PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
July 3, 2023Smart Cities95 citationsOpen Access

DC Microgrids: A Propitious Smart Grid Paradigm for Smart Cities

SRShriram S. RangarajanRRRahul RamanASAmritpal Singh

Key Points

  • This paper reviews the advantages and challenges of DC microgrids compared to AC systems, focusing on their integration into smart grids.
  • Comprehensive review of DC microgrids, including architectures and protection schemes.
  • Discussion of power quality, inertia, communication issues, and economic operations of DC systems.
  • Comparison of grid-connected and isolated DC microgrids for planning and management.
  • DC microgrids enhance reliability and efficiency over AC systems by eliminating synchronization and reactive power control issues.
  • Significant challenges remain, including power quality issues and complex communication needs.
  • The paper outlines the necessary planning and operational prerequisites for effective DC microgrid implementation.

Abstract

Recent years have seen a surge in interest in DC microgrids as DC loads and DC sources like solar photovoltaic systems, fuel cells, batteries, and other options have become more mainstream. As more distributed energy resources (DERs) are integrated into an existing smart grid, DC networks have come to the forefront of the industry. DC systems completely sidestep the need for synchronization, reactive power control, and frequency control. DC systems are more dependable and productive than ever before because AC systems are prone to all of these issues. There is a lot of unrealized potential in DC power, but it also faces some significant challenges. Protecting a DC system is difficult because there is no discrete location of where the current disappears. DC microgrid stability that is dependent on inertia must also be considered during the planning stage. The problems that DC microgrids have include insufficient power quality and poor communication. The power quality, inertia, communication, and economic operations of these value streams, as well as their underlying architectures and protection schemes, are all extensively discussed in this paper. This review paper examines the pros and cons of both grid-connected and isolated DC microgrids. In addition, the paper compares the different kinds of microgrids in terms of power distribution and energy management agency, such as the prerequisites for a DC microgrid’s planning, operation, and control that must be met before state-of-the-art systems can be implemented.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rangarajan et al. (2023) studied this question.

synapsesocial.com/papers/6a10e1b249545a83bbee908ehttps://doi.org/10.3390/smartcities6040079
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Recent advances on energy management and control of direct current microgrid for smart cities and industry: A Survey2024 · 53 citations
  2. 2A Comprehensive Review of DC Microgrids: Controls, Topologies, Protection and Future Trends2026
  3. 3Review of DC Microgrid Design, Optimization, and Control for the Resilient and Efficient Renewable Energy Integration2025
  4. 4Review on Microgrids, Control Strategies and DC Microgrids2024
  5. 5Breaking Barriers: Strategies for Effective Protection of DC Microgrid Systems2026