Frequent Deviation-Free Control for Micro-Grid Operation Modes Switching Based on Virtual Synchronous Generator

Author(s):  
Yan Xu ◽  
Tengfei Zhang ◽  
Dong Yue
Author(s):  
Santhoshkumar Thenpennaisivem ◽  
V. Senthilkumar

In this article, a hybrid technique is proposed for improving the transient and small signal response in micro grid using virtual inertia. The proposed hybrid technique is the combined execution of both the emperor penguin optimizer (EPO) and butterfly optimization algorithm (BOA), and hence it is called EPOBOA technique. The major objective of the EPOBOA technique is to “optimize the control parameters to regulate the changes occurred in the grid parameter such as voltage and frequency based on the variations of inertia”. Here, the EPO is executed to modify the parameters of virtual synchronous generator units to achieve the objective function. The searching behaviour of the EPO is adapted by using the hunting behaviour of BOA. The proposed technique is executed in MATLAB/Simulink work site, and the experimental results are analyzed under three test cases: normal condition, irradiation change condition, and load change condition. The performance of the proposed technique is compared with different existing techniques and the calculated frequency deviation index of the proposed technique in all the cases is 0.0051, 0.0045, and 0.0047 and found to be very optimal compared with existing methods. Overall, the experimental outcomes show that the proposed EPOBOA method is more efficient and confirm its ability to solve the issues.


2013 ◽  
Vol 448-453 ◽  
pp. 2583-2589
Author(s):  
Zhi Wen Liu ◽  
Wen Bo Xia

Switching control of micro-grid operation modes belongs to short time scale control level, this paper proposes three-tier structure of micro-grid energy management system suitable for switching control of micro-grid operation modes on the basis of the analysis of micro-grid operation mode switching requirements for the control system, and builds micro-grid central control system based on multi-agent technology aiming at the coordinated control of micro-grid operation mode switching, which will effectively enhance the implementation effect of switching control strategy, and play important role in achieving the seamless switching control of micro-grid operation modes.


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