Javascript must be enabled to continue!
IMPROVED POWER CONTROLLER FOR MICROGRID WITH NONLINEAR AND LINEAR LOADS
View through CrossRef
The main objective of this control is to maintain the stability of the microgrid frequency and voltage by forcing the inverters to operate at their rated power, while eliminating unwanted currents such as circulating currents and noise currents arising from output parameter inconsistencies. However, the presence of non-linear or unbalanced loads poses serious challenges, negatively affecting the effectiveness of this control mechanism. These harmonics will cause the power sharing control between inverters to become inaccurate, thereby creating circulating currents between inverters, causing overheating and potentially damaging the inverters. This paper proposes a control strategy that enhances the accuracy of power sharing between inverters and improves the voltage quality in the microgrid. The proposed method can accurately distribute power to the inverters in the microgrid by using a virtual impedance block, which can automatically adjust its value according to the load conditions, the ambient temperature conditions, and the structure changes of the microgrid. In addition, the power sharing accuracy of the proposed method is not affected by nonlinear or unbalanced loads, improving the voltage quality in the microgrid. The proposed controller overcomes the limitations of the conventional controller. The simulation and experimental results demonstrate the suitability of the proposed control method.
Ho Chi Minh City University of Industry and Trade
Title: IMPROVED POWER CONTROLLER FOR MICROGRID WITH NONLINEAR AND LINEAR LOADS
Description:
The main objective of this control is to maintain the stability of the microgrid frequency and voltage by forcing the inverters to operate at their rated power, while eliminating unwanted currents such as circulating currents and noise currents arising from output parameter inconsistencies.
However, the presence of non-linear or unbalanced loads poses serious challenges, negatively affecting the effectiveness of this control mechanism.
These harmonics will cause the power sharing control between inverters to become inaccurate, thereby creating circulating currents between inverters, causing overheating and potentially damaging the inverters.
This paper proposes a control strategy that enhances the accuracy of power sharing between inverters and improves the voltage quality in the microgrid.
The proposed method can accurately distribute power to the inverters in the microgrid by using a virtual impedance block, which can automatically adjust its value according to the load conditions, the ambient temperature conditions, and the structure changes of the microgrid.
In addition, the power sharing accuracy of the proposed method is not affected by nonlinear or unbalanced loads, improving the voltage quality in the microgrid.
The proposed controller overcomes the limitations of the conventional controller.
The simulation and experimental results demonstrate the suitability of the proposed control method.
Related Results
Unbalanced Current Sharing Control in Islanded Low Voltage Microgrids
Unbalanced Current Sharing Control in Islanded Low Voltage Microgrids
This paper reports a new control strategy to improve sharing of unbalanced currents in islanded LV microgrids. This technique provides fast and effective sharing of positive-, nega...
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Purpose
To provide high torques needed to move a robot’s links, electric actuators are followed by a transmission system with a high transmission rate. For instance, gear ratios of...
Modelling and fault ride-through control of grid supporting inverter-based microgrid
Modelling and fault ride-through control of grid supporting inverter-based microgrid
This thesis is focused on modeling and fault ride-through control, local load power delivery, and grid power exchange of power electronic interfaced Distributed Energy Resources (D...
Research on Switching Model of Microgrid with Distributed Power Supply
Research on Switching Model of Microgrid with Distributed Power Supply
The hybrid microgrid with distributed power supply which includes wind turbine (WT), photovoltaic (PV) inverter and power converter system (PCS), not only could be connected to the...
Deep CNN–LSTM-Based DSTATCOM for Power Quality Enhancement in Microgrid
Deep CNN–LSTM-Based DSTATCOM for Power Quality Enhancement in Microgrid
Power quality issues and their effective mitigation invariably play a crucial role in a microgrid system. Such power quality problems are often resolved by employing multiple power...
Control and management strategies for a microgrid
Control and management strategies for a microgrid
Stratégies de contrôle et de gestion d'un microgrid
Aujourd'hui et à l'avenir, l'augmentation des prix du carburant, la déréglementation et les contraintes de l'env...
Sea Loads On Floating Offshore Systems
Sea Loads On Floating Offshore Systems
ABSTRACT
High frequency and low frequency nonlinear wave loads on large volume offshore structures are discussed. The importance of ringing are pointed out. Mathe...
Islanding Detection in Grid-Connected Urban Community Multi-Microgrid Clusters Using Decision-Tree-Based Fuzzy Logic Controller for Improved Transient Response
Islanding Detection in Grid-Connected Urban Community Multi-Microgrid Clusters Using Decision-Tree-Based Fuzzy Logic Controller for Improved Transient Response
The development of renewable-energy-based microgrids is being considered as a potential solution to lessen the unrelenting burden on the centralized utility grid. Furthermore, rece...

