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Optimal use of decentralized methods for volt/var control in distribution networks

机译:分配网络中Volt / VAR控制的分散方法的最佳用途

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This paper presents results of a heuristic optimization method for parameterization of decentral reactive power control, which can be used to improve static voltage quality in distribution grids. With an optimized Q(V)-curve it is possible to significantly reduce the additional reactive energy and accomplish lower losses in the grid while keeping the voltage within the specified limits. In this paper results for Q(V)-control and optimized cosΦ(P)-curves with optional voltage regulated distribution transformers are presented. It is shown that the gradient of a Q(V)-curve should be as steep as possible. The optimization method also shows positive impact of bigger reactive power capability of each DG unit. Individual Q(V)-parameters for a group of distributed generators can significantly improve the efficiency of Q(V). The comparison with results using Optimal Power Flow shows a significant gap between optimal decentralized methods and coordinated optimization. Using coordinated optimization it is possible to reduce the yearly reactive energy of all DG units by over 95%.
机译:本文介绍了用于分流电流控制参数化的启发式优化方法的结果,可用于提高分布网格中的静态电压质量。利用优化的Q(v) - 可以显着降低额外的无功能量,并在将电压保持在指定限度内的电压的同时实现额外的无功能量并完成较低的损耗。在本文中,提出了Q(v)-Control和优化的COSφ(P) - 具有可选电压调节的分布式变压器的核实。结果表明,Q(v)的梯度应尽可能陡峭。优化方法还显示了每个DG单元的更大无功功率能力的正影响。一组分布式发电机的单个Q(v) - 参数可以显着提高Q(v)的效率。使用最佳功率流的结果比较显示出最佳分散方法和协调优化之间的显着差距。使用协调优化可以将所有DG单位的年反应能量减少超过95±%。

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