Novel Hierarchical Control of VSI-based Microgrids Against Large-Signal Disturbances

Authors

  • M. A. Hejazi Department of Electrical and Computer Engineering, University of Kashan, Kashan, Iran
  • Mohsen Fazli Department of Electrical and Computer Engineering, University of Kashan, Kashan, Iran
Abstract:

This paper provides a novel hierarchical control for VSI-based microgrids. The advantage of the provided control scheme is to maintain the frequency and voltage stability and load sharing against large-signal disturbances. A hierarchical control, consisting of three levels, is described. A new control loop based on PI controller, is presented. The new control loop has a great impact on increasing the stability margins, by moving the poles. In next steps, secondary and tertiary control levels are described. Then, the voltage droop equation is improved by a fuzzy controller. This controller generates a floating reactive power reference value, by a fuzzy logic. The role of floating reactive power reference value is to compensate the drastic changes in the voltage amplitude by changing the reactive power reference value. To verify the performance of the provided control scheme, a microgrid including four VSI-based DGs is simulated in islanded and grid-connected modes, by MATLAB/ SIMULINK. The simulation results show that the micogrid can maintain the frequency and voltage stability, in term of large-signal disturbances such as 3-phase and 1-phase short circuits. With this method microgrid load sharing is not altered after disturbances.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

Hierarchical Control of Multiple DC-Microgrids Clusters

This paper presents a distributed hierarchical control framework to ensure reliable operation of dc microgrid (MG) clusters. In this hierarchy, primary control is used to regulate the common bus voltage inside each MG locally. An adaptive droop method is proposed for this level, which determines droop coefficients according to the state-of-charge (SOC) of batteries automatically. A small-signal...

full text

Small-signal Stability Analysis and Vsi Controller Design for Microgrids Operating in Grid-connected Mode

A novel approach for VSI with an LCL output filter controller design for microgrids operating in grid-connected mode is presented in this paper. The controller structure is based on a multiloop control configuration in which the inner control loop is responsible for current regulation and the outer control loop generates the reference currents based on preset active and reactive power injection...

full text

Hierarchical Distributed Model Predictive Control of Interconnected Microgrids

In this work, we propose a hierarchical distributed model predictive control strategy to operate interconnected microgrids (MGs) with the goal of increasing the overall infeed of renewable energy sources. In particular, we investigate how renewable infeed of MGs can be increased by using a transmission network allowing the exchange of energy. To obtain an model predictive control scheme which i...

full text

Priority-Based Hierarchical Operational Management for Multiagent-Based Microgrids

Electricity consumption in the world is constantly increasing, making our lives become more and more dependent on electricity. There are several new paradigms proposed in the field of power grids. In Japan, especially after the Great East Japan Earthquake in March 2011, the new power grid paradigms are expected to be more resilient to survive several difficulties during disasters. In this paper...

full text

Frequency Control of Islanded Microgrids Based on Fuzzy Cooperative and Influence of STATCOM on Frequency of Microgrids

In this paper, the effect of a static synchronous compensator (STATCOM) influence on the frequency of islanded microgrids based on frequency control using fuzzy cooperative control is investigated. To achieve fast frequency control, instantaneous power balance between generation and consumption is inevitable, and it can be supplied through energy storage systems such as battery with a proper fr...

full text

Partial Least Square-based Model Predictive Control for Large-scale Manufacturing Process with Disturbances Partial Least Square-based Model Predictive Control for Large-scale Manufacturing Process with Disturbances

The Model Predictive Control (MPC) method has been widely accepted as a useful tool for keeping the quality on target in the manufacturing process. However, the conventional MPC methods are inadequate for the large-scale manufacturing process particularly in the presence of disturbances. The goal of the paper is to suggest a Partial Least Square (PLS)based MPC methodology for accommodating the ...

full text

My Resources

Save resource for easier access later

Save to my library Already added to my library

{@ msg_add @}


Journal title

volume 15  issue 4

pages  103- 113

publication date 2019-02

By following a journal you will be notified via email when a new issue of this journal is published.

Keywords

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023