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Virtual Inertia: Current Trends and Future Directions

Applied Sciences · 2017 · Vol. 7(7) · pp. 654–654
Ujjwol TamrakarDipesh ShresthaManisha MaharjanBishnu BhattaraiTimothy M. HansenReinaldo Tonkoski

Abstract

The modern power system is progressing from a synchronous machine-based system towards an inverter-dominated system, with large-scale penetration of renewable energy sources (RESs) like wind and photovoltaics. RES units today represent a major share of the generation, and the traditional approach of integrating them as grid following units can lead to frequency instability. Many researchers have pointed towards using inverters with virtual inertia control algorithms so that they appear as synchronous generators to the grid, maintaining and enhancing system stability. This paper presents a literature review of the current state-of-the-art of virtual inertia implementation techniques, and explores potential research directions and challenges. The major virtual inertia topologies are compared and classified. Through literature review and simulations of some selected topologies it has been shown that similar inertial response can be achieved by relating the parameters of these topologies through time constants and inertia constants, although the exact frequency dynamics may vary slightly. The suitability of a topology depends on system control architecture and desired level of detail in replication of the dynamics of synchronous generators. A discussion on the challenges and research directions points out several research needs, especially for systems level integration of virtual inertia systems.

Microgrid Control and OptimizationIslanding Detection in Power SystemsWind Turbine Control SystemsInertiaNetwork topologyComputer scienceGridElectric power systemRenewable energyControl engineeringTopology (electrical circuits)EngineeringPower (physics)

Funding

  • U.S. Department of Energy
  • Microsoft
  • South Dakota Board of Regents
  • Office of Nuclear Energy
  • Idaho Operations Office, U.S. Department of Energy
  • Natural Environment Research Council
Citations
614
FWCI
35.43
field-weighted impact
References
114
Percentile
100%
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Citations per year
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References
Self-Synchronized Synchronverters: Inverters Without a Dedicated Synchronization Unit
IEEE Transactions on Power Electronics · 2013 · 997 citations
Improvement of Transient Response in Microgrids Using Virtual Inertia
IEEE Transactions on Power Delivery · 2013 · 429 citations
Power Management Strategies for a Microgrid With Multiple Distributed Generation Units
IEEE Transactions on Power Systems · 2006 · 1,552 citations
Synchronverters: Inverters That Mimic Synchronous Generators
IEEE Transactions on Industrial Electronics · 2010 · 2,907 citations
Power-Synchronization Control of Grid-Connected Voltage-Source Converters
IEEE Transactions on Power Systems · 2009 · 1,266 citations
Overview of Control and Grid Synchronization for Distributed Power Generation Systems
IEEE Transactions on Industrial Electronics · 2006 · 5,104 citations
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