暂态稳定性分析中不平衡条件和直流偏置电流的处理方法

S. Jafarabadi, S.M. Kouhsari
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引用次数: 3

摘要

本文提出了一种暂态稳定计算中处理不平衡工况的方法。该方法将传统平衡暂态稳定方案中常用的正序网络与传统非对称故障例程中可用的零序和负序网络相结合。在任何商业软件中,用于处理大规模电力系统分析的零和负母线矩阵通常具有稀疏性质。因此,它们可以很容易地用于不平衡暂态稳定例程,如本文所述。此外,提出了一种基于相量的暂态稳定运行中系统支路直流偏置电流的评估方法。直流偏置产生于定子和网络在开关过程中的瞬变(包括故障)。传统的基于相量的暂态稳定程序在其模拟过程中忽略了这种直流偏置的发生。该方法的主要优点是可以逼近交流电机的直流和负序电流制动效果,并对暂态稳定仿真中的负、接地和过流瞬时保护装置的行为进行建模。计算机测试结果与利用MATLAB的电力系统模块集(PSB)进行的详细三相时域仿真结果进行了对比,表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Proposed Method for Processing Unbalanced Conditions and DC Offset Currents in Transient Stability Analysis
An approach has been proposed in this paper for processing unbalanced operating conditions in transient stability calculations. The suggested method combined positive sequence network usually used for traditionally balanced transient stability program with zero and negative sequence network which are available for traditional unsymmetrical fault routines. The zero and negative bus matrixes are usually available in sparse nature within any commercial software to handle large scale power system analysis. Therefore, they can be easily used in unbalanced transient stability routines, as described in this paper. Besides, a method is presented to evaluate DC offset currents in system branches during the phasor-based transient stability run. The DC offset arise from the stator and network transients during switching (including faults). Conventional phasor-based transient stability programs ignore the occurrences of such a DC offset in their simulation process. Approximating of DC and negative sequence current braking effects in AC machines and modeling negative, ground and overcurrent instantaneous protective equipments behavior in transient stability simulation are the main benefits of the proposed method. Computer test results in comparison with results carried out by detailed three-phase time-domain simulations using power system blockset (PSB) of MATLAB, show clearly the effectiveness of the method.
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