FACTS设备功率振荡阻尼器的自动设计程序

M. Castoldi, M. Mansour, R. Salim, R. Ramos, N. Bretas
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引用次数: 1

摘要

本文介绍了一种安装在FACTS设备上的辅助振荡控制器的设计方法。在线性化的状态空间中对电力系统和控制器进行建模,通过一组线性和双线性矩阵不等式来表达控制问题,并通过V-K迭代算法求解。该算法还提供了将控制结构固定为设计准则的可能性。在改进版的IEEE两区基准电力系统中进行了测试,包括固定和非固定结构设计的比较,以及通过专用计算机进行高效计算的结果。结果表明,所提出的自动程序有助于控制专家在快速计算工具中改进振荡阻尼器的设计,特别是在进行高效计算时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An automatic procedure for power oscillation dampers design of FACTS devices
In this paper, a procedure is presented to the design of supplementary oscillation controllers installed on FACTS devices. The power system and controllers are modeled in the linearized state-space, and the control problem is formulated through a set of linear and bilinear matrix inequalities, which are solved through the V-K iterations algorithm. The algorithm also presents the possibility of fixing the control structure as a design criteria. Tests were performed in a modified version of the IEEE two area benchmak power system, and include a comparison of fixed and non-fixed structures design, as well as results using an efficient computation through a dedicated computer. The results show that the proposed automatic procedure helps control specialists in enhancing the design of oscillation dampers in a fast computational tool, specially when efficient computing is performed.
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