低压直流微电网中带MPPT的变速直流潮汐/风力发电机组建模及稳定性分析

W. Nassar, O. Anaya‐Lara
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引用次数: 0

摘要

直流微电网是国际社会高度支持的海洋可持续开发的多用途平台(MPP)的新候选。考虑到MPP的直流系统要求所有可再生能源都连接到直流总线上。风力涡轮机作为海上使用的成熟能源是MPP的重要能源来源。通常,直流环境中的风力涡轮机使用二极管整流器与电网连接,并使用DC-DC升压或降压转换器提取最大功率。以往的研究包括直流微电网中的风力发电机,但没有分析风力变化对风力发电机稳定性的影响。此外,潮汐涡轮机作为一种不成熟的技术,在这种直流系统中很少被考虑。为此,本文对基于风力/潮汐发电机的永磁同步发电机(PMSG)进行了建模和稳定性分析。建立了基于PMSG和升压变换器的风力/潮汐发电机组的线性化小信号模型。两个控制回路用于速度和电流控制。稳定性分析表明,该控制器能有效地保持系统在风/潮汐速度变化下的稳定。通过仿真分析,验证了该控制器在不同速度下的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Stability Analysis for a Variable Speed DC Tidal/Wind Turbines with MPPT in Low Voltage DC Microgrid
DC Microgrid is a new candidate for Multi-Purpose Platforms (MPP) which highly supported by the international community for sustainably exploiting our oceans. Considering DC-systems for the MPP requires all renewable energy sources to be interfaced to a DC-bus. Wind turbines as proven developed energy for offshore use is a crucial energy source for MPP. Normally, a wind turbine in a DC-environment uses a diode rectifier for interfacing to the grid and a DC-DC boost or buck converter for extracting maximum power. Previous studies included wind turbine in a DC-microgrid did not analyze the turbine stability with wind variations. Moreover, tidal turbines, as an immature technology, are rarely considered in such DC-systems. So, this paper provides a modelling and stability analysis for a wind/tidal turbines based Permanent Magnet Synchronous Generator (PMSG). A linearized small-signal model is derived for a wind/tidal turbines based PMSG and boost converter. Two control loops are used for speed and current control. Stability analysis shows that the controller can effectively keep the system stable under wind/tidal speed variations. Simulation analysis is carried out to shows the effectiveness of the controller at various speeds considering tidal and wind turbines.
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