Abstract:
This paper presents a review of control strategies, stability analysis, and stabilization techniques for dc microgrids (MGs). Overall control is systematically classified...Show MoreMetadata
Abstract:
This paper presents a review of control strategies, stability analysis, and stabilization techniques for dc microgrids (MGs). Overall control is systematically classified into local and coordinated control levels according to respective functionalities in each level. As opposed to local control, which relies only on local measurements, some line of communication between units needs to be made available in order to achieve the coordinated control. Depending on the communication method, three basic coordinated control strategies can be distinguished, i.e., decentralized, centralized, and distributed control. Decentralized control can be regarded as an extension of the local control since it is also based exclusively on local measurements. In contrast, centralized and distributed control strategies rely on digital communication technologies. A number of approaches using these three coordinated control strategies to achieve various control objectives are reviewed in this paper. Moreover, properties of dc MG dynamics and stability are discussed. This paper illustrates that tightly regulated point-of-load converters tend to reduce the stability margins of the system since they introduce negative impedances, which can potentially oscillate with lightly damped power supply input filters. It is also demonstrated that how the stability of the whole system is defined by the relationship of the source and load impedances, referred to as the minor loop gain. Several prominent specifications for the minor loop gain are reviewed. Finally, a number of active stabilization techniques are presented.
Published in: IEEE Transactions on Power Electronics ( Volume: 31, Issue: 7, July 2016)
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- IEEE Keywords
- Index Terms
- Control Strategy ,
- Stabilization Techniques ,
- Review Of Control Strategies ,
- Control Levels ,
- Stability Of System ,
- Local Control ,
- Digital Communication ,
- Distributed Control ,
- Control Objective ,
- Microgrid ,
- Coordination Control ,
- Decentralized Control ,
- Input Filter ,
- Dc Microgrid ,
- Digital Communication Technologies ,
- Distributed Control Strategy ,
- Center For Control ,
- Operation Mode ,
- Output Current ,
- DC Voltage ,
- Droop Control ,
- Voltage Control ,
- Constant Power Loads ,
- Proportional-derivative Control ,
- Energy Storage Systems ,
- Voltage Regulation ,
- Droop Coefficient ,
- Microgrid Operation ,
- Active Damping
- Author Keywords
- Author Free Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Control Strategy ,
- Stabilization Techniques ,
- Review Of Control Strategies ,
- Control Levels ,
- Stability Of System ,
- Local Control ,
- Digital Communication ,
- Distributed Control ,
- Control Objective ,
- Microgrid ,
- Coordination Control ,
- Decentralized Control ,
- Input Filter ,
- Dc Microgrid ,
- Digital Communication Technologies ,
- Distributed Control Strategy ,
- Center For Control ,
- Operation Mode ,
- Output Current ,
- DC Voltage ,
- Droop Control ,
- Voltage Control ,
- Constant Power Loads ,
- Proportional-derivative Control ,
- Energy Storage Systems ,
- Voltage Regulation ,
- Droop Coefficient ,
- Microgrid Operation ,
- Active Damping
- Author Keywords
- Author Free Keywords