VAr储备概念在风电场中的应用

Jorge Martinez, P. C. Kjar, P. Rodríguez, R. Teodorescu
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引用次数: 4

摘要

更大比例的风力发电渗透转化为对电网规范的更高要求;例如,最近世界各地的几个电网规范引入了连接点的电压支持,这使得在风力发电厂应用时分析这种控制变得很重要。本文提出了两种不同的风电场无功储备控制策略。由于风电机组在大部分运行时间内的动态无功可用量很大,因此风电机组有必要建立无功备用管理系统。提出并分析了VAr管理系统的两种不同实现方式。这样的无功储备可以由风电场提供,因为大多数有功工作点安装的无功容量超过了电网运营商的需求。基本上,这种高估的无功功率容量是风力涡轮机设备的最大有功功率水平的结果。由于厂内有功电力输送(通常为两台变压器)造成的无功功率损耗,以及P-Q风力机的特性定义了P-Q储备图。通过利用固有的高估无功容量,可以避免在电网的其他位置使用额外的设备,例如svc和statcom。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VAr reserve concept applied to a wind power plant
Larger percentages of wind power penetration translate into more demanding requirements from the grid codes; for example voltage support at the point of connection has been introduced recently by several grid codes from around the world, making it important to analyze this control when applied to wind power plants. This paper proposes two different VAr reserve control strategies for a wind power plant. The amount of dynamic VAr available most of the operation time, makes the wind power plant (WPP) a good candidate to include a VAr reserve management system. Two different ways of implementing a VAr management system are proposed and analyzed. Such a reactive power reserve may be provided by the wind power plant since the amount of reactive power installed for most active power working points exceeds the demand required by the grid operator. Basically, this overrated reactive power capacity is a consequence of sizing wind turbine facilities for maximum active power level. The reactive power losses, due to active power transportation inside the plant (normally two transformers), and P-Q wind turbine characteristics define the P-Q reserve chart. By utilizing the intrinsic overrated reactive power capacity, additional devices, such as for example SVCs and STATCOMs, can be avoided in other locations of the grid.
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