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IEEE Transactions on Sustainable Energy, 2019
In the distributed power generation systems (DPGSs) based on the renewable energies, the stability and harmonics of the grid-connected inverter are seriously affected by the uncertainties of the grid at the point of common coupling (PCC).
Jinming Xu +3 more
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In the distributed power generation systems (DPGSs) based on the renewable energies, the stability and harmonics of the grid-connected inverter are seriously affected by the uncertainties of the grid at the point of common coupling (PCC).
Jinming Xu +3 more
semanticscholar +1 more source
Power sharing in distributed power generation system
2012 IEEE 5th India International Conference on Power Electronics (IICPE), 2012Proper control and appropriate load sharing among Distributed Generation (DG) is desirable for distributed power generation systems. Increasing energy demand and reduction of conventional energy sources is leading towards greater interest in the use of non-conventional energy sources.
Alka Singh, Manoj Badoni, Bhim Singh
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Distributed Network Power Flow of Distributed Generation
Advanced Materials Research, 2012With constrains imposed by natural conditions, the power generated from wind power, solar power and other intermittent energy system has great randomness and volatility. Thus, the impact from the intermittent energy to the system voltage and power flow is uncertainty.
Qi Yang +3 more
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Distributed Generation Placement for Power Distribution Networks
Journal of Circuits, Systems and Computers, 2014Growing concerns on the energy crisis impose great challenges in development and deployment of the smart grid technologies into the existing electrical power system. A key enabling technology in smart grid is distributed generation, which refers to the technology that power generating sources are located in a highly distributed fashion and each ...
Xiaodao Chen, Shiyan Hu
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Unbalanced Distribution Power Flow with Distributed Generation
2005/2006 PES TD, 2006Recently the number of distributed generators (DG) being integrated in to the distribution system has increased. The distribution system is no longer a single source system. Thus there has to be a change in strategy for distribution analysis. This would require a fast power flow solution with DG. This paper presents the developed three phase unbalanced
S. Khushalani, N. Schulz
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Control of VSC for enhancement of power quality in offâgrid distributed power generation
IET Renewable Power Generation, 2019In this study, a control algorithm based on non-linear adaptive second-order Volterra filter (NLVF) is utilised to operate the voltage-source converter (VSC).
Ashutosh K. Giri +3 more
semanticscholar +1 more source
Microgrids [distributed power generation]
2001 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No.01CH37194), 2001Environmentally friendly renewable energy technologies such as photovoltaics and clean, efficient, fossil-fuels technologies such as micro-turbines and fuel cells are among new generating systems driving the demand for distributed generation of electricity.
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POWER GENERATION AND DISTRIBUTION
2004This chapter is intended to be an introduction to methods of electrical energy production,transmission, and distribution. Both single-phase and three-phase power systemsare introduced along with basic concepts and devices necessary for safety in electricalsystems.
null Gustafson +2 more
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Evaluating future power distribution system reliability including distributed generation
2014 IEEE PES General Meeting | Conference & Exposition, 2013This paper assesses the impact of conventional and renewable distributed generation (DG) on the reliability of future distribution systems, even when the connection may not be simply radial. The variability of the power output of renewable DGs, such as wind and solar is included.
Mohammad Al-Muhaini, Gerald T. Heydt
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Development of distributed power generation
Herald of the Russian Academy of Sciences, 2012Having analyzed the technical and economic performance of new energy technologies, the authors prove that the use of local energy resources, such as wood, agricultural waste, and peat is a priority in the development of distributed generation in Russia.
A. V. Bessmertnykh, V. M. Zaichenko
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