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Determining Optimal Location and Capacity of DG Units Based on System Uncertainties and Optimal Congestion Management in Transmission Network

机译:基于系统不确定性和传输网络中最优拥塞管理的DG单位确定最佳位置和容量

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Congestion has always been defined as one of the primary problems in transmission grids and creating a competitive based power grid. Considering the effect of congestion on stability, thermal and other power system constraints, acquiring a suitable congestion management method is essential. In this paper, a new management scheme based on determining generation capacity and optimum placement of Distributed Generations (DGs), employing system's uncertainty modelling, has been proposed. By utilizing the Monte-Carlo technique, probabilistic load flow has been executed for determining lines' congestion state. Consequently, weight factors are calculated for the goal of finding optimum DG placement. Furthermore, the designated DG units' dispatched generation must be assigned. Genetic Algorithm (GA) has been chosen to carry out this responsibility, where the appropriate fitness function is designed based on the means of reducing loss and improving voltage profile. The DG units' influence on Accessible Transferable Capacity (ATC), general congestion probability, reliability and losses have also been studied. In addition, simulation results obtained from the proposed method have been compared with the classic approach, while typical system uncertainty are neglected. Rigorous simulations, performed on a partial test system of Khorasan power grid, consistent of 180 busbars, have shown the effectiveness of the proposed method in previously mentioned scenarios. The presented scheme illustrated to be a more practical solution, despite the relative higher computational burden.
机译:拥塞始终被定义为传输网格中的主要问题之一,并创建基于竞争的电网。考虑到充血对稳定性,热和其他电力系统约束的影响,获取合适的拥塞管理方法是必不可少的。本文已经提出了一种基于确定生成容量和分布代(DGS)的最佳放置,采用系统不确定性建模的新管理方案。通过利用Monte-Carlo技术,已经执行了概率负载流以确定线路的拥塞状态。因此,为了找到最佳DG放置的目标,计算重量因子。此外,必须分配指定的DG单元调度生成。已经选择遗传算法(GA)来执行此责任,其中基于降低损耗和改善电压曲线的方法设计了适当的健身功能。还研究了DG单位对可移可转移容量(ATC),一般拥塞概率,可靠性和损失的影响。此外,从所提出的方法获得的模拟结果与经典方法进行了比较,而典型的系统不确定性则被忽略。在Khorasan电网的部分测试系统上执行的严格模拟,一致的180母线,在前提到的情况下,所提出的方法的有效性。呈现的方案被说明是一种更实用的解决方案,尽管计算负担更高。

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