Data centers are usually characterized by high energy loads, which raises increasing sustainability concerns in both academic and daily usage. To mitigate the uncertainty and high volatility of distributed wind energy generation, this paper proposes a hybrid energy storage allocation strategy by means of the Empirical Mode Decomposition (EMD) technique and the two-stage robust method. First, this paper conducts the evolution analyses for the over- and under-evaluated uncertainty of wind power fluctuation under different time scales. Second, we employ the EMD technique to configure a high-frequency flywheel energy storage device, realizing the wind power transformation from large fluctuations to small fluctuations and the convergence of the wind power fluctuation curves in minute- and hour levels. Finally, based on the hour-level wind energy stable power curves, we carry out two-stage robust planning for the equipment capacity of low-frequency cold storage tanks and lithium bromide chillers. The case study on a data center microgrid in northeastern China confirms the effectiveness of our proposed strategy.
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http://dx.doi.org/10.1038/s41598-024-53101-4 | DOI Listing |
Mar Pollut Bull
March 2025
Sanya Research Institute of Hunan University of Science and Technology, Sanya 572000, China. Electronic address:
The increasing demand for sustainable offshore energy solutions necessitates efficient power conversion technologies that minimize environmental impact while ensuring reliable energy delivery. The DC-DC buck converter plays a crucial role in marine renewable energy systems, optimizing power conversion for offshore wind, wave, and floating solar applications. However, selecting the most efficient and sustainable converter requires balancing efficiency, reliability, cost, thermal performance, and size under harsh marine conditions.
View Article and Find Full Text PDFHeliyon
February 2025
National Science and Technology Center for Disaster Reduction, New Taipei City 231007, Taiwan.
Understanding the long-term variabilities and trends of global oceanic surface wind speed is critical for extracting wind power. Therefore, 84 years (from 1940 to 2023) of global 10-m wind speed data derived from the fifth-generation ECMWF reanalysis, ERA5 (European Centre for Medium-Range Weather Forecasts Reanalysis v5), were utilised to analyse the long-term trends in the global 10-m wind speed. The results revealed that the wind speeds at the oceanic surface are much greater than those at the terrestrial surface, causing marine areas to be more suitable for extracting wind power.
View Article and Find Full Text PDFPLoS One
March 2025
Turkish Accreditation Agency (TURKAK), Ankara, Turkey.
Wind shear (WS) phenomena are critical in many applications, especially in aviation, wind energy and urban planning. Microburst (MB) detection is important for ensuring safety during aircraft landing/takeoff, eliminating imbalances caused by shear from wind turbines, and for static calculations in urban planning. In this study, microburst events were detected using meteorological data.
View Article and Find Full Text PDFPLoS One
March 2025
West Coast Regional Office, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Long Beach, California, United States of America.
The West Coast of the U.S. has a vast offshore wind energy (OWE) electricity generation potential with value on the order of billions of USD, and pressure is mounting to develop large OWE projects.
View Article and Find Full Text PDFSci Rep
March 2025
Department of Electrical Engineering, Faculty of Engineering, South Valley University, Qena, 83523, Egypt.
This paper presents the use of a static synchronous compensators (STATCOM) device to improve the low voltage ride through (LVRT) ability of an electrical network consisting of wind farms that produce 9 MW and 1 MW PV stations during grid faults. A hybrid energy model is connected with 100 MVAR STATCOM at the point of common coupling (PCC) through line to line fault occurs on the grid. STATCOM control is used to detect the voltage at the PCC bus through occurring line to line (LL) faults by compensating reactive energy.
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