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Performance Enhancement of PMSG Based Wind Energy Conversion System: Experimental Analysis

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Wind energy is a hopeful renewable energy which is used to generate electricity. The kinetic energy present in the wind is converted into electrical energy by the principle of Wind Energy Conversion System. This effort approaches the performance enhancement by re-design, re-fabrication, and re-implementation of Permanent Magnet Synchronous Generator-based wind energy conversion system and data logging system. PMSG connected to the wind turbine converts wind power into electricity. The proposed hardware design of PMSG aims to achieve the overall improved efficiency of the wind turbine by 7-10% of the existing hardware design. In the proposed design of PMSG overall efficiency was improved by increasing the magnet grade, reducing the air gap, and changing the winding type. A web dependent supervising system has been recognized. A data logging system was used for collection of data on wind speed, generating power, and other related data. Besides, the stored data can be observed through the website depend on data showed by the Global System for Mobile Communications. So, the user can monitor related data through the website. The Load Management System was used to balance the supply of electricity
Title: Performance Enhancement of PMSG Based Wind Energy Conversion System: Experimental Analysis
Description:
Wind energy is a hopeful renewable energy which is used to generate electricity.
The kinetic energy present in the wind is converted into electrical energy by the principle of Wind Energy Conversion System.
This effort approaches the performance enhancement by re-design, re-fabrication, and re-implementation of Permanent Magnet Synchronous Generator-based wind energy conversion system and data logging system.
PMSG connected to the wind turbine converts wind power into electricity.
The proposed hardware design of PMSG aims to achieve the overall improved efficiency of the wind turbine by 7-10% of the existing hardware design.
In the proposed design of PMSG overall efficiency was improved by increasing the magnet grade, reducing the air gap, and changing the winding type.
A web dependent supervising system has been recognized.
A data logging system was used for collection of data on wind speed, generating power, and other related data.
Besides, the stored data can be observed through the website depend on data showed by the Global System for Mobile Communications.
So, the user can monitor related data through the website.
The Load Management System was used to balance the supply of electricity.

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