External Network Modeling for MVAr Scheduling in Multi Area Power Systems

Y. Phulpin, M. Begovic, Marc Petit
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引用次数: 10

Abstract

Multi area power systems work most often with a poor inter-regional coordination about reactive power concerns. Transmission system operators typically do not possess a detailed knowledge about voltage profile across interconnected power systems. In this context, reactive power scheduling may be inefficient and inter-regional reactive power flows become a decisive issue. This inefficiency, associated with economic constraints and increasing stress on interconnection lines, may lead to conflicts, which could be partially avoided with a better scheduling strategy. In addition to inter-utility agreements, part of the solution could be to use appropriate external network modeling. Different modeling are thus presented in this paper and illustrated with an IEEE 118 bus system with 2 separately controlled regions, whose scheduling objective is to minimize active power losses. The regional scheduling process is described and the state of the interconnected power system is compared with a global optimization. Finally, the influence of the external network modeling parameters and the accuracy of their forecast is commented.
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多区域电力系统MVAr调度的外部网络建模
多区域电力系统通常在无功问题上缺乏区域间的协调。输电系统操作员通常不具备互联电力系统电压分布的详细知识。在这种情况下,无功调度可能效率低下,区域间无功流动成为决定性问题。这种低效率,与经济限制和对互连线路的压力增加有关,可能导致冲突,这可以通过更好的调度策略部分避免。除了公用事业间协议之外,解决方案的一部分可能是使用适当的外部网络建模。因此,本文提出了不同的建模方法,并以IEEE 118总线系统为例进行了说明,该系统具有2个单独的控制区域,其调度目标是最小化有功功率损耗。描述了区域调度过程,并将其与全局优化进行了比较。最后,对外部网络建模参数及其预测精度的影响进行了评价。
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