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THD Reduction in Distributed Renewables Energy Access through Wind Energy Conversion System Integration under Wind Speed Conditions in Tamaulipas, Mexico

机译:通过风速条件下的风能转换系统集成,减少分布式可再生能源能源,墨西哥坦普利普斯风速条件下

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摘要

In this article, a technique for the reduction of total harmonic distortion (THD) in distributed renewables energy access (DREA) composed of wind turbines is introduced and tested under the wind speed conditions presented in Tamaulipas, Mexico. The analysis and simulation are delimited by a study case based on wind speeds measured and recorded for one year at two highs in the municipality of Soto La Marina, Tamaulipas, Mexico. From this information, the most probable wind speed and the corresponding turbulence intensity is calculated and applied to a wind energy conversion system (WECS). The WECS is composed of an active front-end (AFE) converter topology using four voltage source converters (VSCs) connected in parallel with a different phase shift angle at the digital sinusoidal pulse width modulation (DSPWM) signals of each VSC. The WECS is formed by the connection of five type-4 wind turbines (WTs). The effectiveness and robustness of the DREA integration are reviewed in the light of a complete mathematical model and corroborated by the simulation results in Matlab-Simulink®. The results evidence a reduction of the THD in grid currents up to four times and which enables the delivery of a power capacity of 10 MVA in the Tamaulipas AC distribution grid that complies with grid code of harmonic distortion production.
机译:在本文中,在墨西哥坦布利普斯的风速条件下引入并测试了一种用于减少分布式可再生能源能源访问(DREA)的总谐波失真(THD)的技术。分析和仿真由基于风速的研究案例界定,在墨西哥塔德拉州塔德拉岛市塔德拉岛市的两次高点,记录一年。根据该信息,计算最可能的风速和相应的湍流强度并施加到风能转换系统(WEC)。 WECS由有源前端(AFE)转换器拓扑组成,使用四个电压源转换器(VSC)与每个VSC的数字正弦脉冲宽度调制(DSPWM)信号的不同相移角度并联连接。 WECS由五种类型的风力涡轮机(WTS)的连接形成。根据完整的数学模型审查了DREA集成的有效性和稳健性,并通过MATLAB-SIMULINK®的仿真结果进行了证实。结果证据证据表明电流的THD减少了4倍,并且能够在Tamaulipas AC分配网格中输送10个MVA的电力容量,符合谐波失真生产的网格码。

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