Active power dispatch method based on 1-norm for small-signal stability

Zhiyuan Sun, Guangshi Liu, Mosi Liu
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Abstract

To improve the small-signal stability margin, this paper proposes an active power dispatching method based on 1-norm. The model adopted in this method is with simple form, less number of iterations, high computation efficiency and strong convergence, which not only overcomes the problem that the traditional 2- norm optimization model often divides the smaller output regulation quantity into too many units, but also effectively reduces the execution time of the dispatching. In addition, a strict deduction derived from the eigenvalue functions with first order expansion of the Taylor series proves that the model is independent of the eigenvalue sensitivity of the slack bus, which is a great advantage. Testing the WSCC 3-machine 9-bus system and the New England 10-machine 39-bus system as the examples, we compare the result with 2-norm model, revealing that the proposed method has good optimization effect, high computation efficiency, feasible computational strategy and wide application prospects.
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基于1范数的小信号稳定有功功率调度方法
为了提高小信号稳定裕度,提出了一种基于1范数的有功功率调度方法。该方法采用的模型形式简单,迭代次数少,计算效率高,收敛性强,不仅克服了传统的2范数优化模型往往将较小的输出调节量分成过多单元的问题,而且有效地缩短了调度的执行时间。此外,对特征值函数进行泰勒级数一阶展开式的严格推导,证明了该模型与松弛总线的特征值灵敏度无关,这是一个很大的优点。以WSCC 3机9总线系统和新英格兰10机39总线系统为例进行了测试,并与2范数模型进行了比较,结果表明该方法优化效果好,计算效率高,计算策略可行,应用前景广阔。
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