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Large scale voltage stability constrained optimal VAr planning and voltage stability applications using existing OPF/optimal VAr planning tools

机译:大规模电压稳定性限制了使用现有OPF /最优VAr规划工具的最佳VAr规划和电压稳定性应用

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摘要

Traditionally in optimal VAr planning, the feasible operation has been translated as observing voltage profile criteria ensuring that the system voltage profile is acceptable for system normal and post contingency conditions. This feasibility definition is not sufficient when considering the VAr planning practice of the utilities concerned with voltage stability problems. Presently, these utilities use two reinforcement criteria for VAr additions. While for VAr design in the regions the voltage profile criteria is considered, for bulk transmission system VAr resources are designed to guard against voltage instability. This paper reports on the findings of a recently completed EPRI project evaluating the existing optimal VAr planning/OPF tools for voltage stability constrained VAr planning and voltage stability applications. Two of the selected tools were adapted to address these applications on four large scale utility systems (up to 6000 buses). The results were also verified using EPRI's voltage stability program (VSTAB). The results obtained indicate that OPF/VAr planning tools can be used to address voltage stability constrained VAr planning and voltage stability applications in an accurate way. Additional advantages offered by these tools are easier procedures, less computation and avoidance of engineering judgment in identifying the amount of VAr requirement at the candidate sites.
机译:传统上,在最佳VAr规划中,已将可行的操作转换为遵守电压曲线标准,以确保系统电压曲线对于系统正常和事后条件均可接受。当考虑与电压稳定性问题有关的公用事业公司的VAr规划实践时,这种可行性定义是不够的。目前,这些实用程序使用两个增强标准来添加VAr。对于区域内的VAr设计,要考虑电压曲线标准,而对于大容量传输系统,应将VAr资源设计为防止电压不稳定。本文报告了最近完成的EPRI项目的评估结果,该项目评估了用于电压稳定性受限的VAr规划和电压稳定性应用的现有最佳VAr规划/ OPF工具。所选择的工具中的两个被修改为在四个大型公用事业系统(最多6000条总线)上解决这些应用程序。还使用EPRI的电压稳定性程序(VSTAB)验证了结果。获得的结果表明,OPF / VAr规划工具可用于以准确的方式解决受电压稳定性约束的VAr规划和电压稳定性应用。这些工具提供的其他优点是:在确定候选站点上的VAr需求量时,过程更容易,计算量更少并且避免了工程判断。

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