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首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Optimal Operation of Unbalanced Microgrid Utilizing Copula-Based Stochastic Simultaneous Unit Commitment and Distribution Feeder Reconfiguration Approach
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Optimal Operation of Unbalanced Microgrid Utilizing Copula-Based Stochastic Simultaneous Unit Commitment and Distribution Feeder Reconfiguration Approach

机译:不平衡微电网的最佳运行利用基于Copula的随机同声单位承诺和分配馈线重新配置方法

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摘要

Currently, the microgrid operators try to operate this special type of the electrical grid in an optimal way due to the energyand cost saving and enhancing the other technical, environmental and economic aspects. Two of the most important tasksof operators to improve the efficiency of the microgrid are the optimal unit commitment and the distribution feeder reconfiguration.If these tasks are individually carried out, it may not lead to the optimal operation. Simultaneously, performingthese two tasks in an unbalanced microgrid is a challenging multi-objective problem that this paper is faced with it. Theassumed unbalanced microgrid has been equipped by two hybrid energy systems which include the dispatchable distributedgenerations that are fuel cell units and the non-dispatchable ones that are wind turbines and photovoltaic cells. The stochasticbehavior of the non-dispatchable generation units and electrical demand is modeled by a stochastic copula scenario-basedframework. The objective functions are minimization of the operational cost of the microgrid, minimization of active powerloss, maximization of voltage stability index, minimization of emissions, and minimization of the voltage and current unbalanceindices subject to diverse technical constraints. The proposed multi-objective problem is optimized by multi-objectivecovariance matrix adaption-evolution strategy (MOCMA-ES) algorithm, and a set of Pareto solutions is achieved. The bestcompromised solution is then chosen by using the fuzzy technique. The capability of the proposed model is investigated on anunbalanced 25-bus microgrid. The simulation results show the efficacy of the proposed model to optimize objective functions,while the constraints are satisfied.
机译:目前,微电网运营商试图以能量为最佳方式操作这种特殊类型的电网节省成本和增强其他技术,环境和经济方面。两个最重要的任务运营商提高微电网的效率是最佳的单位承诺和分配馈线重新配置。如果单独执行这些任务,则可能不会导致最佳操作。同时,表演在不平衡的微电网中的这两个任务是一个具有挑战性的多目标问题,即本文面临着它。这假设的不平衡微电网已经配备了两个混合能量系统,包括可调度分布式几代人是燃料电池单元和作为风力涡轮机和光伏电池的不可批量传播。随机非调度生成单位和电气需求的行为是由基于随机Copula场景的建模的框架。客观函数是最小化微电网的操作成本,最小化有源功率损失,最大限度地,电压稳定性指标,最小化排放,最小化电压和电流不平衡索引符合不同的技术限制。所提出的多目标问题由多目标进行优化协方差矩阵适应 - 演进策略(MOCMA-ES)算法,以及一组Pareto解决方案。最好的然后通过使用模糊技术选择受损溶液。拟议模型的能力在一个不平衡25柱微电网。仿真结果表明,所提出的模型优化客观功能的功效,虽然约束满足。

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