학술논문

Electric Vehicles and Grid Dynamics: Navigating Charging Strategies for Enhanced Stability and Sustainability
Document Type
Conference
Source
2024 6th International Youth Conference on Radio Electronics, Electrical and Power Engineering (REEPE) Radio Electronics, Electrical and Power Engineering (REEPE), 2024 6th International Youth Conference on. :1-4 Feb, 2024
Subject
Components, Circuits, Devices and Systems
Computing and Processing
Fields, Waves and Electromagnetics
General Topics for Engineers
Nuclear Engineering
Power, Energy and Industry Applications
Signal Processing and Analysis
Transportation
Power system dynamics
Power system stability
Stability analysis
Power grids
Threshold voltage
Power system reliability
Reliability
electric-vehicles
distribution systems
voltage imbalance
charging methods
controlled charging
Language
ISSN
2831-7262
Abstract
The recent surge in electric vehicle penetration presents a dual-edged scenario for power grids worldwide. On one hand, EVs offer valuable grid support functions through diverse operational modes, enhancing grid resilience and flexibility. On the other hand, this increasing penetration raises significant challenges, particularly concerning grid stability and safety. A critical aspect of this dynamic is the method of EV charging, which broadly falls into two categories: uncontrolled and controlled charging. Uncontrolled charging, while convenient for users, introduces substantial risks to the grid, potentially leading to technical problems such as voltage deviations and overloaded infrastructure due to escalating charging demands. Proposing the dilemma faced by system operators: the need to support the growth of EVs for a more sustainable future while ensuring the reliability and stability of the power grid. This paper proposes an analysis of the impact of different charging strategies on influencing EVs penetration without compromising grid integrity. By examining the effects of controlled versus un- controlled charging methods, this study aims to provide insights and guidelines for optimizing EV integration into power systems, thereby supporting the transition towards a more sustainable and reliable energy future.