日本电力系统模型最优系统配置的确定

Y. Hayashi, J. Matsuki
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引用次数: 0

摘要

当一个二次径向电力系统(66kv, 77kv)有多个连接的馈线,这些馈线的断路器(cb)可以打开或关闭时,通过开关cb产生的可能的系统结构的组合数量就变得非常大。为了确定二次径向电力系统在正常和故障状态下的最优配置,提出了一种新的计算算法。该算法基于枚举和降阶二进制精度图(ROBDD)。为了验证该方法的有效性,作者利用该方法在日本二次电力系统模型(IEEJ模型)上获得了IEE正常和故障状态下的最优配置。IEEJ模型具有鲜明的日本电力系统实际特点,总配置候选数为2的76次方(约=75,000,000,000,000亿)。该方法在数学上保证了系统结构的最优性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of optimal system configuration for Japanese power system model
When a secondary radial power system (66 kV, 77 kV) has a number of connected feeders whose circuit breakers (CBs) can be opened or closed, the combinatorial number of possible system structures created by switching CBs becomes very large. In order to determine the optimal configuration of secondary radial power system in normal state and fault state, a new computation algorithm is proposed. The proposed algorithm is based on enumeration and reduced ordered binary precision diagram (ROBDD). In order to verify the availability of the proposed approach, the authors obtain optimal configurations for both normal and fault states on IEE of Japan secondary power system model (IEEJ model) by using the proposed method. IEEJ model has the distinctive characteristics of practical Japanese power systems, the total number of configuration candidates is the 76-th power of 2(=75,000,000,000,000 billion approximately). The optimality of the system configuration obtained by the proposed method is mathematically guaranteed.
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