Vertical axis wind turbine with intelligent control of the rotor blade angle

DE502023002943D1Active Publication Date: 2026-02-19MONUMENTUM GLOBAL GMBH
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Patent Information

Application Number
DE502023002943
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-11-01
Publication Date
2026-02-19
Estimated Expiration
2043-11-01

AI Technical Summary

Technical Problem

Horizontal wind turbines face issues such as high noise, vibration, environmental harm, high construction costs, and limited lifespan, while vertical wind turbines suffer from low power output, high wind load, and unsuitable urban installation, with existing technologies failing to address these drawbacks effectively.

Method used

An intelligent control system for the pitch angle of rotor blades in vertical-axis wind turbines, utilizing airflow direction and speed measurements, combined with motors on the rotor blade axis, enhances efficiency and reduces wind load, enabling silent, vibration-free operation and lower installation costs, suitable for urban and mobile applications.

Benefits of technology

The solution doubles efficiency, reduces wind load by 2-3 times, eliminates noise and environmental harm, and lowers installation costs, allowing urban and mobile installations, including on roofs and watercraft.

✦ Generated by Eureka AI based on patent content.
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Description

[0001] The invention relates to the field of vertical wind turbine generators with intelligent control of the pitch angle of the rotor blades to achieve maximum efficiency (angle degree) of power generation and to achieve the minimum wind load on the wind turbine. Field of invention: Alternative energy Requirements for creating an invention:

[0002] The current state of horizontal wind turbines is characterized by the following features: A large number of the same type of turbines; turbines with a starting power of 100 kW or more; turbines are loud, vibrate, and harm populations of birds, small animals, and insects; construction near populated areas is not possible; very high construction costs; turbine lifespan approximately 10 years; problems with the production, logistics, and disposal of rotor blades

[0003] The current state of vertical wind turbines is characterized by the following features: Low power output, low efficiency, high winds at startup, no options for installing the systems within the city, and / or no solutions for mobile applications, high wind load, need for energy release (disposal)

[0004] State of the art is disclosed, for example, in US 2019186461 A1, US 6379115 B1, WO 2011153945 A1, US 2008175709 A1 and US 8410622 B1.

[0005] The invention described below enables the acceleration of the transition to alternative wind power generation at lower costs and also allows the application of this innovative invention in the small energy sector, including for households. Brief description of the invention:

[0006] The invention relates to a vertical wind turbine according to claim 1. Advantageous embodiments are defined in the dependent claims.

[0007] The use of an intelligent control system for the pitch angle of the rotor blades of a vertical-axis wind turbine enables maximum efficiency through the constant measurement of the direction and speed of the airflow, as well as through the use of motors on the rotor blade axis. This principle makes it possible to double the efficiency and significantly reduce the installation costs of wind turbines. This solution allows the use of such wind turbines in the small-scale renewable energy sector. This innovation enables the construction of systems within cities with a starting power output of 500 watts. The innovative systems are virtually free of the drawbacks of horizontal-axis wind turbines, i.e.,The noise generated by these systems does not exceed that of natural wind; there are no vibrations from these innovative installations; they do not harm the environment, birds, or insects; they can also be used in water transport and mobile applications. The wind load of this solution is 2-3 times lower than that of existing designs and solutions, resulting in significantly lower installation costs. Therefore, placement within the city, on roofs, balconies, watercraft, and mobile installations is permissible. Image captions

[0008] Figure 1- "Front view of the invention" 1 - Rotor blade in position along the flow 2 - Mini turbine with a flow sensor, a flow velocity sensor and a generator to ensure the operation of the microprocessors and actuators - Stepper motors 3 - Motor for moving the rotor blades 4 - Mounting rod for the rotor blades 5 - Rotor blade in position transverse to the flow 6 - Power generator 7 - Mounting mast for wind turbines 8 - Mounting mast for rotor blades 9 - Microcomputer and control circuits 10 - Rotation axis of the rotor blades Figure 2 - "Top view of the invention" 1 - Rotor blade in position along the flow 2 - Motor for moving the rotor blades 3 - Rotor blade in position perpendicular to the flow 4 - Mounting rod for the rotor blades 5 - Mini turbine Figure 3 - "Profile of the rotor blade" Figure 4- "Schematic representation of the mini turbine", top view 1 - Mounting plate of the rotor blades - upper and lower part 2 - Axis of rotation of the rotor blade 3 - Magnetic stops, corner fixings of rotation 4 - Axis of rotation 5 - Rotor blade in counterflow position 6 - Rotor blade in flow position Figure 5 - "Schematic representation of the mini turbine", top view, 3D

Claims

1. A vertical wind turbine generator unit for power generation, comprising rotor blades (1a, 1b, 3b, 5a) and a microprocessor which, by means of an algorithm, controls the rotor blades, whereby the rotor blades occupy the most efficient position with respect to the oncoming wind flow in the generation zone, or occupy the position of the minimum flow resistance in the zone of the backward movement of the rotor blades, wherein in case of strong wind and idling of the main generator (6a), the rotor blades are moving along the wind flow in order to generate minimum flow resistance, and accordingly a minimum wind load is generated on the wind turbine generator unit, the vertical wind turbine generator unit further comprising a separate mini-turbine (2a, 5) having movable blades (5, 6) on a magnetic suspension, for powering the microprocessor and a or the motors for controlling the position of the rotor blades to obtain data in real-time on flow, velocity and direction and generation of a minimum voltage.

2. The wind turbine generator unit according to claim 1, designed in such a way that in the process of power generation each rotor blade is prepared to make a full circle around its own axis, wherein a position angle with respect to the flow is determined by the microprocessor on the basis of: data of the velocity and the direction of the flow, data on the operation of the main generator, emergency situations, torque at the generator shaft, vibration data of the unit and other telemetry parameters of the entire unit.

3. The wind turbine generator unit according to claim 1 or 2, wherein the mini-turbine is a measuring turbine of the high rotational speed, which serves for powering a microcomputer with a microcontroller in order to accurately determine the flow rate and the direction of flow, wherein the mini-turbine is located in line with the main turbine, wherein the mini-turbine is 3 to 10 percent of the height of the main turbine, the direction of rotation of the mini-turbine is always against the direction of the main turbine, the number of rotor blades is from 2 to 10, the rotor blades of the mini turbine are mounted on movable axes and rotate around an axis at an angle of 45 to 270 degrees, wherein small magnets are located on the edges of the rotor blades, and magnets having the pole of the same name are attached in stops opposite the magnets installed on the rotor blades to ensure an effect of wear-free damping impact, wherein the magnet on the respective rotor blade of the mini turbine is a detector for sensors indicating the deflection angle of a given rotor blade, and wherein the center of gravity of such a rotor blade is in the middle of the rotation axis of the rotor blade.

4. The wind turbine generator unit according to any of the preceding claims, having 1, 2, 3, 4, 5 or more placement segments of the rotor blades, wherein the number of rotor blades per placement segment is 1, 2, 3 or more, so that an increase in performance is possible by simple scalability of the system.

5. The wind turbine generator unit according to any of the preceding claims, wherein a component containing the microprocessor is located in the rotation plane at the top, bottom or in the middle or a microprocessor, a mini-turbine having a flow sensor and a control motor is placed inside the rotor blade.