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Differential evolution algorithm for computation of dynamic ATC in deregulated power system

机译:微分进化算法在电力系统去动态ATC计算中的应用

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In restructured power system, determination of Available Transfer Capability (ATC) is an important issue. The ATC calculation is limited by system stability consideration. ATC calculated with dynamic stability limit is referred as Dynamic ATC (DATC). The Hopf bifurcation limit, associated with dynamic instability is considered in this paper as a limit for ATC calculation. In this paper, Differential Evolution Algorithm (DEA) is applied to obtain accurate Hopf bifurcation point for DATC calculation. Dynamic ATC is calculated for bilateral and multilateral transaction using the proposed approach. The static ATC is also calculated for finding the governing criteria for each transaction. In order to identify the severe lines for each transaction, stability based contingency screening is performed. Based on contingency screening index severe lines are ranked and for first five severe lines the DATC is calculated. The results are compared with a Step by Step algorithm. Simulation is done for three different load scenarios namely static, dynamic (Induction machine model) and ZIP load. The proposed approach is tested on New England 10 machine 39 bus system for various transactions using PSAT Tool. Test results show the accuracy of proposed approach.
机译:在重组的电力系统中,可用传输能力(ATC)的确定是一个重要的问题。 ATC的计算受系统稳定性考虑的限制。用动态稳定性限制计算的ATC称为动态ATC(DATC)。与动态不稳定性相关的Hopf分叉极限在本文中被视为ATC计算的极限。本文采用差分进化算法(DEA)来获得精确的霍夫夫分支点进行DATC计算。使用建议的方法为双边和多边交易计算动态ATC。还计算静态ATC,以查找每个交易的管理标准。为了确定每笔交易的严厉条件,将执行基于稳定性的应急筛选。基于应急筛选指标,对严重等级进行排序,并针对前五个严重等级计算DATC。将结果与逐步算法进行比较。针对三种不同的负载情况进行了仿真,即静态,动态(感应电机模型)和ZIP负载。使用PSAT工具在新英格兰10号机器39总线系统上针对各种交易对提出的方法进行了测试。测试结果表明了该方法的准确性。

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