An adaptive localization method for real-time security analysis

G. Ejebe, R.F. Paliza, W. Tinney
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引用次数: 21

Abstract

A new adaptive localization method for fast real-time AC security analysis using a modification of the fast decoupled power flow algorithm is presented. The method exploits the property that the impact of most contingencies encountered in security analysis is limited to localized regions of the network. Although it is intended mainly for contingency evaluation, the method is also suitable for contingency screening. On each iteration, a localized region is adaptively identified as the set of buses whose mismatches exceed specified tolerances. The sparse mismatch vectors for these buses are then efficiently processed by sparse vector methods to solve for the significant bus voltage magnitude and angle corrections required for security analysis. Reactive power limits on generators are enforced and all other appropriate automatic control adjustments are performed for the localized solutions. Test results on two practical systems show CPU time improvements over full AC solutions ranging from 3:1 to 5:1.<>
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一种实时安全分析的自适应定位方法
提出了一种基于快速解耦潮流算法的自适应定位快速实时交流安全分析方法。该方法利用了安全分析中遇到的大多数突发事件的影响局限于网络局部区域的特性。虽然该方法主要用于应急评价,但也适用于应急筛查。在每次迭代中,一个局部区域被自适应地识别为不匹配超过指定公差的总线集合。然后利用稀疏向量方法对这些母线的稀疏失配向量进行有效处理,以求解安全分析所需的重要母线电压幅度和角度修正。对发电机的无功功率进行限制,并为本地化解决方案执行所有其他适当的自动控制调整。在两个实际系统上的测试结果表明,与全交流解决方案相比,CPU时间的改善范围从3:1到5:1。
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