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An Analytical Adequacy Evaluation Method for Distribution Networks Considering Protection Strategies and Distributed Generators

机译:考虑保护策略和分布式发电机的配电网分析充足性评估方法

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摘要

Reliability evaluation relates to the impact of faults on customer outage frequency and time. Thus, studying the process of fault isolation and supply restoration is critical in reliability evaluation. In distribution systems, distributed generators (DGs), especially renewable DGs, are increasingly integrated into the network. New issues emerge after DG integration: 1) DG reliability model; 2) change of protection strategy and supply restoration process; and 3) islanding operation. In this paper, an analytical method is proposed to assess the distribution system reliability level considering these issues. The reliability model for DG and load are developed using scenarios reduction techniques based on historical data. The correlation between renewable resources and load is also formulated in the model. When a fault occurs in a distribution system, parts of the distribution system can be operated as islands. The reliability indices of the load point in the microgrid vary according to the power adequacy assessment in the island and supply restoration process. To improve calculation efficiency, the analysis of fault isolation and supply restoration process and reliability evaluation is based on segments instead of single components. Then, the overall reliability evaluation framework is proposed. In the end, a detailed case study is presented.
机译:可靠性评估涉及故障对客户中断频率和时间的影响。因此,研究故障隔离和恢复供电的过程对于可靠性评估至关重要。在配电系统中,分布式发电机(DG)特别是可再生DG已越来越多地集成到网络中。 DG集成后出现了新问题:1)DG可靠性模型; 2)改变保护策略和恢复供应过程; 3)孤岛操作。本文提出了一种分析方法来评估考虑到这些问题的配电系统可靠性水平。 DG和负荷的可靠性模型是使用基于历史数据的方案减少技术开发的。模型中还制定了可再生资源与负荷之间的相关性。当配电系统发生故障时,配电系统的某些部分可以作为孤岛运行。微电网中负载点的可靠性指标会根据孤岛和供电恢复过程中的功率充足性评估而有所不同。为了提高计算效率,故障隔离和供应恢复过程的分析以及可靠性评估是基于分段而不是单个组件。然后,提出了总体可靠性评估框架。最后,给出了详细的案例研究。

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