumination shield 801, an electric push rod 802, and a corrugated pipe 803. The electric push rod 802 is fixedly connected to the support mounting rod 601; the illumination shield 801 is fixedly connected to the output shaft of the electric push rod 802; the corrugated pipe 803 is fixedly connected to the illumination shield 801. Furthermore, the other end of the corrugated pipe 803 is fixedly connected to the support mounting rod 601. By using the provided illumination part 6, in conjunction with the simulation control device 7, multi-angle control and switching can be assisted, ensuring the overall flexibility of the lighting simulation. It can effectively assist in controlling the light source angle, further avoiding rigid lighting. The simulation control device 7 can assist in controlling the sunlight illumination angle, and can further adjust the vertical and horizontal illumination angles. Through the simulation control device 7, efficient and practical simulation can be achieved. The simulation control device 7 effectively fills the current market's problem of insufficient realism in light source simulation. The provided projection... The control component 8 can assist in adjusting the projection area and further simulate the light and shadow formed by sunlight penetrating doors and windows under different lighting conditions, making the projection more accurate and ensuring the accuracy of the lighting simulation. By using the control electric push rod 704 to drive the pulling positioning rope 703 to move, the rotation adjustment of the drive support mounting rod 601 can be realized. The auxiliary tension spring 702 assists in the reset and pull back of the support mounting rod 601. The control electric push rod 704 can be used to assist in multi-directional adjustment. By using the electric push rod 802 to drive the illumination shield 801 to move, the distance between it and the sunlight illumination lamp 602 can be adjusted, thus achieving auxiliary control of the projection size. The structure is simple and practical.
[0035] The specific usage and function of this embodiment: In this invention, firstly, the structure is embedded in the wall to simulate the effect of doors and windows. Backlight 202 is used in conjunction with background fill light 105 to provide fill light to the back and front sides of the background paper 302, respectively. Backlight 202 can also fill light on the sky above the background paper 302, improving realism and making the overall lighting simulation more realistic. Conveyor control motor 304 drives conveyor roller 301 to rotate, which is transmitted through conveyor belt 305, causing the background paper 302 to switch positions. During this process, drive control motor 403 can be used to drive the movement. The rotation of the threaded rod 402 drives the sliding block 501 of the drive assembly to move, adjusting the illumination position. In conjunction with the control of the electric push rod 704 to drive the traction positioning rope 703 to move, the rotation of the drive support mounting rod 601 can be adjusted. The auxiliary tension spring 702 assists in the reset and pull-back of the support mounting rod 601. The control of the electric push rod 704 enables multi-directional adjustment. The movement of the illumination shield 801 driven by the electric push rod 802 adjusts the distance between it and the daylight lamp 602, thus assisting in controlling the projection size and completing the overall lighting simulation process.
[0036] The above description is merely an exemplary embodiment of the present invention and is not intended to limit the scope of protection of the present invention, which is determined by the appended claims.
Claims
1. An indoor light source simulation device, characterized in that, The system includes an installation control unit (1); a backlight body bonding component (2) is fixedly connected inside the installation control unit (1); a conveying installation unit (3) is installed on the installation control unit (1); a moving adjustment unit (4) is installed on the installation control unit (1); a set installation component (5) is fixedly connected to the moving adjustment unit (4); an irradiation unit (6) is fitted on the set installation component (5); an analog control device (7) is fixedly connected to the set installation component (5); the irradiation unit (6) is fixedly connected to the analog control device (7); and a projection control component is fixedly connected to the irradiation unit (6). (8); The installation control unit (1) includes: an equipment installation box (101), a flat-fit glass (1011), an installation door frame (102), a simulated sliding door (103), and a light-diffusing cover (104). The flat-fit glass (1011) is fixedly connected to the equipment installation box (101); the installation door frame (102) is fixedly connected to the equipment installation box (101); the simulated sliding door (103) has four panels, and the four simulated sliding doors (103) are installed on the installation door frame (102); the light-diffusing cover (104) is fixedly connected to the equipment installation box (101).
2. The indoor light source simulation device according to claim 1, characterized in that: The installation control unit (1) further includes a background fill light (105), which is fixedly connected to the light distribution cover (104).
3. The indoor light source simulation device according to claim 1, characterized in that: The backlight body bonding component (2) includes: a backlight box (201) and a backlight (202). The backlight box (201) is fixedly connected inside the equipment mounting box (101). The backlight (202) is fixedly connected to the backlight box (201). There is a gap between the backlight (202) and the backlight box (201).
4. The indoor light source simulation device according to claim 3, characterized in that: The conveying installation part (3) includes: a conveying roller (301), a conveyor pulley (3011) and a background paper (302). There are two conveying rollers (301), and the two conveying rollers (301) are rotatably connected to the equipment mounting box (101). The shaft ends of the two conveying rollers (301) are respectively fixedly connected to the conveyor pulleys (3011). The background paper (302) is wound on the two conveyor pulleys (3011). The background paper (302) is located between the front side of the backlight box (201) and the flat laminated glass (1011).
5. The indoor light source simulation device according to claim 4, characterized in that: The conveying installation part (3) further includes: a conveyor belt (305) and a conveying control motor (304). The conveyor belt (305) is driven between two conveyor pulleys (3011). The conveying control motor (304) is fixedly connected to the equipment mounting box (101). The upper conveying roller (301) is fixedly connected to the output shaft of the conveying control motor (304).
6. The indoor light source simulation device according to claim 1, characterized in that: The movable adjustment unit (4) includes: a movable control slot (401), a movable control threaded rod (402), and a drive control motor (403). The movable control slot (401) is fixedly connected inside the equipment mounting box (101). The movable control threaded rod (402) is rotatably connected to the equipment mounting box (101). The movable control threaded rod (402) is located inside the movable control slot (401). The drive control motor (403) is fixedly connected to the equipment mounting box (101). The movable control threaded rod (402) is fixedly connected to the output shaft of the drive control motor (403).
7. The indoor light source simulation device according to claim 6, characterized in that: The mounting component (5) includes: a mounting slider (501) and a ball sleeve hole (502). The mounting slider (501) is slidably connected to the moving control slot block (401). The mounting slider (501) is threadedly connected to the moving control threaded rod (402). The mounting slider (501) has a ball sleeve hole (502).
8. The indoor light source simulation device according to claim 7, characterized in that: The irradiation unit (6) includes: a support mounting rod (601), a sunlight lamp (602), and an auxiliary ball head (603). The sunlight lamp (602) is fixedly connected to the support mounting rod (601); the auxiliary ball head (603) is fixedly connected to the support mounting rod (601); and the auxiliary ball head (603) is fitted onto the ball sleeve hole (502).
9. An indoor light source simulation device according to claim 8, characterized in that: The simulation control device (7) includes: a control mounting cylinder (701), auxiliary tension springs (702), traction positioning ropes (703), and control electric push rods (704). The control mounting cylinder (701) is fixedly connected to the mounting slider (501). Four auxiliary tension springs (702) are fixedly connected inside the control mounting cylinder (701). The other ends of the four auxiliary tension springs (702) are fixedly connected to the support mounting rods (601). There are four traction positioning ropes (703), which are fixedly connected to the support mounting rods (601). There are four control electric push rods (704), which are fixedly connected to the control mounting cylinder (701). The output shafts of the four control electric push rods (704) are fixedly connected to the traction positioning ropes (703).
10. An indoor light source simulation device according to claim 8, characterized in that: The projection control component (8) includes: an illumination shield (801), an electric push rod (802), and a corrugated pipe (803). The electric push rod (802) is fixedly connected to the support mounting rod (601). The illumination shield (801) is fixedly connected to the output shaft of the electric push rod (802). The corrugated pipe (803) is fixedly connected to the illumination shield (801), and the other end of the corrugated pipe (803) is fixedly connected to the support mounting rod (601).