混合直流和交流连接微电网:走向分布式能源的整合

Zhenhua Jiang, X. Yu
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引用次数: 115

摘要

本文提出了一种具有直流和交流链路的微电网范例,它可以提供一种有效的方法,将一组异构的小型分布式能源资源集成到现有的电力基础设施中。每个级别的聚合能源单元的集合将这些分布式资源作为一个单一的自我调节实体(如直流或交流,发电机或负载)表示给上层。在顶层,在公用事业电网看来,微电网中所有分布式能源的收集与许多其他目前合法的客户站点没有区别。维持这种配置依赖于先进电力电子设备的灵活性,这些设备控制分布式能源单元、直流链路、交流链路和周围电力系统之间的接口。本文还讨论了与电力电子接口和控制的行为功能和技术要求有关的一些主要问题。提出了一种混合微电网解耦控制框架,并对其性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid DC- and AC-Linked Microgrids: Towards Integration of Distributed Energy Resources
This paper presents a microgrid paradigm with both DC and AC links, which may provide an effective way to integrate a heterogeneous set of small-size distributed energy resources into the existing electric power infrastructure. The collection of aggregated energy resource units at each level represents those distributed resources to the upper level as a single self-regulated entity (as a DC or AC, generator or load). At the top level, the collection of all distributed energy resources in the microgrid appears to the utility grid as indistinguishable from many other currently legitimate customer sites. Maintaining this profile relies on the flexibility of advanced power electronics that control the interfaces among distributed energy units, DC links, AC links, and the surrounding power system. This paper also discusses some major issues pertinent to behavioral functions and technical requirements of the power electronics interfaces and controls. A decoupled control framework is developed for the hybrid microgrid and the performances are evaluated.
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