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Power-Sharing Method of Multiple Distributed Generators Considering Control Modes and Configurations of a Microgrid

机译:考虑微电网控制模式和配置的多台分布式发电机的功率共享方法

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This paper describes the active power and frequency-control principles of multiple distributed generators (DGs) in a microgrid. Microgrids have two operating modes: 1) a grid-connected mode and 2) an islanded mode. During islanded operation, one DG unit should share output generation power with other units in exact accordance with the load. Two different options for controlling the active power of DGs are introduced and analyzed: 1) unit output-power control (UPC) and 2) feeder flow control (FFC). Taking into account the control mode and the configuration of the DGs, we investigate power-sharing principles among multiple DGs under various system conditions: 1) load variation during grid-connected operation, 2) load variation during islanded operation, and 3) loss of mains (disconnected from the main grid). Based on the analysis, the FFC mode is advantageous to the main grid and the microgrid itself under load variation conditions. However, when the microgrid is islanded, the FFC control mode is limited by the existing droop controller. Therefore, we propose an algorithm to modify the droop constant of the FFC-mode DGs to ensure proper power sharing among DGs. The principles and the proposed algorithm are verified by PSCAD simulation.
机译:本文介绍了微电网中多个分布式发电机(DG)的有功功率和频率控制原理。微电网具有两种运行模式:1)并网模式和2)孤岛模式。在孤岛运行期间,一个DG单元应完全根据负载与其他单元共享输出发电功率。引入并分析了两种用于控制DG有功功率的选项:1)单元输出功率控制(UPC)和2)馈线流量控制(FFC)。考虑到DG的控制模式和配置,我们研究了在各种系统条件下多个DG之间的功率共享原理:1)并网运行期间的负载变化,2)孤岛运行期间的负载变化以及3)电网损耗主电源(与主电网断开连接)。基于分析,FFC模式在负载变化条件下有利于主电网和微电网本身。但是,当微电网成为孤岛时,FFC控制模式会受到现有下垂控制器的限制。因此,我们提出了一种算法来修改FFC模式DG的下垂常数,以确保DG之间适当的功率共享。通过PSCAD仿真验证了该原理和提出的算法。

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