...
首页> 外文期刊>IEEE Transactions on Power Systems >Flexible Division and Unification Control Strategies for Resilience Enhancement in Networked Microgrids
【24h】

Flexible Division and Unification Control Strategies for Resilience Enhancement in Networked Microgrids

机译:网络微电网弹性增强的灵活划分和统一控制策略

获取原文
获取原文并翻译 | 示例

摘要

Networking a series of autonomous microgrids (MGs) is a strategic effort toward the resilience enhancement in extreme conditions. In this paper, flexible division and unification control strategies are proposed to help networked MGs prepare adequately for extreme events and adapt comprehensively to subsequent changing conditions, which enhance the system resilience. According to the proposed strategies, networked MGs can switch between two distinct modes of division and unification by utilizing a sparse communication network without requiring any additional communication infrastructures or controllers. In division mode, each MG is regulated by its local master controllers (MCs) for active power sharing, which ensures that disruptions are handled effectively by local energy resources without utilizing those in adjacent MGs. Thus, any islanding or resynchronization of individual MGs would not introduce further disruptions to the remaining networked system. The proposed control strategies imply that the networked MGs system in division mode is managed in a proactive way to adequately prepare the networked system for extreme events. In the unification mode, the remaining networked MGs, which are still functional, use the proposed algorithm to share all available energy resources and adapt to continuously changing operating conditions in order to respond to extreme events. The proposed control algorithm for devising a flexible networked MGs system is a cost-effective scheme that can fully exploit the system operation flexibility corresponding to different operation stages for enhancing resilience. The proposed control strategies are applied to a networked AC MGs system and the performance is tested using time-domain PSCAD/EMTDC simulations.
机译:将一系列自治微电网(MGs)联网是提高极端条件下的弹性的战略性努力。在本文中,提出了灵活的划分和统一控制策略,以帮助联网的MG充分准备应对极端事件,并全面适应后续的变化条件,从而增强系统的弹性。根据提出的策略,联网的MG可以通过利用稀疏的通信网络在划分和统一的两种不同模式之间切换,而无需任何其他通信基础设施或控制器。在划分模式下,每个MG由其本地主控制器(MC)进行调节以实现有源功率共享,从而确保通过本地能源有效处理中断,而无需利用相邻MG中的中断。因此,单个MG的任何孤岛或重新同步都不会对其余的联网系统造成进一步的破坏。所提出的控制策略意味着以主动方式管理处于划分模式下的网络MGs系统,以便为极端事件充分准备网络系统。在统一模式下,仍在运行的其余联网MG使用所提出的算法共享所有可用能源,并适应持续变化的运行条件,以应对极端事件。所提出的用于设计柔性网络化MGs系统的控制算法是一种成本有效的方案,可以充分利用与不同操作阶段相对应的系统操作灵活性来增强弹性。所提出的控制策略被应用于网络AC MGs系统,并使用时域PSCAD / EMTDC仿真对性能进行了测试。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号