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Accounting for the effects of power system controllers and stability on power dispatch and electricity market prices.

机译:考虑电力系统控制器和稳定性对电力调度和电力市场价格的影响。

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Recently, the widespread use of power system controllers, such as PSS and FACTS controllers, has led to the analysis of their effect on the overall stability of power systems. Many studies have been conducted to allocate FACTS controllers so that they achieve optimal power flow conditions in the context of Optimal Power Flow (OPF) analysis. However, these studies usually do not examine the effect of these controllers on the voltage and angle stability of the entire system, considering that the types of these controllers and their control signals, such as reactive power, current, or voltage, have significant effect on the entire system stability.; Due to the recent transition from government controlled to deregulated electricity markets, the relationship between power system controllers and electricity markets has added a new dimension, as the effect of these controllers on the overall power system stability has to be seen from an economic point of view. Studying the effect of adding and tuning these controllers on the pricing of electricity within the context of electricity markets is a significant and novel research area. Specifically, the link among stability, FACTS controllers and electricity pricing should be appropriately studied and modelled.; Consequently, in this thesis, the focus is on proposing and describing of a novel OPF technique which includes a new stability constraint. This technique is compared with respect to existent OPF techniques, demonstrating that it provides an appropriate modelling of system controllers, and thus a better understanding of their effects on system stability and energy pricing. The proposed OPF technique offers a new methodology for pricing the dynamic services provided by the system's controllers. Moreover, the new OPF technique can be used to develop a novel tuning methodology for PSS and FACTS controllers to optimize power dispatch and price levels, as guaranteeing an adequate level of system security. All tests and comparisons are illustrated using 3-bus and 14-bus benchmark systems.
机译:最近,电力系统控制器(例如PSS和FACTS控制器)的广泛使用已导致对其对电力系统整体稳定性的影响进行分析。已经进行了许多研究来分配FACTS控制器,以使它们在最优潮流(OPF)分析的背景下达到最优潮流条件。但是,考虑到这些控制器的类型及其控制信号(例如无功功率,电流或电压)对电压的影响很大,因此这些研究通常不会检查这些控制器对整个系统的电压和角度稳定性的影响。整个系统稳定。由于最近从政府控制的电力市场过渡到放松管制的电力市场,电力系统控制者与电力市场之间的关系增加了一个新的维度,因为这些控制者对整个电力系统稳定性的影响必须从经济学的角度来看。 。在电力市场的背景下,研究添加和调整这些控制器对电价的影响是一个重要而新颖的研究领域。具体而言,应该适当地研究和建模稳定性,FACTS控制器和电价之间的联系。因此,在本文中,重点在于提出和描述一种包括新的稳定性约束条件的新型OPF技术。将该技术与现有的OPF技术进行了比较,表明它提供了系统控制器的适当建模,从而更好地了解了它们对系统稳定性和能源定价的影响。提出的OPF技术提供了一种新的方法,用于对系统控制器提供的动态服务进行定价。此外,新的OPF技术可用于为PSS和FACTS控制器开发一种新颖的调整方法,以优化功率分配和价格水平,从而保证足够水平的系统安全性。使用3总线和14总线基准系统说明了所有测试和比较。

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