AI-CONTROLLED SENSOR-BASED AUTOMATIC SHADING SYSTEM

TR202523462U3Pending Publication Date: 2026-06-22AYCA KIS
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Patent Information

Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
AYCA KIS
Filing Date
2025-12-31
Publication Date
2026-06-22
Patent Text Reader

Abstract

The invention relates to an automated shading system with an AI-based control unit that analyzes environmental data from light and wind sensors, as well as user behavior. The system can be used on retractable shading structures such as umbrellas, awnings, pergolas, and similar structures. The AI ​​module can learn the user's past usage habits and automatically execute future opening and closing commands. For safety reasons, it shuts down the system when wind speeds reach dangerous levels and opens it when sunlight exceeds a certain threshold.
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Description

1 TARIFF AI-CONTROLLED SENSOR-BASED AUTOMATIC SHADING SYSTEM Technical field The invention combines environmental data from light and wind sensors with user input. automated systems with an AI-based control unit that analyzes their behavior AI-controlled, sensor-based automatic shading that can be opened and closed. It is related to the system. 10 State of the Art Current technology offers shading designs for various needs. systems are used. Again, using the current technique, our application numbered 2025 / 008383 concerns wind energy. The invention of a windmill-shaped umbrella structure that moves and provides coolness, garden, The wings of the wind move in balconies, terraces, beaches, coastlines and similar areas. by making the shade cooler, and also the wings The windmill umbrella, designed to create a visual spectacle with its rotation, is 20 years old. It is related to its structure. Again, our application numbered 2023 / 019877 was made using the current technique. Adjustable 360-degree angle wall-mounted accordion sun (mirror) umbrella Its structure allows the sun to come from the side in gardens, balconies, terraces and similar open areas, and 25 to control the shadow that changes with the movement of the sun, on the wall Adjustable 360-degree angle wall-mounted accordion for fixed use. The sun (mirror) is related to the umbrella structure. Again, using the current technique, our application numbered 2023 / 016370 is 30 Adjustable 360-degree angle adjustable sun (mirror) umbrella structure for the sea, shade structures used to block the sun in areas such as swimming pools, balconies, gardens, and similar places. 2 Alternatively, controlling the shadow that changes with the sun's movement. adjustable 360-degree angle sun (mirror) umbrella structure that allows for It is related to. Purpose of the Invention 5 The invention is a retractable system used in outdoor shading structures. automating mechanisms with sensors and artificial intelligence technology It is related. The invention is an AI-controlled sensor-based automated shading system, 10 Environmental data from light and wind sensors and user behavior It has an AI-based control unit that analyzes and automatically turns on and off. It relates to a shading system that can be closed. The system includes umbrellas, awnings, and pergolas. It can be used in similar retractable shading structures. Artificial intelligence. The module learns the user's past usage habits for future use. It can automatically execute shutdown commands. Wind values ​​are dangerous. The system shuts down for safety reasons when it reaches a certain level of sunlight. It opens when you cross the threshold. The invention analyzes environmental conditions, learns user behavior, and adjusts the engine to 20 a system that runs at the right times and can be used in various shading configurations An intelligent system is intended. Explanation of the Figures Figure 1 - View of the control board for the shading system, the subject of the invention. 25 Figure 2 - Top view of the shading system that is the subject of the invention. Figure 3 - Side view of the shading system that is the subject of the invention. Figure 4 shows a detailed view of the shading system sensor module, which is the subject of this invention. 3 Figure 5 shows the motor mechanism of the shading system, which is the subject of this invention. Explanation of the references in the figures. 1. Motor mechanism 2. Control card 5 3. Sensor module 3.1 wind sensor 3.2 light sensor 4. Artificial intelligence module Description of the invention The invention deals with AI-controlled sensor-based automated shading. The system consists of: motor mechanism (1), control board (2), wind sensor (3.1) and light. sensor module (3) and artificial intelligence module (4) consisting of sensor (3.2) It consists of 15. The artificial intelligence module (4) used in this system records user behavior. and machine learning that learns usage habits by processing this data. It includes the (ML) algorithm. The module's basic functions are; manual on / off. Data recording, usage profile creation based on time of day, sunlight Level-dependent behavioral learning, safety priority against wind hazard, 20 The decision-making process is based on a combination of sensor data and user data. The light sensor (3.2) measures the solar intensity. It measures the intensity of sunlight. Measured lux The decision to open is made according to its value. The wind sensor (3.1) detects the wind speed or It measures vibrations. In case of sudden wind increases, the AI ​​activates safety mode and 25 The system shuts down. It gives a shutdown signal at dangerous wind levels. Artificial intelligence. (4) records and learns user behavior. The motor mechanism (1) performs the opening and closing operation. In the system, linear An actuator or tubular motor can be used. Their functions are: movement in the opening direction, closing direction. Movement in the direction of control of the awning or umbrella mechanism at a constant speed and force. 30 However, the motor driver circuit ensures stable operation through PWM control. 4 The system receives data from the light sensor (3.2) and the wind sensor (3.1), and the artificial intelligence analyzes it. the motor mechanism (1) operates in the required direction, safety and learning cycle It continues constantly. The sensor module (3) data is continuously read. If the user enters it manually, this data It is processed. The artificial intelligence module (4) creates a behavior profile. For the engine (1) "on" or 5 The "shut down" command is given. If the wind is strong, the system overrides all decisions. It closes. The model improves itself over time. The motor mechanism (1) can be a screw shaft, linear actuator or tube motor. Power The power source, the system includes a 12V adapter, battery system, and optional solar panel. It can work. 10 How the invention can be applied to industry. The invention is an artificial intelligence-controlled sensor-based automated shading system. in umbrellas, awnings, pergolas and similar retractable shading structures will be available. 15

Claims

REQUESTS 1. The invention combines environmental data from light and wind sensors with user input. an AI-based control unit that analyzes its behavior It has 5 AI-controlled sensor-based devices that can automatically turn on and off. It is an automatic shading system and its feature is; motor mechanism (1), consisting of a control board (2), wind sensor (3.1) and light sensor (3.2) It is characterized by containing a sensor module (3) and an artificial intelligence module (4). is being done.

2. The AI-controlled sensor-based automated 10 mentioned in Claim 1. It is a shading system, its feature is: awning or umbrella. a motor that enables the mechanism to be controlled at a constant speed and power It is characterized by having mechanism (1).

3. AI-controlled sensor-based automation as described in Claim 1. Shading system, features: motor mechanism (1), sensor 15 Control board (2) containing module (3) and artificial intelligence module (4) It is characterized by its inclusion.

4. AI-controlled sensor-based automation as described in Claim 1. It is a shading system whose features include: reducing sunlight intensity and wind 20 from the wind sensor (3.1) and light sensor (3.2) which enable the measurement of speed It is characterized by containing the resulting sensor module (3).

5. AI-controlled sensor-based automation as described in Claim 1. It is a shading system, and its feature is: it records user behavior. and an artificial intelligence module that processes this data to create a behavioral profile. (4) is characterized by its inclusion.