Three-dimensional indoor space digital guide interaction device

By designing a detachable AR glasses structure and expanding storage space, the problem of AR glasses not being able to meet the usage needs of both nearsighted and non-nearsighted users was solved, improving the applicability and storage capacity of AR glasses and enhancing the visitor experience.

CN224216953UActive Publication Date: 2026-05-08SHENZHEN YATAI FEIYUE DESIGN CONSULTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN YATAI FEIYUE DESIGN CONSULTING CO LTD
Filing Date
2025-05-26
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing AR glasses cannot simultaneously meet the needs of tourists who wear glasses and those who do not, resulting in blurred vision for glasses wearers after wearing AR glasses, which affects the tourist experience.

Method used

The design incorporates detachable AR glasses, mounting, and wearing components. A combination of sliding blocks, pressing rods, L-shaped fixing blocks, springs, and pins enables quick installation and removal of AR glasses and prescription glasses. Additionally, a housing, transmission controller, and plug are added to expand storage space.

Benefits of technology

It enables quick installation and removal of AR glasses, avoiding the problem of blurred vision for nearsighted glasses wearers, while ensuring sufficient storage space for AR glasses and improving the user experience for tourists.

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Abstract

The utility model relates to the field of digital guide interaction, in particular to a three-dimensional indoor space digital guide interaction device, which comprises an AR (Augmented Reality) glasses part, a mounting part, a wearing part and the like, the AR glasses part is clamped with two mounting parts; and each mounting part is fixedly connected with a wearing part. The AR glasses are provided with the AR glasses part, the mounting part and the wearing part, and a sliding block, a pressing rod, an L-shaped fixing block, a first spring, a first plug pin, a second spring, a pushing rod, a pushing cap, a second plug pin and a third spring are arranged, so that the AR glasses part, the mounting part and the wearing part can be quickly mounted and dismounted, and meanwhile, the AR glasses can be conveniently mounted and dismounted. According to the technical scheme, the AR glasses part and the myopic glasses can be quickly mounted and dismounted, so that the problem that people who need to wear the myopic glasses cannot wear the myopic glasses after wearing the AR glasses, so that the people who need to wear the myopic glasses can only travel in a blurred sight state, and the travel experience of the people who need to wear the myopic glasses is influenced is solved.
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Description

Technical Field

[0001] This utility model relates to the field of digital wayfinding interaction, and in particular to a three-dimensional indoor space digital wayfinding interaction device. Background Technology

[0002] Currently, devices with digital technology and interactive interfaces are commonly used to provide navigation and services for tourists, including AR glasses. AR glasses can provide detailed floor plans and navigation guidance, helping tourists find their destinations or obtain the information they need more easily in complex indoor environments, thereby improving the tourist experience.

[0003] However, since existing AR glasses are usually one-piece, and there are two groups of tourists, those who need to wear glasses and those who don't, those who need to wear glasses will not be able to wear their glasses after wearing AR glasses. As a result, those who need to wear glasses can only participate in the parade with blurred vision, which affects their parade experience. Utility Model Content

[0004] To overcome the drawback that people who need to wear glasses cannot wear them after wearing AR glasses, thus only being able to participate in the parade with blurred vision, which affects their parade experience, this utility model provides a three-dimensional indoor space digital guidance and interaction device.

[0005] The technical solution is as follows: A three-dimensional indoor space digital navigation and interactive device includes an AR glasses unit; the AR glasses unit is snapped with two mounting parts; each mounting part is fixedly connected to a wearing part; characterized in that the AR glasses unit is provided with four cavities; each cavity is slidably connected to a sliding block; each sliding block is slidably connected to a pressing rod; each cavity has a U-shaped groove; each pressing rod is fixedly connected to an L-shaped fixing block, and each L-shaped fixing block is slidably connected to a corresponding U-shaped groove, and each L-shaped fixing block is snapped with a mounting part; each L-shaped fixing block is fixedly connected to a spring, and each spring is fixedly connected to a corresponding sliding block; each sliding block has two... Each cavity has a circular hole; each pressing rod has a through hole, and each through hole is aligned with the circular hole; each cavity is slidably connected to a pin 1, and each pin 1 is inserted into both the circular hole and the through hole; each pin 1 is fixedly connected to at least one spring 2, and each spring 2 is fixedly connected to the AR glasses; each cavity is slidably connected to a push rod, and each push rod is in contact with a pin 1; each push rod is fixedly connected to a push cap, and all push caps are slidably connected to the AR glasses; each cavity is slidably connected to a pin 2, and each pin 2 is in contact with the push rod and aligned with the corresponding circular hole; each pin 2 is fixedly connected to a spring 3, and each spring 3 is fixedly connected to the AR glasses.

[0006] Optionally, the AR glasses may have an earphone jack.

[0007] Optionally, it also includes a T-shaped component; the AR glasses are screwed with a T-shaped component.

[0008] Optionally, it also includes an L-shaped card plate and a light-shielding plate; the AR glasses are fixedly connected to two L-shaped card plates; the two L-shaped card plates are jointly inserted with a light-shielding plate.

[0009] Optionally, it also includes a housing, a transmission controller, a mounting plate, and a plug; the housing is located below the AR glasses; the transmission controller is fixedly connected to the housing; several mounting plates are slidably connected to the housing; each mounting plate is fixedly connected to a plug; the AR glasses are provided with a data receiving port.

[0010] Optionally, it also includes positioning plates; each mounting plate is fixed with two positioning plates.

[0011] Optionally, it also includes a spring four and a pressure sensor; each mounting plate is fixedly connected to at least one spring four; each spring four is connected to a pressure sensor, and all pressure sensors are fixedly connected to the housing.

[0012] The beneficial effects of this utility model are as follows: By setting the AR glasses into an AR glasses part, an installation part, and a wearing part, and by incorporating a sliding block, a pressing rod, an L-shaped fixing block, a spring one, a pin one, a spring two, a push rod, a push cap, a pin two, and a spring three, the AR glasses part, the installation part, and the wearing part can be quickly installed and disassembled. At the same time, the AR glasses part can be quickly installed and disassembled from nearsighted glasses, thus avoiding the problem that people who need to wear nearsighted glasses will be unable to wear their nearsighted glasses after wearing the AR glasses, which would force them to march with blurred vision and affect their marching experience.

[0013] By adding enclosures, transmission controllers, mounting plates, and plugs, and by installing enclosures and their connected parts on each floor, the built-in storage chip of the AR glasses always has sufficient storage space. This avoids the problem of the AR glasses malfunctioning when the available storage space of the built-in storage chip is exhausted, which would affect the overall experience of the visitors. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the main structure of the three-dimensional indoor space digital navigation and interactive device of this utility model;

[0015] Figure 2 This is a schematic diagram of the AR glasses section of the three-dimensional indoor space digital guidance and interactive device disclosed in this utility model;

[0016] Figure 3This is a schematic diagram of the internal structure of the AR glasses part of the three-dimensional indoor space digital guidance and interactive device of this utility model.

[0017] Figure 4 This is a schematic diagram of the sliding block, pressing rod, pin one, and spring two disclosed in the three-dimensional indoor space digital guidance and interactive device of this utility model.

[0018] Figure 5 This is a schematic diagram of the structure of the AR glasses, pressing rod, pushing rod, pushing cap, T-shaped piece, L-shaped card plate and light shield of the three-dimensional indoor space digital guidance and interactive device disclosed in this utility model;

[0019] Figure 6 This is a schematic diagram of the installation plate, plug, positioning plate, spring, and pressure sensor disclosed in the three-dimensional indoor space digital guidance and interactive device of this utility model.

[0020] The markings in the attached diagram are as follows: 1-AR glasses part, 2-mounting part, 3-wearing part, 4-sliding block, 5-pressing rod, 6-L-shaped fixing block, 7-spring one, 8-pin one, 9-spring two, 10-push rod, 11-push cap, 12-pin two, 13-spring three, 111-T-shaped piece, 112-L-shaped card plate, 113-light shield, 211-box body, 212-transmission controller, 213-mounting plate, 214-plug, 215-positioning plate, 216-spring four, 217-pressure sensor, 101-cavity, 102-U-shaped slide, 103-earphone hole, 104-data receiving hole, 401-round hole, 501-through hole. Detailed Implementation

[0021] The present invention will now be described in detail with reference to the accompanying drawings. Example 1

[0022] A three-dimensional indoor space digital navigation and interactive device, such as Figures 1-5 As shown, it includes an AR glasses part 1, a mounting part 2, and a wearing part 3; the AR glasses part 1 is snapped with two mounting parts 2 distributed on the left and right sides; each mounting part 2 is fixedly connected to a wearing part 3;

[0023] It also includes a sliding block 4, a pressing rod 5, an L-shaped fixing block 6, a spring 7, a pin 8, a spring 9, a push rod 10, a push cap 11, a pin 12, and a spring 13; the AR glasses part 1 is provided with four rectangularly distributed cavities 101; each cavity 101 is slidably connected to a sliding block 4; each sliding block 4 is slidably connected to a pressing rod 5; each cavity 101 has a U-shaped groove 102; each pressing rod 5 is fixedly connected to an L-shaped fixing block 6, and each L-shaped fixing block 6 is slidably connected to the corresponding U-shaped groove 102, and each L-shaped fixing block 6 is snapped into the corresponding mounting part 2; each L-shaped fixing block 6 is fixedly connected to a spring 7, and each spring 7 is fixedly connected to the corresponding sliding block 4; each sliding block 4 has two round holes 401; each pressing rod 5 has a through hole 501, and each through hole 501 is aligned with the corresponding round hole 401. Each cavity 101 is slidably connected to a pin 8, and each pin 8 is inserted into a corresponding round hole 401 and through hole 501. The pin 8, round hole 401 and through hole 501 cooperate to stably engage the L-shaped fixing block 6 with the mounting part 2. Each pin 8 is fixedly connected to two springs 9, and all springs 9 are fixedly connected to the AR glasses part 1. Each cavity 101 is slidably connected to a push rod 10, and each push rod 10 contacts a corresponding pin 8. Each push rod 10 is fixedly connected to a push cap 11, and all push caps 11 are slidably connected to the AR glasses part 1. Each cavity 101 is slidably connected to a pin 12, and each pin 12 contacts a corresponding push rod 10. Each pin 12 is aligned with a corresponding round hole 401. Each pin 12 is fixedly connected to a spring 13, and all springs 13 are fixedly connected to the AR glasses part 1.

[0024] The AR glasses have an earphone jack 103 on the left side.

[0025] It also includes a T-shaped component 111; the AR glasses part 1 is screwed with the T-shaped component 111.

[0026] It also includes an L-shaped plate 112 and a light-shielding sheet 113; the AR glasses part 1 is fixedly connected to two L-shaped plates 112 distributed vertically; the two L-shaped plates 112 are jointly inserted with a light-shielding sheet 113 for blocking sunlight.

[0027] When tourists who do not need to wear glasses use this AR glasses, the staff will directly give the AR glasses to them, and they can simply wear them.

[0028] When tourists who need to wear glasses use this AR glasses, the staff first pushes the pin 8 away from the center point of the sliding block 4 by pushing the cap 11 and the push rod 10, and compresses the spring 9, so that the pin 8 is pulled out from the through hole 501. At this time, since the spring 7 is initially in a stretched state, after the pin 8 is pulled out from the through hole 501, the spring 7 will drive the L-shaped fixing block 6 to move upward in the vertical channel on the left side of the U-shaped slide 102, so as to release the fixing of the L-shaped fixing block 6 to the mounting part 2, so that the mounting part 2 can be directly removed from the AR glasses part 1 without the fixing of the L-shaped fixing block 6. When the fixing of the mounting part 2 is released, the staff removes the mounting part 2 and the wearing part 3 from the AR glasses part 1, thus realizing the quick disassembly of the mounting part 2 and the wearing part 3.

[0029] It should be noted that during the process of the spring 7 driving the L-shaped fixing block 6 to move upward, the L-shaped fixing block 6 will push the pressing rod 5 to move upward, making the pressing rod 5 protrude more from the outside of the AR glasses part 1, making it easier for the staff to move the pressing rod 5 and its connected parts. At the same time, since the pressing rod 5 protrudes more from the outside of the AR glasses part 1, the pin 8 will not be aligned with the through hole 501. Therefore, when the push cap 11 is manually released, the pin 8 cannot be inserted into the through hole 501. Furthermore, when the L-shaped fixing block 6 releases its fixation on the mounting part 2, the L-shaped fixing block 6 will align with the transverse channel on the upper side of the U-shaped slide groove 102.

[0030] After the mounting part 2 and the wearing part 3 are removed from the AR glasses part 1, the staff first attaches the AR glasses part 1 to the tourist's nearsighted glasses. Then, the staff pushes the sliding block 4 and its connected parts towards the pin 12 by pressing the lever 5, until the L-shaped fixing block 6 passes through the horizontal channel on the upper side of the U-shaped slide 102 and aligns with the vertical channel on the right side of the U-shaped slide 102. During this process, because the pressing lever 5 protrudes further from the AR glasses part 1, the pin 8 will not align with the through hole 501. As the sliding block 4 and its connected parts move towards the pin 12, the pin 12 will first insert into the corresponding round hole 401. Then, as the sliding block 4 and its connected parts continue to move, when the pin 12 contacts the pressing lever 5, the pin 12 will move away from the center point of the sliding block 4 under the restriction of the pressing lever 5, and compress the spring 13. When the L-shaped fixing block 6 is aligned with the vertical channel on the right side of the U-shaped slide 102, the second pin 12 is in a compressed state under the restriction of the pressing rod 5. After the L-shaped fixing block 6 is aligned with the vertical channel on the right side of the U-shaped slide 102, the staff presses the pressing rod 5, which pushes the L-shaped fixing block 6 away from the sliding block 4 and stretches the second spring 9, so that the L-shaped fixing block 6 is locked on the tourist's glasses. During this process, when the L-shaped fixing block 6 is locked on the tourist's glasses, the second pin 12 will be aligned with the corresponding round hole 401, and the third spring 13 will push the second pin 12 to insert into the corresponding round hole 401, so that the L-shaped fixing block 6 is locked on the AR glasses 1 under the action of the second pin 12, so that the AR glasses 1 is stably fixed on the tourist's glasses under the action of the L-shaped fixing block 6, thus quickly fixing the AR glasses 1 on the tourist's glasses.

[0031] When the AR glasses 1 needs to be removed from the tourist's glasses, the staff will push the pin 8 away from the center point of the sliding block 4 by pushing the cap 11 and the push rod 10 in sequence, and compress the spring 9, so that the pin 8 is pulled out from the through hole 501. At this time, the compressed spring 7 will drive the L-shaped fixing block 6 to move upward in the vertical channel on the right side of the U-shaped slide 102, so that the L-shaped fixing block 6 will no longer be stuck on the tourist's glasses, thus quickly completing the separation of the AR glasses 1 from the tourist's glasses.

[0032] When it is necessary to reinstall the mounting part 2 and the wearing part 3 onto the AR glasses part 1, the mounting part 2 is fixed by the L-shaped fixing block 6 in the same way as installing the AR glasses part 1 onto the tourist's myopia glasses. This completes the reinstallation of the mounting part 2 and the wearing part 3 onto the AR glasses part 1, enabling the quick installation of the mounting part 2 and the wearing part 3.

[0033] By configuring the AR glasses into an AR glasses unit 1, an installation unit 2, and a wearing unit 3, and by incorporating a sliding block 4, a pressing rod 5, an L-shaped fixing block 6, a spring 7, a pin 8, a spring 9, a push rod 10, a push cap 11, a pin 12, and a spring 13, the AR glasses unit 1, installation unit 2, and wearing unit 3 can be quickly installed and removed. Simultaneously, the AR glasses unit 1 can be quickly installed and removed from nearsighted glasses. This avoids the problem that people who need to wear nearsighted glasses will be unable to wear their glasses after wearing the AR glasses, resulting in blurred vision during the parade and negatively impacting their parade experience.

[0034] By adding a headphone jack 103 to the AR glasses unit 1, and connecting high-quality wired headphones through the headphone jack 103, tourists can obtain a more realistic 3D surround sound experience, thereby enhancing their sense of immersion.

[0035] By adding a T-shaped piece 111, tourists can adjust the overall length of the wired headphones by winding them around the T-shaped piece 111, making it more comfortable for tourists to wear the wired headphones.

[0036] Furthermore, considering that in sunny weather, external light will affect tourists' viewing of the images played on AR glasses unit 1, thus impacting their experience.

[0037] Therefore, an L-shaped plate 112 and a light-shielding sheet 113 are added. The light-shielding sheet 113 reduces the impact of external light on the image displayed on the AR glasses 1, so as to avoid the problem that external light will affect the viewer's viewing of the image displayed on the AR glasses 1 and affect the viewer's experience. Example 2

[0038] Based on Example 1, such as Figures 1-2 and Figure 6 As shown, it also includes a housing 211, a transmission controller 212, a mounting plate 213, and a plug 214; the housing 211 is located below the AR glasses unit 1; the housing 211 is bolted to the transmission controller 212 for transmitting map information to the AR glasses unit 1; the housing 211 is slidably connected to three mounting plates 213; each mounting plate 213 is fixedly connected to a plug 214; the AR glasses unit 1 is provided with a data receiving hole 104, which cooperates with the plug 214 to enable the transmission controller 212 to transmit map information to the AR glasses unit 1.

[0039] It also includes positioning plates 215; each mounting plate 213 is fixed with two positioning plates 215 distributed on the left and right, the positioning plates 215 being used to better align the data receiving hole 104 with the plug 214.

[0040] It also includes springs 216 and pressure sensors 217; each mounting plate 213 is fixed with two springs 216; each spring 216 is connected to a pressure sensor 217, and all pressure sensors 217 are bolted to the housing 211.

[0041] Considering that AR glasses 1 are typically equipped with relatively small-capacity built-in storage chips, while large buildings such as shopping malls and hotels may contain a large amount of information on each floor (such as maps, merchant details, service facilities, etc.), if all the information from all floors is stored in AR glasses 1, the available storage space will be quickly exhausted. When the available storage space of the built-in storage chip in AR glasses 1 is exhausted, it will cause AR glasses 1 to lag, thus affecting the overall experience of tourists.

[0042] Therefore, a housing 211, a transmission controller 212, a mounting plate 213, and a plug 214 are added. The housing 211 and its connected parts are installed on each floor. When a visitor enters a floor, the AR glasses 1 prompts the visitor to perform a data import operation. The visitor then inserts the data receiving port 104 of the AR glasses 1 into the plug 214, so that the transmission controller 212 imports the data of that floor into the AR glasses 1 through the plug 214, so that the AR glasses 1 has the data of that floor. When the visitor enters the next floor and inserts the data receiving port 104 of the AR glasses 1 into the plug 214 on the next floor, the transmission controller 212 on the next floor will delete the data in the AR glasses 1. This ensures that the built-in storage chip of the AR glasses 1 always has sufficient storage space, thereby avoiding the problem that the AR glasses 1 will lag when the available storage space of the built-in storage chip of the AR glasses 1 is exhausted, which would affect the overall experience of the visitor.

[0043] Furthermore, when the visitor inserts the data receiving port 104 of the AR glasses 1 into the plug 214, the mounting plate 213, under the influence of the weight of the AR glasses 1, will move downward on the housing 211, causing the mounting plate 213 to compress the spring 216 and trigger the pressure sensor 217. When the pressure sensor 217 is triggered, it will transmit information to the transmission controller 212, allowing the transmission controller 212 to determine whether the plug 214 has been inserted into the data receiving port 104. When the transmission controller 212 determines that the plug 214 has been inserted into the data receiving port 104, it will import the information into the AR glasses 1 through the plug 214 that has been inserted into the data receiving port 104, thus achieving quick information import.

[0044] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A three-dimensional indoor space digital navigation and interactive device, comprising an AR glasses unit (1); the AR glasses unit (1) is snapped with two mounting parts (2); each mounting part (2) is fixedly connected to a wearing part (3); characterized in that, The AR glasses unit (1) has four cavities (101); each cavity (101) is slidably connected to a sliding block (4); each sliding block (4) is slidably connected to a pressing rod (5); each cavity (101) has a U-shaped groove (102); each pressing rod (5) is fixedly connected to an L-shaped fixing block (6), and each L-shaped fixing block (6) is slidably connected to the corresponding U-shaped groove (102), and each L-shaped fixing block (6) is snapped into the mounting part (2); each L-shaped fixing block (6) is fixedly connected to a spring (7), and each spring (7) is fixedly connected to the corresponding sliding block (4); each sliding block (4) has two round holes (401); each pressing rod (5) has a through hole (501), and each through hole (501) is aligned with the round hole (401); each cavity (101) is slidably connected to a Each pin (8) is inserted into a round hole (401) and a through hole (501); each pin (8) is fixedly connected to at least one spring (9), and each spring (9) is fixedly connected to the AR glasses part (1); each cavity (101) is slidably connected to a push rod (10), and each push rod (10) is in contact with a pin (8); each push rod (10) is fixedly connected to a push cap (11), and all push caps (11) are slidably connected to the AR glasses part (1); each cavity (101) is slidably connected to a pin (12), and each pin (12) is in contact with a push rod (10), and each pin (12) is aligned with the corresponding round hole (401); each pin (12) is fixedly connected to a spring (13), and each spring (13) is fixedly connected to the AR glasses part (1).

2. The three-dimensional indoor space digital navigation and interactive device according to claim 1, characterized in that, The AR glasses section (1) has an earphone jack (103).

3. The three-dimensional indoor space digital navigation and interactive device according to claim 2, characterized in that, It also includes a T-shaped piece (111); the AR glasses part (1) is screwed with the T-shaped piece (111).

4. The three-dimensional indoor space digital navigation and interactive device according to claim 3, characterized in that, It also includes an L-shaped card plate (112) and a light shield (113); the AR glasses part (1) is fixed with two L-shaped card plates (112); the two L-shaped card plates (112) are jointly inserted with a light shield (113).

5. A three-dimensional indoor space digital navigation and interactive device according to any one of claims 2-4, characterized in that, It also includes a housing (211), a transmission controller (212), a mounting plate (213), and a plug (214); the housing (211) is located below the AR glasses unit (1); the transmission controller (212) is fixedly connected to the housing (211); several mounting plates (213) are slidably connected to the housing (211); each mounting plate (213) is fixedly connected to a plug (214); the AR glasses unit (1) is provided with a data receiving hole (104).

6. A three-dimensional indoor space digital navigation and interactive device according to claim 5, characterized in that, It also includes positioning plates (215); each mounting plate (213) is fixed with two positioning plates (215).

7. A three-dimensional indoor space digital navigation and interactive device according to claim 6, characterized in that, It also includes a spring four (216) and a pressure sensor (217); each mounting plate (213) is fixedly connected to at least one spring four (216); each spring four (216) is connected to a pressure sensor (217), and all pressure sensors (217) are fixedly connected to the housing (211).