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Optimization of capacitor allocation for operational planning of distribution networks using linear programming and Mamdani fuzzy inference system

机译:基于线性规划和Mamdani模糊推理系统的配电网运营计划电容器分配优化

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This paper presents the development of a mathematical model applied to medium voltage electrical network planning to give support for capacitor placement decision task. For this goal, a linear mathematical model was developed to determine the location and power of the capacitor to improve the voltage level of the electrical system. The proposed model has linear objective function, linear constraints, continuous and binary variables, being represented by a mixed integer linear programming. The objective function to be minimized includes operational costs of installation, affected consumers and voltage constraints. These constraints are important to reduce the search space of the optimization procedure. In order to evaluate voltage level, the model includes a power flow method based on constant current. The qualitative variables in the objective function are modeled with a fuzzy system, addressing the impacts of applying capacitor related to consumers and network quality indicators.
机译:本文介绍了应用于中压电网规划的数学模型,以支持电容器放置决策任务。为此,开发了一个线性数学模型来确定电容器的位置和功率,以改善电气系统的电压水平。所提出的模型具有线性目标函数,线性约束,连续变量和二进制变量,由混合整数线性规划表示。要最小化的目标功能包括安装的运营成本,受影响的用户和电压限制。这些约束对于减少优化过程的搜索空间很重要。为了评估电压水平,该模型包括基于恒定电流的潮流方法。使用模糊系统对目标函数中的定性变量进行建模,以解决应用电容器与消费者和网络质量指标相关的影响。

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