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A new method for SVC placement considering FSS limit and SVC investment cost

机译:考虑FSS限制和SVC投资成本的SVC放置新方法

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Although the primary purpose of a static VAr compensator (SVC) is voltage regulation of the bus by injecting reactive power into the system, it can also improve stability and damping of a power system if placed in the right location. In a power system, transient stability is the ability of the system to maintain stability and oscillation damping after a severe disturbance. Actually, the system is stable if the angles of all generators remain stable after a perturbation. This paper proposes a new method to find the best location of SVC in a power system, considering improvement of the first swing stability (FSS) limit and SVC investment cost reduction, simultaneously. For this purpose two indexes are defined, the stability index and cost index. Stability index and cost index are measures to assess the stability of the system and SVC investment cost, respectively. The bus with the highest values of stability index and cost index is the best location of SVC. The effectiveness of the proposed method to find the appropriate location for SVC is tested on the 9-bus IEEE test system and a 29-bus test system. After choosing the best location, SVC is placed there and the optimal value for the maximum capacitive susceptance of SVC is found using particle swarm optimization (PSO) for an agreement between the improvement of FSS limit and reduction of SVC investment cost.
机译:尽管静态VAr补偿器(SVC)的主要目的是通过向系统中注入无功功率来调节总线的电压,但如果放置在正确的位置,它也可以提高电源系统的稳定性和阻尼。在电力系统中,瞬态稳定性是系统在严重干扰后保持稳定性和振荡阻尼的能力。实际上,如果所有发电机的角度在扰动后保持稳定,则系统是稳定的。本文提出了一种在电力系统中找到SVC最佳位置的新方法,同时考虑了首次摆动稳定性(FSS)极限的提高和SVC投资成本的降低。为此,定义了两个指标,即稳定性指标和成本指标。稳定性指数和成本指数分别是评估系统稳定性和SVC投资成本的度量。稳定性指数和成本指数最高的总线是SVC的最佳位置。在9总线IEEE测试系统和29总线测试系统上测试了所建议方法为SVC找到合适位置的有效性。选择最佳位置后,将SVC放置在此处,并使用粒子群优化(PSO)找到SVC的最大电容电纳的最佳值,以在FSS限制的改善和SVC投资成本的降低之间达成协议。

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