Starry sky tent device suspended in air

By designing a suspended starry sky tent device, which utilizes helium balloons and traction cables to achieve long-term stable stay, and equipped with an elevator and safety inspection, this device solves the problems of short stay time and limited field of vision of existing helium balloon sightseeing devices, providing a unique travel experience and safety guarantee.

CN223853960UActive Publication Date: 2026-01-30NANJING UNIV OF AERONAUTICS & ASTRONAUTICS
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Patent Information

Application Number
CN202520012076.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-01-30
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing helium balloon sightseeing devices have short flight times, cannot provide a long flight experience, have limited views, and lack uniqueness and repeat purchase potential.

Method used

Design an aerial suspended starry sky tent device that uses helium balloons for buoyancy, combined with a landing platform and traction cables to achieve long-term stable stay, equipped with an elevator and safety detection devices, providing a comfortable riding experience and a brand-new perspective.

Benefits of technology

It enables long-term aerial stays, provides expansive views and a unique camping experience, enhances the travel experience, and is equipped with safety detection devices to ensure safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a starry sky tent device suspended in the air. The device comprises a helium balloon, a starry sky tent main body, a landing platform, traction steel cables and an elevator, wherein the helium balloon is located at the top and provides overall buoyancy of the whole device; the starry sky tent main body is located in the middle; according to the starry sky tent device, the starry sky tent can be always in a suspended state through buoyancy provided by the helium balloon on the top, basic life requirements and starry sky observation activities can be provided for users, and the stability and safety of the starry sky tent device suspended in the air can be guaranteed on the basis of the traction steel cable under severe weather conditions.
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Description

TECHNICAL FIELD

[0001] The utility model relates to low altitude economy field especially in low altitude accommodation, family entertainment's a starry sky tent device that suspends in the air. BACKGROUND

[0002] In the prior art, helium balloon sightseeing device, with its high safety, smooth flight, wide view and other advantages, gradually becomes a popular leisure way in the field of tourism.

[0003] The helium balloon sightseeing device uses inert gas helium as the source of buoyancy, which has higher safety compared to flammable hydrogen. The balloon of the device is usually made of materials with strong weather resistance, which can withstand high-altitude weather conditions. In addition, the basket or gondola design provided by the sightseeing balloon can provide passengers with a comfortable riding experience while ensuring their safety during flight. It can provide tourists with a new perspective to appreciate the natural scenery and urban landscape on the ground. Its smooth flight characteristics and wide view enable passengers to enjoy a quiet sightseeing time in the air. At the same time, the starry sky tent is widely welcomed in the field of outdoor leisure and tourism due to its relatively low price, transparent design, easy installation, portability, and comfortable living experience. The starry sky tent is made of high-strength transparent material, allowing users to directly observe the night sky inside the tent and enjoy a camping experience integrated with nature.

[0004] However, the existing helium balloon sightseeing device has a short stay time in the air, and passengers need to be frequently transported up and down, which cannot enjoy a long flight experience. The sightseeing method is homogeneous, lacks uniqueness and repeatability, and the passenger's view is limited by the helium balloon and basket structure. In order to further seek a unique camping experience and provide a novel helium balloon sightseeing method, a starry sky tent device that can be deployed, lived, sightseen, and experienced in the air for a long time is needed. SUMMARY

[0005] To solve or partially solve the problems in the related art, the present application provides an air-suspended starry sky tent device for low-altitude economy, which can enable passengers to appreciate the natural scenery and urban landscape on the ground from a new perspective, directly observe the night sky, enjoy a camping experience integrated with nature, achieve long-term stay and sightseeing in the air, provide a unique camping experience, and provide a comfortable riding experience.

[0006] To achieve the above-mentioned purpose, the utility model provides a starry sky tent device that suspends in the air, characterized by comprising a helium balloon (1), a starry sky tent (3), a lifting elevator (4), and a landing platform (9).

[0007] The helium balloon (1) is located at the top of the starry sky tent device, provides buoyancy for the starry sky tent device, and is fixedly connected with the first end of the upper traction cable (2);

[0008] The starry sky tent (3) is located at the middle of the starry sky tent device, is fixedly connected with the second end of the upper traction cable (2), and provides a limiting downward force for the starry sky tent (3);

[0009] The landing platform (9) is fixedly arranged on the ground, is located at the bottom of the starry sky tent device, provides a limiting downward force for the starry sky tent (3), is fixedly connected with the first end of the lower traction cable, and the second end of the lower traction cable is fixedly connected with the starry sky tent (3);

[0010] The limiting downward force changes with the change of the load weight of the starry sky tent (3).

[0011] The lifting elevator (4) is connected to the inside of the starry sky tent (3) through an elevator cable (13).

[0012] As an embodiment of the utility model, the outside surface of the helium balloon (1) is further provided with a safety detection device for monitoring the internal pressure data and environmental influence data of the helium balloon (1).

[0013] As an embodiment of the utility model, the starry sky tent (3) specifically comprises a bearing frame, a tent framework and a tent body.

[0014] The bearing frame is made of high-strength square steel, the tent framework is made of light steel structure, and the tent framework is installed around the outside of the bearing frame.

[0015] The tent body is made of light material and is used for wrapping the bearing frame and the tent framework, and the wrapped tent body is in a closed structure.

[0016] The second end of the upper traction cable (2) is fixedly connected with the bearing frame.

[0017] As an embodiment of the utility model, the lower traction cable is divided into a lower main cable (5) and a lower auxiliary cable (6).

[0018] The second end of the lower main cable (5) is fixedly connected with the middle part of the bearing frame in the starry sky tent (3).

[0019] The second end of the lower auxiliary cable (6) is fixedly connected with the corresponding position of the bearing frame outside the starry sky tent (3).

[0020] The lifting elevator (4) is installed outside the lower main cable (5).

[0021] As an embodiment of the utility model, the starry night tent (3) specifically comprises an upper rest area (10) and a lower activity area (12) which are divided by a load-bearing frame.

[0022] The lower activity area (12) and the upper rest area (10) are communicated by a step ladder.

[0023] As an embodiment of the utility model, an elevator stopping space is arranged at a middle position of the lower activity area (12), a lifting motor (11) is fixedly installed on the load-bearing frame above the elevator stopping space, and the lifting motor (11) controls the lifting elevator (4) to move up and down through the elevator cable (13).

[0024] The elevator stopping space is used for stopping the lifting elevator (4).

[0025] As an embodiment of the utility model, the lower activity area (12) is in an inverted trapezoidal cylindrical shape, is fixed below the upper rest area (10), and has an activity space inside.

[0026] As an embodiment of the utility model, the upper rest area (10) is in a hemispherical shape, is fixed above the lower activity area (12), and is made of a large-area transparent material outside, and has a bed and a sunshade curtain inside.

[0027] As an embodiment of the utility model, the landing platform (9) is also connected to the starry night tent through a water and electricity pipeline (7).

[0028] As an embodiment of the utility model, a take-off and landing motor (8) is installed at the center of the landing platform (9), and a first end of the lower main cable (5) is installed on the take-off and landing motor (8).

[0029] The present application has the following technical effects relative to the prior art:

[0030] The helium balloon provides sustained buoyancy, the landing base provides a limiting downward force, and the traction cable is used for fixing, so that the starry night tent can be stably and long-termly stayed in the air. Compared with the traditional helium balloon sightseeing device, the utility model can provide a longer time of air experience, so that tourists can enjoy the ground landscape and the starry sky, and obtain a more unique travel experience. In addition, the starry night tent device is provided with a lifting elevator, so that tourists can quickly go up and down. BRIEF DESCRIPTION OF DRAWINGS

[0031] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0032] Figure 1 It is a schematic diagram of the overall structure of the starry sky tent device.

[0033] Figure 2 It is a schematic diagram of the internal structure of the starry sky tent.

[0034] Figure 3 It is a sectional view of the internal structure of the starry sky tent embedded with the lifting elevator.

[0035] Among them, 1-helium balloon, 2-upper traction cable, 3-starry sky tent, 4-lifting elevator, 5-lower main cable, 6-lower auxiliary cable, 7-water and electricity pipeline, 8-lifting motor, 9-landing platform, 10-upper rest area, 11-lifting motor, 12-lower activity area, 13-elevator cable. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0037] The present application provides a kind of starry sky tent device for low-altitude accommodation, family entertainment in air suspension. To solve the problems existing in the prior art, long-term stay in air, sightseeing is realized, and stable flight characteristics and open field of vision are provided, and tourists can quickly go up and down, improve experience, and helium balloon is equipped with safety detection device, can monitor pressure, temperature, wind speed and other data in real time, and potential safety risks are found and handled in time.

[0038] In order to make the above-mentioned purposes, characteristics and advantages of the present application more obvious and easy to understand, the present application will be further described in detail in combination with the drawings and specific embodiments.

[0039] The present application provides a kind of starry sky tent device in air suspension, including helium balloon 1, starry sky tent 3, lifting elevator 4 and landing platform 9.

[0040] The helium balloon 1 is located at the top of the starry tent device, and provides buoyancy for the starry tent device. The helium balloon 1 is fixedly connected with the first end of the upper traction cable 2.

[0041] The starry tent 3 is located at the middle of the starry tent device, and the starry tent 3 is fixedly connected with the second end of the upper traction cable 2.

[0042] The landing platform 9 is fixedly arranged on the ground and is located at the bottom of the starry tent device, and provides a limiting downward pulling force for the starry tent 3. The landing platform 9 is fixedly connected with the first end of the lower traction cable, and the second end of the lower traction cable is fixedly connected with the starry tent 3.

[0043] The buoyancy is equal to the sum of the limiting downward pulling force and the gravity of the load of the starry tent 3. The limiting downward pulling force changes with the change of the load weight of the starry tent 3.

[0044] The lifting elevator 4 is connected to the inside of the starry tent 3 through the elevator cable 13.

[0045] The upper traction cable 2 and the lower traction cable are made of high-strength steel material, which can provide stable buoyancy and limiting downward pulling force for the starry tent 3, and enhance the stability and reliability of the starry tent device in the process of use. The fixed connection mode of the traction cable is buckle connection. Buckles are arranged at both ends of the upper traction cable 2 and the lower traction cable. Buckles are also fixedly arranged at the corresponding connection positions of the helium balloon 1, the starry tent 3 and the landing platform 9. The helium balloon 1, the starry tent 3 and the landing platform 9 are connected as a whole through the buckles at both ends of the traction cable. The fixed connection mode can quickly complete the connection process and is convenient to disassemble when replaced, thereby improving the maintenance speed of the starry tent device.

[0046] Specifically, the upper traction cable 2 is provided with 9, and the lower traction cable is provided with 4. The number of buckles on the helium balloon 1 and the landing platform 9 corresponds to the number of the upper traction cable 2 and the lower traction cable respectively. The number of buckles on the starry tent 3 is the sum of the number of the upper traction cable 2 and the number of the lower traction cable.

[0047] Further, the helium balloon 1 is a closed spherical body, which is located at the top of the starry tent device and is filled with helium. The gas is not flammable and does not support combustion, is safe and non-toxic, and has a long floating time, which can effectively ensure the safety and floating time of the helium balloon 1. The helium balloon 1 is used to provide buoyancy in the starry tent device, and the starry tent 3 is pulled up to the air.

[0048] The landing platform 9 is a disc-shaped platform, which is fixedly arranged on the ground and is located at the bottom of the starry tent device, and is used to provide a limiting downward pulling force. After the starry tent 3 is pulled up to the air, the starry tent 3 is fixed at a predetermined position, and the stability of the helium balloon 1 in the air is ensured.

[0049] The upper part of the starry tent 3 is in a semispherical shape, and the lower part is in an inverted trapezoidal cylindrical shape, which is located in the middle of the starry tent device, and is used to provide daily life services and sightseeing services for passengers after being stably suspended in the air, and is connected with the lifting elevator 4, so that passengers can quickly go up and down the starry tent 3.

[0050] During the connection process, the buckles on the helium balloon 1, the starry tent 3 and the landing platform 9 are connected through the buckles at the two ends of the upper traction cable 2 and the lower traction cable, thereby forming a complete starry tent device. After the connection is completed, the helium balloon 1 is inflated to increase the buoyancy provided by the helium balloon 1, so that the starry tent 3 is lifted off the ground to the predetermined position. After the starry tent 3 reaches the predetermined position, the starry tent 3 is stably fixed to the predetermined position through the landing platform 9. The overall structure of the completed starry tent device is shown in Figure 1 .

[0051] The buoyancy provided by the helium balloon 1 is equal to the sum of the limiting downward force provided by the landing platform 9 and the load gravity of the starry tent 3 after the starry tent 3 is stably fixed to the predetermined position, so that the starry tent 3 is stably floated in the air. When the buoyancy is less than the limiting downward force, the starry tent 3 will not maintain the original height and fall to the ground.

[0052] Further, the load gravity of the starry tent 3 includes the structural self-weight and the internal bearing gravity of the starry tent 3, and the limiting downward force applied by the landing platform 9 is used to balance the buoyancy provided by the helium balloon 1 and the load gravity of the starry tent 3. The size of the limiting downward force will be adaptively adjusted with the change of the internal bearing gravity of the starry tent 3. At the same time, by controlling the size of the load, it is ensured that the limiting downward force always remains positive, so that the starry tent 3 is stably suspended in the air.

[0053] The starry tent device after being connected and lifted can realize long-term stable stay in the air. The starry tent 3 provides daily life services and sightseeing services for passengers, so that passengers can have longer air experience and enjoy the ground landscape and the starry sky. In addition, the starry tent device is equipped with a lifting elevator, which is convenient for tourists to quickly go up and down.

[0054] The outer surface of the helium balloon 1 is also provided with a safety detection device for monitoring the internal pressure data and environmental influence data of the helium balloon 1.

[0055] Further, the environmental image data includes data such as external air pressure, air temperature and wind speed. The safety detection device sends the monitored internal pressure data and environmental influence data of the helium balloon 1 to the monitoring terminal in real time through wireless transmission, so as to realize real-time monitoring of the state of the helium balloon 1 and the environment in which it is located. At the same time, the safety detection device can also judge the safety state of the helium balloon 1 in real time, so that potential safety risks can be found and handled in time. In addition, the safety state judgment result of the helium balloon 1 and the found and handled safety risks can be sent to the monitoring terminal.

[0056] The starry sky tent 3 specifically comprises a load-bearing frame, a tent framework and a tent body.

[0057] The load-bearing frame is made of high-strength square steel, and the tent framework is made of light steel structure, and the tent framework is installed around the outside of the load-bearing frame.

[0058] Further, the load-bearing frame made of high-strength square steel can bear high-strength load, can ensure that the starry sky tent remains stable under the action of 1 buoyancy provided by the helium balloon and the limiting downforce provided by the landing platform 9, reduces the risk of deformation of the starry sky tent structure, and the tent framework made of light steel structure can ensure that the overall quality is reliable, and the load of the helium balloon 1 is reduced.

[0059] The tent body is made of light material and is used to wrap the load-bearing frame and the tent framework. The wrapped tent body has a closed structure.

[0060] The second end of the upper traction cable 2 is fixedly connected with the load-bearing frame.

[0061] Further, the buckles on the helium balloon 1 are arranged at equal intervals on the outside of the middle part of the helium balloon 1, and the first end of the upper traction cable 2 is fixedly connected with the buckle. The second end of the upper traction cable 2 is fixedly connected with the buckle arranged at equal intervals on the outside of the middle part of the starry sky tent 3. The position of the buckle on the outside of the middle part of the starry sky tent 3 corresponds to the position of the load-bearing frame.

[0062] The lower traction cable is divided into a lower main cable 5 and a lower auxiliary cable 6.

[0063] Specifically, the lower main cable 5 has only one, which is arranged in the center of the landing platform 9 and is fixedly connected with the starry sky tent 3 vertically. The lower auxiliary cable 6 has three, which are arranged at equal intervals on the periphery of the landing platform 9 and are fixedly connected with the buckles arranged at equal intervals on the outside of the starry sky tent 3.

[0064] The second end of the lower main cable 5 is fixedly connected with the middle part of the load-bearing frame inside the starry sky tent 3.

[0065] The second end of the lower auxiliary cable 6 is fixedly connected with the load-bearing frame at the corresponding position outside the starry sky tent 3.

[0066] The load-bearing frame is responsible for the mechanical bearing of the entire starry sky tent 3, and the buoyancy provided by the helium balloon 1 and the limiting downforce provided by the landing platform 9 are transmitted by the traction cable, and the whole presents a long-term load state.

[0067] Further, the upper traction cable 2 is used to provide the buoyancy transferred from the top helium balloon 1 to the starry sky tent 3, the lower main cable 5 is mainly used to provide the fixed pulling force transferred from the landing platform 9 to the starry sky tent 3, and the lower auxiliary cable 6 is mainly used to provide the limiting pulling force to the starry sky tent, so that the whole starry sky tent device can be controlled at a predetermined position.

[0068] The limiting pulling force is the force provided by the landing platform 9 to the starry sky tent 3 through the lower main cable 5 and the lower auxiliary cable 6, which includes the fixed pulling force and the limiting pulling force, and the two forces work together to realize the stable setting of the starry sky tent 3 in the air.

[0069] The lifting elevator 4 is installed outside the lower main cable 5.

[0070] The starry sky tent 3 specifically includes an upper rest area 10 and a lower activity area 12 divided by a load-bearing frame.

[0071] The lower activity area 12 is connected to the upper rest area 10 by a staircase.

[0072] The elevator stopping space is provided in the middle of the lower activity area 12, and the lifting motor 11 is fixedly installed on the load-bearing frame above the elevator stopping space. The lifting motor 11 controls the up-and-down movement of the lifting elevator 4 through the elevator cable 13.

[0073] The specific structure of the starry sky tent 3 is shown in Figure 2

[0074] The elevator stopping space is used to stop the lifting elevator 4, and the lifting elevator 4 is embedded in the lower activity area 12 after stopping.

[0075] The internal structure of the starry sky tent 3 after the lifting elevator 4 is embedded in the lower activity area 12 is shown in Figure 3

[0076] The lifting elevator 4 can provide a quick service for passengers to get on and off the starry sky tent 3, and is controlled by the lifting motor 11 inside the starry sky tent 3. The lifting motor 11 controls the lifting elevator 4 to realize the passengers getting on and off the starry sky tent 3 in a short time by controlling the extension and retraction of the elevator cable. When needed, the quick escape function can be provided to ensure the safety of the passengers.

[0077] Further, the lower activity area 12 is in the shape of an inverted trapezoidal cylinder and is fixed below the upper rest area 10, and has an activity space inside.

[0078] The activity space inside the lower activity area 12 is provided with basic furniture including but not limited to a desk, a chair, a shower room and a storage cabinet, which can provide the internal personnel with daily life behaviors including but not limited to washing, eating and drinking and storing, and there is water and electricity supply in the lower activity area ​​

[0079] The upper rest area 10 is in a hemispherical shape and is fixed above the lower activity area 12, and a large area of transparent material is used on the outside of the upper rest area 10, and a bed and a light-shielding curtain are arranged inside.

[0080] Further, passengers can observe the starry sky and the external environment and rest at night in the upper rest area, and the light-shielding curtain can be used when the sun is directly shining in the daytime or when resting at night, so that the sun can be prevented from directly shining and privacy can be ensured.

[0081] The landing platform 9 is also connected to the starry sky tent through the water and electricity pipeline 7, and can provide water and electricity required by passengers inside the starry sky tent 3.

[0082] The landing platform has a high-pressure water pump device, which can pressurize water and send the water to the starry sky tent 3 in the air through the water and electricity pipeline.

[0083] The landing platform 9 is centrally provided with a take-off and landing motor 8, and a first end of the lower main cable 5 is installed on the take-off and landing motor 8.

[0084] The take-off and landing motor 8 is used to control the take-off and landing of the starry sky tent 3.

[0085] Further, the starry sky tent 3 can be parked on the landing platform 9, and after the starry sky tent 3 is landed and parked on the landing platform, maintenance and service can be provided for the entire starry sky tent device, so that the reliability of the starry sky tent device is enhanced, and at the same time, the inflation and deflation of the helium balloon 1 is also completed on the landing platform 9. The inflation method used by the helium balloon 1 is a non-pressurized inflation method, which only needs a simple inflation tool to complete the inflation operation, is easy to operate, reduces the situation of over-inflation or under-inflation caused by improper operation, and can ensure that the quality of the helium balloon 1 is not affected. At the same time, this method avoids high-pressure operation and reduces the safety hazards that may be caused by the helium balloon 1 due to high pressure.

[0086] Any adaptive changes according to actual needs are within the protection scope of the utility model.

[0087] It should be noted that, for those skilled in the art, it is obvious that the utility model is not limited to the details of the above exemplary embodiments, and can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0088] The principle and implementation mode of the utility model are described by applying specific examples, and the above embodiment is only used for helping to understand the method and core idea of the utility model; meanwhile, for the general technical personnel in the field, the specific implementation mode and application range will be changed according to the idea of the utility model. In conclusion, the content of the specification should not be understood as the limitation of the utility model.

Claims

1. An aerial suspended star dome tent apparatus, characterized by, It comprises a helium balloon (1), a starry tent (3), a lifting elevator (4) and a landing platform (9); The helium balloon (1) is located at the top of the starry tent device, providing buoyancy for the starry tent device, and the helium balloon (1) is fixedly connected with the first end of the upper traction cable (2); The starry tent (3) is located in the middle of the starry tent device, and the starry tent (3) is fixedly connected with the second end of the upper traction cable (2); The landing platform (9) is fixedly arranged on the ground and located at the bottom of the starry tent device, providing a limiting downward force for the starry tent (3), and the landing platform (9) is fixedly connected with the first end of the lower traction cable, and the second end of the lower traction cable is fixedly connected with the starry tent (3); Wherein, the buoyancy is equal to the sum of the limiting downward force and the gravity of the starry tent (3) load, and the limiting downward force changes with the change of the load weight of the starry tent (3); The lifting elevator (4) is connected to the inside of the starry tent (3) through the elevator cable (13).

2. The star pod apparatus of claim 1, wherein, The outside surface of the helium balloon (1) is also provided with a safety detection device for monitoring the internal pressure data and environmental influence data of the helium balloon (1).

3. The star pod apparatus of claim 1, wherein, The starry tent (3) specifically comprises a bearing frame, a tent skeleton and a tent main body; Wherein, the bearing frame is made of high-strength square steel, the tent skeleton is made of light steel structure, and the tent skeleton is installed around the outside of the bearing frame; The tent main body is made of light material and is used for wrapping the bearing frame and the tent skeleton, and the wrapped tent main body is in a closed structure; Wherein, the second end of the upper traction cable (2) is fixedly connected with the bearing frame.

4. The star pod apparatus of claim 3, wherein, The lower traction cable is divided into a lower main cable (5) and a lower auxiliary cable (6); The second end of the lower main cable (5) is fixedly connected with the middle part of the bearing frame inside the starry tent (3); The second end of the lower auxiliary cable (6) is fixedly connected with the corresponding position of the bearing frame outside the starry tent (3); Wherein, the lifting elevator (4) is installed outside the lower main cable (5).

5. The star pod apparatus of claim 3, wherein, The starry tent (3) specifically comprises an upper rest area (10) and a lower activity area (12) divided by the bearing frame; The lower activity area (12) and the upper rest area (10) are connected by a staircase.

6. The star pod apparatus of claim 5, wherein, The middle position of the lower activity area (12) is provided with an elevator stopping space, and a lifting motor (11) is fixedly installed on the bearing frame above the elevator stopping space, and the lifting motor (11) controls the lifting elevator (4) to move up and down through the elevator cable (13); Wherein, the elevator stopping space is used to stop the lifting elevator (4).

7. The star pod apparatus of claim 5, wherein, The lower activity area (12) is in an inverted trapezoidal cylindrical shape, fixed below the upper rest area (10), and has an activity space inside.

8. The star pod apparatus of claim 5, wherein, The upper rest area (10) is in a hemispherical shape, fixed above the lower activity area (12), and the outside of the upper rest area (10) uses a large area of transparent material, and the inside is provided with a bed and a sunshade curtain.

9. The star pod apparatus of claim 1, wherein, The landing platform (9) is also connected to the starry sky tent through a water and electricity pipeline (7).

10. The star pod apparatus of claim 1, wherein, A lifting motor (8) is installed in the center of the landing platform (9), and a first end of the lower main cable (5) is installed on the lifting motor (8).