Downtime Measurements of Generator-Powered Microgrid During Planned and Unplanned Transfer to Island Mode

Kamil Prokop, Andrzej Bie´n, Szymon Barczentewicz
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Abstract

—Growing popularity of distributed generation is drawing special attention to communication technologies in smart power grids. This paper provides a detailed overview of the communication protocols utilized in the modern distributed grid laboratory. It describes both wired and wireless technologies used in Smart Grid and presents the remote operation of switching the subsystem from grid mode to island mode operating under nominal conditions. It shows the duration of power outages during a transfer to island mode with diesel generator running on idle - which simulates planned islanding and diesel generator stationary, which simulates unplanned islanding. Latency be-tween registration of disturbance and executing control command is measured. The results obtained are compared with current legislation. The consequences to the power system that are possible in both scenarios are highlighted. Obtained results and description of the communication technologies can be useful for the design of distributed power grids, island-mode power grids, and Smart Grids, as well as for further research in the area of using combustion fuel generators as a primary power supply in the microgrid.
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发电机微电网在计划和非计划岛式转移过程中的停机时间测量
--分布式发电的日益普及引起了智能电网中通信技术的特别关注。本文详细介绍了现代分布式网格实验室中使用的通信协议。它描述了智能电网中使用的有线和无线技术,并介绍了在标称条件下将子系统从电网模式切换到孤岛模式的远程操作。它显示了在柴油发电机怠速运行的情况下转换到孤岛模式期间的停电持续时间,模拟了计划孤岛,柴油发电机静止,模拟了非计划孤岛。测量干扰登记和执行控制命令之间的延迟。所得结果与现行立法进行了比较。强调了在这两种情况下可能对电力系统造成的后果。所获得的结果和通信技术的描述可用于分布式电网、岛式电网和智能电网的设计,以及在使用燃烧燃料发电机作为微电网主电源领域的进一步研究。
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CiteScore
1.50
自引率
14.30%
发文量
0
审稿时长
12 weeks
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