SOLAR AND WIND POWERED MODULAR LIGHTING POLE

TR202613169U5Pending Publication Date: 2026-09-21FATIH GURPINAR
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Patent Information

Application Number
TR202613169U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-08-04
Publication Date
2026-09-21
Estimated Expiration
2036-08-04

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Abstract

The invention relates to a modular lighting pole that can operate independently of the electrical grid, eliminates the risk of electric shock, and provides uninterrupted power by using a hybrid system of solar and wind energy. The invention includes a main chassis made of oven-painted aluminum sheet with a thickness of 2-3 mm, six 5W solar panels arranged in a circular pattern on top of the chassis, a vertical wind turbine with a power of up to 500W-2kW, a 12V 50-150Ah LiFePO4 battery pack, six 15W Power LED lighting fixtures, and a mosquito trap unit with UV lamp and fan that can be integrated into the chassis. The chassis structure, thanks to its pre-existing connection points, allows for easy integration of panoramic cameras, environmental and climate sensors, and Wi-Fi and GSM communication modules.
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Description

1 TARIFF SOLAR AND WIND POWERED MODULAR LIGHTING POLE Technical Area The invention is a system that operates using renewable energy sources and does not require an electricity grid infrastructure. Modular lighting poles that provide lighting without sound, and integrated lighting systems on these poles. It relates to available environmental and safety equipment. State of the Art Traditional lighting poles are dependent on the electricity grid. Therefore, the aforementioned The installation of the poles requires power lines and related infrastructure works. Infrastructure costs are rising, and the lighting function disappears during power outages. It is being removed. The grid connection also poses a risk in terms of electrical safety. It can create. With existing lighting poles that operate solely on solar energy, however, during the winter months or Cloudy weather reduces the amount of energy obtained from the sun, thus affecting the continuity of lighting. This can have negative effects. Additional measures are needed in existing systems for environmental and safety purposes. A layout suitable for modularly connecting components onto the same chassis is also available. There is no time limit. Purpose of the Invention The invention aims to create an off-grid system by combining solar and wind energy. and provides enhanced and continuous lighting with LiFePO4 battery technology. It has a durable, oven-painted main chassis for storage and modular configurations for various functional equipment. The goal is to develop a lighting pole to which it can be attached. Another purpose of the invention is to connect a mosquito trap unit with UV lamp and fan to a lighting pole. to integrate cameras, camera traps, access modules, and perimeter sensors on the main chassis. The goal is to create connection points for optional equipment such as emergency assistance buttons. Explanation of the Figures Figure 1: Front view of the modular lighting pole. Figure 2: Top view of solar panels arranged in a circular pattern. Figure 3: Perspective view of a mosquito trap unit with UV lamp and fan. Figure 4: Top view of the fan mechanism in the mosquito trap unit. 2 Disclosure of the Invention The subject of the invention is a modular lighting pole; main chassis, solar panel unit, vertical wind turbine, Mosquito trap with LED lighting elements, LiFePO4 battery pack, UV lamp and fan. It has a structure consisting of several units. The general front view of the lighting pole is shown in Figure 1. It has been shown. The main chassis has a ground connection diameter of 231 mm, a lower cross-section of 150 mm, and a upper cross-section of 120 mm. The chassis is designed with a powder-coated finish. In one application, the main body is 1-2 mm thick. In one application, the main chassis is made of aluminum sheet, or in another, 2-3 mm thick aluminum. It is manufactured from sheet metal. The multi-part structure of the main chassis provides lighting and functionality. It allows the modules to be positioned together directly on the same pole. The power generation unit consists of multiple 5W solar panels arranged circularly at the top of the pole. with a vertical wind turbine with a power range of 500 W-2 kW integrated into the main chassis It includes. A top view of the circular solar panel arrangement is shown in Figure 2. One application uses six 5W solar panels, and the other uses seven. Solar panels and a vertical wind turbine generate electricity from solar and wind energy. This enables the combined use of two renewable energy sources, namely solar energy. Continuity of energy production by also utilizing wind energy when energy levels decrease. It is supported. The lighting unit consists of six 15W bulbs providing a total power of 90W and a luminous flux of 12,000 lumens. It includes an LED lamp. The luminaire and main chassis are used for storing the electrical energy produced. a prismatic device placed inside, with a voltage rating of 12 V and a capacity range of 50-150 Ah. A LiFePO4 battery pack is used. The battery pack powers the LED lighting elements and It allows the power needs of functional modules attached to the pole to be met. The lighting pole features a mosquito trap unit with a UV lamp and fan. Figure 3 shows a perspective view of the mosquito trap unit, including the fan located within the unit. The top view of the mechanism is shown in Figure 4. UV lamp and fan mechanism. positioned within the same unit, with the unit integrated onto the main chassis. It enables its use. The main chassis has pre-prepared connections for modular installation of optional equipment. These areas include 360-degree panoramic IP cameras or motion traps, and Wi-Fi. 4G or 5G access module, air quality, temperature and humidity measurement sensors, and 112 emergency services. 3 The button can be connected. Thus, in addition to the lighting function, it can also provide environmental monitoring and security. And emergency response functions can also be integrated on the same main chassis. How the invention can be applied to industry. The invention addresses issues where an electricity grid infrastructure is absent or where establishing such infrastructure is difficult and costly. They can be produced and used in parks, gardens, roads, walking areas and similar outdoor spaces. Main chassis, solar panel unit, vertical wind turbine, battery pack, LED lighting. The elements and the mosquito trap unit are produced as separate components and assembled into one unit. They can be assembled; optional environmental and safety equipment is mounted on the main chassis. They can be modularly installed in their respective areas.

Claims

4 REQUESTS 1. It is a lighting pole, characterized by being made of aluminum and iron sheet with a thickness of 2-3 mm. a main chassis, a vertical wind turbine integrated into the main chassis, and multiple solar panels located at the top. panels, the LiFePO4 battery pack that provides power storage for the system, and on the main chassis It includes a mosquito trap unit with a UV lamp and fan positioned in the system. 5 2. According to claim 1, it is a lighting pole whose characteristic is that its solar panel structure is arranged in a circular pattern. It consists of six 5W panels.

3. According to claim 1, it is a lighting pole, characterized by its modular design on the main chassis. attachable 360-degree panoramic camera, air quality, temperature and humidity sensors, Wi-Fi It has connection sockets for the booster and emergency assistance button. 10