Optimal Closed Loop Control of G2V/V2G Action Using Model Predictive Controller
This paper has developed a closed-loop control algorithm to operate the G2V/V2G action, tested under varying battery voltage conditions and load and source power differences. Under V2G action, to maintain total harmonic distortion under minimum level and grid frequency under the standard limit, a Mo...
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Zusammenfassung: | This paper has developed a closed-loop control algorithm to operate the
G2V/V2G action, tested under varying battery voltage conditions and load and
source power differences. Under V2G action, to maintain total harmonic
distortion under minimum level and grid frequency under the standard limit, a
Model predictive controller (MPC) has been used to control the gate driver
circuit of the inverter. The state space model of the plant has been created
using the system identification toolbox, and the MPC Controller block has been
designed using the Model Predictive Control Toolbox of MATLAB. The proposed
methodology is tested using MATLAB/Simulink and OPAL-RT (OP4510) in a real-time
environment. This methodology reduces %THD to less than 0.5%, improves waveform
quality of grid voltage, inverter output voltage, grid current, and inverter
output current to nearly 99%, and maintains the grid frequency in standard
limit while in G2V/V2G action. |
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DOI: | 10.48550/arxiv.2308.09106 |