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Performance Comparison between Synchronous Condenser and Static VAR Compensator to Improve System Strength in a Wind Dominated Power Grid

机译:同步冷凝器与静态VAR补偿器之间的性能比较,提高风电网系统强度

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Wind power has now recognized as a mainstream electriciy generation source because of its zero fuel cost and high CO2 abatement potential. However, rapid increase of wind energy integration introduces a number of challenges in terms of security, reliability and stability to the power grid. These issues become more noticeable during prolific wind penetration levels. Modern converter based Type-3 and Type-4 Wind Turbine Generator (WTGs) replaces the synchronous generators from the generation sources. These WTGs are seperated from the grid by power electronic devices. As a result, they cannot deliver enough short-circuit current when a fault is occurred. This results a weaker system strength. A minimum level of system strength is necessary to ensure successful fault ride through for wind farms. In order to improve system strength, various fault current contribuiting devices such as synchronous condensers, Static VAR Compensators (SVCs) can be deployed. However, perfromance of these devices vary with their size and technology and no comparative study has been found in the existing literatures on fault current contribution of these devices. This paper shows the performance comparison between synchronous condensers and SVCs on grid system strength in a wind dominated power grid. The findings of the study also provides useful indication to further research on the installation of these devices from financial aspects.
机译:由于其零燃料成本和高CO,风电现已被认为是主流电工发电来源 2 减少潜力。然而,风能集成的快速增长在对电网的安全性,可靠性和稳定性方面引入了许多挑战。在多产风渗透水平期间,这些问题变得更加明显。基于现代转换器的Type-3和Type-4风力涡轮发电机(WTG)取代了来自代源的同步发电机。这些WTG由电力电子设备从网格分开。结果,当发生故障时,它们无法提供足够的短路电流。这导致系统强度较弱。为确保风电场的成功乘坐成功的故障,是必要的最低水平的系统力量。为了提高系统强度,可以部署各种故障电流诸如同步电容器,静态VAR补偿器(SVC)的设备。然而,这些器件的完善随着它们的尺寸和技术而变化,并且在现有的文献中没有找到对比的对比研究这些设备的贡献。本文显示了风电网中同步冷凝器与SVC之间的性能比较。该研究的调查结果还提供了有用的指示,以进一步研究从财务方面安装这些设备。

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