Peiyuan Chen
Peiyuan Chen received his B.Eng. degree in Electrical Engineering from Zhejiang University, China, in 2004, M.Sc. degree in Electric Power Engineering from Chalmers University of Technology, Sweden, in 2006, and Ph.D. degree at Aalborg University, Denmark, in 2010. He is an Assistant Professor at Chalmers University of Technology since 2010. His research topics include operation and planning of power system with integration of wind power, with interests in time series modelling, statistical analysis, and optimization.
Showing 44 publications
Drivers and Barriers to Deploy Microgrid in Sweden
Protection of converter dominated MV microgrid using changes in current's phase angle
Optimal Energy Control, Hosting BESS and EVs through Multiport Converter in Interconnected MGs
Inclusion of frequency control constraints in energy system investment modeling
Tuning and evaluation of grid-forming converters for grid-support
Dataset for generating synthetic residential low-voltage grids in Sweden, Germany and the UK
Evaluation of Efficient Frequency Control Strategies in a Wind-Hydro Dominated Power System
Frequency control and synthetic inertia in energy systems modelling
Current Restrained Undervoltage Protection of Converter Dominated Microgrid
Improved Peak Load Estimation from Single and Multiple Consumer Categories
Current restrained undervoltage protection scheme of converter dominated microgrids
Design of Maximum Power Point Tracking for Dynamic Power Response of Tidal Undersea Kite Systems
Frequency quality in the nordic system 2040
Evaluation of the System-Aggregated Potentials of Inertial Support Capabilities from Wind Turbines
On Benefits and Challenges of Nested Microgrids
Challenges in Protection of Converter Dominated Medium-Voltage Microgrids
Internalising a threshold concept - what languages and channels are called for?
Kinetic energy estimation in the Nordic system
Generator Speed Control and Experimental Verification of Tidal Undersea Kite Systems
Frequency evaluation of the Nordic power system using PMU measurements
Day-ahead Reserve Capacity Procurement based on Mixed-Integer Bilevel Linear Programming
Inertia Support During Variable Wind Conditions
ARIMA-based frequency-decomposed modelling of wind speed time series
USING REACTIVE POWER FROM WIND TURBINES FOR LOSS REDUCTION IN DISTRIBUTION SYSTEM
Optimizing Wind Power Hosting Capacity of Distribution Systems Using Cost Benefit Analysis
Frequency Support by Wind Farms in Islanded Power Systems with High Wind Power Penetration
The Effect of Wind Power Integration on the Frequency of Tap Changes of a Substation Transformer
Comparison of Primary Frequency Support Methods for Wind Turbines
Strategic Placement of Wind Turbines in Smart Grids
Time-Series Based Cable Selection for a Medium Voltage Wind Energy Network
Maximizing Wind Power Integration in Distribution System
Stochastic evaluation of maximum wind capacity in a radial distribution network
Using PQ-monitor and PMU for voltage sag extended-characterization
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Showing 14 research projects
Multiport Converter to Enhance Supply Reliability and Local Grid Strength
Fault-Ride-Through of Wind Power Plant with Grid-Forming Control
Sammankopplade Medborgarenergigemenskaper Driven av Digitaliseringsteknologi
Operation and control of future renewable power systems, part 2
Communication-assisted protection in converter dominated medium-voltage microgrids, part 2
Cross-Sectoral Energy Control through Interconnected Microgrids by Multiport Converter
Grid Strength Metrics and Evaluation in Converter-Dominated Grids
Machine-learning algorithms to categorize consumers
Operation and control of future renewable power systems
Communication-assisted protection in converter dominated medium-voltage microgrids
Grid Strength of a Converter-Dominated Renewable Power System
Kontroll och stabilitet av maskade mikronät med kommunikationsfel(EM SamspEL Micronät)