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An Evaluation Method of Reactive Power and Voltage Control Ability for Multiple Distributed Generators in an Islanded Micro-grid

机译:孤岛微电网中多台分布式发电机无功功率和电压控制能力的评估方法

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Micro-gird, as an effective way of connecting the large-scale distributed generators (DGs) to distribution network, has attracted the attention of scholars these years. However, the reactive power and voltage control is a big challenge to the islanded micro-grid, due to the small capacity of the master source or lack of a diesel generator with a large load fluctuation. In the interest of more economical and flexible adapting to various operation modes in an islanded micro-grid with renewable sources, it is necessary to utilize the reactive power potential of existing DGs as much as possible. In this paper, a comprehensive index for evaluating the reactive power and voltage control capability of DGs is proposed using the Analytic Hierarchy Process (AHP). The comprehensive index is determined by five subindices, including Voltage Deviation, Voltage Fluctuation, Voltage Harmonics, Static Reactive Power Support Capability, and Transient Reactive Power Support Capability. The proposed indices are utilized to evaluate the reactive power and voltage control capability of islanded micro-grids with various combinations of DGs such as wind turbine, photovoltaic and energy storage, while the difference between master-slave control and peer-to-peer control is mainly analyzed in this way. Simulations are carried out in the DIgSILENT environment. The effectiveness of the proposed comprehensive index is verified by the comparison of different cases, which can be a reference for the generation planning and voltage control strategies of islanded micro-grids.
机译:微型电网作为一种将大型分布式发电机(DG)连接到配电网的有效方法,近年来引起了学者的关注。然而,由于主电源的容量小或缺少具有大负载波动的柴油发电机,无功功率和电压控制对于孤岛微电网是一个很大的挑战。为了在具有可再生资源的孤岛微电网中更经济,更灵活地适应各种运行模式,有必要尽可能利用现有DG的无功功率潜力。本文提出了一种利用层次分析法(AHP)评估DG的无功功率和电压控制能力的综合指标。综合指数由五个子指标确定,包括电压偏差,电压波动,电压谐波,静态无功功率支持能力和瞬态无功功率支持能力。拟议的指标被用来评估孤岛微电网的无功功率和电压控制能力,其中包括风力发电机,光伏发电和储能等DG的各种组合,而主从控制与对等控制之间的区别是主要以这种方式分析。仿真是在DIgSILENT环境中进行的。通过对不同案例的比较,验证了所提出的综合指标的有效性,可为孤岛微电网的发电规划和电压控制策略提供参考。

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