Active power maximizing for Wind Electrical Energy Generating Systems moved by a Modular Multiple Blade Fixed Pitch Wind Turbine

V. Cecconi, V. Di Dio, A. D. Di Tommaso, S. Di Tommaso, D. La Cascia, R. Miceli
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引用次数: 32

Abstract

This paper proposes a new solution for wind electrical energy generating system (WEEGS). The system here taken into account is moved by a modular multiple blade fixed pitch wind turbine (MMBFPWT) and foresees a new MPPT algorithm whose main characteristics are low cost, low noise, buildings simplicity and modularity. The mathematical model of the entire WEEGS has been here developed taking into account all the components starting from the wind turbine and ending with the electrical grid. The WEEGS mathematical model has been implemented in Matlab-Simulink in order to carry out the simulations needed to test the effectiveness of the proposed WEEGS. The simulations results show the effectiveness of both the designed MMBFPWT and the conceived MPPT algorithm.
模块化多叶片固定螺距风力发电机驱动的风力发电系统有功功率最大化
本文提出了一种新的风力发电系统解决方案。本文以模块化多叶片固定螺距风力机(MMBFPWT)驱动系统为研究对象,提出了一种新的MPPT算法,其主要特点是低成本、低噪声、结构简单和模块化。整个WEEGS的数学模型已经在这里开发,考虑了从风力涡轮机到电网的所有组件。在Matlab-Simulink中实现了WEEGS数学模型,以便进行测试所提出的WEEGS有效性所需的仿真。仿真结果表明了所设计的MMBFPWT和所构想的MPPT算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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