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Allocation of wind capacity subject to long term voltage stability constraints

机译:风电容量的分配受长期电压稳定性约束

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Increasing wind capacity integration results in displacement of active power from conventional generators and a reduction in reactive power sources available. As such voltage stability may become a concern in certain periods for power system operation particularly in weaker areas of the network. Thus, it is of importance to consider the AC constraints for optimal wind generation planning (long term) in order to decrease the possibility of a wind capacity allocation that requires costly remedies from the power system operation perspective (short term). In this work a procedure is proposed for wind capacity allocation with the aim of benefiting from the potential of an optimal wind capacity allocation for enhancing the voltage stability margin. The procedure is based on a multi operating conditions voltage stability constrained optimal power flow. The wind capacity target is set and the loadability margin is tracked. The results will show the applicability of the proposed procedure and will emphasize the effects of the pattern of wind capacity allocation on the loadability margin. This will result in a wind capacity allocation that enhances the minimum loadability margin among the possible future operating conditions considered for planning. The procedure uses the Maximin concept for this purpose.
机译:不断增加的风电容量集成会导致传统发电机产生的有功功率发生位移,并减少可用的无功功率源。因为这样的电压稳定性可能在某些时期成为电力系统运行的关注点,尤其是在网络较弱的区域。因此,重要的是要考虑AC约束以进行最佳的风力发电计划(长期),以减少需要从电力系统运行角度(短期)进行昂贵的补救的风量分配可能性。在这项工作中,提出了一种用于风量分配的程序,其目的是从最佳风量分配的潜力中受益,以提高电压稳定裕度。该程序基于多种运行条件,电压稳定性限制了最佳功率流。设定风能目标并跟踪可装载性裕度。结果将表明拟议程序的适用性,并将强调风量分配模式对可装载性裕度的影响。这将导致风能分配,从而在考虑进行规划的未来可能的运行条件中提高最小的可装载性裕度。该过程为此使用了Maximin概念。

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