Energy and Power Engineering

Energy and Power Engineering

ISSN Print: 1949-243X
ISSN Online: 1947-3818
www.scirp.org/journal/epe
E-mail: epe@scirp.org
"Virtual Synchronous Generator: A Control Strategy to Improve Dynamic Frequency Control in Autonomous Power Systems"
written by Miguel Torres, Luiz A. C. Lopes,
published by Energy and Power Engineering, Vol.5 No.2A, 2013
has been cited by the following article(s):
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[16] Optimization-based fast-frequency support in low inertia power systems
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[17] Control of AC/DC Microgrids with Renewables in the Context of Smart Grids: Including Ancillary Services and Electric Mobility
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[18] Parallel Operation of Virtual Synchronous Generators in a Microgrid
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[19] Control of AC/DC Microgrids with Renewables in the Context of Smart Grids
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[20] A Review on Various Virtual Inertia Techniques for Distributed Generation
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[21] A Comprehensive Review of Power Flow Controllers in Interconnected Power System Networks
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[22] Control of Voltage-Source Converters Considering Virtual Inertia Dynamics
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[23] Research on VSG Control Strategy of Microgrid
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[24] Adaptive Inertia Emulation Control for High-speed Flywheel Energy Storage Systems
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[25] Interconnected microgrids frequency response model: An inertia-based approach
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[26] The Discrete-Time Model Following Controller for a Virtual Synchronous Generator
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[27] Hybrid PV-Battery-DG Based Virtual Synchronous Generator
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[28] A review on energy management, operation control and application methods for grid battery energy storage systems
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[29] Non-synchronous fast frequency reserves in renewable energy integrated power systems: A critical review
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[30] Inverse Problems and Optimal Power Flow in Active Distribution Networks
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[31] Frequency stability and synthetic inertia
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[32] Novel Control of PV Solar Farms as STATCOM (PV-STATCOM) for Frequency Control and Power Oscillation Damping
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[34] Novel Load-based Control Strategies for Power System Primary Frequency Regulation
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[35] Low-Voltage Ride-Through Control Strategy for a Virtual Synchronous Generator Based on Smooth Switching
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[36] Fuzzy-Secondary-Controller-Based Virtual Synchronous Generator Control Scheme for Interfacing Inverters of Renewable Distributed Generation in Microgrids
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[37] Foundations and challenges of low-inertia systems
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[38] Virtual Synchronous Generator-A New Trend in Technology for Smart Grid Integration
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[39] Application of a Virtual Synchronous Machine for Undershoot Reduction of the Frequency in Microgrids with Renewable Generation
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[40] Stability Analysis of Photovoltaic Virtual Synchronous Generators
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[41] Integration of Photovoltaic Energy to the Grid, Using the Virtual Synchronous Generator Control Technique
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[42] Grid-forming Control for Power Converters based on Matching of Synchronous Machines⋆
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[49] Virtual inertia: Current trends and future directions
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[51] Improving grid frequency dynamics of synchronous generators considering wind energy penetration grid dynamics and operation
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[52] Fuzzy Secondary Controller Based Virtual Synchronous Generator Control Scheme for Interfacing Inverters of Renewable Distributed Generation in Microgrids
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[53] Effect of ECS low‐pass filter timing on grid frequency dynamics of a power network considering wind energy penetration
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[54] Reduction of energy consumption of virtual synchronous machine using supplementary adaptive dynamic programming
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[56] 虚拟同步发电机技术及展望
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[57] Control strategy for suppressing power oscillation of virtual synchronous generator under unbalanced grid voltage
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[58] Control-Strategy for Frequency Control in Autonomous Microgrids
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[59] Improving transient stability of photovoltaic-hydro microgrids using virtual synchronous machines
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[61] Improvement of transient stability of photovoltaic-hydro microgrids using virtual synchronous machines
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[62] Pumped Storage Contribution to GridInertia
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[63] Dynamic Frequency Control in Diesel-Hybrid Autonomous Power Systems using Virtual Synchronous Machines
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