A Review of Synchronous Fixed-Frequency Microgrid Droop Control Systems Based on Global Positioning System

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Publicado en:Processes vol. 13, no. 1 (2025), p. 54
Autor principal: Li, Kuan
Otros Autores: Li, Yudun, Fan, Rongqi, Liu, Zehao, Lu, Maozeng
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MDPI AG
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024 7 |a 10.3390/pr13010054  |2 doi 
035 |a 3159548240 
045 2 |b d20250101  |b d20251231 
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100 1 |a Li, Kuan  |u State Grid Shandong Electric Power Research Institute, Jinan 250003, China; <email>lk_0313@126.com</email> (K.L.); <email>listu2004@126.com</email> (Y.L.); Shandong Smart Grid Technology Innovation Center, Jinan 250003, China 
245 1 |a A Review of Synchronous Fixed-Frequency Microgrid Droop Control Systems Based on Global Positioning System 
260 |b MDPI AG  |c 2025 
513 |a Journal Article 
520 3 |a Microgrids, as a new type of power supply network that connects distributed energy sources with power loads, can operate in both grid-connected and islanded states. It has the advantages of high reliability and flexible configuration. When the microgrid operates in islanding mode, ensuring voltage and frequency stability becomes a primary focus of research. This paper provides a brief overview of the master-slave control and peer-to-peer control strategies used in microgrids, analyzing the advantages and disadvantages of each approach. The application of droop control strategies to microgrid converters is emphasized. This research analyzes the implementation of droop control strategies in addressing microgrid frequency and power offsets. Given the advantages of the synchronized fixed-frequency droop control method, the authors provide a detailed overview of this strategy, which is based on the global satellite navigation system (GPS). On this basis, a comprehensive comparison of various synchronous frequency control methods is conducted, analyzing the advantages and disadvantages of each approach. Finally, the research findings in this area are summarized, and the future development trends of research in this field are discussed and anticipated. 
653 |a Navigation systems 
653 |a Global positioning systems--GPS 
653 |a Distributed generation 
653 |a Wind power 
653 |a Satellite navigation systems 
653 |a Communication 
653 |a Navigation behavior 
653 |a Electricity distribution 
653 |a Renewable resources 
653 |a Frequency analysis 
653 |a Photovoltaic cells 
653 |a Communications networks 
653 |a Power supply 
653 |a Control systems 
653 |a Methods 
653 |a Frequency stability 
653 |a Energy storage 
653 |a Alternative energy sources 
653 |a Frequency control 
653 |a Energy resources 
653 |a Control methods 
653 |a Electric power systems 
653 |a Self sufficiency 
700 1 |a Li, Yudun  |u State Grid Shandong Electric Power Research Institute, Jinan 250003, China; <email>lk_0313@126.com</email> (K.L.); <email>listu2004@126.com</email> (Y.L.); Shandong Smart Grid Technology Innovation Center, Jinan 250003, China 
700 1 |a Fan, Rongqi  |u State Grid Shandong Electric Power Company, Jinan 250001, China; <email>fanrongqi1@163.com</email> 
700 1 |a Liu, Zehao  |u School of Electrical and Electronic Engineering, Shandong University of Technology, Zibo 255000, China; <email>lumaoz@sdut.edu.cn</email> 
700 1 |a Lu, Maozeng  |u School of Electrical and Electronic Engineering, Shandong University of Technology, Zibo 255000, China; <email>lumaoz@sdut.edu.cn</email> 
773 0 |t Processes  |g vol. 13, no. 1 (2025), p. 54 
786 0 |d ProQuest  |t Materials Science Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3159548240/abstract/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch 
856 4 0 |3 Full Text + Graphics  |u https://www.proquest.com/docview/3159548240/fulltextwithgraphics/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3159548240/fulltextPDF/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch