Hierarchical Control in Microgrid

It is required to utilize several control loops together to increase reliability and performance of microgrids. The current and voltage magnitudes, frequency and angle information, active and reactive power data provide the involved feedback for normal and island mode operations of microgrid. The hierarchical control structure of microgrid is responsible for microgrid synchronization, optimizing the management costs, control of power share with neighbor grids and utility grid in normal mode while it is responsible for load sharing, distributed generation, and voltage/frequency regulation in both normal and islanding operation modes. The load control of microgrid is performed by using more sophisticated electronic devices as well as regular circuit breakers. This regulation capacity could be improved since the ESS decreases the dependency to primary power sources. Although several improvements have been experienced in microgrid control strategies, the most intensive research areas are listed as decreasing the structural instability, improving the system performance to increase reliability, monitoring the harmonic contents, scaling the control infrastructure, enhancing the operation characteristics in error states, and implementing new control algorithms for normal and islanding operation. The microgrid system has hierarchical control infrastructure in different levels similar to conventional grids. The microgrid requires enhanced control techniques to manage any level of system. Safe operation of microgrid in both operation modes and connection and disconnection between microgrid and utility grid are depended to microgrid control techniques. The controllers should ensure to operate the system regarding to predefined circumstances and efficiency requirements. The hierarchical control methods and applications of microgrid infrastructure are presented in the proposed chapter.

[1]  Qian Ai,et al.  A Novel Secondary Control for Microgrid Based on Synergetic Control of Multi-Agent System , 2016 .

[2]  Ali Davoudi,et al.  Hierarchical Structure of Microgrids Control System , 2012, IEEE Transactions on Smart Grid.

[3]  Juan C. Vasquez,et al.  Small-Signal Analysis of the Microgrid Secondary Control Considering a Communication Time Delay , 2016, IEEE Transactions on Industrial Electronics.

[4]  Armando Astarloa,et al.  On the Utilization of System-on-Chip Platforms to Achieve Nanosecond Synchronization Accuracies in Substation Automation Systems , 2017, IEEE Transactions on Smart Grid.

[5]  Xiaoqiang Guo,et al.  A Multifunctional and Wireless Droop Control for Distributed Energy Storage Units in Islanded AC Microgrid Applications , 2017, IEEE Transactions on Power Electronics.

[6]  Mohammad Hassan Moradi,et al.  Cooperative control strategy of energy storage systems and micro sources for stabilizing microgrids in different operation modes , 2016 .

[7]  Frank L. Lewis,et al.  Distributed Cooperative Secondary Control of Microgrids Using Feedback Linearization , 2013, IEEE Transactions on Power Systems.

[8]  Haiying Dong,et al.  Secondary control strategy of islanded micro-grid based on multi-agent consistency , 2017, 2017 IEEE Conference on Energy Internet and Energy System Integration (EI2).

[9]  Kimmo Kauhaniemi,et al.  Hierarchical control structure in microgrids with distributed generation: Island and grid-connected mode , 2015 .

[10]  Fang Zheng Peng,et al.  Control for Grid-Connected and Intentional Islanding Operations of Distributed Power Generation , 2011, IEEE Transactions on Industrial Electronics.

[11]  Juan C. Vasquez,et al.  Distributed Secondary Control for Islanded Microgrids—A Novel Approach , 2014, IEEE Transactions on Power Electronics.

[12]  Juan C. Vasquez,et al.  Hierarchical Control of Droop-Controlled AC and DC Microgrids—A General Approach Toward Standardization , 2009, IEEE Transactions on Industrial Electronics.

[13]  Frank L. Lewis,et al.  Control and Modeling of Microgrids , 2017 .

[14]  Luis E. Garza-Castañón,et al.  The 5 th International Conference on Sustainable Energy Information Technology ( SEIT 2015 ) A review of optimal control techniques applied to the energy management and control of microgrids , 2015 .

[15]  Amandeep Kaur,et al.  A review on microgrid central controller , 2016 .