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The voltage control for reactive power management by decentralized wind farms

机译:分散式风电场无功功率管理的电压控制

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Wind energy is clean, affordable, efficient and effectively infinite. Therefore, it is the biggest player in energy transition arena and penetration of it in power systems is increasing. The high penetration of wind farms (WFs) causes problems because wind itself is variable and uncertain. Moreover, it results in complicated effects on power flows and voltages. Grid operators are supposed to develop Grid Codes for WFs considering a number of parameters to overcome the difficulties. WFs have to operate the power system voltage continuously in normal operational conditions for a proper reactive power management (RPM) according to Grid Codes. This paper presents RPM using linearly decreasing Particle Swarm Optimization (PSO) to define reference voltages of decentralized WFs with full reactive power capability. It is also proved that the reference voltages of decentralized WFs are important to enhance reactive power balance of a typical German 110 kV-sub-transmission grid.
机译:风能是干净的,价格实惠,有效的无限。因此,它是能源转换竞技场中最大的球员,并且它在电力系统中的渗透率正在增加。风电场(WFS)的高渗透引起问题,因为风本身是可变的并且不确定。此外,它导致功率流量和电压复杂影响。网格运营商应该在考虑许多参数克服困难的情况下开发WFS网格代码。根据网格码,WFS必须在正常运行条件下连续地操作电力系统电压,以进行适当的无功功率管理(RPM)。本文呈现RPM使用线性降低的粒子群优化(PSO)来定义具有全无功功率能力的分散式WFS的参考电压。还证明了分散的WFS的参考电压对于提高典型的德国110 kV子传输网格的无功功率平衡是重要的。

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