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A New Model for Transmission Network Expansion and Reactive Power Planning in a Deregulated Environment

机译:管制环境下输电网络扩展和无功规划的新模型

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Transmission network expansion planning (TNEP) is a challenging issue especially in new restructured electricity mar-kets environment. TNEP can be incorporated with reactive power planning in which the operating conditions will be satisfied. In this paper a combinatorial mathematical model has been presented to solve transmission expansion and reactive power planning problem (TEPRPP) simultaneously. The proposed model is a non-convex problem having a mixed integer nonlinear nature where the number of candidate solutions to be evaluated increases exponentially according to the system size. The objective function of TEPRPP comprises the new circuits’ investment and production costs as well as load curtailment penalty payments. A real genetic algorithm (RGA) aimed to obtaining a significant quality solution to handle such a complicated problem has been employed. An interior point method (IPM) is applied to solve the proposed concurrent optimization problem in the solution steps of TEPRPP model. This paper proposes a new methodology for the best location as well as the capacity of VAr sources; it is tested on two well-known systems; the Garver and IEEE 24-bus systems. The obtained results show the capability and the viability of the proposed TEPRPP model incorporating operating conditions.
机译:传输网络扩展规划(TNEP)是一个具有挑战性的问题,尤其是在新的重组电力市场环境中。 TNEP可与无功功率计划结合在一起,在无功功率计划中将满足运行条件。本文提出了一种组合数学模型来同时解决输电扩展和无功规划问题(TEPRPP)。提出的模型是具有混合整数非线性性质的非凸问题,其中要评估的候选解的数量根据系统大小呈指数增长。 TEPRPP的目标功能包括新电路的投资和生产成本以及削减负荷的罚款。已经采用了旨在获得高质量的解决方案来处理这种复杂问题的真实遗传算法(RGA)。在TEPRPP模型的求解步骤中,采用内点法(IPM)解决所提出的并发优化问题。本文提出了一种新的方法来确定最佳位置以及VAr源的容量。在两个著名的系统上进行了测试; Garver和IEEE 24总线系统。获得的结果表明了结合操作条件所提出的TEPRPP模型的能力和可行性。

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