Power generation module, installation method of power generation module and unattended power station
By using a portable energy storage power supply suspension device and modular support rod design, combined with wind-solar hybrid power generation and remote monitoring, the stability and portability issues of the power generation module in complex outdoor environments have been solved, enabling all-weather power generation and unattended management.
Patent Information
- Application Number
- CN202511668268.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2045-11-14
AI Technical Summary
The existing mounting brackets for power generation modules are not portable and lack stability, making it difficult to work stably for a long time in complex outdoor wind environments, which affects equipment safety and power generation efficiency.
Portable energy storage power supplies are used as the suspension device for the wind turbine support, and their own weight forms a wind-damping structure. Combined with modular support rod design and foldable solar panels, stability is enhanced. Remote monitoring and management of the unattended power station are achieved through 5G and satellite communication.
It improves the ease of installation and outdoor stability of the power generation module, enables uninterrupted power generation around the clock, reduces operation and maintenance costs and manpower requirements, and enhances the system's survivability in extreme environments.
Smart Images

Figure CN121162456B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of generator technology, and in particular to a generator module, a generator module installation method, and an unattended power station. Background Technology
[0002] Currently, providing power support for outdoor scenarios far from the power grid (such as scientific research, geological exploration, temporary construction sites, etc.) mainly relies on power generation modules.
[0003] The existing mounting brackets for power generation modules are mostly fixed structures, which are not portable and lack stable design for complex outdoor wind environments. They are difficult to work stably for a long time in harsh weather conditions. In strong winds and other severe weather, the mounting brackets of power generation modules are prone to shaking or even tipping over, affecting equipment safety and power generation efficiency. Summary of the Invention
[0004] The main objective of this invention is to propose a power generation module, a method for installing the power generation module, and an unattended power station, aiming to improve the ease of installation of the power generation module and enhance its stability in complex outdoor environments.
[0005] To achieve the above objectives, the present invention proposes a power generation module, the power generation module comprising:
[0006] Wind turbines are used to convert wind energy into electrical energy;
[0007] At least one portable energy storage power source, the portable energy storage power source being connected to the wind turbine, the wind turbine being able to generate electricity to charge the portable energy storage power source;
[0008] The wind turbine is connected to a wind turbine bracket, and a support rod is provided at the bottom of the wind turbine bracket. A suspension device is also provided at the bottom of the wind turbine bracket. One end of the suspension device is connected to the wind turbine bracket, and the other end is used to suspend the portable energy storage power supply. The stability of the wind turbine bracket is increased by the weight of the portable energy storage power supply, forming a wind-damping structure.
[0009] Furthermore, the plurality of support rods include two fixed support rods and one movable support rod. The fan bracket includes a rotating mounting cylinder and a bracket body. The bracket body is provided with two fixed mounting cylinders and a rotating shaft. The rotating mounting cylinder is rotatably sleeved on the rotating shaft. The two fixed support rods are respectively fixedly connected to the two fixed mounting cylinders, and the movable support rod is connected to the rotating mounting cylinder.
[0010] Furthermore, both fixed support rods and one movable support rod are composed of multiple rod sections. Each rod section, the rotating mounting cylinder, and the fixed mounting cylinder are provided with pin holes. Each rod section is fixedly connected to the rotating mounting cylinder, the fixed mounting cylinder, or another rod section by inserting a pin into the pin holes of both.
[0011] Furthermore, both the fixed support rod and the movable support rod have ground nails attached to their bottoms.
[0012] Furthermore, it also includes a tent for housing the portable energy storage power source.
[0013] Furthermore, the suspension device is a nylon rope, and the top of the tent is sewn with a rope. Both ends of the rope are provided with perforated knots. One end is connected to the nylon rope through a carabiner, and the other end is connected to the portable power storage device.
[0014] Furthermore, the tent is provided with multiple mounting plates around its perimeter, and each mounting plate has a connecting hole for ropes to be threaded through and connected one-to-one to the corresponding support pole.
[0015] Furthermore, the tent has an air inlet at the bottom and an air outlet at the top that connects to the air inlet.
[0016] Furthermore, the power generation module also includes a solar panel for converting solar energy into electrical energy. The portable energy storage power supply includes a wind-solar hybrid controller, an inverter, and a battery. The portable energy storage power supply has a wind-solar charging interface and an AC output interface. The solar panel and the wind turbine are connected to the wind-solar charging interface. The wind-solar charging interface, the wind-solar hybrid controller, the battery, the inverter, and the AC output interface are connected in sequence.
[0017] Furthermore, the solar panel is a foldable solar panel.
[0018] Furthermore, the fan is a vertical axis fan, and a laser vertical calibrator is integrated in the connecting shaft of the vertical axis fan for calibrating the verticality of the support rod during installation.
[0019] The present invention also proposes an installation method for a power generation module, applicable to the power generation module described above. The installation method for the power generation module includes the following steps:
[0020] a. Use pins to fix one rod to a fixed mounting cylinder, continue to fix multiple rods in sequence with pins, and finally fix the ground nail with pins to complete the installation of the first fixed support rod;
[0021] b. Use pins to fix one rod to another fixed mounting cylinder, continue to fix the rods in sequence with pins, and finally fix the ground nail with pins to complete the installation of the second fixed support rod;
[0022] c. Use pins to install a pole into the swivel mounting cylinder and support the pole on the ground. Connect the nylon lanyard to the rope and fan bracket at the top of the tent via a carabiner. Connect the perforated knot at the other end of the rope to a portable power source. Then use pins to connect the next pole and support the newly connected pole on the ground. Repeat the above steps. Finally, secure the ground pegs with pins to complete the installation of the swivel support pole.
[0023] d. By adjusting the angle of the rotating support rod, the fan is supported, and the fixed installation is completed by inserting the ground nails on the two fixed support rods and the rotating support rod into the soil.
[0024] Furthermore, step d is followed by the following steps:
[0025] e. Pass three ropes through the connection holes of the three mounting plates of the tent, and connect them to the nearest fixed support pole or movable support pole to raise the tent.
[0026] This invention also proposes an unattended power station, comprising:
[0027] The aforementioned power generation module; and
[0028] At least one electrical device, the electrical device being powered by the portable energy storage power supply, the electrical device being connected to the AC output interface of the portable energy storage power supply;
[0029] A cloud management platform, which communicates with the electrical equipment via 5G mobile communication and / or satellite communication.
[0030] Furthermore, the electrical equipment includes one or more of the following: a data acquisition sensor, a camera module, and a communication module.
[0031] Furthermore, the power generation module also includes a distribution box, the input end of which is connected to the AC output interface, and the output end of which is connected to the electrical equipment.
[0032] Furthermore, the portable energy storage power supply integrates a WiFi or Bluetooth module for connecting the electrical equipment and transmitting data.
[0033] This invention employs an innovative wind-damping design, with the wind turbine supported by a support rod. During installation, a nylon rope is attached to the wind turbine bracket at one end, and a portable energy storage power supply is suspended at the other end as a counterweight. This unique structure utilizes the self-weight of the portable energy storage power supply to greatly enhance the stability of the power generation module, forming effective wind-damping and preventing overturning in strong winds. Attached Figure Description
[0034] Figure 1 This is a schematic diagram of the power generation module of the present invention;
[0035] Figure 2 This is a schematic diagram of the power generation module of the present invention from another perspective;
[0036] Figure 3 This is a schematic diagram of the support rod structure in the power generation module of the present invention;
[0037] Figure 4 This is a partial structural schematic diagram of the power generation module of the present invention;
[0038] Figure 5 This is a partial structural schematic diagram of the power generation module of the present invention from another perspective;
[0039] Figure 6 This is a schematic diagram of the wind turbine support structure in the power generation module of the present invention;
[0040] Figure 7 This is a schematic diagram of the unattended power station of the present invention;
[0041] Figure 8 This is a schematic diagram of the tent structure in the power generation module of the present invention;
[0042] Figure 9 This is a schematic diagram of the unattended power station of the present invention;
[0043] Figure 10 This is a flowchart of the installation method of the power generation module of the present invention;
[0044] Figure 11 This is a first installation schematic diagram of the generator module of the present invention;
[0045] Figure 12 This is a second installation diagram of the generator module of the present invention.
[0046] Explanation of reference numerals: 100, Fan; 200, Portable energy storage power supply; 300, Electrical equipment; 110, Fan bracket; 120, Support rod; 130, Suspension device; 400, Solar panel; 121, Pole body; 122, Pin; 500, Tent; 510, Rope; 520, Mounting plate; 521, Connecting hole; 530, Air inlet; 540, Air outlet; 123, Ground stake; 124, Fixed support rod; 125, Movable support rod; 126, Pin hole; 111, Bracket body; 112, Rotating mounting cylinder; 113, Fixed mounting cylinder; 114, Rotating shaft. Detailed Implementation
[0047] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0048] Please see Figures 1 to 9 This invention proposes a power generation module.
[0049] The power generation module includes a wind turbine 100 and at least one portable energy storage power supply 200. The wind turbine 100 is used to convert wind energy into electrical energy. The portable energy storage power supply 200 is connected to the wind turbine 100, and the wind turbine 100 can generate electricity to charge the portable energy storage power supply 200. The wind turbine 100 is connected to a wind turbine bracket 110. The bottom of the wind turbine bracket 110 is provided with a support rod 120. The bottom of the wind turbine bracket 110 is also provided with a suspension device 130. One end of the suspension device 130 is connected to the wind turbine bracket 110, and the other end is used to suspend the portable energy storage power supply 200. The stability of the wind turbine bracket 110 is increased by the weight of the portable energy storage power supply 200, forming a wind-damping structure.
[0050] Specifically, the wind turbine 100 can generate electricity, converting wind energy into electrical energy and supplying it to the portable energy storage power supply 200 for charging. This invention employs an innovative wind-damping design, with the wind turbine 100 supported by a support rod 120, such as a foldable tripod. During installation, one end of a nylon hanging rope is fixed to the wind turbine bracket 110 via a suspension device 130, while the other end suspends the portable energy storage power supply 200 as a counterweight. This unique structure utilizes the self-weight of the portable energy storage power supply 200 to greatly enhance the stability of the power generation module, forming effective wind-damping and preventing overturning in strong winds.
[0051] Please see Figure 6Furthermore, the plurality of support rods 120 include two fixed support rods 124 and one movable support rod 125. The fan bracket 110 includes a rotating mounting cylinder 112 and a bracket body 111. The bracket body 111 is provided with two fixed mounting cylinders 113 and a rotating shaft 114. The rotating mounting cylinder 112 is rotatably sleeved on the rotating shaft 114. The two fixed support rods 124 are respectively fixedly connected to the two fixed mounting cylinders 113, and the movable support rod 125 is connected to the rotating mounting cylinder 112. Specifically, the movable support rod 125 is rotatable, while the other two fixed support rods 124 are fixed. During installation, the fixed support rods 124 are fixed to the ground, and the fan 100 can be erected by rotating the movable support rod 125 to adapt to the environmental requirements, thus improving installation convenience.
[0052] Please see Figure 6 Furthermore, both fixed support rods 124 and one movable support rod 125 are composed of multiple rod sections 121. Each rod section 121, the rotating mounting cylinder 112, and the fixed mounting cylinder 113 are provided with pin holes 126. Each rod section 121 is fixedly connected to the rotating mounting cylinder 112, the fixed mounting cylinder 113, or another rod section 121 by inserting pins 122 into the pin holes 126 of both. Thus, with this modular design, the fixed support rod 124 and the movable support rod 125 are composed of multiple rod sections 121, which can be quickly connected by pins 122, enabling rapid assembly and storage by a single person.
[0053] Please see Figures 1 to 2 Furthermore, both the fixed support rod 124 and the movable support rod 125 are connected to ground nails 123 at their bottoms. The ground nails 123 are inserted into the soil to ensure the installation stability of the fixed support rod 124 and the movable support rod 125.
[0054] Please see Figures 1 to 8 Furthermore, it also includes a tent 500, which is used to house the portable energy storage power supply 200. The tent 500 is used to house and protect the portable energy storage power supply 200, and can also house other electrical equipment 300, such as communication equipment and other precision instruments. It ensures the normal operation of the portable energy storage power supply 200 and other equipment in complex outdoor environments.
[0055] Please see Figures 1 to 8 Furthermore, the suspension device 130 is a nylon lanyard, and a rope 510 is sewn onto the top of the tent 500. The two ends of the rope 510 are provided with perforated knots, one end of which is connected to the nylon lanyard through a carabiner, and the other end is connected to the portable power storage device 200.
[0056] Please see Figure 8Furthermore, the tent 500 is provided with multiple mounting plates 520 around its perimeter. Each mounting plate 520 has a connecting hole 521 for ropes to pass through and connect one-to-one to the corresponding support pole 120. In this way, the tent 500 structure adapts to each support pole 120, which supports the tent 500 and serves to support it.
[0057] Please see Figure 8 Furthermore, the tent 500 has an air inlet 530 at its bottom and an air outlet 540 at its top that connects to the air inlet 530. This creates good airflow circulation inside the tent 500, providing cooling for the portable power storage device 200. The wires on the fan 100 can be connected to the portable power storage device 200 inside the tent 500 by passing through the air outlet 540.
[0058] Please see Figure 7 Furthermore, the power generation module also includes a solar panel 400 for converting solar energy into electrical energy. The portable energy storage power supply 200 internally includes a wind-solar hybrid controller, an inverter, and a battery. The portable energy storage power supply 200 has a wind-solar charging interface and an AC output interface. The solar panel 400 and the wind turbine 100 are connected to the wind-solar charging interface. The wind-solar charging interface, the wind-solar hybrid controller, the battery, the inverter, and the AC output interface are connected in sequence. It is understandable that traditional power generation systems are singular, using a single solar charging panel, a small wind turbine 100, or a large-capacity battery to provide energy. The equipment lacks collaborative working capabilities, resulting in low energy utilization efficiency. They are severely limited by weather conditions, leading to poor power supply stability. To ensure power supply, ultra-large capacity battery packs are often required, resulting in a bulky and costly system. Thus, due to the intermittent nature of a single energy source, a stable 24 / 7 power supply cannot be achieved, resulting in insufficient power supply reliability. Please refer to [link to relevant documentation]. Figure 7 The portable energy storage power supply 200 of the present invention integrates a wind-solar hybrid controller, an inverter (AC output), a DC output interface, a USB output interface, an AC output interface, an LCD screen, etc. Through a dedicated waterproof power cord, it can simultaneously receive electrical energy from wind power generation and photovoltaic power generation, realize wind-solar hybrid charging, and maximize energy collection efficiency.
[0059] Please see Figure 7 Furthermore, the solar panel 400 is a foldable solar panel 400. The foldable solar panel 400 can be unfolded to increase the light-receiving area, facilitating transportation and storage. The solar panel 400 is connected to the wind and solar power charging interface of the portable energy storage power supply 200 via a PV power line.
[0060] Furthermore, the wind turbine 100 is a vertical axis wind turbine, and a laser vertical calibrator is integrated within the connecting shaft of the vertical axis wind turbine 100 for calibrating the verticality of the support rod 120 during installation. An infrared laser vertical calibrator is also integrated within the connecting shaft of the wind turbine 100 for quickly calibrating the verticality of the support rod 120 during installation, ensuring that the wind turbine 100 is at the optimal windward angle to maximize power generation efficiency.
[0061] Please see Figures 1 to 12 , Figure 11 and Figure 12 The portable energy storage power supply 200 and tent 500 are not shown in the figures. This invention also proposes an installation method for a power generation module, applicable to the power generation module described above. The installation method includes the following steps:
[0062] a. Use pins 122 to fix one rod 121 to a fixed mounting cylinder 113, continue to use pins 122 to fix multiple rods 121 in sequence, and finally fix the ground nail 123 with pins 122 to complete the installation of the first fixed support rod 124;
[0063] b. Use pins 122 to fix one rod 121 to another fixed mounting cylinder 113, continue to fix the rods 121 one by one with pins 122, and finally fix the ground nails 123 with pins 122 to complete the installation of the second fixed support rod 124.
[0064] c. Use pins 122 to install a rod 121 onto the rotating mounting cylinder 112, and support the rod 121 on the ground. Figure 11 With the wind turbine 100 at its lowest height, the nylon lanyard is connected to the rope 510 at the top of the tent 500 and the wind turbine bracket 110 via a carabiner. The perforated knot at the other end of the rope 510 is connected to the portable power storage unit 200. A new pole 121 is then connected using a pin 122, and the newly connected pole 121 is supported on the ground. This process is repeated until the ground stakes 123 are secured with pins 122, completing the installation of the rotating support pole 120. Figure 11 The highest state of the medium-sized fan at 100 meters height and Figure 12 The lowest setting of the medium-sized fan at 100mm height;
[0065] d. By adjusting the angle of the rotating support rod 120, the fan 100 is supported, and the two fixed support rods 124 and the ground nails 123 on the rotating support rod 120 are inserted into the soil to complete the fixed installation, achieving... Figure 12 The highest height of the medium-sized fan (100).
[0066] Furthermore, step d is followed by the following steps:
[0067] e. Pass three ropes through the connection holes 521 of the three mounting plates 520 of the tent 500, and connect them to the nearest fixed support rod 124 or movable support rod 125 to support the tent 500.
[0068] Please see Figures 1 to 10 The present invention also proposes an unattended power station, which can be widely used in any outdoor scenario that requires temporary or long-term unattended operation and self-powered operation. Specific application products include, but are not limited to, scientific data collection stations in environments such as polar regions, plateaus, and deserts.
[0069] The unattended power station includes a power generation module, at least one electrical device 300, and a cloud management platform. The electrical device 300 is powered by the portable energy storage power supply 200, and the electrical device 300 is connected to the AC output interface of the portable energy storage power supply 200. The cloud management platform communicates with the electrical device 300 through 5G mobile communication and / or satellite communication. The specific structure of the power generation module is as described in the above embodiments. Since this unattended power station adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be elaborated here. It is understood that traditional power generation mainly relies on the following technical solutions: (1) Diesel / gasoline generators: Their disadvantages are that they are noisy, produce harmful exhaust gases, require continuous fuel supply (high operation and maintenance costs and inconvenience), and require personnel to be on duty for maintenance, which does not conform to the development trend of green environmental protection. (2) Simple equipment stacking: The existing power generation, energy storage, and electrical device 300 are only physically connected and fail to form an integrated system. The overall reliability is low and there is a lack of unified remote monitoring and management capabilities. Thus, it has the following disadvantages: (1) Low system integration: Energy supply, equipment protection, monitoring and communication functions are independent of each other and lack a collaborative working mechanism. Deployment efficiency is low and portability is poor. (2) Low level of intelligence: It is highly dependent on manual on-site duty and maintenance, and cannot realize remote status monitoring, fault diagnosis and intelligent management. The operation and maintenance cost is high and there are personal safety risks.
[0070] To address the aforementioned issues, the cloud management platform of this invention for an unmanned power station utilizes 5G and / or satellite communication to provide dual-mode communication assurance, ensuring remote data transmission regardless of the availability of terrestrial network signals. The cloud management platform connects to 300 electrical devices, including high-definition cameras and various sensors (temperature, humidity, wind speed, displacement, etc.), transmitting information such as the operating status of these devices (battery level, input / output power), on-site environmental data, and video feeds to the cloud management platform via 5G mobile and / or satellite communication. Administrators can remotely access the cloud management platform via a mobile app or web interface to monitor system energy flow, equipment status, on-site environment, and video feeds in real time. They can also receive system alarm information (such as low battery, equipment failure, and unauthorized intrusion) and perform remote interactive control (such as remote restart and parameter setting), ultimately achieving fully unmanned operation and intelligent management of the system.
[0071] Please see Figure 9 Furthermore, the electrical equipment 300 includes one or more of the following: data acquisition sensors, camera modules, and communication modules. Specifically, the electrical equipment 300 can be scientific research equipment, such as high-definition cameras, various sensors (temperature, humidity, wind speed, etc.) for data acquisition, and interacts with the cloud management platform through an integrated 5G communication module and / or satellite communication module. Some of the electrical equipment 300 can be housed within the tent 500. It is understood that ordinary outdoor tents 500 only have basic shelter functions, with limited performance in waterproofing, insulation, and ventilation, and lack integrated design with energy equipment. The lack of systematic protection design for power generation units (such as wind resistance) and power consumption units (such as waterproofing and insulation) makes it difficult to operate stably for long periods in harsh climates, resulting in weak environmental adaptability. This invention utilizes the waterproof, ventilation, and insulation functions of the tent 500 to ensure the normal operation of the portable energy storage power supply 200 and various electrical equipment 300.
[0072] Please see Figure 9 Furthermore, the power generation module also includes a distribution box. The input end of the distribution box is connected to the AC output interface, and the output end is connected to the electrical device 300. Multiple electrical devices 300 receive power from the portable energy storage power supply 200 through a dedicated outdoor distribution box. The distribution box has multiple output interfaces for managing and distributing power to each electrical device 300, and it itself has outdoor protection features such as waterproofing and dustproofing. As the power distribution center of the system, it provides AC power, DC power, and USB power to all electrical devices 300.
[0073] Please see Figure 9 Furthermore, the portable energy storage power supply 200 integrates a WiFi or Bluetooth module for connection and data transmission with the electrical device 300. This enables information exchange between the portable energy storage power supply 200 and the electrical device 300.
[0074] Compared with the prior art, the present invention has the following significant advantages:
[0075] (1) The wind-solar hybrid power generation mode perfectly solves the intermittency problem of a single energy source, realizing "24-hour all-weather" uninterrupted power generation and ensuring a permanent power supply for field equipment. (2) All components are designed for rapid deployment. The wind turbine 100 is modular, the solar panel 400 is foldable, the tent 500 is easy to set up, and the portable energy storage power supply 200 can also be in the form of a trolley case. The whole system can be deployed by a single person in a short time, greatly improving the application capability in emergency and harsh environments. (3) The original wind-damping design fundamentally solves the wind resistance problem of the small wind turbine 100 in the field and improves the system's survivability in extreme weather. (4) By integrating 5G and satellite communication technologies, remote real-time data transmission and remote intelligent monitoring of equipment are realized. Managers do not need to be on-site, which greatly reduces labor costs, operation and maintenance risks and accident probability. (5) The functions of power generation, energy storage, power distribution, power consumption and monitoring are integrated into one, solving the pain point of poor compatibility of different equipment and improving the overall stability of the system.
[0076] The above are merely optional embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made using the contents of the present invention specification and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.
Claims
1. A power generation module, characterized in that, The power generation module includes: Wind turbines are used to convert wind energy into electrical energy; At least one portable energy storage power source, the portable energy storage power source being connected to the wind turbine, the wind turbine being able to generate electricity to charge the portable energy storage power source; The wind turbine is connected to a wind turbine bracket, and a support rod is provided at the bottom of the wind turbine bracket. A suspension device is also provided at the bottom of the wind turbine bracket. One end of the suspension device is connected to the wind turbine bracket, and the other end is used to suspend the portable energy storage power supply. The stability of the wind turbine bracket is increased by the weight of the portable energy storage power supply, forming a windproof damping structure. The plurality of support rods include two fixed support rods and one movable support rod. The fan bracket includes a rotating mounting cylinder and a bracket body. The bracket body is provided with two fixed mounting cylinders and a rotating shaft. The rotating mounting cylinder is rotatably sleeved on the rotating shaft. The two fixed support rods are respectively fixedly connected to the two fixed mounting cylinders. The movable support rod is connected to the rotating mounting cylinder. The two fixed support rods and the one movable support rod are all composed of multiple rod sections. Each rod section, the rotating mounting cylinder, and the fixed mounting cylinder are provided with pin holes. Each rod section is fixedly connected to the rotating mounting cylinder, the fixed mounting cylinder, or another rod section by inserting a pin into the pin holes of both. Both the fixed support rod and the movable support rod have ground nails attached to their bottoms; It also includes a tent for housing the portable energy storage power source; The suspension device is a nylon rope. The top of the tent is sewn with a rope, and both ends of the rope are provided with perforated knots. One end is connected to the nylon rope through a carabiner, and the other end is connected to the portable energy storage power source. The tent is provided with multiple mounting plates around its perimeter. Each mounting plate has a connecting hole for a rope to be threaded through and connected to the corresponding support pole. The installation method of the power generation module includes the following steps: a. Use pins to fix one rod to a fixed mounting cylinder, continue to fix multiple rods in sequence with pins, and finally fix the ground nail with pins to complete the installation of the first fixed support rod; b. Use pins to fix one rod to another fixed mounting cylinder, continue to fix the rods in sequence with pins, and finally fix the ground nail with pins to complete the installation of the second fixed support rod; c. Use pins to install a pole into the swivel mounting cylinder and support the pole on the ground. Connect the nylon lanyard to the rope and fan bracket at the top of the tent via a carabiner. Connect the perforated knot at the other end of the rope to a portable power source. Then use pins to connect the next pole and support the newly connected pole on the ground. Repeat the above steps. Finally, secure the ground pegs with pins to complete the installation of the swivel support pole. d. By adjusting the angle of the rotating support rod, the fan is supported, and the fixed installation is completed by inserting the ground nails on the two fixed support rods and the rotating support rod into the soil.
2. The power generation module according to claim 1, characterized in that, The tent has an air inlet at the bottom and an air outlet at the top that connects to the air inlet.
3. The power generation module according to claim 2, characterized in that, The power generation module also includes a solar panel for converting solar energy into electrical energy. The portable energy storage power supply includes a wind-solar hybrid controller, an inverter, and a battery. The portable energy storage power supply has a wind-solar charging interface and an AC output interface. The solar panel and the wind turbine are connected to the wind-solar charging interface. The wind-solar charging interface, the wind-solar hybrid controller, the battery, the inverter, and the AC output interface are connected in sequence.
4. The power generation module according to claim 3, characterized in that, The solar panel is a foldable solar panel.
5. The power generation module according to claim 4, characterized in that, The fan is a vertical axis fan, and a laser vertical calibrator is integrated in the connecting shaft of the vertical axis fan for calibrating the verticality of the support rod during installation.
6. The power generation module according to claim 1, characterized in that, Following step d, the following steps are also included: e. Pass three ropes through the connection holes of the three mounting plates of the tent, and connect them to the nearest fixed support pole or movable support pole to raise the tent.
7. An unattended power station, characterized in that, Includes the power generation module as described in any one of claims 1 to 6; as well as At least one electrical device, the electrical device being powered by the portable energy storage power supply, the electrical device being connected to the AC output interface of the portable energy storage power supply; A cloud management platform, which communicates with the electrical equipment via 5G mobile communication and / or satellite communication.
8. The unmanned power station according to claim 7, characterized in that, The electrical equipment includes one or more of the following: data acquisition sensors, camera modules, and communication modules.
9. The unmanned power station according to claim 8, characterized in that, The power generation module also includes a distribution box, the input end of which is connected to the AC output interface, and the output end of which is connected to the electrical equipment.
10. The unmanned power station according to claim 8, characterized in that, The portable energy storage power supply integrates a WiFi or Bluetooth module for connecting the electrical equipment and transmitting data.
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