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首页> 外文期刊>IEEE transactions on industrial informatics >Spatiotemporal Splitting of Distribution Networks Into Self-Healing Resilient Microgrids Using an Adjustable Interval Optimization
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Spatiotemporal Splitting of Distribution Networks Into Self-Healing Resilient Microgrids Using an Adjustable Interval Optimization

机译:使用可调区间优化将分配网络分配到自愈弹性微电网中的时空分配

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The distribution networks can convincingly break down into small-scale self-controllable areas, namely microgrids (mu G), to substitute mu Gs arrangements for effectively coping with perturbations. This flexible structure not only could potentially possess the strength to recover quickly, but also ensures the supply of vital loads and preserves functionalities under any contingency. To achieve these targets, this article examines a novel spatiotemporal algorithm to split the existing network into a set of self-healing mu Gs. In this endeavor, after designing the mu Gs by determining a mix of heterogeneous generation resources and allocating remotely controlled switches, the mu Gs operational scheduling is decomposed into interconnected and islanded modes. The main intention in the grid-tied state is to maximize the mu Gs profit while equilibrating load and generation at the islanded state by sectionalizing on-fault area, executing resources rescheduling, network reconfiguration and load shedding when the main grid is interrupted. The proposed problem is formulated as an exact computationally efficient mixed integer linear programming problem relying on the column & constraint generation framework and an adjustable interval optimization is envisaged to make the mu Gs less susceptible against renewables variability. Finally, the effectiveness of the proposed model is adequately assured by performing a realistic case study.
机译:分销网络可以令人信服地分解为小规模的自控区域,即微电网(MU G),以替代MU GS安排以有效地应对扰动。这种灵活的结构不仅可能与快速恢复的强度可能具有恢复的力量,而且还可以确保在任何应急情况下供应重要载荷并保留功能。为实现这些目标,本文审查了一种新的时空算法将现有网络分成一组自我修复的MU GS。在这种努力中,通过确定异构产生资源的混合并分配远程控制开关来设计MU GS之后,MU GS操作调度被分解成互连和孤岛模式。网格绑定状态中的主要意图是通过将故障区域分割出现故障区域,在主电网中断时,通过分割故障区域来最大化MU GS利润并在岛状状态下在岛状状态下生成,而是当主网格中断时,执行资源重新配置,网络重新配置和负载缩小。建议的问题被制定为依赖于列和约束生成框架的精确计算上有效的混合整数线性编程问题,并且设想了可调节的间隔优化,以使MU GS易受可再生能源可变性的变化。最后,通过进行现实的案例研究,拟议模型的有效性充分放心。

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