Optimal Power Management of Interconnected Microgrids Using Virtual Inertia Control Technique

被引:12
|
作者
Elshenawy, Mahmoud [1 ]
Fahmy, Ashraf [2 ]
Elsamahy, Adel [1 ,3 ]
Kandil, Shaimaa A. [1 ]
El Zoghby, Helmy M. [1 ]
机构
[1] Helwan Univ, Fac Engn, Elect Power & Machines Engn Dept, Cairo 11792, Egypt
[2] Swansea Univ, Fac Sci & Engn, Swansea SA1 8EN, W Glam, Wales
[3] Acad Sci Res & Technol ASRT, Cairo 11792, Egypt
关键词
contingency of power system; energy storage system (ESS); fuzzy fractional order PI (FFOPI); fuzzy PI (FPI); multi-objective optimization; microgrid; power quality enhancement; particle swarm optimization (PSO); virtual inertia control; SYSTEM; OPTIMIZATION; STORAGE; MODEL;
D O I
10.3390/en15197026
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Two interconnected AC microgrids are proposed based on three renewable energy sources (RESs): wind, solar, and biogas. The wind turbine drives a permanent magnet synchronous generator (PMSG). A solar photovoltaic system (SPVS) with an appropriate inverter was incorporated. The biogas genset (BG) consists of a biogas engine coupled with a synchronous generator. Two interconnected AC microgrids, M-1 and M-2, were considered for study in this work. The microgrid M-2 is connected to a diesel engine (DE) characterized by a continuous power supply. The distribution power loss of the interconnected AC microgrids comprises in line loss. The M-1 and M-2 losses are modeled as an objective function (OF). The power quality enhancement of the interconnected microgrids will be achieved by minimizing this OF. This research also created a unique frequency control method called virtual inertia control (VIC), which stabilizes the microgrid frequency using an optimal controller. In this paper, the following five controllers are studied: a proportional integral controller (PI), a fractional order PI controller (FOPI), a fuzzy PI controller (FPI), a fuzzy fractional order PI controller (FFOPI), and a VIC based on FFOPI controller. The five controllers were tuned using particle swarm optimization (PSO) to minimize the (OF). The main contribution of this paper is the comprehensive study of the performance of interconnected AC microgrids under step load disturbances, step changes in wind/solar input power, and eventually grid following/forming contingencies as well as the virtual inertia control of renewable energy resources used in the structure of the microgrids.
引用
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页数:30
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