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首页> 外文期刊>International journal of electrical power and energy systems >Power sharing through interlinking converters in adaptive droop controlled multiple microgrid system
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Power sharing through interlinking converters in adaptive droop controlled multiple microgrid system

机译:通过自适应下垂控制多个MicroGrid系统的互通转换器分享电力共享

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摘要

Multiple microgrids (MMGs) may be interconnected through voltage source converters (VSC) for controlled power sharing among themselves. VSCs in large interconnected micro- grids may use non-communication based droop control to share total power demand in the ratio of their droop coefficients. However, a constant droop ratio restricts the power delivery capability of the VSCs although surplus power may be available in their respective sources. In this paper, along with a unified power management strategy for intra and inter microgrid power sharing in a hybrid AC-DC MMG system, a novel adaptive droop control algorithm is presented that dynamically changes droop coefficients of the VSCs to ensure maximum utilization of available resources in each microgrid under different operating modes. Stability analysis of the proposed control method is performed and comparison of the system performance with fixed and adaptive droop ratio is illustrated by simulating the MMG in MATLAB SIMULINK using real solar irradiance field data. It is validated from simulation results that the adaptive droop control method increases utilization of renewable energy sources within microgrids and reduces energy import from utility grid.
机译:多个微电网(MMG)可以通过电压源转换器(VSC)来互连,以便它们之间的受控电力共享。大互连的微网格中的VSC可以使用非通信的下垂控制来以其下垂系数的比率共享总功率需求。然而,恒定的下垂比限制了VSC的电力传递能力,尽管它们各自的源处可用剩余功率。在本文中,除了用于混合动力AC-DC MMG系统中的统一电力管理策略和微电网中的统一电源管理策略,提出了一种新颖的自适应下垂控制算法,其动态地改变了VSC的下垂系数,以确保最大限度地利用可用资源在不同操作模式下的每个微电网中。通过使用真正的太阳辐照度场数据模拟MATLAB Simulink中的MMG来执行所提出的控制方法的稳定性分析,并通过固定和自适应下垂比进行比较。从仿真结果验证,自适应下垂控制方法增加了微电网内可再生能源的利用率,并减少了从公用电网导入的能量导入。

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