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Two-level energy management strategy for PV-Fuel cell-battery-based DC microgrid

机译:基于光伏燃料电池的直流微电网的二级能源管理策略

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With the fast development of DC Microgrid (MG) technology, its operating economy and reliability are getting more and more concern. The traditional distributed control method is aimed at power balance and system stability, and is difficult to meet the requirement of energy management system for multi-source hybrid DC MG. This paper provides a two level energy management strategy for PV-fuel cell-battery-based DC MG, which is divided into device control level and system control level. At the device control level, the distributed control methods based on MPPT-droop dual-mode control and droop control are proposed to enhance system reliability; at the system control level, the equivalent consumption minimization strategy (ECMS) is used to distribute system net power between battery pack and fuel cell system. A lab-scale DC microgrid platform is developed to verify the proposed energy management strategy in this paper. Moreover, the analysis and compare of the results show that the proposed two-level energy management strategy can achieve lower equivalent hydrogen consumption than classical PI control and state machine control method. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:随着DC Microgrid(MG)技术的快速发展,其运行经济性和可靠性越来越受到关注。传统的分布式控制方法以功率平衡和系统稳定性为目标,难以满足多源混合DC MG能源管理系统的要求。本文为基于光伏燃料电池的DC MG提供了两级能量管理策略,分为设备控制级和系统控制级。在设备控制层面,提出了基于MPPT-droop双模控制和下垂控制的分布式控制方法,以提高系统的可靠性。在系统控制级别,等效消耗最小化策略(ECMS)用于在电池组和燃料电池系统之间分配系统净功率。开发了实验室规模的直流微电网平台,以验证本文提出的能源管理策略。此外,结果的分析和比较表明,与传统的PI控制和状态机控制方法相比,所提出的两级能量管理策略可以实现更低的当量氢气消耗。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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