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Optimized regulation of dispersed generation units for minimization of reactive power consumption

机译:用于最小化无功功耗的分散生成单元的优化调节

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Because of the increasing share of renewable energies violations of the statuary voltage limits occur more and more often in the German distribution grids. Therefore, distribution system operators take advantage of reactive power support by dispersed generation units for voltage regulation. Commonly, only one standard cosΦ(P)-profile is implemented as a control-method for all units to decrease voltage rises. This profile is independent of network characteristics and the point of common coupling. However, additional reactive power consumption causes additional reactive power unbalances in the networks which have to be compensated by the overlaid transmission grid. This becomes more difficult in times of a decreasing number of large conventional power plants. In order to reduce the additional reactive power demand caused by the improvement of statuary voltage stability this paper describes two methods to calculate optimized cosΦ(P)-profiles for reactive power support. Beside the reduction of reactive power demand the optimized control-methods have also the positive effect of lower power losses in the distribution grids.
机译:由于可再生能源的份额越来越多,违规的电压限制越来越多地发生在德国分配网格中。因此,分配系统操作员利用用于电压调节的分散的发电单元来利用无功功率支持。通常,仅实现一个标准COSφ(P)-Profile作为所有单元降低电压升高的控制方法。此配置文件与网络特性和共同耦合点无关。然而,额外的无功功率消耗导致网络中必须通过覆盖传输电网补偿的网络中的额外无功功率不平衡。在减少大型传统发电厂数量的时间内变得更加困难。为了降低诸如季古气电压稳定性的提高额外的无功功率需求本文描述了两种方法来计算用于无功功率支持的优化COSφ(P) - 纯净。除了无功功率的降低之外,优化的控制方法还具有较低功率损耗在分配网格中的正效应。

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