Control strategies for DC Microgrids: An overview

Pragalbha Kant, Poonam Singhal, M. K. Mahto, Diksha Jain
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引用次数: 2

Abstract

The aim of reduction in the use of fossil fuel sources, rising needs and environmental concern has necessitated the search for alternative sources of energy. A DC Microgrid is an attractive and viable option to cope with the growing need of energy. An effective control strategy may lead to a stable and efficient operation of the DC Microgrid. The topmost priority of the controllers employed in the DC Microgrid is the control of voltage and current. Depending upon the operational features, the general control for the DC Microgrid is grouped into local and coordinated control. Local measurements get the job of local control done whereas the coordinated control depends wholly on the communication link between the distributed generating units. On the basis of the method of communication adopted, the coordinated control strategy is further classified into centralized, decentralized and distributed controls. This paper presents an exhaustive literature survey of these coordinated control strategies instrumental in getting the desired control tasks done.
直流微电网控制策略综述
为了减少矿物燃料的使用、日益增加的需求和对环境的关切,必须寻找替代能源。直流微电网是应对日益增长的能源需求的一个有吸引力和可行的选择。有效的控制策略可以保证直流微电网的稳定高效运行。在直流微电网中,控制器的首要任务是控制电压和电流。根据运行特点,将直流微电网的一般控制分为局部控制和协调控制。局部测量完成了局部控制的工作,而协调控制完全依赖于分布式发电机组之间的通信链路。根据所采用的通信方式,将协调控制策略进一步分为集中控制、分散控制和分布式控制。本文对这些协调控制策略进行了详尽的文献调查,这些协调控制策略有助于完成所需的控制任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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